Tian-Chyi J Yeh
- Professor, Hydrology / Atmospheric Sciences
- Member of the Graduate Faculty
- (520) 621-5943
- John W. Harshbarger, Rm. 122
- TUCSON, AZ 85721-0011
- yeh@hwr.arizona.edu
Biography
Dr. Yeh presently holds a Professor in the Department of Hydrology and Water Resources at the University of Arizona (number 1 ranking in Hydogeology by US News) and an Adjunct Professor at the Department of Resources Engineering, National Cheng Kung University, Taiwan, Republic of China. Department of Soil, Water, and Environmental Science, The University of Arizona, Tucson, Arizona; Department of Earth & Environmental Sciences, University of Waterloo. Professor Yeh is also an outstanding lecturer of Department of Education, China to Jilin University, China.
Professor Yeh is an internationally renowned leader in stochastic/numerical analysis and laboratory/field investigations, as applied to heterogeneity effects on flow and solute transport in the saturated and unsaturated geologic media. He pioneered stochastic analysis of the effects of spatial variability on flow in unsaturated geologic media; he discovered and developed the theory of moisture-dependent anisotropy for unsaturated hydraulic conductivity, which has significantly advanced our understanding, characterization, and prediction of unsaturated and saturated zone processes. His three classic papers on this subject have been referenced 624 times since their publications. Dr. Yeh also was the first to explore the conditional simulations and inverse modeling of flow and transport processes in variably saturated geologic media. He recently invented the sequential successive linear estimation technique as an innovation that overcomes difficulties of the traditional inverse modeling technique. This innovation has led to the development of robust hydraulic, tracer, electrical resistivity tomography, and stochastic fusion methods to image the subsurface heterogeneity. The impact of his innovation is well-documented by the number of citations of his two recent papers: Hydraulic tomography: development of a new aquifer test method (147 citations since 2000, 9.8/yr) and characterization of aquifer heterogeneity using transient hydraulic tomography (95 times since 2005, 9.5/yr). These two papers revolutionize the way we collect and analyze data for characterization of hydraulic properties the subsurface. Success of the stochastic fusion method brings about his concept of exploiting naturally occurring stimuli (storm, earthquake, river stage, lightning, etc.) as energy sources for basin-scale subsurface tomographic surveys. He believes this new concept is the future of hydrologic sciences and other disciplines of environmental sciences and engineering.
Degrees
- Ph.D. Groundwater Hydrology
- New Mexico Institue of Mines and Technology, Socorro, New Mexico, USA
- Stochastic analysis of effects of heterogeneity on unsaturated flow
Work Experience
- University of Arizona, Tucson, Arizona (1986 - Ongoing)
Awards
- Distinguished lecturer
- Dept of Geology & GeophysicsUniversity of Wyoming, Spring 2018
- Chongqing Fellowship
- Chongqing Chiaotong University, Spring 2017
- AGU Horton Award
- American Geophysical Union, Spring 2016 (Award Nominee)
- The Global Expert award of the Thousand Talents Plan of Tianjin City, China, 2016-2019.
- Tianjin Normal University, Spring 2016
- GPSC Achievement Awards
- Spring 2014
- Outstanding Professorship
- Department of Education, Julin University, China, Spring 2014
Interests
Research
Professor Yeh is an internationally renowned leader in stochastic/numerical analysis and laboratory/field investigations, as applied to heterogeneity effects on flow and solute transport in the saturated and unsaturated geologic media. He pioneered stochastic analysis of the effects of spatial variability on flow in unsaturated geologic media; he discovered and developed the theory of moisture-dependent anisotropy for unsaturated hydraulic conductivity, which has significantly advanced our understanding, characterization, and prediction of unsaturated and saturated zone processes. His three classic papers on this subject have been referenced 624 times since their publications. Dr. Yeh also was the first to explore the conditional simulations and inverse modeling of flow and transport processes in variably saturated geologic media. He recently invented the sequential successive linear estimation technique as an innovation that overcomes difficulties of the traditional inverse modeling technique. This innovation has led to the development of robust hydraulic, tracer, electrical resistivity tomography, and stochastic fusion methods to image the subsurface heterogeneity. The impact of his innovation is well-documented by the number of citations of his two recent papers: Hydraulic tomography: development of a new aquifer test method (147 citations since 2000, 9.8/yr) and characterization of aquifer heterogeneity using transient hydraulic tomography (95 times since 2005, 9.5/yr). These two papers revolutionize the way we collect and analyze data for characterization of hydraulic properties the subsurface. Success of the stochastic fusion method brings about his concept of exploiting naturally occurring stimuli (storm, earthquake, river stage, lightning, etc.) as energy sources for basin-scale subsurface tomographic surveys. He believes this new concept is the future of hydrologic sciences and other disciplines of environmental sciences and engineering
Teaching
He teaches stochastic methods in subsurface hydrology, hydrological transport processes, and advanced subsurface hydrology. He has also organized and taught many short courses on subsurface characterization, monitoring, and prediction during the last 20 years for scientists, engineers, and geologists from private consulting firms, national laboratories, and various federal agencies.
Courses
2024-25 Courses
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Fund Of Subsurface Hydr
HWRS 518 (Fall 2024)
2023-24 Courses
-
Hydrologic Trnsp Proc
HWRS 516 (Fall 2023)
2022-23 Courses
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Fund Of Subsurface Hydr
HWRS 518 (Fall 2022)
2021-22 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2022)
2020-21 Courses
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Fund Of Subsurface Hydr
HWRS 518 (Fall 2020)
2019-20 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2020) -
Dissertation
HWRS 920 (Fall 2019) -
Hydrologic Trnsp Proc
HWRS 516 (Fall 2019) -
Master's Report
HWRS 909 (Fall 2019) -
Stochastic Methods
HWRS 645 (Fall 2019) -
Thesis
HWRS 910 (Fall 2019)
2018-19 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2019) -
Dissertation
HWRS 920 (Spring 2019) -
Independent Study
HWRS 599 (Spring 2019) -
Thesis
HWRS 910 (Spring 2019) -
Dissertation
HWRS 920 (Fall 2018) -
Fund Of Subsurface Hydr
HWRS 518 (Fall 2018) -
Thesis
HWRS 910 (Fall 2018)
2017-18 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2018) -
Dissertation
HWRS 920 (Spring 2018) -
Independent Study
HWRS 699 (Spring 2018) -
Dissertation
HWRS 920 (Fall 2017)
2016-17 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2017) -
Dissertation
HWRS 920 (Spring 2017) -
Independent Study
HWRS 399 (Spring 2017) -
Independent Study
HWRS 599 (Spring 2017) -
Dissertation
HWRS 920 (Fall 2016) -
Hydrologic Trnsp Proc
HWRS 516 (Fall 2016) -
Independent Study
HWRS 499 (Fall 2016) -
Independent Study
HWRS 599 (Fall 2016)
2015-16 Courses
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Adv Subsurface Hydrology
HWRS 535 (Spring 2016) -
Independent Study
HWRS 599 (Spring 2016) -
Stochastic Methods
HWRS 645 (Spring 2016) -
Thesis
HWRS 910 (Spring 2016)
Scholarly Contributions
Books
- Yeh, T., Khaleel, R., & Carroll, K. C. (2015). Flow Through Heterogeneous Geologic Media. Cambridge University Press.
- Cai, X., & Yeh, T. J. (2008). Quantitative information fusion for hydrological sciences. Springer.
- Yeh, T. J. (1989). A review of the scale problem and applications of stochastic methods to determine groundwater travel time and path. Department of Hydrology and Water Resources. University of Arizona.
- Yeh, T. J., Gelhar, L. W., & Gutjahr, A. L. (1982). Stochastic analysis of effects of spatial variability on unsaturated flow. Hydrology Research Program, Geophysical Research Center, Research and~….
