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Time-Dependent Z-R Relationships for Estimating Rainfall Fields from Radar Measurements

机译:从雷达测量估算降雨场的时变Z-R关系

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摘要

The operational use of weather radars has become a widespread and useful tool for estimating rainfall fields. The radar-gauge adjustment is a commonly adopted technique which allows one to reduce bias and dispersion between radar rainfall estimates and the corresponding ground measurements provided by rain gauges.This paper investigates a new methodology for estimating radar-based rainfall fields by recalibrating at each time step the reflectivity-rainfall rate (Z-R) relationship on the basis of ground measurements provided by a rain gauge network. The power-law equation for converting reflectivity measurements into rainfall rates is readjusted at each time step, by calibrating its parameters using hourly Z-R pairs collected in the proximity of the considered time step. Calibration windows with duration between 1 and 24 h are used for estimatingthe parameters of the Z-R relationship. A case study pertaining to 19 rainfall events occurred in the north-western Italy is considered, in an area located within 25 km from the radar site, with available measurements of rainfall rate at the ground and radar reflectivity aloft. Results obtained with the proposed method are compared to those of three other literature methods. Applications are described for a posteriori evaluation of rainfall fields and for real-time estimation. Results suggest that the use of a calibration window of 2¿5 hyields the best performances, with improvements that reach the 28% of the standard error obtained by using the most accurate fixed (climatological) Z-R relationship.
机译:天气雷达的业务使用已成为估计降雨场的广泛而有用的工具。雷达量表调整是一种普遍采用的技术,它可以减少雷达降雨估计值与雨量计提供的相应地面测量值之间的偏差和离散度。本文研究了一种通过每次重新校准来估计基于雷达的降雨场的新方法根据雨量计网络提供的地面测量结果,确定反射率与降雨率(ZR)的关系。通过使用在所考虑的时间步长附近收集的每小时Z-R对来校准其参数,可以在每个时间步长重新调整用于将反射率测量值转换为降雨率的幂律方程。持续时间在1到24小时之间的校准窗口用于估计Z-R关系的参数。考虑了一个与意大利西北部发生的19次降雨事件有关的案例研究,该案例研究位于距雷达站点25公里以内的地区,可以测量地面降雨率和高空雷达反射率。用该方法获得的结果与其他三种文献方法进行了比较。描述了用于降雨场的后验评估和实时估计的应用。结果表明,使用2到5的校准窗口可获得最佳性能,并且通过使用最精确的固定(气候)Z-R关系获得的改进达到标准误差的28%。

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