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首页> 外文期刊>Journal of Applied Meteorology >Measurement of attenuation wwith airborne and ground-based radar in convective storms over land and its microphysical implications
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Measurement of attenuation wwith airborne and ground-based radar in convective storms over land and its microphysical implications

机译:陆地对流风暴中机载和地面雷达的衰减测量及其微物理意义

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Observations by the airborne X-band Doppler radar (known as EDOP) and the NCAR S-band polarimetric (S-Pol) radar from two field experiments are used to evaluate the surface reference technique (SRT) for measuring the path-integrated attenuation (PIA) and to study attenuation in deep convective storms. The EDOP, flying at an altitude of 20 km, uses a nadir beam and a forward-pointing beam. It is found that over land the surface scattering cross section is highly variable at nadir incidence but is relatively stable at forward incidence. It is concluded that measurement by the forward beam provides a viable technique for measuring PIA using the SRT. Vertical profiles of peak attenuation coefficient are derived in two deep convective storms by the dual-wavelength method. Using the measured Doppler velocity, the reflectivities at the two wavelengths, the differential reflectivity, and the estimated attenuation coefficients, it is shown that supercooled drops and (dry) ice particles probably coexistedabove the melting level in regions of updraft and that water-coated partially melted ice particles probably contributed to high attenuation below the melting level.
机译:机载X波段多普勒雷达(称为EDOP)和NCAR S波段极化(S-Pol)雷达在两个野外实验中的观察结果用于评估表面参考技术(SRT),以测量路径积分衰减( PIA)并研究深对流风暴的衰减。 EDOP在20公里的高度飞行,使用最低点波束和前向波束。发现在陆地上,表面散射横截面在最低点入射时变化很大,但在向前入射时相对稳定。结论是,通过前束进行的测量提供了一种使用SRT测量PIA的可行技术。利用双波长方法得出了两次深对流风暴中峰值衰减系数的垂直分布。使用测得的多普勒速度,两个波长下的反射率,微分反射率和估计的衰减系数,表明过冷液滴和(干)冰粒可能在上升气流区域共存于融化水平之上,并且部分被水包裹融化的冰粒可能导致低于融化水平的高衰减。

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