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The effect of the arbitrary level assignment of satellite cloud motion wind vectors on wind analyses in the pre-thunderstorm environment

机译:雷暴前环境中卫星云运动风矢量的任意级别分配对风分析的影响

摘要

The impact of satellite-derived cloud motion vectors on SESAME rawinsonde wind fields was studied in two separate cases. The effect of wind and moisture gradients on the arbitrary assignment of the satellite data is assessed to coordinate surfaces in a severe storm environment marked by strong vertical wind shear. Objective analyses of SESAME rawinsonde winds and combined winds are produced and differences between these two analyzed fields are used to make an assessment of coordinate level choice. It is shown that the standard method of arbitrarily assigning wind vectors to a low level coordinate surface yields systematic differences between the rawinsonde and combined wind analyses. Arbitrary assignment of cloud motions to the 0.9 sigma surface produces smaller differences than assignment to the 825 mb pressure surface. Systematic differences occur near moisture discontinuities and in regions of horizontal and vertical wind shears. The differences between the combined and SESAME wind fields are made smallest by vertically interpolating cloud motions to either a pressure or sigma surface.
机译:在两种不同的情况下,研究了卫星衍生的云运动矢量对SESAME rawinsonde风场的影响。评估风和湿度梯度对卫星数据的任意分配的影响,以协调在以强垂直风切变为特征的严重风暴环境中的地面。进行了SESAME Rawinsonde风和组合风的客观分析,并使用这两个分析场之间的差异来评估坐标级别的选择。结果表明,将风矢量任意分配给低级坐标曲面的标准方法会在原始声探和组合风分析之间产生系统差异。将云运动任意分配给0.9 sigma表面所产生的差异要小于分配给825 mb压力表面所产生的差异。系统差异发生在不连续的水分附近以及水平和垂直风切变的区域。通过将云运动垂直内插到压力或sigma表面,可以使组合风场和SESAME风场之间的差异最小。

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