Design Process and Flow Field Analysis of a Double Divergent Supersonic Nozzle: Enhancing Efficiency and Performance

H. Kbab, S. Haif, O. Abada
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Abstract

The dual bell nozzle concept's primary goal is to increase performance through the idea of selfadaptation for two operating regimes without mechanical activation. The dual bell nozzle type known asthe planar double divergent nozzle (DDN) has a rectangular cross section. In this study we propose anumerical method for the design of the nozzle profile with double planar divergent. The design of the doubledivergent nozzle is carried out in two parts. The first divergent is a contour of a two-dimensional supersonicnozzle with a sharp-edged throat that gives uniform parallel flow at the exit. The method of characteristicapplied to the two-dimensional isentropic flow of an ideal gas was used for the design of a supersonic planarnozzle. The contour of the second divergent (nozzle extension) is a polynomial. This is achieved using thedirect method of characteristics. A numerical analysis of a double divergent nozzle, and a planar nozzlewith the same area ratio and the same length using ANSYS-Fluent software. The analysis's findingsindicated that the double divergent nozzle had a weight decrease of 0.61%. The thrust increase is estimatedat 3.88% in the low-altitude operating mode for the double divergent nozzle.
双发散超声速喷管设计过程及流场分析:提高效率与性能
双钟形喷嘴概念的主要目标是通过在没有机械激活的情况下自适应两种操作制度的想法来提高性能。双钟形喷嘴类型称为平面双发散喷嘴(DDN)具有矩形截面。本文提出了双平面发散喷管外形设计的数值方法。双发散喷管的设计分两部分进行。第一个发散是一个二维超音速喷嘴的轮廓,它有一个锋利的边缘喉部,在出口提供均匀的平行流动。将理想气体二维等熵流动的特征化方法应用于超声速平面喷管的设计。二次发散(喷管延伸)的轮廓是一个多项式。这是使用特征的直接方法实现的。利用ANSYS-Fluent软件对具有相同面积比和相同长度的双发散喷管和平面喷管进行了数值分析。分析结果表明,采用双发散型喷管后,其重量降低了0.61%。在低空工作模式下,双发散喷管的推力增加估计为3.88%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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