论文标题

使用基于模型的逆方法对非等热隆隆的热量和传质的实验分析

Experimental analysis of heat and mass transfer in non-isothermal sloshing using a model-based inverse method

论文作者

Marques, Pedro, Simonini, Alessia, Peveroni, Laura, Mendez, Miguel Alfonso

论文摘要

部分填充的储层中的非等热液体晃动可以显着增强液体和ullage气体之间的热量和质量转移。这可能导致温度和压力波动较大,从而在航天器中产生推力振荡,并具有挑战性的热管理控制系统。这项工作介绍了经历了散落的热力学去分层的圆柱形储层热力学演化的实验表征。我们使用基于0D模型的逆方法来检索平面中的热量和传质系数,并从液体和ullage气体中的温度和压力测量中从温度和压力测量中进行旋转条件。实验是在Cuboid Quartz细胞中冯·卡曼学院(Von Karman Institute)的莎士比亚摇动桌上进行的,中心的圆柱形切口直径为80 mm,填充高达60mm,并用低温替换液HFE-7200填充。将ullage气体和液体之间的25 K差的热分层设置为初始条件。在旋转条件下,在ullage气体中有90%的压降。尽管它很简单,但一旦得出了适当的传输系数,该模型仍可以预测系统的热力学演化。

Nonisothermal liquid sloshing in partially filled reservoirs can significantly enhance heat and mass transfer between liquid and ullage gasses. This can result in large temperature and pressure fluctuations, producing thrust oscillations in spacecraft and challenging thermal management control systems. This work presents an experimental characterization of the thermodynamic evolution of a cylindrical reservoir undergoing sloshing-induced thermal de-stratification. We use a 0D model-based inverse method to retrieve the heat and mass transfer coefficients in planar and swirl sloshing conditions from the temperature and pressure measurements in the liquid and the ullage gas. The experiments were carried out in the SHAKESPEARE shaking table of the von Karman Institute in a cuboid quartz cell with a cylindrical cut-out of 80 mm diameter in the centre, filled up to 60mm with the cryogenic replacement fluid HFE-7200. A thermal stratification with 25 K difference between the ullage gas and liquid was set as the initial conditions. A pressure drop of 90% in the ullage gas was documented in swirling conditions. Despite its simplicity, the model could predict the system's thermodynamic evolution once the proper transfer coefficients were derived.

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