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Theoretical and experimental investigations of different area ratios of a supersonic ejector driven by compressed air

机译:压缩空气驱动超声速射流器不同面积比的理论和实验研究

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Ejectors have some advantages such as being simple, reliable and no moving parts. They can be used in air-conditioning and refrigeration applications. This paper presents a comparison of ejector performance, primary pressure (Pp), back pressure (Pb) and area ratios of ejectors (A(2)/A(t)) predictions by an analytical model and a computational fluid dynamics model for different operating conditions. Six different area ratios of ejector using air as working fluid in this study were proposed and tested experimentally. The variable area ratios of ejectors (A(2)/A(t)) were used with a range from 10.68 to 30.62. Two sets of ejectors (A and C) are studied and examined depend on the kind of nozzle. The aim of this study was to investigate these ejectors under variation of primary pressure (Pp) (1.5-6.0 bar) and adjustable spindle position (0 to -25 mm). Two groups of ejectors (A and C) were categorized based on the type of nozzle. The experimental results validate the solutions of the main parameters of ejectors using air as working fluid. The results show that group A is more appropriate for higher values of back pressure, while group C is more suitable for high performance of the ejector. Finally, the main parameters were carried out on six different ejectors to find the best combination based on various nozzles and constant area sections.
机译:弹出器具有一些优点,例如简单,可靠且没有活动部件。它们可用于空调和制冷应用。本文通过分析模型和计算流体动力学模型,针对不同的运行情况,比较了喷射器性能,一次压力(Pp),背压(Pb)和喷射器的面积比(A(2)/ A(t))预测的比较。条件。在这项研究中,提出并使用空气作为工作流体的喷射器的六个不同的面积比,并进行了实验测试。喷射器的可变面积比(A(2)/ A(t))的使用范围是10.68至30.62。根据喷嘴的类型研究和检查了两组喷射器(A和C)。这项研究的目的是研究在主压力(Pp)(1.5-6.0 bar)和主轴位置可调(0至-25 mm)变化的情况下这些喷射器。根据喷嘴类型将两组喷射器(A和C)分类。实验结果验证了以空气为工作流体的喷射器主要参数的解。结果表明,A组更适合于更高的背压值,而C组更适合于喷射器的高性能。最后,主要参数是在六个不同的喷射器上进行的,以基于各种喷嘴和恒定面积的截面找到最佳组合。

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