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Investigating the effect of water nano-droplets injection into the convergent-divergent nozzle inlet on the wet steam flow using entropy generation analysis

机译:使用熵产生分析研究水纳米液滴注入到湿蒸汽流量的收敛蒸汽流动中的影响

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摘要

In many industrial pieces of equipment, such as ejectors, thermo-compressors, supersonic separators, etc., in which the condensation phenomenon occurs spontaneously, steam enters the nozzle in a saturated condition. Liquid droplets are likely to be present in the saturated vapor. In the present paper, the effect of the existence of a number (9 cases) of liquid droplets (with a fixed size of 20 nm in all cases) on the saturation steam has been studied. The results demonstrate that with the increase in the number of droplets at the nozzle inlet; pressure, temperature, liquid mass fraction, mass-generated rate and entropy increase in the convergent part. However, the growth of droplets and Mach number decrease. Furthermore, due to steam condensation and latent heat transfers to steam, the degree of supercooling, the supersaturation ratio and the flow rate at the nozzle inlet are decreased, the intensity of condensation shock is reduced, and shock occurs with delays. With an increase in the number of droplets, condensation shock and the nucleation phenomenon will not occur. The amount of entropy production decreases with the surge in the number of droplets at first, and then begins to increase. The results demonstrate that in the presence of 3 x 10(+14) droplets, compared to the absence of water droplets at the nozzle inlet, generated entropy, liquid mass fraction and the mass flow rate will decrease by 9.4%, 12.5%, and 1.7%, respectively.
机译:在许多工业设备中,例如喷射器,热压缩机,超音速分离器等,其中冷凝现象自发地发生,蒸汽在饱和条件下进入喷嘴。液滴可能存在于饱和蒸汽中。在本文中,研究了在饱和蒸汽上存在液滴数(9例)液滴(在所有情况下为20nm的固定尺寸)的效果。结果表明,随着喷嘴入口处的液滴数增加;压力,温度,液体质量分数,质量产生的速率和熵增加在会聚部分中。然而,液滴和马赫数的增长减少。此外,由于蒸汽冷凝和潜热转移到蒸汽,减小了过冷却的程度,喷嘴入口处的过载比率和流速,减小了冷凝冲击的强度,并且延迟发生冲击。随着液滴数量的增加,不会发生冷凝冲击和核切割现象。熵产量的量在首先液滴数的浪涌减少,然后开始增加。结果表明,在3×10(+ 14)滴的情况下,与喷嘴入口处的水滴的不存在相比,产生的熵,液体质量分数和质量流速将降低9.4%,12.5%和分别为1.7%。

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