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首页> 外文期刊>Fluid Dynamics >Modeling of Convection and Heat Transfer in a Spherical Volume Filled with Supercritical Hydrogen under Microgravity Conditions
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Modeling of Convection and Heat Transfer in a Spherical Volume Filled with Supercritical Hydrogen under Microgravity Conditions

机译:微重力条件下充满超临界氢的球形体积对流换热模型

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摘要

A mathematical formulation of the problem of convective heat transfer in a spherical volume filled with supercritical hydrogen in space flight conditions, based on the three-dimensional non-stationary Navier-Stokes equations for a low-velocity compressible medium with a modified equation of state and variable thermophysical properties, is presented. To calculate the micro-accelerations in space flight, a quasi-static approximation is used. The regimes of enhancement and deterioration of heat transfer are found. It is shown that these regimes are associated with the transition of the operating parameters into the neighborhood of a "pseudocritical" point. Due to the additional mixing under the action of micro-accelerations in real flight conditions, the temperature differences in the working volume can be greatly reduced in comparison with the designed cases of low or zero gravity.
机译:基于具有修正状态和方程的低速可压缩介质的三维非平稳Navier-Stokes方程,对空间飞行条件下充满超临界氢的球形体积中对流换热问题的数学表示。提出了可变的热物理性质。为了计算太空飞行中的微加速度,使用了准静态近似值。发现了传热的增强和恶化机制。结果表明,这些状态与操作参数到“伪临界”点附近的过渡有关。由于在实际飞行条件下在微加速度的作用下进行了额外的混合,与设计的低重力或零重力情况相比,工作体积中的温差可以大大减少。

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