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首页> 外文期刊>Journal of atmospheric and oceanic technology >Spaced-Antenna Interferometry to Measure Crossbeam Wind, Shear, and Turbulence: Theory and Formulation
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Spaced-Antenna Interferometry to Measure Crossbeam Wind, Shear, and Turbulence: Theory and Formulation

机译:间隔天线干涉测量法测量横束风,剪切力和湍流:理论与公式

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摘要

The theory of measuring crossbeam wind, shear, and turbulence within the radar's resolution volume V_6 is described. Spaced-antenna weather radar interferometry is formulated for such measurements using phased-array weather radar. The formulation for a spaced-antenna interferometer (SAI) includes shear of the mean wind, allows turbulence to be anisotropic, and allows receiving beams to have elliptical cross sections. Auto- and cross-correlation functions are derived based on wave scattering by randomly distributed particles. Antenna separation, mean wind, shear, and turbulence all contribute to signal decorrelation. Crossbeam wind cannot be separated from shear, and thus crossbeam wind measurements are biased by shear. It is shown that SAI measures an apparent crossbeam wind (i.e., the angular shear of the radial wind component). Whereas the apparent crossbeam wind and turbulence within V_6 cannot be separated using monostatic Doppler techniques, angular shear and turbulence can be separated using the SAI.
机译:描述了在雷达分辨率空间V_6内测量横光束风,切变和湍流的原理。间隔天线气象雷达干涉测量公式是使用相控阵气象雷达进行此类测量的。间隔天线干涉仪(SAI)的公式包括平均风的剪切力,允许湍流各向异性以及允许接收束具有椭圆形横截面。自相关函数和互相关函数是基于随机分布的粒子的波散射而得出的。天线间隔,平均风,切变和湍流都有助于信号去相关。横梁风不能与剪切力分开,因此横梁风的测量值会因剪切力而产生偏差。结果表明,SAI可以测量出明显的横梁风(即径向风分量的角向剪切力)。 V_6中的明显横梁风和湍流无法使用单静态多普勒技术分离,而角剪切力和湍流可以使用SAI分离。

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