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首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Influence of Noncondensable Gases on Thermodynamic Control On-Ground Experiments Using a Substitute Fluid
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Influence of Noncondensable Gases on Thermodynamic Control On-Ground Experiments Using a Substitute Fluid

机译:替代流体对脱脂气体对热力控制近地实验的影响

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A cryogenic propellant submitted to heat load during long duration space missions tends to vaporize to such an extent that the resulting pressure rise must be controlled to prevent storage failure. The thermodynamic vent system (TVS), one of the possible control strategies, has been investigated using on-ground experiments with NOVEC1230 as substitution fluid. Results obtained for self-pressurization (SP) and TVS control phases have been reported in a previous work. The unexpected inverse thermal stratification observed during these experiments is analyzed in the present work and related to the influence of non-condensable gases. Noncondensable gases, present inside the tank in the form of nitrogen-ten times lighter than the substitution fluid vapor-generate a concentration stratification in the ullage. Assuming the NOVEC1230 remains at saturation in the whole ullage, the density stratification which results from this concentration stratification can explain the observed inverse thermal stratification.
机译:在长持续时间空间任务期间提交加热负荷的低温推进剂倾向于蒸发到必须控制产生的压力上升以防止储存失败。热力学通风系统(TVS)是一种可能的控制策略之一,已经使用Novec1230作为替代流体进行了地面实验。在以前的工作中报道了用于自加鉴(SP)和TVS控制阶段获得的结果。在本实验期间观察到的意外逆热分层在本作工作中分析并与不可冷凝气体的影响有关。不可调味的气体,在罐内的氮气形式的形式比取代流体蒸汽 - 在ullage中产生浓度分层的形式。假设Novec1230在整个ullage中保持饱和度,由该浓度分层产生的密度分层可以解释观察到的逆热分层。

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