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Analysis of the Synthetic Storm Technique Using Rain Height Models to Predict Rain Attenuation in Tropical Regions

机译:利用降雨高度模型预测热带地区降雨衰减的合成风暴技术分析

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This paper aims to investigate the utilization of the Synthetic Storm Technique (SST) to convert rain rate time series to rain attenuation time series using the ITU-R P.839, Stutz man and Bryant rain height models. Furthermore, the study aims to compare the actual rain attenuation with that predicted by the SST using the three above-mentioned rain height models based on rain rate and rain attenuation both measured concurrently. The study relies on rain rate time series and rain attenuation time series measured at University Science Malaysia (USM) campus (4.390 N, 100.980 E). The study found that the higher the rain rate, the higher is the percentage error for the SST predicated rain attenuation using the three above-mentioned rain height models as compared with measured rain attenuation. However, it is observed that when the Stutz man model applied as part of the SST model, the prediction is more accurate of the three rain height models.
机译:本文旨在研究利用ITU-R P.839,Stutz man和Bryant雨高模型将合成风暴技术(SST)转换为降雨率时间序列到降雨衰减时间序列的方法。此外,该研究的目的是根据同时测量的降雨率和降雨衰减,使用上述三个降雨高度模型,将实际降雨衰减与SST预测的结果进行比较。该研究依赖于在马来西亚大学科学(USM)校园(4.390 N,100.980 E)测量的降雨率时间序列和降雨衰减时间序列。研究发现,降雨率越高,使用上述三个降雨高度模型的SST预测降雨衰减的百分比误差与测得的降雨衰减相比就越高。但是,可以观察到,当Stutz人模型用作SST模型的一部分时,三个雨高模型的预测更加准确。

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