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Aerodynamic performance of a hovering micro-rotor in confined environment

机译:密闭环境中悬停的微型转子的空气动力学性能

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This paper aims at understanding how the aerodynamic performance of a hovering micro-rotor is affected by horizontal and vertical wall proximity. Toward that end, experiments are performed to extract aerodynamic loads and velocity flow fields from strain gauges and high-definition stereoscopic particle image velocimetry measurements respectively. The results show that horizontal wall boundary conditions contribute to enhancing aerodynamic performance while vertical boundary conditions have a negligible impact. Enhancement of aerodynamic performance arises from distinct flow physics that depend on the configuration considered. These results open the path towards the development of micro-air vehicles dedicated to the exploration of highly confined environments.
机译:本文旨在了解悬停的微型转子的空气动力性能如何受到水平和垂直壁的接近度的影响。为此,进行了实验以分别从应变仪和高清立体粒子图像测速仪测量中提取空气动力载荷和速度流场。结果表明,水平壁边界条件有助于提高空气动力性能,而垂直边界条件的影响可忽略不计。空气动力学性能的提高来自于不同的流动物理特性,这些物理特性取决于所考虑的配置。这些结果为致力于探索高度受限环境的微型航空器的开发开辟了道路。

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