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Astroclimate Studies in the Special Astrophysical Observatory of the Russian Academy of Sciences

机译:俄罗斯科学院特殊天体物理天文台的星星力学研究

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摘要

The results of measurements of astroclimate characteristics in the Special Astrophysical Observatory of the Russian Academy of Sciences (SAO, North Caucasus) in 2012 and 2016 are presented. The experimental results are obtained from long-term observation series of the day and night astroclimate in the SAO. The presence of non-Kolmogorov coherent turbulence was detected over the SAO site, in which the quality of telescope images improved. The effect of the underlying surface type and wind direction on the conditions for coherent turbulence origination is explained by the mountainous terrain and nonuniform heating of the underlying surface. The airflow velocity distribution inside the dome room of the Big Telescope Alt-azimuth (BTA) was experimentally studied. The air-mass trajectories inside the BTA dome room were numerically simulated to analyze the effect of the temperature regime and construction geometry. The solutions of the boundary problem confirm the existence of an experimentally detected vortex structure with a vertical rotation axis. The causes for its generation are the temperature gradients of the dome surfaces.
机译:2012年和2016年俄罗斯科学院特殊天体物理观测所在天体科目特征测量结果的结果。实验结果是从SAO中的日夜星形间的长期观察系列获得。在SAO位点上检测到非Kolmogorov相干湍流的存在,其中望远镜图像的质量得到改善。山地地形和底层表面的山地地形和非均匀加热解释了潜在的表面型和风向对相干湍流起源条件的影响。实验研究了大望远镜Alt-Azimuth(BTA)的圆顶室内的气流速度分布。在数值模拟BTA圆顶室内的空气质量轨迹,以分析温度制度和施工几何形状的效果。边界问题的解决方案确认了具有垂直旋转轴的实验检测的涡旋结构的存在。生成原因是圆顶表面的温度梯度。

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