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首页> 外文期刊>Journal of Geophysical Research, D. Atmospheres: JGR >On the Forward Modeling of Radar Doppler Spectrum Width From LES: Implications for Model Evaluation
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On the Forward Modeling of Radar Doppler Spectrum Width From LES: Implications for Model Evaluation

机译:LES雷达多普勒频谱宽度的前向建模:模型评估的影响

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摘要

Large-eddy simulations of an observed single-layer Arctic mixed-phase cloud are analyzed to study the value of forward modeling of profiling millimeter wave cloud radar Doppler spectral width for model evaluation. Individual broadening terms and their uncertainties are quantified for the observed spectral width and compared to modeled broadening terms. Modeled turbulent broadening is narrower than the observed values when the turbulent kinetic energy dissipation rate from the subgrid scale model is used in the forward model. The total dissipation rates, estimated with the subgrid scale dissipation rates and the numerical dissipation rates, agree much better with both the retrieved dissipation rates and those inferred from the power spectra of the simulated vertical air velocity. The comparison of the microphysical broadening provides another evaluative measure of the ice properties in the simulation. To accurately retrieve dissipation rates as well as each broadening term from the observations, we suggest a few modifications to previously presented techniques. First, we show that the inertial subrange spectrum filtered with the radar sampling volume is a better underlying model than the unfiltered -5/3 law for the retrieval of the dissipation rate from the power spectra of the mean Doppler velocity. Second, we demonstrate that it is important to filter out turbulence and remove the layer-mean reflectivity-weighted mean fall speed from the observed mean Doppler velocity to avoid overestimation of shear broadening. Finally, we provide a method to quantify the uncertainty in the retrieved dissipation rates, which eventually propagates to the uncertainty in the microphysical broadening.
机译:分析了观察到的单层北极混合阶段云的大涡模拟,研究了分析毫米波云雷达多普勒谱宽度进行模型评价的向前建模的价值。单个扩大术语及其不确定因素被定量为观察到的光谱宽度,与建模的扩大术语相比。当在前向模型中使用来自底图刻度模型的湍流动能耗散速率时,模型湍流展会比观察到的值窄。通过底级耗散速率和数值耗散速率估计的总耗散速率以及从模拟垂直空气速度的功率谱推断的那些。微动物扩大的比较提供了模拟中的冰性质的另一种评价测量。为了准确地检索耗散速率以及从观察结果中的每个扩展术语,我们建议对先前呈现的技术进行了一些修改。首先,我们表明,利用雷达采样体积滤波的惯性子频谱谱是比未过滤的-5/3定律更好的底层模型,用于从平均多普勒速度的功率谱检索耗散率的耗散率。其次,我们证明滤除湍流并从观察到的平均多普勒速度去除层的层式反射加权平均值速度,以避免剪切膨胀的高估。最后,我们提供了一种量化检索耗散速率的不确定性的方法,最终传播到微专家扩大中的不确定性。

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  • 作者单位

    Department of Meteorology and Atmospheric Science Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science Pennsylvania State University University Park PA USA;

    NASA Goddard Institute for Space Studies New York NY USA;

    NASA Goddard Institute for Space Studies New York NY USA;

    Department of Atmospheric and Oceanic Sciences University of California Los Angeles Los Angeles CA USA;

    School of Marine and Atmospheric Sciences Stony Brook University Stony Brook NY USA;

    School of Aerospace Mechanical and Mechatronic Engineering University of Sydney Sydney New South Wales Australia;

    Department of Meteorology and Atmospheric Science Pennsylvania State University University Park PA USA;

    Department of Meteorology and Atmospheric Science Pennsylvania State University University Park PA USA;

    NASA Goddard Institute for Space Studies New York NY USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Forward; Modeling; Radar;

    机译:前进;建模;雷达;

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