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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Impacts of Binning Methods on High-Latitude Electrodynamic Forcing: Static Versus Boundary-Oriented Binning Methods
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Impacts of Binning Methods on High-Latitude Electrodynamic Forcing: Static Versus Boundary-Oriented Binning Methods

机译:分衬方法对高纬度电动力学迫使的影响:静态与面向边界的分衬方法

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摘要

An outstanding issue in the general circulation model simulations for Earth's upper atmosphere is the inaccurate estimation of Joule heating, which could be associated with the inaccuracy of empirical models for high-latitude electrodynamic forcing. The binning methods used to develop those empirical models may contribute to the inaccuracy. Traditionally, data are binned through a static binning approach by using fixed geomagnetic coordinates, in which the dynamic nature of the forcing is not considered and therefore the forcing patterns may be significantly smeared. To avoid the smoothing issue, data can be binned according to some physically important boundaries in the high-latitude forcing, that is, through a boundary-oriented binning approach. In this study, we have investigated the sensitivity of high-latitude forcing patterns to the binning methods by applying both static and boundary-oriented binning approaches to the electron precipitation and electric potential data from the Defense Meteorological Satellite Program satellites. For this initial study, we have focused on the moderately strong and dominantly southward interplanetary magnetic field conditions. As compared with the static binning results, the boundary-oriented binning approach can provide a more confined and intense electron precipitation pattern. In addition, the magnitudes of the electric potential and electric field in the boundary-oriented binning results increase near the convection reversal boundary, leading to a ~11% enhancement of the cross polar cap potential. The forcing patterns obtained from both binning approaches are used to drive the Global Ionosphere and Thermosphere Model to assess the impacts on Joule heating by using different binning patterns. It is found that the hemispheric-integrated Joule heating in the simulation driven by the boundary-oriented binning patterns is 18% higher than that driven by the static binning patterns.
机译:地球高层大气一般循环模型模拟中的一个突出问题是焦耳加热估计的估计,这可能与高纬度电动强制的实证模型的不准确性相关。用于发展这些经验模型的分镀方法可能有助于不准确。传统上,通过使用固定的地磁坐标通过静态衬砌方法填充数据,其中不考虑强制的动态性质,因此迫使模式可能显着涂抹。为避免平滑问题,可以根据高纬度强制的一些物理上重要的边界,即通过面向面向面向边界的分纳方法,数据可以填充数据。在这项研究中,我们通过将静态和面向边界的分衬方法应用于来自国防气象卫星节目卫星的电子降水和电势数据,研究了高纬度强制模式对分衬方法的敏感性。对于这项初步研究,我们专注于中等强大且往往的南北行星际磁场条件。与静态分数的结果相比,面向边界的分衬方法可以提供更狭窄和强烈的电子沉淀图案。另外,电位和电场在面向边界的分数中的势幅导致对流反转边界附近增加,导致交叉极性盖电位的增强〜11%。从衬砌方法获得的强制模式用于推动全局电离层和热层模型,以评估通过使用不同的分衬图案对焦耳采暖的影响。结果发现,由面向面向边界的分衬图驱动的模拟中的半球 - 整体焦耳加热比由静态衬砌图案驱动的18%。

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  • 作者单位

    Department of Physics University of Texas at Arlington Arlington TX USA;

    Department of Physics University of Texas at Arlington Arlington TX USA;

    High Altitude Observatory National Center for Atmosphere Research Boulder CO USA;

    High Altitude Observatory National Center for Atmosphere Research Boulder CO USA;

    William B. Hanson Center for Space Sciences University of Texas at Dallas Richardson TX USA;

    William B. Hanson Center for Space Sciences University of Texas at Dallas Richardson TX USA;

    Aerospace Engineering Sciences University of Colorado Boulder Boulder CO USA;

    High Altitude Observatory National Center for Atmosphere Research Boulder CO USA;

    National Center for Environmental Information (NCEI) National Oceanic and Atmospheric Administration (NOAA) Boulder CO USA;

    The Johns Hopkins University Applied Physics Laboratory Laurel MD USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 空间物理;
  • 关键词

    Impacts; Binning Methods; High-Latitude Electrodynamic;

    机译:影响;融合方法;高纬度电动力学;

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