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A New Scheme for Effective Roughness Length and Effective Zero-Plane Displacement in Land Surface Models

机译:地表模型中有效粗糙度长度和有效零平面位移的新方案

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Based on the similarity theory of the atmospheric surface layer and the flux conservation and mass conservation laws, a new scheme for determining the effective roughness length (ERL) and the effective zeroplane displacement (EZPD) for a heterogeneous terrain is proposed. The test for a two-category system case shows that the ERL (EZPD) is larger (smaller) than the area-weighted logarithmic (linear) averaged one, whereas differences between the new ERL/EZPD and their average values are increased with roughness ratio and rough-portion zero-plane displacement (RZPD) in the grid square. Though the ERL and EZPD show some dependence on atmospheric stability, they can be treated as constants in the land surface models unless the seasonal variation must be taken into account. This is due to the fact that the error percentage of the effective drag coefficients, which are dependent on the ERL and EZPD, is less than 2% under all stability conditions. Moreover, the dynamical effects of the underlying surface can be represented jointly by the ERL and the EZPD, either for a heterogeneous terrain or for a homogeneous terrain with high obstacles. The enhancement effect of the roughness ratio on ERL and EZPD is magnified by the RZPD. However, the ratio of rough area over smooth area, where the maximumratio of ERL over the area-weighted mean as well as the maximumdifference betweenEZPDand area-weighted mean occurs, is dependent on the roughness ratio but independent of the RZPD. The ERLs computed by this new model are also compared with other schemes and large-eddy simulation, where the effect of RZPD is not considered.
机译:基于大气表层的相似理论和通量守恒和质量守恒定律,提出了一种确定异质地形有效粗糙度长度(ERL)和有效零平面位移(EZPD)的新方案。针对两类系统案例的测试表明,ERL(EZPD)比面积加权对数(线性)平均值大(更小),而新的ERL / EZPD及其平均值之间的差异随粗糙度比的增加而增加网格正方形中的粗糙部分零平面位移(RZPD)。尽管ERL和EZPD对大气稳定性有一定的依赖性,但除非必须考虑季节变化,否则它们可以在地表模型中视为常量。这是由于以下事实:在所有稳定性条件下,取决于ERL和EZPD的有效阻力系数的误差百分比均小于2%。此外,对于非均匀地形或具有高障碍物的均匀地形,ERL和EZPD可以共同表示下层表面的动力效应。 RZPD放大了粗糙度比对ERL和EZPD的增强作用。但是,粗糙区域与平滑区域的比率(取决于ERL在区域加权平均值上的最大比率以及EZPD与区域加权平均值之间的最大差异)取决于粗糙度比,但与RZPD无关。还将该新模型计算的ERL与其他方案和大涡流仿真进行了比较,而没有考虑RZPD的影响。

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