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Wissler Simulations of a Liquid Cooled and Ventilation Garment (LCVG) for Extravehicular Activity (EVA)

机译:液冷和通风服装(LCVG)进行车外活动(EVA)的Wissler模拟

摘要

In order to provide effective cooling for astronauts during extravehicular activities (EVAs), a liquid cooling and ventilation garment (LCVG) is used to remove heat by a series off tubes through which cooling water is circulated. To better predict the effectiveness of the LCG and determine possible modifications to improve performance, computer simulations dealing with the interaction of the cooling garment with the human body have been run using the Wissler Human Model. Simulations have been conducted to predict the heat removal rate for various liquid cooled garment configurations. The current LCVG uses 48 cooling tubes woven into a fabric with cooling water flowing through the tubes. The purpose of the current project is to decrease the overall weight of the LCVG system. In order to achieve this weight reduction, advances in the garment heat removal rates need to be obtained. Currently, increasing the fabric s thermal conductivity along with also examining an increase in the cooling tube conductivity to more efficiently remove the excess heat generated during EVA is being simulated. Initial trials varied cooling water temperature, water flow rate, garment conductivity, tube conductivity, and total number of cooling tubes in the LCVG. Results indicate that the total number of cooling tubes could be reduced to 22 and still achieve the desired heat removal rate of 361 W. Further improvements are being made to the garment network used in the model to account for temperature gradients associated with the spacing of the cooling tubes over the surface of the garment
机译:为了在舱外活动(EVA)期间为宇航员提供有效的冷却,液体冷却和通风服(LCVG)用于通过一系列冷却水循环的排出管来散热。为了更好地预测LCG的有效性并确定可能的改进措施以改善性能,使用Wissler人体模型进行了涉及冷却服与人体相互作用的计算机仿真。已经进行了模拟以预测各种液体冷却的服装构造的散热率。当前的LCVG使用48条冷却管编织成织物,冷却水流过这些管。当前项目的目的是减轻LCVG系统的整体重量。为了减轻重量,需要提高衣服的除热率。目前,正在模拟增加织物的热导率,同时还要检查冷却管的电导率的增加,以更有效地去除EVA期间产生的多余热量。初步试验改变了冷却水温度,水流量,衣服电导率,管电导率以及LCVG中冷却管的总数。结果表明,冷却管的总数可以减少到22个,并且仍可以达到361 W的理想除热率。模型中使用的服装网络正在做进一步的改进,以解决与织物间距相关的温度梯度。衣服表面的冷却管

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