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CFD Ventilation Study for the Human Powered Centrifuge at the International Space Station

机译:国际空间站人力离心机的CFD通风研究

摘要

The Human Powered Centrifuge (HPC) is a hyper gravity facility that will be installed on board the International Space Station (ISS) to enable crew exercises under the artificial gravity conditions. The HPC equipment includes a bicycle for long-term exercises of a crewmember that provides power for rotation of HPC at a speed of 30 rpm. The crewmember exercising vigorously on the centrifuge generates the amount of carbon dioxide of several times higher than a crewmember in ordinary conditions. The goal of the study is to analyze the airflow and carbon dioxide distribution within Pressurized Multipurpose Module (PMM) cabin. The 3D computational model included PMM cabin. The full unsteady formulation was used for airflow and CO2 transport modeling with the so-called sliding mesh concept is considered in the rotating reference frame while the rest of the cabin volume is considered in the stationary reference frame. The localized effects of carbon dioxide dispersion are examined. Strong influence of the rotating HPC equipment on the CO2 distribution is detected and discussed.
机译:人力离心机(HPC)是一种超重力设施,将安装在国际空间站(ISS)上,以使机组人员可以在人工重力条件下进行锻炼。 HPC设备包括用于机组人员长期锻炼的自行车,该自行车为HPC以30 rpm的速度旋转提供动力。在离心机上大力运动的机组产生的二氧化碳量比正常情况下的机组高出几倍。该研究的目的是分析加压多功能模块(PMM)机舱内的气流和二氧化碳分布。 3D计算模型包括PMM机舱。完全不稳定的公式用于气流和CO2传输建模,在旋转参考系中考虑了所谓的滑动网格概念,而在固定参考系中考虑了机舱的其余部分。检查了二氧化碳分散的局部影响。检测并讨论了旋转HPC设备对CO2分布的强烈影响。

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    Son Chang H.;

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  • 年度 2011
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