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Prospects of the WSR-88D Radar for Cloud Studies

机译:WSR-88D雷达用于云研究的前景

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Sounding of nonprecipitating clouds with the 10-cm wavelength Weather Surveillance Radar-1988 Doppler (WSR-88D) is discussed. Readily available enhancements to signal processing and volume coverage patterns of the WSR-88D allow observations of a variety of clouds with reflectivities as low as -25 dBZ (at a range of 10 km). The high sensitivity of the WSR-88D, its wide velocity and unambiguous range intervals, and the absence of attenuation allow accurate measurements of the reflectivity factor, Doppler velocity, and spectrum width fields in clouds to ranges of about 50 km. Fields of polarimetric variables in clouds, observed with a research polarimetric WSR-88D, demonstrate an abundance of information and help to resolve Bragg and particulate scatter. The scanning, Doppler, and polarimetric capabilities of the WSR-88D allow real-time, three-dimensional mapping of cloud processes, such as transformations of hydrometeors between liquid and ice phases. The presence of ice particles is revealed by highdifferential reflectivities and the lack of correlation between reflectivity and differential reflectivity in clouds in contrast to that found for rain. Pockets of high differential reflectivities are frequently observed in clouds; maximal values of differential reflectivity exceed 8 dB, far above the level observed in rain. The establishment of the WSR-88D network consisting of 157 polarimetric radars can be used to collect cloud data at any radar site, making the network a potentially powerful tool for climatic studies.
机译:讨论了使用10厘米波长的天气监视雷达1988多普勒(WSR-88D)对非降水云的探测。 WSR-88D的信号处理和体积覆盖模式的现成增强功能允许观察反射率低至-25 dBZ(在10 km范围内)的各种云。 WSR-88D的高灵敏度,较宽的速度和明确的范围间隔以及不存在衰减的特性,可精确测量约50 km范围内云中的反射系数,多普勒速度和光谱宽度场。用研究的偏振WSR-88D观测到的云中的偏振变量场显示了丰富的信息,有助于解决布拉格和颗粒物的散射。 WSR-88D的扫描,多普勒和极化功能可对云过程进行实时三维映射,例如液相和冰相之间水凝物的转换。与雨天相比,高微分反射率和云层反射率与微分反射率之间缺乏相关性揭示了冰粒的存在。在云层中经常观察到微分反射率高的囊;差分反射率的最大值超过8 dB,远高于在雨中观察到的水平。由157个极化雷达组成的WSR-88D网络可用于收集任何雷达站点的云数据,从而使该网络成为进行气候研究的潜在强大工具。

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