Chapters
- Ferrante, M., Brunone, B., Yeh, T. J., Ferrante, M., Brunone, B., & Yeh, T. J. (2020). Stochastic modeling of unsaturated flow in bounded domains. In Stochastic Hydraulics 2000(pp 525--532). CRC Press.
- Yang, Z., Li, D., Liu, S., Tian, X., Yeh, T. J., Yang, Z., Li, D., Liu, S., Tian, X., & Yeh, T. J. (2019). A Study on the Strength Properties of Solidified Lead Contaminated Soil under Repeated Freeze and Thaw Cycles. In IACGE 2018: Geotechnical and Seismic Research and Practices for Sustainability(pp 270--284). American Society of Civil Engineers Reston, VA.
- Yeh, T. J., Yeh, T. J., Guzman-Guzman, A., & Guzman-Guzman, A. (2018). Tensiometry. In Handbook of vadose zone characterization \& monitoring(pp 319--328). CRC Press.
- Mao, D., Yeh, T. J., Illman, W., Revil, A., Wen, J., Zha, Y., Mao, D., Yeh, T. J., Illman, W., Revil, A., Wen, J., & Zha, Y. (2016). Hydraulic tomography. In The Handbook of Groundwater Engineering(pp 915--934). CRC Press.
- Yeh, T. J., Yeh, T. J., Yeh, T. J., Yeh, T. J., Yeh, T. J., Zhu, J., Zhu, J., Zhu, J., Zhu, J., Zhu, J., Englert, A., Englert, A., Englert, A., Englert, A., Englert, A., Guzman, A., Guzman, A., Guzman, A., Guzman, A., , Guzman, A., et al. (2006). A successive linear estimator for electrical resistivity tomography. In Applied hydrogeophysics(pp 45--74). Springer, Dordrecht.
- Yeh, T., Wierenga, P., Khaleel, R., Glass, R. J., Yeh, T., Wierenga, P., Khaleel, R., & Glass, R. J. (2004). Isotropy and Anisotropy. In Encyclopedia of Soils in the Environment(pp 285--291). Elsevier Inc.
- Yeh, T. J. (1995). Stochastic modeling of water flow and solute transport in the vadose zone. In Groundwater Models for Resource Analysis and Management(pp 185--230). Lewis Publishers.
- Lee, C., Yu, J., & Yeh, T. (1991). Application of percolation theory to determine fracture connectivity, permeability and porosity of fractured rock. In Proc. Int. Conf.(pp 307--314). Tamkang University Taiwan.
Journals/Publications
- Chen, Z., Huang, Y., Fang, H., Yeh, T., & Zha, Y. (2023). An Exact Solution to the Linearized Richards Equation for Layered Media With Flexible Initial Condition. Water Resources Research, 59(9). doi:10.1029/2023WR035383More infoSrivastava and Yeh (1991, https://doi.org/10.1029/90WR02772) derived an exact solution to the linearized Richards equation (LRE) for two-layer medium infiltration using the Laplace transform (LT) method with a particular initial condition assumed, making the most pioneering contribution to the derivation of exact solutions to the layered-medium LRE (i.e., ES-LMLREs). However, the LT method is unsuitable for deriving an ES-LMLRE that considers either an arbitrary initial condition or an arbitrary number of layers, or both, preventing further progress in developing ES-LMLREs. Adopting a new solution strategy, namely a conjunctive use of the variable separation method and the transfer matrix method, we develop a novel exact layered-medium-LRE infiltration solution, overcoming the above difficulties. First, the proposed solution is successfully validated against the Srivastava-Yeh solution. As a feature-demonstration example, a layered-medium water absorption process is simulated, and our solution well captures how the heterogeneity of hydraulic parameters affects the dynamics of this process. Moreover, the proposed solution is a valuable benchmark for related numerical models.
- Gai, Y., Wang, M., Wu, Y., Wang, E., Deng, X., Liu, Y., Jim Yeh, T., & Hao, Y. (2023). Simulation of spring discharge using graph neural networks at Niangziguan Springs, China. Journal of Hydrology, 625(130079). doi:10.1016/j.jhydrol.2023.130079More infoOver past decades, extensive groundwater development in karst aquifers has led to significant declines in groundwater levels and spring discharges. While the recent implementation of sustainable karst aquifer development policies appears to have lessened the declining trend of spring discharge, many aspects of karst aquifers remain to be explored. This paper applied two spectral-based graph neural networks (GNN) models of ChebNet and graph convolutional networks (GCN) for karst hydrological processes by considering the correlations among precipitation, spring discharge, and human impacts. This approach captures the spatial dependence of precipitation infiltration, groundwater propagation in heterogeneous karst aquifer and spring discharge from bared karst aquifer. This study proposed three graph structures (complete graph, information flow graph, and association graph of groundwater flow field) to depict relations between precipitation and spring discharge in the GNN models in Niangziguan Springs, China. The results show that the association graph of groundwater flow field is the optimal graph structure of GNN models. Based on the optimal structure, we investigated precipitation-driven-discharge models using ChebNet and GCN to predict the discharge. The results show that the high-order ChebNet is more adaptable to simulate the karst hydrological processes with nonlinear and nonstationary behaviors than that GCN. Moreover, the study confirms that the groundwater sustainable development policy has achieved a prominent contribution 2 m3/s in water conservancy in Niangziguan Springs catchment.
- Hao, H., Hao, Y., Liu, Y., Yeh, T., Zhang, M., Wang, Q., & Fan, Y. (2023). Anomaly of glacier mass balance in different vertical zones and responses to climate modes: Urumqi Glacier No. 1, China. Climate Dynamics, 60(1-2), 493-509. doi:10.1007/s00382-022-06318-wMore infoIdentifying the anomaly of glacier mass balance under climate change is vital for understanding glacier development and conservation, and the mechanism that induces spatial heterogeneity in glacier evolution. The combined effects of climate teleconnections and local atmospheric factors induce the elevation-dependent behavior of glacier mass balance. To examine elevation-dependency of glacier mass balance to climate variability, we divided Urumqi Glacier No. 1, China into seven vertical zones with equal elevation intervals of 100 m from 3700 to 4400 m above the sea level (a.s.l.). We identified anomalies of the glacier mass balance of each elevation zone using the Mann–Kendall test based on the observed data from 1970 to 2018. According to the change rate before and after an anomaly, the sensitive zone of glacier mass balance was determined to be in the middle-elevation (3800–4200 masl). A gain and loss transformation zone is found at elevation interval 4000–4200 masl, and is called the core of sensitive zone. Subsequently, the glacier mass balance response to climate variability was analyzed based on the interrelationship between the mass balance gain and loss and the warm and cold phases of different climate modes including the El Niño–Southern Oscillation, North Atlantic Oscillation and Arctic Oscillation. The La Niña and North Atlantic Oscillation-cold phases strongly affect mass balance. The former causes the mass balance loss mainly in interval 3700–4400 masl. The latter results in the gain in interval 3700–4100 masl and loss in interval 4100–4400 masl Thus, glacier mass balance distribution is vertically heterogeneous, exhibiting a hierarchical structure. In summary, glacier mass balance response to climate change depends on both elevation and climate modes.
