Gour‐Tsyh Yeh
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View article: The Effects of Soy Flour and Resistant Starch on the Quality of Low Glycemic Index Cookie Bars
The Effects of Soy Flour and Resistant Starch on the Quality of Low Glycemic Index Cookie Bars Open
Low glycemic index (GI) cookie bars were prepared with soft wheat flour substituted with 10–50% soybean flour and 10–50% resistant starch. The effects of increased levels of soybean flour and resistant starch on the quality of low glycemic…
View article: Application of THMC Model with User-Friendly Interface in Addressing Saltwater Intrusion
Application of THMC Model with User-Friendly Interface in Addressing Saltwater Intrusion Open
THMC(Thermal-Hydrology-Geo-Mechanics-Chemical), developed by the internationally renowned hydrologist Prof. Gour-Tsyh Yeh, is an advanced physical-based FEM model for simulating fully coupled processes in saturated and unsaturated subsurfa…
View article: Hydrogeologic Framework Model‐Based Numerical Simulation of Groundwater Flow and Salt Transport and Analytic Hierarchy Process‐Based Multi‐Criteria Evaluation of Optimal Pumping Location and Rate for Mitigation of Seawater Intrusion in a Complex Coastal Aquifer System
Hydrogeologic Framework Model‐Based Numerical Simulation of Groundwater Flow and Salt Transport and Analytic Hierarchy Process‐Based Multi‐Criteria Evaluation of Optimal Pumping Location and Rate for Mitigation of Seawater Intrusion in a Complex Coastal Aquifer System Open
A series of hydrogeologic framework model (HFM)‐based steady‐ and transient‐state numerical simulations is performed first using a coupled subsurface flow‐transport numerical model to analyze groundwater flow and salt transport in an actua…
View article: Studying Inertia Effects in Open Channel Flow Using Saint-Venant Equations
Studying Inertia Effects in Open Channel Flow Using Saint-Venant Equations Open
One-dimensional (1D) Saint-Venant equations, which originated from the Navier–Stokes equations, are usually applied to express the transient stream flow. The governing equation is based on the mass continuity and momentum equivalence. Its …
View article: COSFLOW: a finite element model coupling one-dimensional canal, two-dimensional overland, and three-dimensional subsurface flow
COSFLOW: a finite element model coupling one-dimensional canal, two-dimensional overland, and three-dimensional subsurface flow Open
This report presents the user's manual of COSFLOW, which is a three-dimensional Finite Element Model coupling one-dimensional (1-D) Canal, two-dimensional (2-D) Overland, and three-dimensional (3-D) Subsurface Flow. The 1-D channel flow is…