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首页> 外文期刊>Journal of hydrometeorology >Relating the Radar Bright Band and Its Strength to Surface Rainfall Rate Using an Automated Approach
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Relating the Radar Bright Band and Its Strength to Surface Rainfall Rate Using an Automated Approach

机译:将雷达亮带及其使用自动化方法对表面降雨率的强度

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In radar observations of hydrometeors, the 0 degrees C isotherm in the atmosphere (i.e., the freezing level) usually appears as a region of enhanced reflectivity. This region is known as the bright band (BB). In this study, observations over 12 months from a vertically pointing 35-GHz radar and a collocated disdrometer at the Natural Environment Research Council (NERC) Facility for Atmospheric and Radio Research (NFARR) are used to identify and compare microphysical differences between BB and non-brightband (NBB) periods. From these observations, the relationship between radar reflectivity Z and rainfall intensity R is found to be Z = 772R(0.57) for BB periods and Z = 108R(0.99) for NBB periods. Additionally, the brightband strength (BBS) was calculated using a novel method derived from the Michelson contrast equation in an attempt to explain the observed variability in BB precipitation. A series of Z-R relationships are computed with respect to BBS. The coefficients increase with increasing BBS from 227 to 926, while the exponents decrease with increasing BBS from 0.85 to 0.38. The results also indicate that NBB periods identified in the presence of a 0 degrees C isotherm in other studies may be misclassified due to their inability to identify weak brightband periods. As such, it is hypothesized that NBB periods are solely due to warm rain processes.
机译:在水质仪的雷达观察中,大气中的0摄氏度(即,冷冻水平)通常看起来是增强的反射率的区域。该区域称为明亮的频段(BB)。在这项研究中,在垂直指向的35-GHz雷达(NERC)设施(NERC)和无线电研究(NFARR)的垂直指向35GHz雷达和一个垂直的抑制措施(NFART)中超过12个月的观察来识别和比较BB和非的微妙差异-BrightBand(NBB)期间。从这些观察结果来看,发现雷达反射率Z和降雨强度R之间的关系是Bb时段的Z = 772R(0.57),并且对于NBB时段为Z = 108R(0.99)。另外,使用从迈克尔逊对比式衍生的新方法计算亮点强度(BBS),以试图解释BB降水中观察到的可变性。关于BBS计算一系列Z-R关系。随着227至926的增加,系数随着BBS的增加而增加,而指数随着0.85至0.38的增加而降低。结果还表明,在其他研究中,在其他研究中存在在0摄氏度存在下鉴定的NBB时期可能由于它们无法识别弱亮点时期而被错误分类。因此,假设NBB时期仅是由于温雨过程。

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