- Hou, X., Hu, R., Yeh, T., Li, Y., Qi, J., Song, Y., & Qiu, H. (2023). A Short-Term Pumping Strategy for Hydraulic Tomography Based on the Successive Linear Estimator. Water Resources Research, 59(4). doi:10.1029/2022WR033831More infoIn this study, the random finite element method, a finite element method with random field generation techniques, was applied to investigate the cross correlations between the observed head and hydraulic conductivity and specific storage at different locations and different times in pumping tests. The results show that the two cross correlations between the pumping well and the observation well reach their maximums before pumping reaches a steady state. Specifically, the cross correlation between the observed head and hydraulic conductivity is the greatest when the temporal derivative of the observed head does not change significantly, and that between the observed head and specific storage is the greatest when the temporal derivative (the rate) of the observed head is maximum. Based on the results of cross-correlation analysis, a short-term pumping strategy for hydraulic tomography is proposed to obtain the spatial distribution of hydraulic conductivity and specific storage using the successive linear estimator. Furthermore, this strategy was validated by Monte Carlo simulations. This paper points out that the sensitivity and cross-correlation analyses report the ensemble (averaged) behaviors of any heterogeneous aquifers, which is not necessarily suitable for one realization. Furthermore, Monte Carlo simulation is suggested for validating any groundwater inverse modeling result.
- Wang, K., Li, J., Wang, W., Zhang, Z., Wang, X., Wang, Q., Yeh, T., & Hao, Y. (2023). Calibrating a model of depth to water table using Fourier series and Simpson numerical integration. Journal of Hydrology, 620. doi:10.1016/j.jhydrol.2023.129516More infoDepth to water table (DWT) in shallow groundwater affects land salinization, ecological system, irrigation scheduling, and agriculture output. Few researches have, however, focused on the impact of the complex transient dynamics of precipitation and evapotranspiration on the behavior of DWT in shallow groundwater. This study proposes a one-dimensional DWT model driven by complex multi-periodic precipitation and evapotranspiration, coupling the Boussinesq equation with the Averianov formula. The model is calibrated using multi-modes truncated Fourier series against 1-D data from the field experiment in Guanzhong Basin, Shaanxi Province, China. The experiment shields lateral groundwater flow effectively to ensure an accurate measurement of the effect of precipitation and evapotranspiration on DWT in the vertical direction. Results of the study show that fluctuations of DWT are driven by multi-periodic evapotranspiration and precipitation primarily in the long-wave components because the high-frequency precipitation and evapotranspiration are essentially filtered out when they propagate through unsaturated zones. This result beneficial for future studies on DWT via the Fourier series. In particular, the calibrated model can quickly determine the DWT of Guanzhong Basin site, predict DWT in the short term, and simulate the dynamic change of groundwater level, the vegetation in the study area. Besides, although the calibrated parameters cannot be directly applied to other sites, they may be useful to the prediction of the DWT fluctuations in the sites.
- Xia, R., Liang, Y., Jim Yeh, T., Dang, X., Gu, X., & Xu, B. (2023). Characterizing hydraulic heterogeneity of Bayin River Basin using river stage tomography. Journal of Hydrology, 621(129547). doi:10.1016/j.jhydrol.2023.129547More infoThe drastic spatial and temporal variations of water resources are one of the causes of the fragile ecological environment in the Bayin River Basin. While the temporal variation is less predictable, a detailed spatial distribution of hydrological parameters of the basin is invaluable for developing guidance for allocating and utilizing water resources in the Bayin River Basin. This study estimates the two-dimensional spatial distribution of hydraulic diffusivity (D) of the Bayin River Basin through the relationship between river flow and groundwater using limited available river stages data along the river. It first conducted a wavelet analysis to illustrate strong correlations between river flow and groundwater during the flood season in the basin. Subsequently, it used a simple linear model to estimate temporal and spatial variations of the river stage along the river due to flood. Then, the study applied a recently developed river stage tomography (RST) to the alluvial fan to estimate the spatial distribution of the D values. The RST treats the flood river stage as a signal pressure transmitter, and the groundwater fluctuation recorded in the observation wells as the images of the aquifer heterogeneity between the river and observation wells. The RST then synthesizes these images to characterize the heterogeneous distribution of D in the alluvial fan in the Bayin River Basin. The results show that the northeast area of the alluvial fan has a relatively high D, while the D is relatively low in the tail and the southwest area of the fan. These findings are consistent with the general concept of alluvial fan evolution. Moreover, the predicted groundwater levels during the flood event in 2019 based on the RST-estimated D is more accurate than the preliminary stratigraphic survey, confirming that capturing groundwater responses at various parts of a basin caused by some disturbances could reveal hydraulic connectivity, which the prior geologic information cannot. This result is essential to advancing aquifer characterization technologies and affirming the contribution of RST and the view toward the future subsurface sciences advocated by Yeh et al. (2008).
- Cai, J., Yeh, T. J., Yan, E., Tang, R., & Hao, Y. (2021). Design of borehole deployments for slope stability analysis based on a probabilistic approach. Computers and Geotechnics, 133, 103909.
- Gao, X. u., Yeh, T. J., Yan, E., Wang, Y., & Hao, Y. (2021). Conditional mean, effective, and realizations of hydraulic conductivity fields. Journal of Hydrology, 592, 125606.
- Jiang, L., Sun, R., Yeh, T. J., & Liang, X. (2021). Inverse modeling of different stimuli and hydraulic tomography: A laboratory sandbox investigation. Journal of Hydrology, 603, 127108.
- Liang, Y., Yeh, T. J., Ma, C., Zhang, J., Xu, W., Yang, D., & Hao, Y. (2021). Experimental investigation on hole erosion behaviors of chemical stabilizer treated soil. Journal of Hydrology, 594, 125647.
- Liu, F., Yeh, T. J., Song, X., Wang, Y., Wen, J., Hao, Y., & Wang, W. (2021). Temporal sampling and role of flux measurements for subsurface heterogeneous characterization in groundwater basins using hydraulic tomography. Hydrological Processes, 35(8), e14299.
- Ren, S., Zhang, Y. e., Jim, Y. T., Wang, Y., & Carr, B. J. (2021). Multiscale hydraulic conductivity characterization in a fractured granitic aquifer: the evaluation of scale effect. Water Resources Research, 57(9), e2020WR028482.
- Wang, Y., Yeh, T. J., Xu, D., Li, K., Wen, J., Huang, S., Wang, W., & Hao, Y. (2021). Stochastic analysis of oscillatory hydraulic tomography. Journal of Hydrology, 596, 126105.
- Zhang, Z., Wang, W., Gong, C., Yeh, T. J., Duan, L., & Wang, Z. (2021). Finite analytic method: Analysis of one-dimensional vertical unsaturated flow in layered soils. Journal of Hydrology, 597, 125716.
- An, L., Hao, Y., Yeh, T. J., & Zhang, B. (2020). Annual to multidecadal climate modes linking precipitation of the northern and southern slopes of the Tianshan Mts. Theoretical and Applied Climatology, 1--13.
- An, L., Hao, Y., Yeh, T. J., Liu, Y., Liu, W., Zhang, B., An, L., Hao, Y., Yeh, T. J., Liu, Y., Liu, W., & Zhang, B. (2020). Simulation of karst spring discharge using a combination of time--frequency analysis methods and long short-term memory neural networks. Journal of Hydrology, 589, 125320.
- Chen, K., Hwang, C., Chang, L., Tsai, J., Yeh, T. J., Cheng, C., Ke, C., Feng, W., Chen, K., Hwang, C., Chang, L., Tsai, J., Yeh, T. J., Cheng, C., Ke, C., & Feng, W. (2020). Measuring aquifer specific yields with absolute gravimetry: Result in the Choushui River Alluvial Fan and Mingchu Basin, central Taiwan. Water Resources Research, 56(9), e2020WR027261.
- Daranond, K., Yeh, T. J., Hao, Y., Wen, J., & Wang, W. (2020). Identification of groundwater basin shape and boundary using hydraulic tomography. Journal of Hydrology, 588, 125099.
