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飞行高度及设计长度对锥形流乘波体优化的影响
引用本文:耿永兵,刘宏,王发民.飞行高度及设计长度对锥形流乘波体优化的影响[J].宇航学报,2006,27(2):162-166.
作者姓名:耿永兵  刘宏  王发民
作者单位:中国科学院力学研究所高温气体动力学重点实验室,北京,100080
摘    要:高超声速条件下,乘波体布局具有高升阻比特性,本文应用单纯形加速法,以最大升阻比为目标,开展了锥形流乘波体布局优化设计研究.特别是,研究了在高层大气飞行时雷诺数效应与气动特性的关系,从乘波体飞行高度与设计长度两方面探讨雷诺数对乘波体优化的影响,结果表明:给定设计马赫数和圆锥角情况下,对于最大升阻比优化乘波体,其雷诺数越小,摩擦阻力越大,而升阻比越低.

关 键 词:乘波体  优化设计  雷诺数  升阻比
文章编号:1000-1328(2006)02-0162-05
收稿时间:03 3 2005 12:00AM
修稿时间:2005-03-032005-07-13

Altitude and Design Length Effects of Optimized Waverider Derived from Cone Flow
GENG Yong-bing,LIU Hong,WANG Fa-min.Altitude and Design Length Effects of Optimized Waverider Derived from Cone Flow[J].Journal of Astronautics,2006,27(2):162-166.
Authors:GENG Yong-bing  LIU Hong  WANG Fa-min
Institution:LHD , Institute of Mechanics, Chinese Academy of Sciences, Beijing 100080, China
Abstract:The hypersonic waverider has characteristics of higher lift over drag ratio.This paper is concerned with waverider optimized design,the object function was lift over drag ratio,viscous optimized process was completed by Nelder and Mead's method,Altitude and design length that determined the Reynolds number was discussed in the optimized process of waverider,The result is: Reynolds number is smaller,coefficients of friction drag is larger,and lift over drag ratio is smaller.
Keywords:Waverider  Optimized design  Reynolds number  Lift-drag ratio
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