Volume 8 Number 5 (May 2013)
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JCP 2013 Vol.8(5): 1321-1326 ISSN: 1796-203X
doi: 10.4304/jcp.8.5.1321-1326

An Interior Trajectory Simulation of the Gassteam Missile Ejection

Yongquan Liu1, 2 and Anmin Xi1
1 University of Science and Technology Beijing, Beijing, China
2 Inner Mongolia University of Science and Technology, Baotou, China


Abstract—An interior trajectory simulation of the canister launched missiles has been developed with the help of FLUENT. One of the special features of this simulation is the method by which the coupled three-phase problem is reduced to solving the fluid equations only. Several new source terms describing the influence of droplets and particles on gas have been created in the present case and added to the motion equations and energy equations of the gas. According to the simulation, the almost uniform acceleration occurs 0.25s after startup and indicates that the missile is shockless during ejection. The calculation has been done efficiently in FLUENT after setting all the required parameters. Several figures obtained from the simulation show the velocity and pressure of the flow field in the reservoir. The distribution curves of the velocity and acceleration show that the simulation and the test data of the experiments are in good agreement with each other. This model satisfies the requirements of the missile ejection and can be used to analyze the similar launch procedures.

Index Terms—interior ballistic simulation, gas-steam ejection

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Cite: Yongquan Liu and Anmin Xi, " An Interior Trajectory Simulation of the Gassteam Missile Ejection," Journal of Computers vol. 8, no. 5, pp. 1321-1326, 2013.

General Information

ISSN: 1796-203X
Abbreviated Title: J.Comput.
Frequency: Bimonthly
Editor-in-Chief: Prof. Liansheng Tan
Executive Editor: Ms. Nina Lee
Abstracting/ Indexing: DBLP, EBSCO,  ProQuest, INSPEC, ULRICH's Periodicals Directory, WorldCat,etc
E-mail: jcp@iap.org
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