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A cylindrical mixing chamber ejector analysis model to predict the optimal nozzle exit position

机译:圆柱形混合室喷射器分析模型,以预测最佳喷嘴出口位置

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摘要

By introducing the theory of an annular mixing-layer, a new model to predict the optimal nozzle exit position (ONXP) is established and verified for ejectors with a cylindrical mixing chamber. Furthermore, the optimal entrainment ratio, area ratio and dimensionless optimal nozzle exit position (DONXP) of ejectors under different working conditions are analysed by this model. Compared with the experimental data of R141b, R245fa, R134a and R600a ejectors, the entrainment ratio error is within ±10.70%, and the critical backpressure is within ±7%. The introduced theory can accurately predict the ONXP of the R245fa ejectors (within an error of ±15.85%) and the DONXP distribution of the R141 b ejectors, and can properly predict the performance of the R134a ejectors under the same dimensions. With an increasing compression ratio, the DONXP decreases, and the rate of decrease is faster when the compression ratio exceeds the value of the inflection point. The compression ratio corresponding to the inflection point is higher for an ejector with a large expansion ratio than that with a small expansion ratio. In addition, the DONXP decreases when the expansion ratio increasing under a small compression ratio while increases when the expansion ratio increasing under a large compression ratio.
机译:通过引入环形混合层的理论,建立一种预测最佳喷嘴出口位置(ONXP)的新模型,并验证具有圆柱形混合室的喷射器。此外,通过该模型分析了在不同工作条件下的喷射器的最佳夹带比,面积比和无量纲的最佳喷嘴出口位置(DONXP)。与R141B,R245FA,R134A和R600A喷射器的实验数据相比,夹带比误差在±10.70%以内,临界背压在±7%范围内。介绍的理论可以准确地预测R245FA喷射器的ONXP(在±15.85%的误差内)和R141 B喷射器的DONXP分布,并且可以正确地预测R134A喷射器在相同尺寸下的性能。随着压缩比的增加,DONXP降低,当压缩比超过拐点的值时,减少速度更快。对于具有小膨胀比的具有大的膨胀比的喷射器对应于拐点的压缩比更高。另外,当膨胀比在小的压缩比下增加时,DONXP减少,同时在膨胀比在大的压缩比下增加时增加。

著录项

  • 来源
    《Energy》 |2020年第1期|118302.1-118302.11|共11页
  • 作者单位

    School of Chemical Engineering Sichuan University Chengdu 610065 Sichuan China School of Energy and Building Environment Guilin University of Aerospace Technology Guilin 541004 Guangxi China;

    School of Chemical Engineering Sichuan University Chengdu 610065 Sichuan China;

    School of Chemical Engineering Sichuan University Chengdu 610065 Sichuan China;

    School of Mechanical Engineering Guangxi University Nanning 530004 Guangxi China;

    Department of Power Engineering Shanxi University Taiyuan 030013 Shanxi China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ejector; Analysis model; Optimal nozzle exit position; Annular mixing-layer;

    机译:喷射器;分析模型;最佳喷嘴出口位置;环形混合层;

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