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首页> 外文期刊>Journal of hydrometeorology >Improving the Numerical Solution of Soil Moisture-Based Richards Equation for Land Models with a Deep or Shallow Water Table
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Improving the Numerical Solution of Soil Moisture-Based Richards Equation for Land Models with a Deep or Shallow Water Table

机译:改善地下水位深浅的土壤水分基于Richards方程的数值解

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摘要

The soil moisture-based Richards equation is widely used in land models for weather and climate studies, but its numerical solution using the mass-conservative scheme in the Community Land Model is found to be deficient when the water table is within the model domain. Furthermore, these deficiencies cannot be reduced by using a smaller grid spacing. The numerical errors are much smaller when the water table is below the model domain. These deficiencies were overlooked in the past, most likely because of the more dominant influence of the free drainage bottom boundary condition used by many land models. They are fixed here by explicitly subtracting the hydrostatic equilibrium soil moisture distribution from the Richards equation. This equilibrium distribution can be derived at each time step from a constant hydraulic (i.e., capillary plus gravitational) potential above the water table, representing a steady-state solution of the Richards equation. Furthermore, because the free drainage condition has serious deficiencies, a new bottom boundary condition based on the equilibrium soil moisture distribution at each time step is proposed that also provides an effective and direct coupling between groundwater and surface water.
机译:基于土壤水分的理查兹方程广泛用于天气和气候研究的土地模型中,但是当地下水位在模型域内时,在社区土地模型中使用质量守恒方案的数值解被认为是不足的。此外,不能通过使用较小的网格间距来减少这些缺陷。当地下水位低于模型域时,数值误差要小得多。这些缺陷在过去被忽略了,很可能是由于许多土地模型所使用的自由排水底部边界条件的影响更为明显。通过从Richards方程中明确减去静水平衡土壤水分分布来固定它们。该平衡分布可在每个时间步从水位上方的恒定水力(即毛细作用力和重力)得出,代表了Richards方程的稳态解。此外,由于自由排水条件存在严重缺陷,提出了一种基于每个时间步长的平衡土壤水分分布的新的底部边界条件,该条件也提供了地下水与地表水之间的有效直接耦合。

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