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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Impacts of modified Richards equation on RegCM4 regional climate modeling over East Asia
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Impacts of modified Richards equation on RegCM4 regional climate modeling over East Asia

机译:修正的Richards方程对东亚RegCM4区域气候模拟的影响

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摘要

To remove the deficiency of the numerical solution of the mass conservation-based Richards equation for soil moisture in a regional climate model (RegCM4 with its land surface component Community Land Model 3.5 (CLM3.5)), a revised numerical algorithm that is used in CLM4.5 is implemented into CLM3.5. Compared with in situ measurements, themodified numerical method improves the ground water table depth simulations in RegCM4. It also improves the temporal and spatial variability of soil moisture to some extent. Its impact on simulated summer precipitation is mixed, with improvements over three subregions in China but with increased errors in three other subregions. The impact on the simulated summer temperature is relatively small (with themean biases changed by less than 10% overmost subregions). The evapotranspiration differences between modified and control land-atmosphere coupled simulations are enhanced over the northwest subregion and Tibetan Plateau compared to offline simulations due to land surface feedbacks to the atmosphere (in coupled simulations). Similarly the soil moisture differences in coupled simulations are geographically different from those in offline simulations over the eastern monsoon area. The summer precipitation differences between modified and control coupled simulations are found to be explained by the differences of both surface evapotranspiration and large-scale water vapor flux convergence which have opposite signs over the northwest subregion and Tibetan Plateau but have the same signs over other subregions.
机译:为了消除基于质量守恒的基于Richards方程的土壤湿度在区域气候模型(RegCM4及其地表成分Community Land Model 3.5(CLM3.5))中的数值解的不足,该修正算法用于CLM4.5已实现到CLM3.5。与现场测量相比,改进的数值方法改进了RegCM4中地下水位深度模拟。它还在一定程度上改善了土壤水分的时空变异性。它对模拟夏季降水的影响喜忧参半,在中国三个次区域有所改善,但在其他三个次区域中误差增加。对模拟的夏季温度的影响相对较小(大部分次区域的主观偏差变化不到10%)。与离线模拟相比,由于陆地表面对大气的反馈(耦合模拟),西北次区域和青藏高原的改良和控制的陆地-大气耦合模拟之间的蒸散差异得到了增强。同样,耦合模拟中的土壤水分差异与东部季风地区的离线模拟中的地理差异也不同。发现修正和控制耦合模拟之间的夏季降水差异可以通过地表蒸散和大规模水汽通量收敛的差异来解释,这些差异在西北次区域和青藏高原上具有相反的迹象,但在其他次区域上具有相同的迹象。

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