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Theoretical analysis of the effects of human movement on the combined free-forced convection

机译:人体运动对复合自由对流影响的理论分析

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The airflow pattern close to a moving human is proved to be a combined free-forced convection due to the temperature difference between the moving human and the environment. In this paper, theoretical analysis was conducted to study the effects of human movement on the mixed convective heat transfer, expressed by Nusselt, Reynolds and Grashof numbers. The correlations of these non-dimensional numbers for each segment of the human have been established. It can be demonstrated that the increasing values of the Reynolds (forced convection) and Grashof (natural convection) numbers take a positive effect on the total rate of convective heat transfer, and the proportions of the forced and natural convection are on the same level. The heat transfer of the mixed convection is affected by the specific geometry characteristic of the different body segments. For the windward and leeward body segments, the heat transfer of mixed convection is more obvious during the human movement than other segments, while the heat transfer of mixed convection for the upper limbs by the body sides are much less obvious. In addition, a detailed information of the flow field around the moving body can be speculated from the correlation equations of the mixed convection for 18 body segments.
机译:由于运动的人与环境之间的温差,靠近运动的人的气流模式被证明是自由对流的组合。在本文中,进行了理论分析以研究人类运动对混合对流传热的影响,用Nusselt,Reynolds和Grashof数表示。已经建立了这些无量纲数字对于人类每个部分的相关性。可以证明,雷诺数(强制对流)和格拉斯霍夫(自然对流)值的增加对对流传热的总速率产生积极影响,并且强制对流和自然对流的比例在同一水平上。混合对流的热传递受到不同身体部分的特定几何特征的影响。对于上风向和下风向,人体运动过程中混合对流的热传递比其他部分更明显,而身体两侧上肢的混合对流的热传递不那么明显。此外,可以从18个人体节段的混合对流的相关方程式中推测出围绕移动体的流场的详细信息。

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