- Dong, H., Li, X., Yeh, T. J., & Ge, J. (2020). Diagnosis of concentrated leakage channel embedded in dam base by means of hydraulic tomography. Bulletin of Engineering Geology and the Environment, 79(6), 2871--2881.
- Gao, X. u., Yan, E., Yeh, T. J., Yin, X., Cai, J., Hao, Y., Wen, J., Gao, X. u., Yan, E., Yeh, T. J., Yin, X., Cai, J., Hao, Y., & Wen, J. (2020). Back analysis of displacements for estimating spatial distribution of viscoelastic properties around an unlined rock cavern. Computers and Geotechnics, 126, 103724.
- Guo, Y., Dong, S., Hao, Y., Liu, Z., Yeh, T. J., Wang, W., Gao, Y., Li, P., & Zhang, M. (2020). Risk assessments of water inrush from coal seam floor during deep mining using a data fusion approach based on grey system theory. Complexity, 2020.
- Liang, Y., Yeh, T. J., Ma, C., Zhang, Q., Yang, D., Hao, Y., Liang, Y., Yeh, T. J., Ma, C., Zhang, Q., Yang, D., & Hao, Y. (2020). Experimental investigation of internal erosion behaviours in inclined seepage flow. Hydrological Processes, 34(26), 5315--5326.
- Liu, F., Wang, S., Yeh, T. J., Zhen, P., Wang, L., & Shi, L. (2020). Using multivariate statistical techniques and geochemical modelling to identify factors controlling the evolution of groundwater chemistry in a typical transitional area between Taihang Mountains and North China Plain. Hydrological Processes, 34(8), 1888--1905.
- Liu, F., Yeh, T. J., Wang, Y., Hao, Y., Wen, J., & Wang, W. (2020). Characterization of basin-scale aquifer heterogeneity using transient hydraulic tomography with aquifer responses induced by groundwater exploitation reduction. Journal of Hydrology, 588, 125137.
- Liu, F., Yeh, T. J., Wang, Y., Song, X., Lei, X., Wen, J., Wang, W., Hao, Y., Liu, F., Yeh, T. J., Wang, Y., Song, X., Lei, X., Wen, J., Wang, W., & Hao, Y. (2020). Potential of hydraulic tomography in identifying boundary conditions of groundwater basins. Water Resources Research, 56(12), e2020WR028331.
- Su, X., Yeh, T. J., Shu, L., Li, K., Brusseau, M. L., Wang, W., Hao, Y., Lu, C., Su, X., Yeh, T. J., Shu, L., Li, K., Brusseau, M. L., Wang, W., Hao, Y., & Lu, C. (2020). Scale issues and the effects of heterogeneity on the dune-induced hyporheic mixing. Journal of Hydrology, 590, 125429.
- Wang, Y., Yeh, T. J., & Tsai, J. (2020). A reduced-order model for dual state-parameter geostatistical inversion. Hydrology and Earth System Sciences Discussions, 1--39.
- Wen, J., Chen, J., Yeh, T. J., Wang, Y., Huang, S., Tian, Z., & Yu, C. (2020). Redundant and nonredundant information for model calibration or hydraulic tomography. Groundwater, 58(1), 79--92.
- Xu, D., Hu, X., Sun, R., Yeh, T. J., Xu, D., Hu, X., Sun, R., & Yeh, T. J. (2020). Exploiting Electrical Resistivity Tomography for Hydraulic Tomography: Sandbox Experiments. 2020 年中国地球科学联合学术年会论文集 (十七)—专题四十九: 浅地表地球物理进展, 专题五十: 地球物理多场数据融合及其在水文地质研究中的应用, 专题五十一: 城市地下介质成像和探测.
- An, L., Ren, X., Hao, Y., Jim, Y. T., Zhang, B., An, L., Ren, X., Hao, Y., Jim, Y. T., & Zhang, B. (2019). Utilizing precipitation and spring discharge data to identify groundwater quick flow belts in a karst spring catchment. Journal of Hydrometeorology, 20(10), 2057--2068.
- Cai, J., Yeh, T. J., Yan, E., Tang, R., Hao, Y., Huang, S., Wen, J., Cai, J., Yeh, T. J., Yan, E., Tang, R., Hao, Y., Huang, S., & Wen, J. (2019). Importance of variability in initial soil moisture and rainfalls on slope stability. Journal of Hydrology, 571, 265--278.
- Chen, J., Wen, J., Yeh, T. J., Lin, K. A., Wang, Y., Huang, S., Ma, Y., Yu, C., Lee, C., Chen, J., Wen, J., Yeh, T. J., Lin, K. A., Wang, Y., Huang, S., Ma, Y., Yu, C., & Lee, C. (2019). Reproducibility of hydraulic tomography estimates and their predictions: A two-year case study in Taiwan. Journal of Hydrology, 569, 117--134.
- Dong, Y., Fu, Y., Yeh, T. J., Wang, Y., Zha, Y., Wang, L., Hao, Y., Dong, Y., Fu, Y., Yeh, T. J., Wang, Y., Zha, Y., Wang, L., & Hao, Y. (2019). Equivalence of discrete fracture network and porous media models by hydraulic tomography. Water Resources Research, 55(4), 3234--3247.
- Guo, Y., Yeh, T. J., Hao, Y., Guo, Y., Yeh, T. J., & Hao, Y. (2019). Investigation of Karst Spring Flow Cessation Using Grey System Models. Water, 11(9), 1927.
- Li, K., Zhang, Y., Yeh, T. J., Zhao, L., Su, X., Wang, Y., Qi, Y., Li, K., Zhang, Y., Yeh, T. J., Zhao, L., Su, X., Wang, Y., & Qi, Y. (2019). An iterative scheme to map and incorporate geologic information of discontinuous heterogeneity in hydraulic tomography. Journal of Hydrology, 579, 124143.
- Liang, Y., Yeh, T. J., Chen, Q., Xu, W., Dang, X., Hao, Y., Liang, Y., Yeh, T. J., Chen, Q., Xu, W., Dang, X., & Hao, Y. (2019). Particle erosion in suffusion under isotropic and anisotropic stress states. Soils and Foundations, 59(5), 1371--1384.
- Liang, Y., Yeh, T. J., Wang, J., Liu, M., Zha, Y., Hao, Y., Liang, Y., Yeh, T. J., Wang, J., Liu, M., Zha, Y., & Hao, Y. (2019). Onset of suffusion in upward seepage under isotropic and anisotropic stress conditions. European Journal of Environmental and Civil Engineering, 23(12), 1520--1534.
- Liu, F., Wang, S., Wang, L., Shi, L., Song, X., Yeh, T. J., Zhen, P., Liu, F., Wang, S., Wang, L., Shi, L., Song, X., Yeh, T. J., & Zhen, P. (2019). Coupling hydrochemistry and stable isotopes to identify the major factors affecting groundwater geochemical evolution in the Heilongdong Spring Basin, North China. Journal of Geochemical Exploration, 205, 106352.
- Tang, R., Cai, J., Yeh, T. J., Tang, R., Cai, J., & Yeh, T. J. (2019). Two-Dimensional Probabilistic Infiltration Analysis in a Hillslope Using First-Order Moment Approach. Groundwater, 57(2), 226--237.
- Tsai, J., Chang, P., Yeh, T. J., Chang, L., Hsiao, C., Tsai, J., Chang, P., Yeh, T. J., Chang, L., & Hsiao, C. (2019). Constructing the apparent geological model by fusing surface resistivity survey and borehole records. Groundwater, 57(4), 590--601.
- Wang, Y., Yeh, T. J., Wen, J., Gao, X. u., Zhang, Z., Huang, S., Wang, Y., Yeh, T. J., Wen, J., Gao, X. u., Zhang, Z., & Huang, S. (2019). Resolution and ergodicity issues of river stage tomography with different excitations. Water Resources Research, 55(6), 4974--4993.
