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首页> 外文期刊>Astrophysics and space science >Retrieval of atmospheric mass densities in lower thermosphere below 200 km from precise orbit of re-entry object CZ-3B R/B by analytical and numerical methods
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Retrieval of atmospheric mass densities in lower thermosphere below 200 km from precise orbit of re-entry object CZ-3B R/B by analytical and numerical methods

机译:通过分析和数值方法检索低温下温下的热度低于200公里的大气质量密度,距离重新入门对象CZ-3B r / B的精确轨道

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Taking the re-entry object CZ-3B R/B (COSPAR identifier 2012-018D, NORAD catalog number 38253) as an example, retrieval of atmospheric mass densities in lower thermosphere below 200 km from its rebuilt precise orbit is studied in this paper. Two methodologies, i.e. analytical and numerical methods, are adopted in the retrieval. Basic principles of these two methodologies are briefly introduced. Based on the short-arc sparse observational data accumulated in the high accuracy re-entry prediction, orbit determinations of re-entry object CZ-3B R/B are performed sectionally, and then its precise orbit is rebuilt. According to the orbit theory, the variation of orbital semi-major axis of re-entry object CZ-3B R/B induced by atmospheric drag perturbation only is derived from the rebuilt precise orbit. In the derivation of secular change of the orbital semi-major axis of re-entry object CZ-3B R/B induced by atmospheric drag perturbation only, the time-span is set as one minute tentatively. And then retrieval results of atmospheric mass densities in lower thermosphere below 200 km by analytical and numerical methods are presented, as well as their bias deviations from the calculated results of the NRLMSISE-00 empirical model of the atmosphere. Setting bias deviation bands, the corresponding 'confidence coefficients' of the retrieved atmospheric mass densities with respect to the model values are given. Average bias deviations of the retrieved atmospheric mass densities by analytical and numerical methods from the model values are also calculated respectively. On the whole, the retrieved atmospheric mass densities by numerical method approach to the model values more closely; the differences between the retrieved results and the model values are relatively smaller at the peaks of atmospheric mass densities than the other places.
机译:以重新入门对象CZ-3B R / B(COSPAR标识符2012-018D,Norad目录号38253)为例,本文研究了距离其重建精确轨道低于200公里的较低热层的大气质量密度的检索。在检索中采用两种方法,即分析和数值方法。简要介绍了这两种方法的基本原理。基于在高精度重新进入预测中累积的短弧稀疏观测数据,切入对象CZ-3B R / B的轨道确定,然后重建其精确的轨道。根据轨道理论,仅由大气阻力扰动引起的重新入门对象CZ-3B R / B的轨道半主轴的变化仅来自重建精确轨道。在通过大气阻力扰动引起的重新进入对象CZ-3B R / B的轨道半主轴的轨道半主轴的转变的推导中,时间跨度暂时设定为一分钟。然后,提出了较低热层的大气质量密度的检索结果,通过分析和数值方法提出了低于200公里的偏差,以及与大气NRLMSISE-00实证模型的计算结果的偏差偏差。设置偏置偏差带,给出了检索到的大气质量密度相对于模型值的相应的“置信系数”。还计算了来自模型值的分析和数值方法的检索到的大气质量密度的平均偏差。总的来说,通过数值方法检出的大气质量密度更加紧密地探讨模型值;检索结果与模型值之间的差异在大气质量密度的峰值比另一个地方相对较小。

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