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An attempt to calibrate the UHF strato-tropospheric radar at Arecibo using NexRad radar and disdrometer data

机译:尝试使用NexRad雷达和测速仪数据在Arecibo校准UHF平流对流层雷达

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摘要

The goal of this paper is to present a methodology to calibrate the reflectivity of the UHF Strato-Tropospheric (ST) radar located at NAIC in Puerto Rico. The UHF lower relevant altitude is at 5.9km, the melting layer being at around 4.8km. The data used for the calibration came from the observations of clouds, carried out with Strato-Tropospheric dual-wavelength (UHF and VHF) radars and a disdrometer; those instruments being located on the NAIC site in Arecibo, Puerto Rico. The National Weather Service operates other instruments like the radiosondes and the NexRad Radar in other sites.The proposed method proceeds in two steps. The first consists of the comparison between the NexRad reflectivity and the reflectivity computed from the drop size distributions measured by the disdrometer for one day with a noticeable rainfall rate. In spite of the distance of both instruments, the agreement between the reflectivities of both instruments is enough good to be used as a reference for the UHF ST radar. The errors relative at each data set is found to be 2.75dB for the disdrometer and 4dB for the NexRad radar, following the approach of Hocking et al. (2001). The inadequacy between the two sampled volume is an important contribution in the errors.The second step consists of the comparison between the NexRad radar reflectivity and the UHF non-calibrated reflectivity at the 4 altitudes of common observations during one event on 15 October 1998. Similar features are observed and a coefficient is deduced. An offset around 4.7dB is observed and the correlation factor lies between 0.628 and 0.730. According to the errors of the data sets, the precision on the calibration is of the order of 2dB. This method works only when there are precipitation hydrometeors above the NAIC site. However, the result of the calibration could be applied to other data obtained during the campaign, the only constraint being the same value of the transmitter power.
机译:本文的目的是提出一种校准位于波多黎各NAIC的UHF平流-对流层(ST)雷达的反射率的方法。 UHF的较低相关高度为5.9km,融化层为4.8km左右。用于校准的数据来自对云的观测,这是用平流层双波长(UHF和VHF)雷达和测距仪进行的。这些仪器位于波多黎各阿雷西博的NAIC现场。美国国家气象局在其他地点还运行着其他仪器,例如无线电探空仪和NexRad雷达,该方法分两个步骤进行。第一个比较是在NexRad反射率与由分散计在一天中有明显降雨率的情况下由测得的水滴尺寸分布计算得出的反射率之间进行比较。尽管两个仪器的距离都很大,但两个仪器的反射率之间的一致性仍足以用作UHF ST雷达的参考。按照Hocking等人的方法,对于测速仪,每个数据集的相对误差为2.75dB,对于NexRad雷达,误差为4dB。 (2001)。两次采样量之间的不足是造成误差的重要原因。第二步是比较1998年10月15日一次事件中4个常见观测点的NexRad雷达反射率和UHF非校准反射率。观察特征并推导出系数。观察到大约4.7dB的偏移,相关系数在0.628至0.730之间。根据数据集的误差,校准的精度约为2dB。此方法仅在NAIC站点上方有降水水成膜时才有效。但是,校准的结果可以应用于活动期间获得的其他数据,唯一的约束是发射机功率的相同值。

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