Research on the Initial Disturbance of Vehicular Missile with System Vibration Analysis

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Abstract:

This paper is based on the complex multiple vehicular missile launch simulation model, researches the influence of combustion jet flow to the initial disturbance of missile. It establishes rigid-flexible coupling dynamic model by use of Adams and Ansys, and calculates the value of combustion jet flow field in missile box by means of Fluent. The rigid-flexible coupling dynamic simulation for the whole launch process is carried out. The study results show that the simulation with loading jet flow can accurately tend to real launch environment, it has great significance to optimize the simulation and to improve the accuracy of the simulation.

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134-139

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December 2012

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© 2013 Trans Tech Publications Ltd. All Rights Reserved

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[1] Zhen CHEN, Shi-hua BI: Launch Dynamics for Rocket and Missile[M]. Bei-jing: Beijing Institute of Technology Press (2007).

Google Scholar

[2] Xiao-ting RUI, Lai-feng YUN, LU Yu-qi, HE Bin, and WANG Guo-ping: Transfer Matrix Method of Multibody System and Its Applications[M]. Bei-jing: Science Press (2008).

Google Scholar

[3] Yu-jun CHEN, Yi JIANG: Attitude Simulation of Launch Process of Vehicular Missile[J]. Journal of Ballistics. Vol. 24 No. 1 (2012) p.102.

Google Scholar

[4] Wei-dong GUO: Virtual Prototyping Technology and Application Course for Adams[M]. Bei-jing: BeiHang University Press (2007).

Google Scholar

[5] Shao-ze YAN, Yong- sheng SHEN and Hong-bin CHEN: Dynamic Performance of Deployable Structure with Flexible Members and Clearance Connections[J]. Tsinghua University, Vol. 43 No. 2 (2003) p.145.

Google Scholar

[6] Yi JIANG, Ji-guang HAO and Qun LIU: Improvement Measures of Exhausting the Jet in the Concentric Vertical Launching Equipmen[J]. Transactions of Beijing Institute of Technology. Vol. 27 No. 2 (2007).

Google Scholar