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Conceptual development and CFD evaluation of a high efficiency - variable geometry ejector for use in refrigeration applications

机译:用于制冷应用的高效可变几何形状喷射器的概念开发和CFD评估

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Ejector based refrigeration cycles are an alternative to the sorption systems commonly associated with solar cooling since the required high-pressure motive fluid can be generated with solar heat. However, ejectors have been unable to achieve commercial maturity due to their low thermal efficiency and their intolerance to deviations from the design point. In the present work, an ejector that implements variable geometry mechanisms is proposed and evaluated using CFD simulations. In order to address the low thermal efficiency issue, changes to the design of current ejectors are also discussed in terms of its irreversibility sources; the large momentum difference between the primary and secondary flows is a well-known irreversibility source. The resulting ejector is able to operate more efficiently than current designs while maintaining a constant efficiency when subjected to variable operating conditions.
机译:基于喷射器的制冷循环是通常与太阳能冷却相关的吸附系统的替代方案,因为所需的高压动力流体可以通过太阳能产生。然而,由于喷射器的低热效率和对设计点的偏差的不容忍性,因此无法实现商业成熟。在目前的工作中,提出了一种实现可变几何机构的喷射器,并使用CFD仿真对其进行了评估。为了解决热效率低的问题,还从不可逆源的角度讨论了电流喷射器设计的变化。主流量和次流量之间的动量差很大,这是众所周知的不可逆源。最终的喷射器能够比当前的设计更有效地运行,同时在可变的工作条件下保持恒定的效率。

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