首页> 外文期刊>Journal of the Atmospheric Sciences >Quantifying the Effects of Horizontal Grid Length and Parameterized Convection on the Degree of Convective Organization Using a Metric of the Potential for Convective Interaction
【24h】

Quantifying the Effects of Horizontal Grid Length and Parameterized Convection on the Degree of Convective Organization Using a Metric of the Potential for Convective Interaction

机译:量化水平网格长度和参数化对流对对流组织的影响,使用对流交互的指标

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The organization of deep convection and its misrepresentation in many global models is the focus of much current interest. A new method is presented for quantifying convective organization based on the identification of convective objects and subsequent derivation of object numbers, areas, and separation distances to describe the degree of convective organization. These parameters are combined into a "convection organization potential'' based on the physical principle of an interaction potential between pairs of convective objects. This technique is applied to simulated and observed fields of outgoing longwave radiation (OLR) over the West African monsoon region using data from Met Office Unified Model simulations and satellite observations made by the Geostationary Earth Radiation Budget (GERB) instrument. The method is evaluated by using it to quantify differences between models with different horizontal grid lengths and representations of convection. Distributions of OLR, precipitation and organization parameters, the diurnal cycle of convection, and relationships between the meteorology in different states of organization are compared. Switching from a configuration with parameterized convection to one that allows the model to resolve convective processes at the model grid scale is the leading-order factor improving some aspects of model performance, while increased model resolution is the dominant factor for others. However, no single model configuration performs best compared to observations, indicating underlying deficiencies in both model scaling and process understanding.
机译:在许多全球模型中的深度对流组织及其虚假陈述是当前利益的重点。提出了一种基于对对象对象的识别和对象编号,区域和分离距离的识别来量化对流组织的新方法,以描述对流组织程度。这些参数基于对流对象对之间的相互作用电位的物理原理组合成“对流组织电位”。该技术适用于在西非季风区的外向龙波辐射(OLR)的模拟和观察领域来自遇到办公室统一模拟模拟和卫星观测的数据通过地球地球辐射预算(GERB)仪器。通过使用它来量化具有不同水平网格长度的模型与对流表示的模型之间的差异来评估该方法。OLR,降水和分布和比较组织参数,对流的日间周期和组织不同状态的气象之间的关系。从一个配置切换到一个允许模型在模型网格刻度下解析对流过程的模型是领先订单因子改进型号的某些方面Formance,而模型分辨率的增加是他人的主要因素。但是,与观察结果相比,没有单一模型配置最佳,表明模型缩放和过程理解中的潜在缺陷。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号