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Surface Heterogeneity Effects on Regional-Scale Fluxes in Stable Boundary Layers: Surface Temperature Transitions

机译:表面异质性对稳定边界层中区域尺度通量的影响:表面温度转变

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摘要

Large-eddy simulation, with recently developed dynamic subgrid-scale models, is used to study the effect of heterogeneous surface temperature distributions on regional-scale turbulent fluxes in the stable boundary layer (SBL). Simulations are performed of a continuously turbulent SBL with surface heterogeneity added in the form of streamwise transitions in surface temperature. Temperature differences between patches of 6 and 3 K are explored with patch length scales ranging from one-half to twice the equivalent homogeneous boundary layer height. The surface temperature heterogeneity has important effects on the mean wind speed and potential temperature profiles as well as on the surface heat flux distribution. Increasing the difference between the patch temperatures results in decreased magnitude of the average surface heat flux, with a corresponding increase in the mean potential temperature in the boundary layer. The simulation results are also used to test existing models for average surface fluxes over heterogeneous terrain. The tested models fail to fully represent the average turbulent heat flux, with models that break the domain into homogeneous subareas grossly underestimating the heat flux magnitude over patches with relatively colder surface temperatures. Motivated by these results, a new parameterization based on local similarity theory is proposed. The new formulation is found to correct the bias over the cold patches, resulting in improved average surface heat flux calculations.
机译:大涡模拟与最近开发的动态亚网格尺度模型一起,用于研究非均匀表面温度分布对稳定边界层(SBL)中区域尺度湍流的影响。对连续湍流SBL进行模拟,并以表面温度的流态转换形式添加了表面异质性。探索了6 K和3 K补丁之间的温差,补丁长度范围从等效边界层高度的一半到两倍相等。表面温度的不均匀性对平均风速和潜在的温度分布以及表面热通量分布具有重要影响。贴片温度之间的差异越大,平均表面热通量的幅度越小,边界层中的平均电势温度也相应增加。仿真结果还用于测试现有模型的非均质地形上的平均表面通量。测试的模型无法完全代表平均湍流热通量,而将区域划分为均匀子区域的模型则严重低估了表面温度相对较低的斑块上的热通量大小。基于这些结果,提出了一种基于局部相似性理论的参数化方法。发现新配方可以纠正冷补丁上的偏差,从而改善了平均表面热通量的计算。

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