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首页> 外文期刊>International Journal of Refrigeration >Exergy analysis and performance of a counter flow Ranque-Hilsch vortex tube having various nozzle numbers at different inlet pressures of oxygen and air
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Exergy analysis and performance of a counter flow Ranque-Hilsch vortex tube having various nozzle numbers at different inlet pressures of oxygen and air

机译:在氧气和空气的不同入口压力下具有不同喷嘴数量的逆流Ranque-Hilsch涡流管的火用分析和性能

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摘要

An experimental investigation is made to determine the effects of the orifice nozzle number and the inlet pressure on the heating and cooling performance of the counter flow Ranque-Hilsch vortex tube when air and oxygen used as a fluid. The orifices used at these experiments are made of the polyamide plastic material. The thermal conductivity of polyamide plastic material is 0.25 W/m℃. Five orifices with nozzle numbers of 2, 3, 4, 5 and 6 have been manufactured and used during the experiments. For each one of the orifices (nozzle numbers) when used with two different fluids, inlet pressures were adjusted from 150 kPa to 700 kPa with 50 kPa increments, and the exergy efficiency was determined. During the experiments, a vortex tube is used with an L/D ratio of 15, and cold mass fraction is held constant at 0.5. As a result of the experimental study, it is determined that the temperature gradient between the hot and cold fluid is decreased with increasing of the orifice nozzle number.
机译:进行了实验研究,以确定当空气和氧气用作流体时,孔口喷嘴数量和入口压力对逆流Ranque-Hilsch涡流管的加热和冷却性能的影响。这些实验中使用的孔口由聚酰胺塑料材料制成。聚酰胺塑料的导热系数为0.25 W / m℃。在实验期间已经制造并使用了五个喷嘴编号分别为2、3、4、5和6的孔。对于与两种不同流体一起使用的每个孔口(喷嘴数),将入口压力从150 kPa调整为700 kPa(增量为50 kPa),并确定了火用效率。在实验过程中,使用L / D比为15的涡流管,冷质量分数保持恒定为0.5。作为实验研究的结果,确定了随着孔口喷嘴数量的增加,热流体和冷流体之间的温度梯度减小。

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