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首页> 外文期刊>Journal of Climate >Evaluation of Trigger Functions for Convective Parameterization Schemes Using Observations
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Evaluation of Trigger Functions for Convective Parameterization Schemes Using Observations

机译:对流参数化方案的触发函数的观测值评估

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摘要

Realistic simulation of different modes of atmospheric variability ranging from diurnal cycle to interannual variation in global climate models (GCMs) depends crucially on the convection trigger criteria. In this study, using the data from constrained variational analysis by the Atmospheric System Research program for single-column models (SCM), the performance of the commonly used convective trigger functions in GCMs is evaluated based on the equitable threat score (ETS) value, a widely used forecast verification metric. From the ETS score, three consistently better-performing trigger functions were identified. They are based on the dilute and undilute convective available potential energy (CAPE) generation rate from large-scale forcing in the free troposphere (hereafter dCAPE) and parcel buoyancy at the lifting condensation level (Bechtold scheme). The key variables used to define these trigger functions are examined in detail. It is found that the dilute dCAPE trigger function performs the best consistently in both the tropical and midlatitude convective environment. Analysis of the composite fields of key variables of the trigger functions, based on the correct prediction, overprediction and underprediction of convection, and correct prediction of no-convection cases for convective onset, brings to light some critical factors responsible for the performance of the trigger functions. The lower-tropospheric advective forcing in dilute dCAPE trigger and vertical velocity in Bechtold trigger are identified to be the most importance ones. Suggestions are offered for further improvements.
机译:在全球气候模型(GCM)中,从昼夜周期到年际变化,对不同模式的大气变化进行现实模拟,这主要取决于对流触发标准。在这项研究中,使用大气系统研究计划针对单列模型(SCM)进行的受约束变异分析得出的数据,基于公平威胁评分(ETS)值评估了GCM中常用对流触发函数的性能,广泛使用的预测验证指标。根据ETS分数,确定了三个始终表现更好的触发功能。它们基于自由对流层中的大尺度强迫作用(以下称dCAPE)和提升凝结水位的包裹浮力(Bechtold方案)产生的稀薄和未稀释的对流可用势能(CAPE)生成速率。将详细检查用于定义这些触发功能的关键变量。结果发现,稀疏的dCAPE触发功能在热带和中纬度对流环境中始终表现最佳。基于对流的正确预测,对流预测的过高预测和过低预测以及对流发生的非对流情况的正确预测,对触发函数的关键变量的组合域进行分析,从而揭示了影响触发性能的一些关键因素功能。稀疏dCAPE触发中的低对流层平流强迫和Bechtold触发中的垂直速度被认为是最重要的。提供了进一步改进的建议。

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