首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Comparison of TRMM precipitation radar and microwave imager rainfall retrievals in tropical cyclone inner cores and rainbands
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Comparison of TRMM precipitation radar and microwave imager rainfall retrievals in tropical cyclone inner cores and rainbands

机译:热带气旋内芯和雨带TRMM降水雷达和微波成像仪降水反演的比较

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Tropical Rainfall Measuring Mission (TRMM) rainfall retrieval algorithms are evaluated in tropical cyclone (TC) inner cores (IC), inner bands (IB), and outer rainbands (OB). In total, 1329 IC, 2149 IB, and 4627 OB storm regions are analyzed using data from a 12-year TRMM Tropical Cyclone Precipitation Feature (TCPF) database containing 1013 TCs viewed from December 1997 to December 2009. Attention is focused on the difference between the Precipitation Radar (PR) 2A25 and the TRMM Microwave Imager (TMI) 2A12 rainfall algorithms. The PR 2A25 produces larger mean rain rates than the TMI 2A12 in inner cores and inner bands, with the greatest difference occurring in hurricanes. This discrepancy is caused mostly by the TMI 2A12 significantly underestimating regions of moderate to heavy rain >15 mm hour-1 or when the PR reflectivity is greater than 30 dBZ. The TMI 2A12 rain rates are most closely related to the percentage coverage of 85 GHz polarization-corrected brightness temperature (PCT) <225 K in the IC and 85 GHz PCT <250 K in the IB and OB. These convective parameters are good predictors of the mean TMI 2A12 rain rate, but significant ice scattering is not always present in areas of heavy rain that are often widespread in TC inner regions. As a result, the TMI 2A12 algorithm may poorly measure the rain rate, particularly in the inner core of hurricanes. Key Points The PR produces larger rain rates that TMI in inner cores and inner bands The algorithm difference is most closely correlated with PR refl. >40 dBZ The TMI 2A12 algorithm may poorly measure the rain rate in the inner cores.
机译:在热带气旋(TC)内芯(IC),内带(IB)和外雨带(OB)中评估了热带雨量测量任务(TRMM)雨量检索算法。总共使用12年TRMM热带气旋降水特征(TCPF)数据库中的数据分析了1329个IC,2149 IB和4627个OB风暴区域,该数据库包含1997年12月至2009年12月间观测到的1013个TC。降水雷达(PR)2A25和TRMM微波成像仪(TMI)2A12降雨算法。 PR 2A25的内芯和内带产生的平均降雨率比TMI 2A12大,而飓风的差异最大。这种差异主要是由TMI 2A12大大低估了中雨量大于15 mm hour-1或PR反射率大于30 dBZ的区域。 TMI 2A12降雨率与IC中85 GHz极化校正的亮度温度(PCT)<225 K和IB和OB中85 GHz PCT <250 K的百分比覆盖率最密切相关。这些对流参数可以很好地预测TMI 2A12的平均降雨率,但在TC内部地区通常分布的大雨地区,并不总是存在明显的冰散射。结果,TMI 2A12算法可能无法很好地测量降雨率,特别是在飓风的内核中。要点PR产生的降雨率要比内核和内带的TMI大。算法差异与PR refl密切相关。 > 40 dBZ TMI 2A12算法可能无法很好地测量内核的降雨率。

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