首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Computational fluid dynamics simulation of the supersonic steam ejector. Part 2. Optimal design of geometry and the effect of operating conditions on the ejector
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Computational fluid dynamics simulation of the supersonic steam ejector. Part 2. Optimal design of geometry and the effect of operating conditions on the ejector

机译:超音速蒸汽喷射器的计算流体动力学仿真。第2部分。几何形状的最佳设计以及工作条件对喷射器的影响

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The aim of this study is to investigate the use of computational fluid dynamics in predicting the performance and optimal design of the geometry of a steam ejector used in a steam turbine. In the current part, the real gas model was considered using IAPWS IF97 model, and the influences of working fluid pressure and backpressure were investigated. The results illustrate that working critical pressure and backflow critical pressure exist in the flow. Moreover, the entrainment ratio reaches its peak at the working critical pressure. The performance of the ejector was nearly the same when the outlet pressure was lower than the critical backpressure. Effects of ejector geometries were also investigated. The distance between the primary nozzle and the mixing chamber was at optimum, the length of the mixing chamber and the diameter of the throat had an optimal value according to the entrainment ratio. When the length of the diffuser or throat was decreased within a range, the entrainment ratio did not change significantly.
机译:这项研究的目的是研究计算流体动力学在预测蒸汽轮机中使用的蒸汽喷射器的性能和几何结构的最佳设计方面的用途。在本部分中,使用IAPWS IF97模型考虑了实际气体模型,并研究了工作流体压力和背压的影响。结果表明流动中存在工作临界压力和回流临界压力。此外,夹带率在工作临界压力下达到其峰值。当出口压力低于临界背压时,喷射器的性能几乎相同。还研究了喷射器几何形状的影响。主喷嘴和混合室之间的距离是最佳的,混合室的长度和喉部的直径根据夹带率具有最佳值。当扩散器或喉部的长度在一定范围内减小时,夹带率没有明显变化。

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