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首页> 外文期刊>International Journal of Thermal Sciences >Numerical study for the influences of primary steam nozzle distance and mixing chamber throat diameter on steam ejector performance
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Numerical study for the influences of primary steam nozzle distance and mixing chamber throat diameter on steam ejector performance

机译:初级蒸汽喷嘴距离和混合室喉直径对蒸汽喷射器性能影响的数值研究

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摘要

The geometry and operation parameters have important influences on the performance of steam ejectors. An axisymmetric two-dimensional mathematical model for transonic compressible flow inside a steam ejector has been established in this paper to investigate the flow characteristics inside steam ejectors aiming at optimizing primary steam nozzle exit section distance and mixing chamber throat diameter simultaneously. The results show that there are an optimum value for the primary steam nozzle distance ratio and an optimum diameter ratio of mixing chamber throat to primary nozzle throat at which the steam ejector acquires its best entrainment performance under the given design conditions. With the optimized primary steam nozzle distance, the optimization of the diameter ratio of the mixing chamber throat to primary nozzle throat is significant. In our case, the improvement of the entrainment ratio is as large as 25%. Deviation from its optimized value may result in a serious degeneration in the ejector performance. Therefore, to ensure the steam ejector performance, the primary steam nozzle distance should be designed at its optimum value and the diameter ratio of the mixing chamber throat to primary nozzle throat be within a narrow vicinity of its optimum value.
机译:几何和操作参数对蒸汽喷射器的性能具有重要影响。本文建立了蒸汽喷射器内的跨音可压缩流动的轴对称二维数学模型,以研究蒸汽喷射器内的流动特性,旨在同时优化初级蒸汽喷嘴出口截面距离和混合室喉部直径。结果表明,初级蒸汽喷嘴距离比的最佳值和混合室喉部的最佳直径比在给定的设计条件下获得其最佳夹带性能的初级喷嘴喉部。利用优化的初级蒸汽喷嘴距离,将混合室喉部的直径比的优化为初级喷嘴喉部是显着的。在我们的情况下,夹带率的改善大约25%。偏离其优化值可能导致喷射器性能的严重退化。因此,为了确保蒸汽喷射器性能,初级蒸汽喷嘴距离应以其最佳值和混合室喉部的直径比设计为初级喷嘴喉部在其最佳值的窄附近。

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