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- Hughson, D. L., & Yeh, T. (2000). An inverse model for three-dimensional flow in variably saturated porous media. WATER RESOURCES RESEARCH, 36(4), 829-839.
- Hughson, D. L., & Yeh, T. J. (2000). An inverse model for three-dimensional flow in variably saturated porous media. Water Resources Research, 36(4), 829--839.
- Khaleel, R., Khaleel, R., Yeh, T. J., Yeh, T. J., Lu, Z., Lu, Z., Khaleel, R., Yeh, T. J., & Lu, Z. (2000). Upscaled flow and transport properties for heterogeneous unsaturated media. Water Resources Research, 38, 2002.
- Yeh, T. J., & Liu, S. (2000). Hydraulic tomography: Development of a new aquifer test method. Water Resources Research, 36(8), 2095--2105.
- Yeh, T. J., Yeh, T. J., Liu, S., Liu, S., Yeh, T. J., & Liu, S. (2000). HYDRAULIC TOMOGRAPHY. A SEQUENTIAL INVERSE APPROACH FOR HYDRAULIC TOMOGRAPHY AND ELECTRICAL RESISTT/ITY TOMOGRAPHY: AN EFFECTIVE METHOD FOR SITE CHARACTERIZATION, 36, 33.
- Yeh, T., & Liu, S. Y. (2000). Hydraulic tomography: Development of a new aquifer test method. WATER RESOURCES RESEARCH, 36(8), 2095-2105.
- ALUMBAUGH, D. L., YEH, J., LABRECQUE, D., GLASS, R. J., BRAINARD, J., & RAUTMAN, C. (1999). A Hybrid Hydrologic-Geophysical Inverse Technique for the Assessment and Monitoring of Leachates in the Vadose Zone; TOPICAL.
- Ferrante, M., & Yeh, T. (1999). Head and flux variability in heterogeneous unsaturated soils under transient flow conditions. WATER RESOURCES RESEARCH, 35(5), 1471-1479.
- Ferrante, M., & Yeh, T. J. (1999). Head and flux variability in heterogeneous unsaturated soils under transient flow conditions. Water Resources Research, 35(5), 1471--1479.
- Li, B. L., & Yeh, T. (1999). Cokriging estimation of the conductivity field under variably saturated flow conditions. WATER RESOURCES RESEARCH, 35(12), 3663-3674.
- Li, B., & Yeh, T. J. (1999). Cokriging estimation of the conductivity field under variably saturated flow conditions. Water Resources Research, 35(12), 3663--3674.
- Padilla, I. Y., Yeh, T. J., & Conklin, M. H. (1999). The effect of water content on solute transport in unsaturated porous media. Water Resources Research, 35(11), 3303--3313.
- Padilla, I. Y., Yeh, T., & Conklin, M. H. (1999). The effect of water content on solute transport in unsaturated porous media. WATER RESOURCES RESEARCH, 35(11), 3303-3313.
- Vargas-Guzm\'an, J., & Yeh, T. J. (1999). Sequential kriging and cokriging: Two powerful geostatistical approaches. Stochastic Environmental Research and Risk Assessment, 13(6), 416--435.
- Vargas-Guzman, J., & Yeh, T. (1999). Sequential kriging and cokriging: Two powerful geostatistical approaches. STOCHASTIC ENVIRONMENTAL RESEARCH AND RISK ASSESSMENT, 13(6), 416-435.
- Alumbaugh, D. L., Glass, A. R., & Yeh, T. (1998). A hybrid hydrologic-geophysical inverse technique for the assessment and monitoring of leachates in the vadose zone. Environmental Management Science Program Workshop, 376.
- Hanna, S., & Yeh, T. (1998). Estimation of co-conditional moments of transmissivity, hydraulic head, and velocity fields. ADVANCES IN WATER RESOURCES, 22(1), 87-95.
- Hanna, S., & Yeh, T. J. (1998). Estimation of co-conditional moments of transmissivity, hydraulic head, and velocity fields. Advances in water resources, 22(1), 87--95.
- Harter, T., & Yeh, T. (1998). Flow in unsaturated random porous media, nonlinear numerical analysis and comparison to analytical stochastic models. ADVANCES IN WATER RESOURCES, 22(3), 257-272.
- Harter, T., & Yeh, T. J. (1998). Flow in unsaturated random porous media, nonlinear numerical analysis and comparison to analytical stochastic models. Advances in water resources, 22, 257--272.
- Harter, T., Yeh, T. J., Harter, T., & Yeh, T. J. (1998). Flow in unsaturated random porous media, nonlinear numerical analysis and comparison to analytical stochastic models. Advances in Water Resources, 22(3), 257--272.
- Li, B., & Yeh, T. (1998). Sensitivity and moment analyses of head in variably saturated regimes. ADVANCES IN WATER RESOURCES, 21(6), 477-485.
- Li, B., Yeh, T., Li, B., & Yeh, T. (1998). Sensitivity and moment analyses of head in variably saturated regimes. Advances in Water Resources, 21(6), 477--485.
- Yeh, T., Yeh, T., & Yeh, T. (1998). Scale issues of heterogeneity in vadose-zone hydrology. Scale dependence and scale invariance in hydrology, 224--265.
- Bales, R. C., Li, S. M., Yeh, T., Lenczewski, M. E., & Gerba, C. P. (1997). Bacteriophage and microsphere transport in saturated porous media: Forced-gradient experiment at Borden, Ontario. WATER RESOURCES RESEARCH, 33(4), 639-648.
- Bales, R. C., Li, S., Yeh, T. J., Lenczewski, M. E., & Gerba, C. P. (1997). Bacteriophage and microsphere transport in saturated porous media: Forced-gradient experiment at Borden, Ontario. Water Resources Research, 33(4), 639--648.
- Lacher, L. J., Lacher, L. J., III, T. M., III, T. M., Yeh, T. J., & Yeh, T. J. (1997). Inexpensive access tube installation of tensiometers below a flowing stream. Groundwater Monitoring \& Remediation, 17(3), 76--77.
- Mas-Pla, J., Jim Yeh, T., Williams, T. M., & McCarthy, J. F. (1997). Analyses of Slug Tests and Hydraulic Conductivity Variations in the Near Field of a Two-Well Tracer Experiment Site. Ground Water, 35, 492--501.
- Zhang, J. Q., & Yeh, T. (1997). An iterative geostatistical inverse method for steady flow in the vadose zone. WATER RESOURCES RESEARCH, 33(1), 63-71.
- Zhang, J., & Yeh, T. J. (1997). An iterative geostatistical inverse method for steady flow in the vadose zone. Water Resources Research, 33(1), 63--71.
- Harter, T., & Yeh, T. (1996). Stochastic analysis of solute transport in heterogeneous, variably saturated soils. WATER RESOURCES RESEARCH, 32(6), 1585-1595.
- Harter, T., & Yeh, T. J. (1996). Conditional stochastic analysis of solute transport in heterogeneous, variably saturated soils. Water Resources Research, 32(6), 1597--1609.
- Harter, T., Gutjahr, A. L., Yeh, T. J., Harter, T., Gutjahr, A. L., Yeh, T. J., Harter, T., Gutjahr, A. L., & Yeh, T. J. (1996). Linearized cosimulation of hydraulic conductivity, pressure head, and flux in saturated and unsaturated, heterogeneous porous media. Journal of hydrology, 183(1-2), 169--190.
- Harter, T., Harter, T., Yeh, T., & Yeh, T. (1996). Conditional stochastic analysis of solute transport in heterogeneous, variably saturated soils. WATER RESOURCES RESEARCH, 32(6), 1597-1609.
