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Extended Range Guided Munition Aerodynamic Configuration Design
引用本文:雷娟棉,吴甲生,居贤铭. Extended Range Guided Munition Aerodynamic Configuration Design[J]. 兵工学报(英文版), 2005, 1(1): 61-65
作者姓名:雷娟棉  吴甲生  居贤铭
作者单位:School of Mechatronics Engineering Beijing Institute of Technology,Beijing 100081,China,School of Mechatronics Engineering Beijing Institute of Technology,Beijing 100081,China,School of Mechatronics Engineering Beijing Institute of Technology,Beijing 100081,China
摘    要:Based on the analysis of the flying scheme and flying style of an extended range guided munition(ERGM), the aerodynamic characteristics design standards were put forward. According to the standards, the ERGM aerodynamic configuration was designed, and the wind tunnel experiments were processed. The experimental results show that the configuration has lower drag and good static stability at unguided flying stage. Moreover, the stability, maneuverability, rudder deflection angle and balance angle of attack of the configuration are all reasonably matched at guided flying stage, and the munition with the configuration can glide with larger lift-drag ratio at little balance angle of attack. The experimental results also indicate that the canard can't conduct rolling control when 1.0< Ma < 1.5, so the ERGM must take rolling flight style with certain limited rolling speed.

关 键 词:空气动力学 构造设计 风洞试验 ERGM

Extended Range Guided Munition Aerodynamic Configuration Design
LEI Juan-mian,WU Jia-sheng,JU Xian-ming. Extended Range Guided Munition Aerodynamic Configuration Design[J]. Journal of China Ordnance, 2005, 1(1): 61-65
Authors:LEI Juan-mian  WU Jia-sheng  JU Xian-ming
Abstract:Based on the analysis of the flying scheme and flying style of an extended range guided munition(ERGM), the aerodynamic characteristics design standards were put forward. According to the standards, the ERGM aerodynamic configuration was designed, and the wind tunnel experiments were processed. The experimental results show that the configuration has lower drag and good static stability at unguided flying stage. Moreover, the stability, maneuverability, rudder deflection angle and balance angle of attack of the configuration are all reasonably matched at guided flying stage, and the munition with the configuration can glide with larger lift-drag ratio at little balance angle of attack. The experimental results also indicate that the canard can't conduct rolling control when 1.0 < Ma < 1.5, so the ERGM must take rolling flight style with certain limited rolling speed.
Keywords:extended range guided munition(ERGM)  aerodynamic configuration design  aerodynamic characteristics  wind tunnel experiment  Configuration Design  Range  take  flight  limited  rolling speed  control  canard  glide  little  rudder  deflection angle  balance  angle of attack  maneuverability  stability  experimental  results  show  lower
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