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LH2 tank pressure control by thermodynamic vent system (TVS) at zero gravity

机译:LH2罐压力控制通过热力学通风系统(TV)在零重力下

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Thermodynamic vent system (TVS) is employed for pressure control of propellant tanks at zero gravity. An analytical lumped parameter model is developed to predict pressure variation in an 18.09 m3 liquid hydrogen tank equipped with TVS. Mathematical simulations are carried out assuming tank is filled up to 75% volume (liquid mass equals to 945 kg) and is subjected to heat flux of 0.76 W/m2. Tank pressure controls at 165.5-172.4, 165.5-179.3 and 165.5-182.2 kPa are compared with reference to number of vent cycles, vent duration per cycle and loss of hydrogen. Analysis results indicate that the number of vent cycles significantly decreases from 62 to 21 when tank pressure control increases from 6.9 to 20.4 kPa. Also, duration of vent cycle increases from 63 to 152 and cycle duration decreases from 3920 to 3200 s. Further, the analysis result suggests that LH2 evaporation loss per day decreases from 0.17 to 0.14%. Based on the results of analysis, TVS is found effective in controlling the propellant tank pressure in zero gravity.
机译:热力学通风系统(TVS)用于以零重力的推进剂罐的压力控制。开发了一个分析总参数模型,以预测装有电视的18.09 M3液体氢气罐中的压力变化。采用数学模拟,假设罐填充高达75%的体积(液体质量等于945千克),并经受0.76W / m 2的热通量。将罐压力控制在165.5-172.4,165.5-179.3和165.5-182.2 KPA中,参考通风循环的数量,每循环排气时间和氢气丧失。分析结果表明,当罐压力控制从6.9到20.4kPa增加时,通风循环的数量从62到21显着降低。而且,排气循环的持续时间从63到152增加,并且循环持续时间从3920降低到3200秒。此外,分析结果表明每天的LH2蒸发损失从0.17降低至0.14%。基于分析结果,在零重力控制推进剂罐压力方面,发现电视有效。

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