Experimental investigation of the effect of ejector geometry on its performance

M. Elkady, A. Karameldin, E. Negeed, Ramadan El-Bayoumy
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引用次数: 7

Abstract

This paper describes the experimental investigation of the performance of the ejector used in desalination applications, using air as the working fluid. The aim of this study is to investigate experimentally the effect of the operating conditions and ejector geometry on the ejector performance. The effect of the relative position of the primary nozzle exit within the mixing chamber on the performance of the ejector is also investigated. The results show that using a convergent?divergent nozzle enhances the performance of the ejector. Also, the ejector performance is improved by decreasing the primary nozzle throat diameter and also by increasing the suction pressure. Moreover, the performance of the ejector is affected by the nozzle position, and the optimum position, which yields a maximum entrainment ratio for all nozzles, is at the inlet of the mixing chamber section of the ejector. As the constant area-mixing length to diameter ratio L/D increases, the entrainment ratio increases. And the increase in the entrainment becomes very small and can be negligible for L/D greater than 7.5. The entrainment ratio increases with increasing primary pressure, and the entrained flow reaches a maximum at a certain primary pressure. Beyond this value, the entrained flow will decrease.
引射器几何形状对其性能影响的实验研究
本文介绍了以空气为工作流体的海水淡化用喷射器的性能试验研究。本研究的目的是通过实验研究工作条件和喷射器几何形状对喷射器性能的影响。研究了混合腔内主喷管出口相对位置对喷射器性能的影响。结果表明,使用收敛的?发散式喷管提高了喷射器的性能。此外,通过减小主喷管喉部直径和增加吸压,可以提高喷射器的性能。此外,喷射器的性能受喷嘴位置的影响,最佳位置是喷射器混合室段的入口,所有喷嘴的吸入比都最大。随着等面积混合长径比L/D的增大,夹带比增大。当L/D大于7.5时,夹带的增加变得非常小,可以忽略不计。随着主压力的增加,夹带比增大,在一定的主压力下,夹带流量达到最大值。超过这个值,夹带流量就会减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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