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Air motions inside dome room of Big Telescope Alt-azimuth at Special Astrophysical Observatory RAS. Numerical solutions of Navier-Stokes equations

机译:特殊天文观测台RAS的大望远镜Alt方位穹顶室内的空气运动。 Navier-Stokes方程的数值解

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The structure of air turbulent motion inside the closed dome room of Big Telescope Alt-azimuth at Special Astrophysical Observatory of the Russian Academy of Sciences (RAS) has been experimentally and theoretically studied. The experimental measurements were perfromed by using the compact portable ultrasonic automated meteorological complex. Theoretical results have been reached by numerical solving of boundary value problem for Navier-Stokes equations. Solitary large vortices (coherent structures, topological solitons) are observed indoors. Coherent breakdown of these vortices leads to the coherent turbulence. In the case of identical boundary conditions the pattern of air motions as a result of the simulation and the pattern, registered experimentally using the compact portable ultrasonic weather station, are practically the same.
机译:对俄罗斯科学院特殊天文台的大望远镜Alt-方位角的封闭圆顶室内的空气湍流结构进行了实验和理论研究。通过使用紧凑的便携式超声波自动气象站进行实验测量。通过对Navier-Stokes方程的边值问题进行数值求解,已经获得了理论结果。在室内观察到孤零零大的涡流(相干结构,拓扑孤子)。这些涡旋的相干分解导致相干湍流。在边界条件相同的情况下,作为模拟结果的空气运动模式和使用紧凑型便携式超声波气象站进行实验记录的模式实际上是相同的。

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