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Multiphase Flow Technology Impacts on Thermal Control Systems for Exploration

机译:多相流技术对勘探热控制系统的影响

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摘要

The Two-Phase Flow Facility (TPHIFFy) Project focused on bridging the critical knowledge gap by developing and demonstrating critical multiphase fluid products for advanced life support, thermal management and power conversion systems that are required to enable the Vision for Space Exploration. Safety and reliability of future systems will be enhanced by addressing critical microgravity fluid physics issues associated with flow boiling, condensation, phase separation, and system stability. The project included concept development, normal gravity testing, and reduced gravity aircraft flight campaigns, in preparation for the development of a space flight experiment implementation. Data will be utilized to develop predictive models that could be used for system design and operation. A single fluid, two-phase closed thermodynamic loop test bed was designed, assembled and tested. The major components in this test bed include: a boiler, a condenser, a phase separator and a circulating pump. The test loop was instrumented with flow meters, thermocouples, pressure transducers and both high speed and normal speed video cameras. A low boiling point surrogate fluid, FC-72, was selected based on scaling analyses using preliminary designs for operational systems. Preliminary results are presented which include flow regime transitions and some observations regarding system stability.
机译:两阶段流动设施(TPHIFFy)项目致力于通过开发和演示关键的多相流体产品来弥合关键的知识差距,这些关键的多相流体产品是实现太空探索愿景所需的高级生命支持,热管理和功率转换系统。通过解决与流沸腾,冷凝,相分离和系统稳定性相关的关键微重力流体物理问题,将增强未来系统的安全性和可靠性。该项目包括概念开发,正常重力测试和减少重力飞机的飞行运动,以准备开发太空飞行实验装置。数据将用于开发可用于系统设计和操作的预测模型。设计,组装和测试了单流体,两相闭环热力学环路试验台。该试验台的主要组件包括:锅炉,冷凝器,分相器和循环泵。测试回路装有流量计,热电偶,压力传感器以及高速和正常速度的摄像机。根据使用操作系统的初步设计进行的结垢分析,选择了低沸点替代流体FC-72。初步结果包括流态转换和有关系统稳定性的一些观察结果。

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