- McCarthy, J. F., Gu, B., Liang, L., Mas-Pla, J., Williams, T. M., & Yeh, T. (1996). Field tracer tests on the mobility of natural organic matter in a sandy aquifer. Water Resources Research, 32(5), 1223--1238.
- McCarthy, J. F., Gu, B., Liang, L., MasPla, J., Williams, T. M., & Yeh, T. (1996). Field tracer tests on the mobility of natural organic matter in a sandy aquifer. WATER RESOURCES RESEARCH, 32(5), 1223-1238.
- Yeh, T. J. (1996). Stochastic inverse approaches for variably saturated flow in heterogeneous porous media: conditional moments. IAHS Publications-Series of Proceedings and Reports-Intern Assoc Hydrological Sciences, 237, 3--12.
- Yeh, T. J., & Mock, P. A. (1996). A Structured Approach for Calibrating Steady-State Ground-Water Flow Models. Groundwater, 34(3), 444--450.
- Yeh, T. J., & Zhang, J. (1996). A geostatistical inverse method for variably saturated flow in the vadose zone. Water Resources Research, 32(9), 2757--2766.
- Yeh, T. J., Jin, M., & Hanna, S. (1996). An iterative stochastic inverse method: Conditional effective transmissivity and hydraulic head fields. Water Resources Research, 32(1), 85--92.
- Yeh, T., & Mock, P. A. (1996). A structured approach for calibrating steady-state ground-water flow models. GROUND WATER, 34(3), 444-450.
- Yeh, T., Jin, M. H., & Hanna, S. (1996). An iterative stochastic inverse method: Conditional effective transmissivity and hydraulic head fields. WATER RESOURCES RESEARCH, 32(1), 85-92.
- Jim, Y. T., Mas-Pla, J., Williams, T. M., & McCarthy, J. F. (1995). Observation and three-dimensional simulation of chloride plumes in a sandy aquifer under forced-gradient conditions. Water Resources Research, 31(9), 2141--2157.
- YEH, T., GUTJAHR, A. L., & JIN, M. G. (1995). AN ITERATIVE COKRIGING-LIKE TECHNIQUE FOR GROUNDWATER-FLOW MODELING. GROUND WATER, 33(1), 33-41.
- YEH, T., MASPLA, J., WILLIAMS, T. M., & MCCARTHY, J. F. (1995). OBSERVATION AND 3-DIMENSIONAL SIMULATION OF CHLORIDE PLUMES IN A SANDY AQUIFER UNDER FORCED-GRADIENT CONDITIONS. WATER RESOURCES RESEARCH, 31(9), 2141-2157.
- Yeh, T. C., Mas-Pla, J., McCarthy, J. F., Williams, T. M., Yeh, T. C., Mas-Pla, J., McCarthy, J. F., & Williams, T. M. (1995). Modeling of natural organic matter transport processes in groundwater.. Environmental health perspectives, 103(suppl 1), 41--46.
- Yeh, T. J., & Guzman-Guzman, A. (1995). Tensiometry. Handbook of vadose zone characterization and monitoring. CRC Press, Baco Raton, Fl USA. pp319-328.
- Yeh, T. J., & Yeh, T. J. (1995). Stochastic modeling of water flow and solute transport in the vadose zone. Aly I. El-Kadi (ed.) Groundwater models for resources analysis and management. Lewis Publishers, 185--230.
- Yeh, T. J., Gutjahr, A. L., & Jin, M. (1995). An iterative cokriging-like technique for ground-water flow modeling. Groundwater, 33(1), 33--41.
- Yeh, T. J., Yeh, T. J., Yeh, T. J., Guzman, A., Guzman, A., Guzman, A., Srivastava, R., Srivastava, R., Srivastava, R., Gagnard, P. E., Gagnard, P. E., Gagnard, P. E., Kramer, J. H., Kramer, J. H., & Kramer, J. H. (1995). Simulation of the wicking effect in a two-layer soil liner system. Waste management \& research, 13, 363--378.
- Yeh, T., Mas-Pla, J., McCarthy, J. F., & Williams, T. M. (1995). Modeling of natural organic matter transport processes in groundwater.. Environmental health perspectives, 103, 41.
- Bagtzoglou, A. C., Mohanty, S., Nedungadi, A., Yeh, T. J., & Ababou, R. (1994). EFFECTIVE HYDRAULIC PROPERTY cALcULATIoNs FoR.
- Bagtzoglou, A. C., Mohanty, S., Nedungadi, A., Yeh, T. J., & Ababou, R. (1994). Effective hydraulic property calculations for unsaturated, fractured rock with semi-analytical and direct numerical techniques: Review and applications. Rep. CNWRA 94, 7.
- YEH, T., GUZMAN, A., SRIVASTAVA, R., & GAGNARD, P. E. (1994). NUMERICAL-SIMULATION OF THE WICKING EFFECT IN LINER SYSTEMS. GROUND WATER, 32(1), 2-11.
- Yeh, T. J., Guzman, A., Srivastava, R., & Gagnard, P. E. (1994). Numerical simulation of the wicking effect in liner systems. Groundwater, 32(1), 2--11.
- HARTER, T., & YEH, T. (1993). AN EFFICIENT METHOD FOR SIMULATING STEADY UNSATURATED FLOW IN RANDOM POROUS-MEDIA - USING AN ANALYTICAL PERTURBATION SOLUTION AS INITIAL GUESS TO A NUMERICAL-MODEL. WATER RESOURCES RESEARCH, 29(12), 4139-4149.
- Harter, T., & Yeh, T. J. (1993). An efficient method for simulating steady unsaturated flow in random porous media: Using an analytical perturbation solution as initial guess to a numerical model. Water resources research, 29(12), 4139--4149.
- YEH, T., SRIVASTAVA, R., GUZMAN, A., & HARTER, T. (1993). A NUMERICAL-MODEL FOR WATER-FLOW AND CHEMICAL-TRANSPORT IN VARIABLY SATURATED POROUS-MEDIA. GROUND WATER, 31(4), 634-644.
- Yeh, T., Srivastava, R., Guzman, A., & Harter, T. h. (1993). A numerical model for two dimensional flow and chemical transport. Ground Water, 31(4), 634--644.
- BROADBRIDGE, P., SRIVASTAVA, R., & YEH, T. (1992). BURGERS-EQUATION AND LAYERED MEDIA - EXACT-SOLUTIONS AND APPLICATIONS TO SOIL-WATER FLOW. MATHEMATICAL AND COMPUTER MODELLING, 16(11), 163-169.
- Broadbridge, P., Srivastava, R., Yeh, T. J., Broadbridge, P., Srivastava, R., Yeh, T. J., Broadbridge, P., Srivastava, R., & Yeh, T. J. (1992). Burgers' equation and layered media: Exact solutions and applications to soil-water flow. Mathematical and computer modelling, 16(11), 163--169.
- Jim Yeh, T., Jim, Y. T., & Jim, Y. T. (1992). Stochastic modelling of groundwater flow and solute transport in aquifers. Hydrological Processes, 6, 369--395.
- Mas-Pla, J., Jim Yeh, T., McCarthy, J. F., & Williams, T. (1992). A forced gradient tracer experiment in a coastal sandy aquifer, Georgetown site, South Carolina. Ground Water, 30, 958--964.
- Mas-Pla, J., Jim, Y. T., McCarthy, J. F., & Williams, T. M. (1992). A forced gradient tracer experiment in a coastal sandy aquifer, Georgetown site, South Carolina. Groundwater, 30(6), 958--964.
- Mas-Pla, J., Mas-Pla, J., Yeh, T. J., Yeh, T. J., McCarthy, J., McCarthy, J. F., Williams, T., & Williams, T. M. (1992). Numerical simulation of a two-well tracer experiment. Ground Water, 30, 958--964.
