Atmospheric Optical Turbulence Profile Measurement and Model Improvement over Arid and Semi-arid regions

Hao Yang, Zhiyuan Fang, Cheng Li, X. Deng, K. Xing, Chenbo Xie
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引用次数: 1

Abstract

Abstract. From August 4th to 30th, 2020 and from November 27th to December 25th, 2020, a self-developed radiosonde balloon system was used to observe high-altitude atmospheric optical turbulence at three sites in northwestern China, and an improved model based on the observational data was established. Through comparative analysis of the observational data and the improved model, the distribution characteristics of atmospheric optical turbulence under the combined action of different meteorological parameters and different landform features in different seasons were obtained. The improved model can show the variation of the detailed characteristics of turbulence with the height distribution, and the degree of correlation with the measured values is above 0.82. The improved model can provide a theoretical basis and supporting data for turbulence estimation and forecasting in northwestern China.
干旱半干旱区大气光学湍流廓线测量及模式改进
摘要2020年8月4日至30日和2020年11月27日至12月25日,利用自主研制的探空气球系统对西北地区3个站点的高空大气光学湍流进行了观测,并基于观测数据建立了改进模型。通过对观测资料和改进模式的对比分析,得到了不同气象参数和不同地形特征共同作用下不同季节大气光学湍流的分布特征。改进后的模型能够反映湍流细节特征随高度分布的变化,与实测值的相关度在0.82以上。改进后的模型可为西北地区湍流估计和预报提供理论依据和辅助数据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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