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Vertical air motion estimates from the disdrometer flux conservation model and related experimental observations

机译:来自Discrometer助保模型的垂直空气运动估计和相关实验观察

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The use of meteorological radar reflectivity Z to estimate rainfall rate R is approached using a different perspective from the classical "Z-R relation". Simultaneous rain measurements from different sensors are combined to construct a model that estimates the vertical air velocity by minimizing the error in reflectivity between the different sensors. This model is based on the fact that rain rate and reflectivity are both dependent on the integrals of rain drop size distribution (DSD) but only R depends on vertical air velocity. This study attempts to validate the vertical air velocity estimates and quantity their affects on the rainfall rate estimation. Disdrometer Flux Conservation Model (DFC) uses measurements from disdrometers and other sensors such as vertically pointing radar profilers and scanning radars. Disdrometers measure a drop size flux Φ(D), defined as the number of drops passing a horizontal surface per unit time, per unit area, per drop size. The flux is equal to the product of the drop size distribution near the ground N{sub}G(D) and drop velocity near the ground v{sub}G(D). The drop velocity is the difference between the droplet terminal velocity and the vertical component of the wind velocity, which varies with altitude. The estimates derived from the DFC model using two pair wise selected sensors are used to study the change of reflectivity and vertical air velocity with altitude. Sensitivity tests for the DFC model are also discussed and these outcomes are validated by comparison with independent profiler vertical velocity observations.
机译:使用气象雷达反射率的Z来估计降雨率R是使用从古典“Z-R关系”不同的角度接近。来自不同传感器的同时测量雨被组合以构建通过在不同的传感器之间的反射率最小化误差估计所述垂直空气速度的模型。该模型是基于这样的事实:降雨率和反射率都是依赖于雨滴大小分布(DSD)的积分,但只有ř取决于垂直空气速度。本研究试图验证垂直送风速度估计量及其对降雨率估计的影响。 Disdrometer通量保护模式(DFC)使用来自disdrometers和其他传感器,如垂直指向雷达廓和扫描雷达测量。 Disdrometers测量液滴尺寸磁通Φ(d),其定义为通过一个水平的表面的每单位时间,每单位面积,每滴大小的滴数。通量等于接地附近的液滴尺寸分布N {子} G(d)和液滴速度接地V {子} G(d)邻近的产物。液滴速度是液滴终端速度和风速,这与高度变化的垂直分量之间的差。从使用两个成对选择传感器DFC模型导出的估计被用于研究的反射率和与高度垂直的空气速度的变化。对于DFC模型敏感性测试进行了讨论和这些结果是通过具有独立探查垂直速度观测比较验证。

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