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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Assessing Convective Organization in Tropical Radar Observations
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Assessing Convective Organization in Tropical Radar Observations

机译:评估热带雷达观测中的对流组织

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The spatial organization of deep moist convection is known to be an important determinant of the impacts of severe weather, while future changes to convective organization have been linked to various radiative feedbacks under climate warming. Yet there is no unanimously agreed upon definition of convective organization and so there is also no obvious way to objectively define it. In this work, we set out to define a metric for convective organization based on the size and proximity of convectively active regions. The metric is developed based upon tropical radar observations and takes two-dimensional convective objects, which are predefined in a horizontal plane, as input.We call the metric Radar Organization Metric (ROME). In addition to the proximity of different convective objects, which is used in other organization metrics, ROME is also sensitive to object size. As a result, ROME is also defined for the case of only one convective object. Thus, ROME provides a smoothly evolving measure of the degree of convective organization, which compares well to a visual assessment of the convective objects. ROME is found to be sensitive to different regimes of the North Australian monsoon, and its average diurnal cycle is coherent with the daily evolution of tropical rainfall. Through its dependence on area, ROME adds new capabilities that other metrics lack in measuring the degree of convective organization. In particular, ROME permits quantification of the individual contributions of the object size distribution and the spatial clustering of objects to the overall degree of convective organization.
机译:已知深潮流对流的空间组织是恶劣天气影响的重要决定因素,而对流组织的未来变化已与气候变暖下的各种辐射反馈有关。然而,没有一致同意对流组织的定义,因此也没有明显的方式来客观地定义它。在这项工作中,我们首先根据对比活动区域的大小和接近度来定义对流组织的度量标准。基于热带雷达观测,以热带雷达观测开发,并采用二维对象,其在水平面中预定义,如输入。我们呼叫度量雷达组织度量(罗马)。除了在其他组织度量中使用的不同对象对象的附近,罗马对对象大小也很敏感。因此,罗马也被定义为只有一个对流对象的情况。因此,罗马提供了对流组织程度的平稳不断发展的衡量标准,这与对流对象的视觉评估相比很好。罗马被发现对北澳大利亚季风的不同政权敏感,其平均昼夜周期与热带降雨的日常演变相干。通过其对地区的依赖,罗马增加了新的能力,即其他指标缺乏测量对流组织程度。特别是,罗马允许量化对象大小分布的个体贡献以及对象的空间聚类到对流组织的整体程度。

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