首页> 外文期刊>Journal of the American Water Resources Association >SIMULATING THREE‐DIMENSIONAL GROUND WATER RESPONSE IN A SMALL MOUNTAINOUS WATERSHED1
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SIMULATING THREE‐DIMENSIONAL GROUND WATER RESPONSE IN A SMALL MOUNTAINOUS WATERSHED1

机译:模拟小山WATERSHED1的三维地下水响应

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ABSTRACT:Snowmelt from deep mountainous snowpacks is seldom rapid enough to exceed infiltration rates; thus, the source of streamflow in many mountainous watersheds is snowmelt recharge through shallow ground water systems. The hydrologic response and interaction between surface and sub‐surface flow processes in these watersheds, which is controlled by basin structure, the spatial distribution of snowmelt, and the hydrogeology of the subsurface, are not well understood. The purpose of this study was to test a three‐dimensional ground water model using simulated snowmelt input to simulate ground water response to spatially distributed snowmelt on the Upper Sheep Creek Watershed located within the Reynolds Creek Experimental Watershed in Southwestern Idaho. The model was used to characterize the mountainous aquifer and to delineate the subsurface flow mechanisms. Difficulty in finding a reasonable combination of grid spacing and time stepping within the model was encountered due to convergence problems with the Picard solution to the non‐linear variably saturated ground water flow equations. Simulation results indicated that flow may be either unconfined or confined depending on inflow rate and hydrogeologic conditions in the watershed. The flow mechanism had a much faster response time when confined flow occurred. Response to snowmelt from a snow drift approximately 90 m away took only a few hours when flow was confined. Simulated results showed good agreement with piezometer measurements both in magnitude and timing; however, convergence problems with the Picard solution limited applicability of the
机译:摘要:深山积雪的融雪速度很少快到超过渗透速率;因此,许多山区流域的溪流来源是通过浅层地下水系统的融雪补给。这些流域的水文响应和地表和地动过程之间的相互作用受盆地结构、融雪空间分布和地下水文地质的控制,目前尚不清楚。本研究的目的是使用模拟融雪输入测试三维地下水模型,以模拟位于爱达荷州西南部雷诺兹溪实验流域内的上羊溪流域地下水对空间分布融雪的响应。该模型用于描述山区含水层的特征并描绘地动机制。由于非线性可变饱和地下水流方程的 Picard 解存在收敛问题,因此在模型中难以找到网格间距和时间步长的合理组合。模拟结果表明,根据流域的流入速率和水文地质条件,流量可以是无限制的,也可以是有限的。当发生密闭流动时,流动机制的响应时间要快得多。当流量受到限制时,大约90 m外的积雪对融雪的反应只用了几个小时。仿真结果显示,在幅度和时间上都与渗压计测量结果吻合良好;然而,Picard解决方案的收敛问题限制了

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