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Experimental investigation on no-vent fill process using tetrafluoromethane (CF4)

机译:四氟甲烷(CF4)的无排气填充工艺的实验研究

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This paper investigates the transfer of liquid cryogens using a no-vent fill (NVF) process experimentally to identify the dominant NVF parameters. The experimental apparatus has been fabricated with extensive instrumentations to precisely study the effects of each NVF parameter. Liquid tetrafluoromethane (CF4) is selected as the working fluid due to its similar molecular structures and similar normal boiling point and triple point with liquid methane which has been considered as an attractive future cryogenic propellant. The experimental results show that the initial receiver tank wall temperature and the incoming liquid temperature are the primary factors that characterize the (non-equilibrium) thermodynamic state at the start of a NVF transfer. The supply pressure is also critical as it indicates the ability to condense vapor in the receiver tank. A non-dimensional map based on energy balance is proposed to find acceptable initial conditions of the filling volume at the desired final tank pressure. The non-dimensional map shows good agreement with the NVF data not only in this paper but also in the previous research. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文通过无排气口填充(NVF)过程以实验方式研究液态制冷剂的转移,以识别主要的NVF参数。实验设备已经用广泛的仪器制造出来,可以精确地研究每个NVF参数的影响。选择液态四氟甲烷(CF4)作为工作流体,是因为其具有相似的分子结构,与液态甲烷的相似的正常沸点和三点,这已被认为是一种有吸引力的未来低温推进剂。实验结果表明,初始接收器罐壁温度和进入的液体温度是表征NVF传输开始时(非平衡)热力学状态的主要因素。供给压力也很关键,因为它表明了冷凝储罐中蒸气的能力。提出了一种基于能量平衡的无量纲图,以在所需的最终罐压力下找到填充量的可接受初始条件。无量纲图不仅在本文中而且在先前的研究中都与NVF数据显示出良好的一致性。 (C)2015 Elsevier Ltd.保留所有权利。

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