影响喷射泵性能的几何参数的实验和数值设计优化。

Ahmed Diab, Ahmed Huzayyin, Hesham El-Batsh
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摘要

:喷射泵是一种利用高能动力射流夹带吸入流的装置。喷射泵由三个主要部分组成:喷嘴、混合室和扩散器。喷射泵的性能取决于这些部件的几何参数。本研究通过实验和数值参数研究对影响性能的最关键几何参数进行了研究,这些参数包括混合室相对长度( )、动机喷嘴相对间距(S)以及混合室与喷射孔之间的面积比( )。除参数研究外,实验工作还为验证数值方法提供了必要的数据,在与实验数据非常吻合后,使用过渡剪应力传输(SST)作为湍流模型进行了二维模拟。最后,利用数值模拟进行设计优化,通过实施实验设计(DOE)来指定达到最佳性能的设计。根据参数研究发现,面积比对喷射泵的性能和工作条件影响最大,在压力比为 0.28、质量比为 1.25(=4)、流速为 7.3、S 为 0.785 的条件下,最高效率可达 35.8%。在最佳质量比范围(2.25 - 2.96)和最大效率范围(32%)内,喷射泵的性能最佳。
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Experimental and Numerical Design Optimization for the Geometrical Parameters Affecting Jet-pump Performance.
: The jet-pump is a device used for the entraining of a suction flow using a high-energy motive jet. The objective of jet-pump is achieved by three main parts: jet-nozzle, mixing chamber and diffuser. The jet-pump performance is governed by geometrical parameters that shape these parts. In this study, the most crucial geometrical parameters that influence performance are investigated by an experimental and numerical parametric study, these parameters are mixing chamber relative length ( ), motive nozzle relative spacing (S) and area ratio between the mixing chamber and the jet orifice ( ). Besides the parametric study, the experimental work also provides the necessary data used to validate the numerical approach, which is concluded using 2-D simulation with transition Shear-Stress Transport (SST) as a turbulence model after showing very good agreement with the experimental data. Eventually, numerical simulation is used to perform design optimization to specify the design that attains the optimum performance by Implementation the design of experiments (DOE). According to the parametric study, it is found that area ratio has the most significant impact on the jet-pump performance and operating conditions, and the highest maximum efficiency of 35.8 % is obtained at pressure ratio of 0.28 and mass ratio of 1.25 for = 4 using of 7.3 and S of 0.785. While the optimum performance is found to be within optimum mass ratio range of (2.25 - 2.96) and maximum efficiency range of (32
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