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环形混合器混合排气系统气动形面的优化设计
引用本文:谢翌,刘坤.环形混合器混合排气系统气动形面的优化设计[J].东北大学学报(自然科学版),2017,38(11):1607-1612.
作者姓名:谢翌  刘坤
作者单位:(1. 重庆大学 汽车工程学院, 重庆400044; 2. 重庆大学 机械传动国家重点实验室, 重庆400044)
基金项目:国家自然科学基金青年基金资助项目(51405045).
摘    要:以B样条曲线为基础、采用计算流体力学方法,并结合改进的粒子群优化算法,提出了一套环形混合排气系统喷管型线与环形混合器径向位置的一体化优化设计方法,并采用该方法对某型使用中的环形混合器混合排气系统进行了优化设计.优化结果表明,较之原始模型,优化后的环形混合器混合排气系统在流量分配方面与设计值更为接近,涵道比的误差为2.8%.气动性能方面,设计条件下,优化模型推力为原始模型的1.061倍,总压恢复系数则提升至0.995;在非设计条件下,优化模型的总压恢复系数较原始模型提高了0.7%和0.4%,推力较原始模型提高了1.2%和2.7%.

关 键 词:环形混合器混合排气系统  B样条曲线  环形混合器位置  喷管形状  气动性能  涵道比  

Optimization Design of Aerodynamic Shape of Splitter Mixing Exhaust System
XIE Yi,LIU Kun.Optimization Design of Aerodynamic Shape of Splitter Mixing Exhaust System[J].Journal of Northeastern University(Natural Science),2017,38(11):1607-1612.
Authors:XIE Yi  LIU Kun
Institution:1. College of Automotive Engineering, Chongqing University, Chongqing 400044, China; 2. The State Key Laboratory of Mechanical Transmission, Chongqing University, Chongqing 400044, China.
Abstract:An integrated optimization design method for nozzle configuration and splitter radial location was proposed using B-spline curve, computational fluid dynamics method and improved particle swarm optimization. Then the proposed method was implemented to optimize a splitter mixing exhaust system. The results indicate that the optimized system has better mass flux distribution than the original model. The difference of bypass ratio between optimized model and design value is 2.8%. In aerodynamic performance aspect, the thrust of optimized splitter mixing exhaust system is 1.061 times as the original model, and the total pressure recovery coefficient increases to 0.995. Under the off-design conditions, compared with the original model, the total pressure recovery coefficients of optimized model increase respectively by 0.7% and 0.4%, and the thrust increases respectively by 1.2% and 2.7% .
Keywords:splitter mixing exhaust system  B-spline curve  splitter location  nozzle configuration  aerodynamic performance  bypass ratio  
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