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首页> 外文期刊>Journal of the Atmospheric Sciences >Evaluating Boundary Layer–Based Mass Flux Closures Using Cloud-Resolving Model Simulations of Deep Convection
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Evaluating Boundary Layer–Based Mass Flux Closures Using Cloud-Resolving Model Simulations of Deep Convection

机译:使用深对流云解析模型模拟评估基于边界层的质量通量闭合

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摘要

High-resolution three-dimensional cloud resolving model simulations of deep cumulus convection under a wide range of large-scale forcings are used to evaluate a mass flux closure based on boundary layer convective inhibition (CIN) that has previously been applied in parameterizations of shallow cumulus convection. With minor modifications, it is also found to perform well for deep oceanic and continental cumulus convection, and it matches simulated cloud-base mass flux much better than a closure based only on the boundary layer convective velocity scale. CIN closure maintains an important feedback among cumulus base mass flux, compensating subsidence, and CIN that keeps the boundary layer top close to cloud base. For deep convection, the proposed CIN closure requires prediction of a boundary layer mean turbulent kinetic energy (TKE) and a horizontal moisture variance, both of which are strongly correlated with precipitation. For our cases, CIN closure predicts cloud-base mass flux in deep convective environments as well as the best possible bulk entraining CAPE closure, but unlike the latter, CIN closure also works well for shallow cumulus convection without retuning of parameters.
机译:在广泛的大范围强迫作用下,深积云的高分辨率三维云解析模型模拟被用于评估基于边界层对流抑制(CIN)的质量通量封闭,该边界层先前已应用于浅积云的参数化中对流。进行较小的修改后,也发现它在深海和大陆积云对流中表现良好,并且与仅基于边界层对流速度尺度的封闭相匹配的模拟云基质量通量要好得多。 CIN封闭在积云基础质量通量,补偿沉降和CIN中保持了重要的反馈,CIN使边界层顶部接近云层基础。对于深对流,建议的CIN封闭需要预测边界层平均湍动能(TKE)和水平湿度变化,这两者都与降水强烈相关。对于我们的情况,CIN封闭可预测深对流环境中的云基质量通量以及最佳的夹带CAPE封闭,但与后者不同,CIN封闭也适用于浅积云对流而无需调整参数。

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