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首页> 外文期刊>Journal of the Atmospheric Sciences >Drop Size Distributions and Radar Observations of Convective and Stratiform Rain over the Equatorial Indian and West Pacific Oceans
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Drop Size Distributions and Radar Observations of Convective and Stratiform Rain over the Equatorial Indian and West Pacific Oceans

机译:赤道印度洋和西太平洋对流和层状雨的粒径分布和雷达观测

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摘要

Two-dimensional video disdrometer (2DVD) data were analyzed from two equatorial Indian (Gan) and west Pacific Ocean (Manus) islands where precipitation is primarily organized by the intertropical convergence zone and the Madden-Julian oscillation (MJO). The 18 (3.5) months of 2DVD data from Manus (Gan) Island show that 1) the two sites have similar drop size distribution (DSD) spectra of liquid water content, median diameter, rain rate R, radar reflectivity z, normalized gamma number concentration N-w, and other integral rain parameters; 2) there is a robust N-w-based separation between convective (C) and stratiform (S) DSDs at both sites that produces consistent separation in other parameter spaces.The 2DVD data indicate an equatorial, maritime average C/S rainfall accumulation fraction (frequency) of 81/19 (41/59) at these locations. It is hypothesized that convective fraction and frequency estimates are slightly higher than previous radar-based studies, because the ubiquitous weak, shallow convection (<10 mm h(-1)) characteristic of the tropical warm pool is properly resolved by this high-resolution DSD dataset and identification method. This type of convection accounted for about 30% of all rain events and 15% of total rain volume. These rain statistics were reproduced when newly derived C/S R(z) equations were applied to 2DVD-simulated reflectivity. However, the benefits of using separate C/S R(z) equations are only realizable when C/S partitioning properly classifies each rain type. A single R(z) relationship fit to all 2DVD data yielded accurate total rainfall amounts but overestimated (underestimated) the stratiform (convective) rain fraction by +/- 10% and overestimated (underestimated) stratiform (convective) rain accumulation by +50% (-15%).
机译:分析了来自两个赤道印度(Gan)岛和西太平洋(Manus)岛的二维视频测速仪(2DVD)数据,这些岛的降水主要由热带辐合带和Madden-Julian振荡(MJO)组成。来自Manus(Gan)岛的18(3.5)个月2DVD数据显示:1)这两个站点的液滴大小分布(DSD)光谱具有相似的液态水含量,中值直径,降雨率R,雷达反射率z,归一化伽玛值浓度Nw和其他积分雨参数; 2)在两个地点的对流(C)和层状(S)DSD之间存在基于Nw的稳健分隔,在其他参数空间中产生一致的分隔.2DVD数据显示了赤道,海洋平均C / S降雨累积分数(频率)在这些位置的81/19(41/59)。据推测,对流分数和频率估计值比以前的基于雷达的研究略高,因为这种高分辨率可适当解决热带暖池普遍存在的弱,浅对流(<10 mm h(-1))特征。 DSD数据集和识别方法。这种对流约占所有降雨事件的30%,占总降雨量的15%。当新推导的C / S R(z)方程应用于2DVD模拟的反射率时,将再现这些降雨统计数据。但是,使用单独的C / S R(z)方程式的好处只有在C / S分区正确地对每种降雨类型进行分类时才能实现。适用于所有2DVD数据的单个R(z)关系产生了准确的总降雨量,但层状(对流)降雨分数高估(低估了)+/- 10%,层状(对流)降雨蓄积高估了(低估了)+ 50% (-15%)。

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