- SRIVASTAVA, R., & YEH, T. (1992). A 3-DIMENSIONAL NUMERICAL-MODEL FOR WATER-FLOW AND TRANSPORT OF CHEMICALLY REACTIVE SOLUTE THROUGH POROUS-MEDIA UNDER VARIABLY SATURATED CONDITIONS. ADVANCES IN WATER RESOURCES, 15(5), 275-287.
- Srivastava, R., & Yeh, T. J. (1992). A three-dimensional numerical model for water flow and transport of chemically reactive solute through porous media under variably saturated conditions. Advances in water resources, 15(5), 275--287.
- Yeh, T. J. (1992). STOCHASTIC MODELING OF GROUNDWATER-FLOW AND SOLUTE TRANSPORT IN AQUIFERS. HYDROLOGICAL PROCESSES, 6(4), 369-395.
- SRIVASTAVA, R., & YEH, T. (1991). ANALYTICAL SOLUTIONS FOR ONE-DIMENSIONAL, TRANSIENT INFILTRATION TOWARD THE WATER-TABLE IN HOMOGENEOUS AND LAYERED SOILS. WATER RESOURCES RESEARCH, 27(5), 753-762.
- Srivastava, R., & Yeh, T. J. (1991). Analytical solutions for one-dimensional, transient infiltration toward the water table in homogeneous and layered soils. Water Resources Research, 27(5), 753--762.
- Shaikh, M., Yeh, T., & Rasmussen, T. (1990). Two-Phase Nonisothermal Hydrologic Transport Simulations at the Apache Leap Tuff Field Site. Lawrence Berkeley Laboratory Berkeley, California September 13-14, 1990.
- Shaikh, M., Yeh, T., Rasmussen, T. C., Shaikh, M., Yeh, T., & Rasmussen, T. C. (1990). Two-Phase Nonisothermal Hydrologic Transport Simulations at the Apache Leap Tuff Field Site. EART\~{} SCIENCES DIVISION.
- WARRICK, A. W., & YEH, T. (1990). ONE-DIMENSIONAL, STEADY VERTICAL FLOW IN A LAYERED SOIL-PROFILE. ADVANCES IN WATER RESOURCES, 13(4), 207-210.
- Warrick, A. W., & Yeh, T. J. (1990). One-dimensional, steady vertical flow in a layered soil profile. Advances in water resources, 13(4), 207--210.
- YEH, T., & HARVEY, D. J. (1990). EFFECTIVE UNSATURATED HYDRAULIC CONDUCTIVITY OF LAYERED SANDS. WATER RESOURCES RESEARCH, 26(6), 1271-1279.
- Yeh, T. J., & Harvey, D. J. (1990). Effective unsaturated hydraulic conductivity of layered sands. Water Resources Research, 26(6), 1271--1279.
- BOSCH, D. D., & YEH, T. (1989). EFFECTIVE UNSATURATED HYDRAULIC CONDUCTIVITY FOR COMPUTING ONE-DIMENSIONAL FLOW IN HETEROGENEOUS POROUS-MEDIA. TRANSACTIONS OF THE ASAE, 32(6), 2035-2040.
- Bosch, D. D., Yeh, T. J., Bosch, D. D., & Yeh, T. J. (1989). Effective unsaturated hydraulic conductivity for computing one-dimensional flow in heterogeneous porous media. Transactions of the ASAE, 32(6), 2035--2040.
- NAFF, R. L., YEH, T., & KEMBLOWSKI, M. W. (1989). A NOTE ON THE RECENT NATURAL GRADIENT TRACER TEST AT THE BORDEN SITE - REPLY. WATER RESOURCES RESEARCH, 25(12), 2523-2525.
- Naff, R. L., Yeh, T. J., Kemblowski, M. W., Naff, R. L., Yeh, T. J., & Kemblowski, M. W. (1989). Reply [to “Comment on ‘A note on the recent natural gradient tracer test at the Borden site’by RL Naff, T.-C. Jim Yeh, and MW Kemblowski”]. Water Resources Research, 25(12), 2523--2525.
- Naff, R., Yeh, J. T., & Kemblowski, M. (1989). Reply [to" Comment onA note on the recent natural gradient tracer test at the Borden site'by RL Naff, T.-C. Jim Yeh, and MW Kemblowski"]. Water Resources Research, 25, 2523--2525.
- Rasmussen, T. C., Yeh, T. J., Evans, D. D., Rasmussen, T. C., Yeh, T. J., & Evans, D. D. (1989). Effect of variable fracture permeability/matrix permeability ratios on three-dimensional fractured rock hydraulic conductivity. Unknown Journal, 337--358.
- Yeh, T. C., & Yeh, T. C. (1989). Sensitivity of climate model to hydrology. Understanding Climate Change, 100, 108.
- Yeh, T. J. (1989). ONE-DIMENSIONAL STEADY-STATE INFILTRATION IN HETEROGENEOUS SOILS. WATER RESOURCES RESEARCH, 25(10), 2149-2158.
- Yeh, T. J. (1989). One-dimensional steady state infiltration in heterogeneous soils. Water Resources Research, 25(10), 2149--2158.
- Yeh, T. J., Stephens, D. B., Yeh, T. J., & Stephens, D. B. (1989). A review of the scale problem and applications of stochastic methods to determine groundwater travel time and path.
- Greenholtz, D. E., Yeh, T. J., Nash, M. S., & Wierenga, P. J. (1988). Geostatistical analysis of soil hydrologic properties in a field plot. Journal of contaminant hydrology, 3(2-4), 227--250.
- NAFF, R. L., YEH, T., & KEMBLOWSKI, M. W. (1988). A NOTE ON THE RECENT NATURAL GRADIENT TRACER TEST AT THE BORDEN SITE. WATER RESOURCES RESEARCH, 24(12), 2099-2103.
- Naff, R. L., Yeh, T. J., & Kemblowski, M. W. (1988). A note on the recent natural gradient tracer test at the Borden site. Water Resources Research, 24(12), 2099--2103.
- Ritzi Jr, ,. R., & Yeh, T. C. (1988). Comment on the role of ground water in delaying lake acidification by MP Anderson and CJ Bowser. Water Resour. Res.;(United States), 24(5).
- Yeh, T. J. (1987). MODELING OF SCALE-DEPENDENT DISPERSION IN HYDROGEOLOGIC SYSTEMS - COMMENT. WATER RESOURCES RESEARCH, 23(3), 522-522.
- Yeh, T. J., Yeh, T. J., & Yeh, T. J. (1987). Comment on “Modeling of scale-dependent dispersion in hydrogeologic systems” by JF Pickens and GE Grisak. Water Resources Research, 23(3), 522--522.
- Yeh, T. C., & Yeh, T. C. (1986). Correction to “Stochastic Analysis of Unsaturated Flow in Heterogeneous Soils, 1 and 2,” By T.-CJ Yeh, LW Gelhar, and AL Gutjahr. Water Resources Research, 22(5), 843--843.
- Yeh, T. J., Gelhar, L. W., & Wierenga, P. J. (1986). Observations of spatial variability of soil-water pressure in a field soil. Soil science, 142(1), 7--12.
- Khaleel, R., & Yeh, T. (1985). A Galerkin finite-element program for simulating unsaturated flow in porous media. Groundwater, 23(1), 90--96.
- T.-C., J. (1985). Stochastic Analysis of Unsaturated Flow in Heterogeneous Soils: 2. Statistically Anisotropic Media With Variable $\alpha$. Water Resources Research, 21(4), 457--464.
- T.-C., J., & T.-C., J. (1985). Stochastic Analysis of Unsaturated Flow in Heterogeneous Soils: 2. Statistically anisotropic Media. Water Resources Research.
