Ojo J S, Akoma D B, Olurotimi E O
Department of Physics, The Federal University of Technology Akure, Nigeria.
Department of Electronic Engineering, Durban University of Technology, KZN, 4000, South Africa.
Heliyon. 2021 Apr 24;7(4):e06888. doi: 10.1016/j.heliyon.2021.e06888. eCollection 2021 Apr.
In this study, measurements of vertical profiles of rain parameters have been made using vertically pointing micro rain radar (VPMRR) at Akure (7.30° N, 5.13° E). Rain parameter data collected over seven-month rainfall episodes during the intense rainy season (April to October) have been analyzed for a dynamical evolutionary trend over the site. Nearly all the episodes observed followed a similar pattern, hence, a single continuous rainfall episode occurring between 20:45:00 h and 21:14:00 h Greenwich Meridian Time (GMT) local time on 6 August 2018 is presented in this report. The results show no significant changes to the rain parameters (such as rain rate and liquid water content) nor contributed to the raindrop size distribution, based on average fall velocity of 6.55 m s and rain rates within 1.3 and 2.6 mm h. This is to enable a stable fall for the dominant drops during the period. Further, the results revealed the transformation and collision of smaller drops to enhance a stable fall of larger drops during the rain event. The information from the study will be useful for radar meteorologists and microwave engineers in their designs.
在本研究中,利用位于阿库雷(北纬7.30°,东经5.13°)的垂直指向性微雨雷达(VPMRR)对降雨参数的垂直剖面进行了测量。对在强雨季(4月至10月)七个月降雨期间收集的降雨参数数据进行了分析,以研究该地点的动态演变趋势。几乎所有观测到的降雨过程都遵循相似的模式,因此,本报告呈现了2018年8月6日格林威治标准时间(GMT)当地时间20:45:00至21:14:00之间发生的一次连续降雨过程。结果表明,基于6.55米/秒的平均下落速度以及1.3至2.6毫米/小时的降雨率,降雨参数(如降雨率和液态水含量)没有显著变化,对雨滴大小分布也没有影响。这使得在此期间占主导地位的雨滴能够稳定下落。此外,结果还揭示了较小雨滴的转变和碰撞,从而在降雨过程中增强了较大雨滴的稳定下落。该研究所得信息将对雷达气象学家和微波工程师的设计工作有所帮助。