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首页> 外文期刊>International Journal of Engineering Systems Modelling and Simulation >Transient free convection in parallelogrammic cavities applied to the thermoregulation of avionics
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Transient free convection in parallelogrammic cavities applied to the thermoregulation of avionics

机译:平行四边形空腔中的瞬态自由对流应用于航空电子的温度调节

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This work addresses momentum and heat transfer phenomena that take place in closed cavities filled with air. The cavities are formed by two vertical active walls, one hot consisting of bands that are alternately insulated and heated at temperature T_h and other cold, isothermal at T_c. The closing upper and lower passive walls can be tilted an angle α either above or below the horizontal plane. When a is positive (hot wall below the level of the cold one), the air movement is favoured while the opposite occurs for negative angles. These cavities are thus either transferring or insulating, which confers them the quality of a so-called convective diode. Such geometry is applied in this work to the thermoregulation of the on-board aviation electronics. The flows corresponding to different angles and temperature differences ΔT =T_h- T_c are examined both numerically and experimentally. We consider in particular the transient transport phenomena which occur at the very beginning, a critical stage in the operation of the on-board materials.
机译:这项工作解决了在充满空气的封闭型腔中发生的动量和热传递现象。空腔由两个垂直的活动壁形成,一个活动壁由两个带交替加热并在温度T_h加热和另一个在T_c等温冷的带构成。闭合的上,下无源壁可以在水平面上方或下方倾斜角度α。当a为正(热壁低于冷壁的高度)时,有利于空气流动,而对于负角则相反。因此,这些空腔是传递的或绝缘的,这赋予它们所谓的对流二极管的质量。这种几何形状在这项工作中被应用于机载航空电子设备的温度调节。数值和实验都检查了与不同角度和温度差ΔT= T_h- T_c对应的流动。我们特别考虑在运输材料刚开始的关键阶段即发生的瞬态运输现象。

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