- T.-C., J., & T.-C., J. (1985). Stochastic Analysis of Unsaturated Flow in Heterogeneous Soils: 3. Observations and Applications. Water Resources Research, 21(4), 465--471.
- YEH, T., GELHAR, L. W., & GUTJAHR, A. L. (1985). STOCHASTIC-ANALYSIS OF UNSATURATED FLOW IN HETEROGENEOUS SOILS .1. STATISTICALLY ISOTROPIC MEDIA. WATER RESOURCES RESEARCH, 21(4), 447-456.
- YEH, T., GELHAR, L. W., & GUTJAHR, A. L. (1985). STOCHASTIC-ANALYSIS OF UNSATURATED FLOW IN HETEROGENEOUS SOILS .3. OBSERVATIONS AND APPLICATIONS. WATER RESOURCES RESEARCH, 21(4), 465-471.
- YEH, T., YEH, T., GELHAR, L. W., GELHAR, L. W., GUTJAHR, A. L., & GUTJAHR, A. L. (1985). STOCHASTIC-ANALYSIS OF UNSATURATED FLOW IN HETEROGENEOUS SOILS .2. STATISTICALLY ANISOTROPIC MEDIA WITH VARIABLE-ALPHA. WATER RESOURCES RESEARCH, 21(4), 457-464.
- Yeh, T. J., Gelhar, L. W., & Gutjahr, A. L. (1985). Stochastic Analysis of Unsaturated Flow in Heterogeneous Soils: 2. Statistically Anisotropic Media With Variable alpha. Water Resources Research, 21(4), 457--464.
- Yeh, T. C., Wetherald, R. T., & Manabe, S. (1984). The effect of soil moisture on the short-term climate and hydrology change—A numerical experiment. Monthly Weather Review, 112(3), 474--490.
- Yeh, T. C., Wetherald, R. T., & Manabe, S. (1983). A model study of the short-term climatic and hydrologic effects of sudden snow-cover removal. Monthly Weather Review, 111(5), 1013--1024.
- Lin, S. C., Jen, I. A., Yeh, T. C., & Ko, C. C. (1972). Site and growth of the important bamboo plantations in Taiwan. II. Moso bamboo (Phyllostchys edilis (Carriere) Houzean de Lehaie). Quart J Chin Forest.
- Muller, A. B., Battaile, J. F., Bond, L. A., Kukuck, M. C., Lamson, P. W., Leonard, G. J., Zimbler, L., Yeh, T. C., & Srivastava, R. (1972). An interdisciplinary analysis of the water quality problems of the Safford Valley, Arizona. Final report to the National Science Foundation under Grant GY-9571.
Proceedings Publications
- Zhu, J., Fox, J., Yeh, T. J., Kruger, A., Tobin, B., & Webb, S. E. (2021). Multi-Pronged Data Collection Strategy for a Fusion Approach to Characterize Karst Aquifers. In AGU Fall Meeting 2021.
- Hao, Y., Liu, Z., Yeh, T. J., Wang, W., Zhang, M., Hao, Y., Liu, Z., Yeh, T. J., Wang, W., & Zhang, M. (2019). Risk assessments of water inrush during deep coal mining usinga data fusion approach. In AGU Fall Meeting Abstracts, 2019.
- Hou, X., Hu, R., Yeh, T. J., & LI, Y. (2019). A Coupled Tomographical Approach for The Three-dimensional Highly Resolved Characterization of Fractured Aquifers. In AGU Fall Meeting Abstracts, 2019.
- LI, J., Wang, W., Li, Y., Yeh, T. J., Huang, X., Zhao, G., Cheng, D., Sun, Y., LI, J., Wang, W., Li, Y., Yeh, T. J., Huang, X., Zhao, G., Cheng, D., & Sun, Y. (2019). Improved Quaternary Hydrogeological Structure Model Based on Audio Magnetotelluric Sounding Data and Borehole Data. In AGU Fall Meeting Abstracts, 2019.
- Li, J., Chen, J., Lin, H., Huang, S., Yeh, T. J., Wen, J., Li, J., Chen, J., Lin, H., Huang, S., Yeh, T. J., & Wen, J. (2019). Investigating the Reproducibility of Hydraulic Properties with Time-Variable Head Boundary by Hydraulic Tomography. In AGU Fall Meeting Abstracts, 2019.
- Liang, Y., Yeh, T., Liang, Y., & Yeh, T. (2019). Internal Erosion Behaviors in Upward Seepage under Isotropic and Anisotropic Stress Conditions.. In Geophysical Research Abstracts, 21.
- Liu, S., Chen, J., Lin, H., Huang, S., Yeh, T. J., Wen, J., Liu, S., Chen, J., Lin, H., Huang, S., Yeh, T. J., & Wen, J. (2019). Comparing the Effects of Estimating Hydraulic Property with Different Boundary Head Conditions using Sequential Pumping Test Method at Field Site.. In Geophysical Research Abstracts, 21.
- Ren, S., Zhang, Y. e., Wang, Y., Yeh, T. J., Carr, B., Ren, S., Zhang, Y. e., Wang, Y., Yeh, T. J., & Carr, B. (2019). Multi-scale Characterization of the Hydraulic Conductivity in Fractured Granite, Laramie Range, Wyoming. In AGU Fall Meeting Abstracts, 2019.
- Xu, D., Hu, X., Yeh, T. J., Sun, R., Xu, D., Hu, X., Yeh, T. J., & Sun, R. (2019). Hydro-geophysical Data Fusion for Hydraulic Tomography and Electrical Resistivity Tomography: Sandbox Experiments. In AGU Fall Meeting Abstracts, 2019.
- Yeh, T., & Yeh, T. (2019). Multidisciplinary Integration of Active and Passive Tomographic Surveys and Large Datasets for Geo-Hydro-Environmental Applications. In AGU Fall Meeting 2019.
- Yukun, L. I., Yeh, T. J., Zhang, F., Hou, X., Yukun, L. I., Yeh, T. J., Zhang, F., & Hou, X. (2019). Hydraulic Tomography for Slope Stability Investigation. In AGU Fall Meeting 2019.
- Zhang, B., An, L., Hao, Y., Yeh, T. J., Zhang, B., An, L., Hao, Y., & Yeh, T. J. (2019). Analysis of the Effects of Climate Teleconnections on Precipitation in the Tianshan Mountains Using Time-Frequency Methods. In International Conference in Communications, Signal Processing, and Systems.
- Hao, Y., Yeh, T. J., Hao, Y., & Yeh, T. J. (2018). Identification of groundwater quick flow belts by hydraulic response time in a karst spring catchment. In AGU Fall Meeting Abstracts, 2018.
- Liu, S., Chen, J., Lin, H., Huang, S., Yeh, T. J., Wen, J., Liu, S., Chen, J., Lin, H., Huang, S., Yeh, T. J., & Wen, J. (2018). Estimates Hydraulic Property by using Sequential Pumping Test Method at Field Site to Investigate the Effect of Boundary Head Conditions.. In AGU Fall Meeting Abstracts, 2018.
- Wang, Y., Yeh, T. J., Wen, J., Gao, X. u., Huang, S., Wang, Y., Yeh, T. J., Wen, J., Gao, X. u., & Huang, S. (2018). Resolution of River Stage Tomography with Different Excitations. In AGU Fall Meeting Abstracts, 2018.
- Xu, D., Hu, X., Yeh, T. J., Sun, R., Xu, D., Hu, X., Yeh, T. J., & Sun, R. (2018). An Improved Pole-Pole Array and SLE for Electrical Resistivity Surveys. In AGU Fall Meeting Abstracts, 2018.
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