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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >Enhancement of the air ejector performance: primary nozzle and mixing chamber investigation
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Enhancement of the air ejector performance: primary nozzle and mixing chamber investigation

机译:提高空气喷射器性能:主喷嘴和混合室研究

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Air ejectors are, practically, applicable devices used to remove air following a membrane integrity test (MIT). In the present work, investigations of the influence of geometrical parameters on the air ejector performance are performed numerically. Simulations have been performed by solving the steady compressible two-dimensional Reynolds-averaged Navier-Stokes together with realizable k-epsilon turbulence model equations. A comparison of the computed results with the published experimental data exhibits agreement in terms of entrainment ratio. Increasing amount of the air that should be removed (secondary flow) and reducing energy consumption (primary flow) are considered in this work. To achieve these issues, the effects of geometrical parameters include mixing tube diameter, length of mixing tube, and primary nozzle diameter as well as operation condition which consists of primary flow pressure on the air ejector performance which are all studied. The results show that these changes could improve the entrainment ratio; it means that the secondary flow is increased or the primary flow is decreased. The optimal range of entrainment ratio for specific values of the primary nozzle diameter declares that the air ejector operates at its highest performance.
机译:实际上,空气喷射器是用于在膜完整性测试 (MIT) 后去除空气的适用设备。在本工作中,以数值方式研究了几何参数对空气喷射器性能的影响。通过求解稳态可压缩二维雷诺平均纳维-斯托克斯以及可实现的k-ε湍流模型方程,进行了仿真。将计算结果与已发表的实验数据进行比较,在夹带率方面表现出一致性。在这项工作中,考虑了增加应去除的空气量(二次流量)和降低能耗(一次流量)。为了解决这些问题,几何参数的影响包括混合管直径、混合管长度和一次喷嘴直径以及操作条件,其中包括一次流量压力对空气喷射器性能的影响,这些都进行了研究。结果表明,这些变化可以改善夹带率;这意味着二次流量增加或一次流量减少。主喷嘴直径特定值的最佳夹带比范围表明空气喷射器以最高性能运行。

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