内外集成流喷射器喷嘴轮廓的优化设计

Yihe He, Xiaojuan Shi, Honghu Ji
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引用次数: 0

摘要

在正交实验方法的基础上,设计了喷射器喷嘴流场的模拟案例,以研究喷射器喷嘴的结构参数对内部和外部流动的影响。该研究探讨了喉管面积、出口面积、喉管位置和喷射嘴长度对喷射流量比、推力系数和净推力系数的影响。随后,进行了流道几何优化,以实现推力系数或净推力系数的最大化。结果表明,喷射器喷嘴的喉部面积比和出口面积是影响气动性能的主要因素。与基线喷射器喷嘴模型相比,推力系数的最优模型提高了 16.333%,而净推力系数的最优模型则显著提高了 46.674%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimal Design of Ejector Nozzle Profile with Internal and External Integrated Flow
Based on the orthogonal experimental method, a simulation case of the flow field of the ejector nozzle was designed to investigate the influence of the structural parameters of the ejector nozzle on the internal and external flow. This study explored the effects of throat area, outlet area, throat position, and ejector nozzle length on the ejector flow rate ratio, thrust coefficient, and net thrust coefficient. Subsequently, flow path geometry optimization was conducted to maximize the thrust coefficient or net thrust coefficient. The results revealed that the throat area ratio and the outlet area of the ejector nozzle are the primary factors affecting the aerodynamic performance. Compared to the baseline ejector nozzle model, the optimal model for thrust coefficient exhibited a 16.333% improvement, while the optimal model for net thrust coefficient demonstrated a significant enhancement of 46.674%.
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