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Experimental and numerical investigations on the effect of suction chamber angle and nozzle exit position of a steam-jet ejector

机译:蒸汽喷射器的吸入腔角度和喷嘴出口位置影响的实验和数值研究

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摘要

Implementation of renewable energy in existing applications has become an emerging trend in order to mitigate the environmental issues. Specifically, HVAC sector urges for more efficient and eco-friendly systems which can effectively replace the high grade energy in conventional systems. One of such promising environmental friendly systems is the ejector refrigeration system which has low initial and operating costs, simple system components and trouble free operation. In spite of these merits, it suffers from low performance due to the complex irreversible fluid flow prevailing in the ejector. Comprehensive analysis and understanding of all the geometrical and operating parameters governing the ejector flow are vital for increasing the performance of the entire system. In this study, the most crucial geometrical parameters such as suction chamber angle and the Nozzle Exit Position (NXP) of a steam operated ejector are systematically investigated using CFD and experimental techniques. The influence of operating conditions with respect to the geometrical parameters has been observed, and for the tested conditions of 700 W evaporator at 10 degrees C cooling temperature the suction chamber angle of 12 and the corresponding NXP of 24.7 mm delivered an optimum performance for the active and back pressures of 2 bar and 43 mbar respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:为了减轻环境问题,在现有应用中实施可再生能源已成为一种新兴趋势。特别是,HVAC部门敦促建立更高效,更环保的系统,以有效替代传统系统中的高等级能源。这种有前景的环保系统之一是喷射器制冷系统,其初始和运行成本低,系统组件简单且无故障运行。尽管有这些优点,但由于喷射器中普遍存在着不可逆的复杂流体流动,因此其性能仍然很差。全面分析和理解控制喷射器流量的所有几何和操作参数对于提高整个系统的性能至关重要。在这项研究中,使用CFD和实验技术系统地研究了最关键的几何参数,例如蒸汽操作喷射器的吸气室角度和喷嘴出口位置(NXP)。观察到操作条件对几何参数的影响,对于700 W蒸发器在10摄氏度冷却温度下的测试条件,吸入腔角为12,相应的NXP为24.7 mm,为主动式泵提供了最佳性能。背压分别为2 bar和43 mbar。 (C)2018 Elsevier Ltd.保留所有权利。

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