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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Effect of water nano-droplet injection on steam ejector performance based on non-equilibrium spontaneous condensation: A droplet number study
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Effect of water nano-droplet injection on steam ejector performance based on non-equilibrium spontaneous condensation: A droplet number study

机译:基于非平衡自发缩合的水纳米液滴喷射对蒸汽喷射器性能的影响:液滴数学研究

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摘要

Condensation and evaporation processes in high velocity flowing steam within ejectors profoundly influence the performance of these devices. In the current study, the effects of water droplet injection in the inlet of the primary nozzle on the condensation and evaporation processes are investigated through the wet steam model. The findings reveal that the existence of liquid droplets in the steam related to the inlet of the primary nozzle has effects on the two-phase parameters, shock waves intensity, entrainment ratio, mixing layer growth and two-phase heat, such that these parameters are minimized or maximized for a specific number of droplets. The inlet wetness in the primary nozzle provides a delay in the condensation shock, and the maximum delay happens in the wetness 0.4%. In the case of using 2.0 x 10(17) droplets with 17.5 nm radius (wetness 0.4%), in comparison with the case of without the droplets at the inlet, the entrainment ratio, primary mass flow rate, and secondary mass flow rate reduce by 2.79%, 0.8%, and 3.72%, respectively. The novelty of this study is displaying the effects of water droplet injection in the inlet of the primary nozzle on the ejector performance.
机译:喷射器内高速流动蒸汽的冷凝和蒸发过程对这些装置的性能有着深远的影响。在目前的研究中,通过湿蒸汽模型研究了主喷嘴入口处的水滴喷射对冷凝和蒸发过程的影响。研究结果表明,与主喷嘴入口相关的蒸汽中液滴的存在对两相参数、冲击波强度、卷吸比、混合层生长和两相热有影响,因此对于特定数量的液滴,这些参数会最小化或最大化。主喷嘴中的入口湿度提供了冷凝冲击的延迟,最大延迟发生在湿度为0.4%时。在使用半径为17.5 nm(湿度为0.4%)的2.0 x 10(17)个液滴的情况下,与入口没有液滴的情况相比,卷吸比、一次质量流量和二次质量流量分别降低了2.79%、0.8%和3.72%。这项研究的新颖之处在于展示了主喷嘴入口处的水滴喷射对喷射器性能的影响。

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