...
首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >Observation of particle fall velocity in cirriform cloud by VHF and millimeter-wave Doppler radars
【24h】

Observation of particle fall velocity in cirriform cloud by VHF and millimeter-wave Doppler radars

机译:甚高频和毫米波多普勒雷达观测环状云中的粒子坠落速度

获取原文
获取原文并翻译 | 示例
           

摘要

In this study, it is demonstrated that a combination of VHF and millimeter-wave Doppler radars is a key tool for observing particle fall velocity in cirriform clouds. VHF (47-MHz) and millimeter-wave (95-GHz) Doppler radars observed cirriform clouds at West Sumatra, Indonesia (0.2°S, 100.32°E) from 2000 LT 14 to 0800 LT 15 November 2005. Radar reflectivity factor (Z e) observed by the 95-GHz radar showed that echoes from cloud particles had tops around 12–14 km and bottoms around 8–10 km. Doppler velocity observed by the vertically pointed beam of the 95-GHz radar (V air+Z) was compared with vertical air velocity (V air) observed by the 47-MHz radar to confirm that V air+Z, a sum of V air and reflectivity-weighted particle fall velocity (V Z), showed consistent changes with V air and hence V Z is able to be retrieved by subtracting V air from V air+Z. The correlation coefficient between V Z and Z e in the middle part of clouds (10.5–12.2 km) was -0.81, which was higher than that (-0.47) in the bottom part (7.2–10.5 km). The change of V Z for Z e in the middle part was larger (Z e = -31.9 V Z - 32.2) than that in the bottom part (Z e = -90.2 V Z - 71.8). These results suggest that particle size was a dominant factor that determined Z e in the middle part. Using V Z, median volume diameter (D 0) was estimated to suggest that D 0 was larger than ~70 μm in the bottom part and ranged from ~40 μm to larger than ~106 μm in the middle part.
机译:在这项研究中,证明了VHF和毫米波多普勒雷达的组合是观测圆形云中粒子下落速度的关键工具。 VHF(47 MHz)和毫米波(95 GHz)多普勒雷达在2000年LT 14至0800 LT 2005年11月15日在印度尼西亚西苏门答腊(0.2°S,100.32°E)观测到卷状云。雷达反射系数(Z e)在95 GHz雷达上观察到的结果表明,云团颗粒回波的顶部约12-14 km,底部约8-10 km。将95 GHz雷达的垂直指向光束(V air + Z)观测到的多普勒速度与47 MHz雷达的垂直空气速度(V air)进行比较,以确认V air + Z是V air之和反射率加权的粒子下落速度(VZ)随V air表现出一致的变化,因此可以通过从V air + Z中减去V air来获取VZ。云中部(10.5-12.2 km)的V Z和Z e之间的相关系数为-0.81,高于底部(7.2-10.5 km)的相关系数(-0.47)。 Z e在中间部分的V Z变化(Z e = -31.9 V Z-32.2)大于底部部分(Z e = -90.2 V Z-71.8)。这些结果表明,粒径是决定中部Z e的主要因素。使用V Z,估计中值体积直径(D 0)表明,底部的D 0大于〜70μm,在中部的范围为〜40μm至大于〜106μm。

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