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期刊名:Journal of hydrologic engineering

缩写:J HYDROL ENG

ISSN:1084-0699

e-ISSN:1943-5584

IF/分区:1.9/Q3

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共收录本刊相关文章索引7
Clinical Trial Case Reports Meta-Analysis RCT Review Systematic Review
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Juliane Mai,Bryan A Tolson,Hongren Shen et al. Juliane Mai et al.
Hydrologic model intercomparison studies help to evaluate the agility of models to simulate variables such as streamflow, evaporation, and soil moisture. This study is the third in a sequence of the Great Lakes Runoff Intercomparison Projec...
Junqi Huang Junqi Huang
A 3D mathematical model that describes transport of volatile organic compounds in a coupled vadose-saturated zone system is proposed. The subsurface processes incorporated in the model include advection, dispersion, interphase mass transfer...
A Sharifi,L Kalin,A M Asce et al. A Sharifi et al.
A common phenomenon observed in natural and constructed wetlands is short-circuiting of flow and formation of stagnant zones that are only indirectly connected with the incoming water. Biogeochemistry of passive areas is potentially much di...
M Sadegh Riasi,Allen Teklitz,William Shuster et al. M Sadegh Riasi et al.
Effective load reduction strategies rely on an accurate Total Maximum Daily Load (TMDL) calculation, which quantifies contaminant loading from various sources. There is a wide range of methods to consider uncertainties in TMDLs: from simple...
L A Schifman,W D Shuster L A Schifman
Urban communities use hydrologic models to plan for and assess the effectiveness of stormwater control measures. Although emphasis is placed on soils as permeable surfaces that regulate the rainfall-runoff process, representative soil hydro...
A Sharifi,M M Hantush,L Kalin A Sharifi
In this article, extension and application to variably-saturated wetland conditions of a process-based wetland model, namely WetQual is demonstrated. The new model described in this article is an improved version of an earlier model, which ...
Sheng Peng,Mark L Brusseau Sheng Peng
The relationship between air-water interfacial area and capillary pressure under higher water-content conditions is investigated for four natural porous media. The results show that the magnitude of the air-water interfacial area increases ...