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Observational Constraint for Precipitation in Extratropical Cyclones: Sensitivity to Data Sources

机译:潜伏旋转旋转沉淀的观察约束:对数据源的敏感性

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摘要

Using cyclone-centered compositing and a database of extratropical-cyclone locations, the distribution of precipitation frequency and rate in oceanic extratropical cyclones is analyzed using satellite-derived datasets. The distribution of precipitation rates retrieved using two new datasets, the Global Precipitation Measurement radar-microwave radiometer combined product (GPM-CMB) and the Integrated Multisatellite Retrievals for GPM product (IMERG), is compared with CloudSat, and the differences are discussed. For reference, the composites of AMSR-E, GPCP, and two reanalyses are also examined. Cyclone-centered precipitation rates are found to be the largest with the IMERG and CloudSat datasets and lowest with GPM-CMB. A series of tests is conducted to determine the roles of swath width, swath location, sampling frequency, season, and epoch. In all cases, these effects are less than similar to 0.14 mm h(-1) at 50-km resolution. Larger differences in the composites are related to retrieval biases, such as ground-clutter contamination in GPM-CMB and radar saturation in CloudSat. Overall the IMERG product reports precipitation more often, with larger precipitation rates at the center of the cyclones, in conditions of high precipitable water (PW). The CloudSat product tends to report more precipitation in conditions of dry or moderate PW. The GPM-CMB product tends to systematically report lower precipitation rates than the other two datasets. This intercomparison provides 1) modelers with an observational uncertainty and range (0.21-0.36 mm h(-1) near the cyclone centers) when using composites of precipitation for model evaluation and 2) retrieval-algorithm developers with a categorical analysis of the sensitivity of the products to PW.
机译:使用旋风 - 旋风位置的旋转旋流合成和卓越的旋风位置数据库,使用卫星衍生的数据集分析了海洋潜水旋转旋风的降水频率和速率的分布。使用两种新数据集检索的降水速率分布,全局降水测量雷达微波辐射计组合产品(GPM-CMB)和GPM产品(IMERG)的集成多卫星检索,与Cloudsat进行比较,讨论了差异。作为参考,还检查了AMSR-E,GPCP和两个Reanalyses的复合材料。旋转旋转的降水速率被发现是IMERG和CloudSat数据集的最大值,以及GPM-CMB最低。进行了一系列测试以确定条形宽度,条带位置,采样频率,季节和时期的角色。在所有情况下,这些效果小于50公里分辨率的0.14mm H(-1)。复合材料的较大差异与检索偏差有关,例如GPM-CMB中的地面杂波污染以及Cloudsat中的雷达饱和度。总体而言,IMERG产物更常见地报告沉淀,在旋风分离器的中心,在高沉淀水(PW)的条件下,旋风分裂的沉淀速率较大。 Cloudsat产品倾向于在干燥或中度PW的条件下报告更多的沉淀。 GPM-CMB产品倾向于系统地报告比其他两个数据集更低的降水率。当使用模型评估的降水复合材料和2)检索算法开发人员时,这种相互作用,具有观察性不确定性和范围(靠近旋风中心附近的0.21-0.36mm H(-1))(0.21-0.36mm H(-1)),具有对敏感性的分类分析产品到PW。

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