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A novel thermally driven rotor-vane/pressure-exchange ejector refrigeration system with environmental benefits and energy efficiency

机译:具有环境效益和能源效率的新型热驱动转子叶片/压力交换喷射器制冷系统

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摘要

The latest results of an ongoing coordinated experimental and computational program on the design and performance of a novel supersonic rotor-vane/pressure-exchange ejector for thermally driven ejector refrigeration systems are presented. For the supersonic rotor-vane/pressure-exchange ejector, careful management of the entropy rise through the oblique shocks and boundary layers is required for obtaining an advance in ejector performance. Since the invention of this new ejector is quite recent, understanding its aerodynamics, with the consequent optimization of performance, is in the formative stage. This paper shows how the supersonic aerodynamics is managed to provide the desirable flow induction characteristics through computational study and, in parallel, experimental results including flow visualization showing actual behavior with different-shaped rotor vanes. The importance of the existence of the tail part with a long expansion ramp, the sharp leading edge such as knife-edge, the proper height of leading edges, for the overall shape of rotor vane, were observed. Also the larger spin-angle rotor vane produces better flow induction and mixing between primary flow and secondary flow.
机译:介绍了正在进行的协调实验和计算程序的最新结果,该程序用于热驱动喷射器制冷系统的新型超音速转子叶片/压力交换喷射器的设计和性能。对于超音速转子叶片/压力交换喷射器,需要通过倾斜的冲击和边界层仔细管理熵的升高,以提高喷射器的性能。由于这种新型喷射器的发明是很新的,因此在形成阶段就必须了解其空气动力学特性,进而优化性能。本文展示了如何通过计算研究来管理超音速空气动力学特性,以提供理想的进气特性,同时,实验结果还包括流量可视化,以显示不同形状的转子叶片的实际行为。对于转子叶片的整体形状,观察到存在具有长的膨胀斜面的尾部,锋利的前缘(例如刀刃),前缘的适当高度的重要性。同样,较大的旋转角转子叶片可产生更好的引流,并在主流和次流之间产生混合。

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