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다상 유동모델과 동적 격자계를 활용한 가스-스팀 발사체계의 열유동과 탄의 운동성능 해석

Thermo-fluid Dynamic and Missile-motion Performance Analysis of Gas-Steam Launch System Utilizing Multiphase Flow Model and Dynamic Grid System

  • 투고 : 2017.01.28
  • 심사 : 2017.03.15
  • 발행 : 2017.04.01

초록

본 연구에서는 수치모사를 통해 탄의 사출관 내부의 열 유체역학적 분석과 탄의 운동성능 해석을 수행하였다. 동적 격자(dynamic grid)를 사용한 해석영역에서 계산이 진행되었고 증발이 완료된 물을 냉각제로 사용하였다. 고온의 공기와 냉각제간의 상호작용 및 유동장을 해석하기 위해, Realizable $k-{\varepsilon}$ 난류 모델과 VOF (Volume Of Fluid) 모델을 선정하고 냉각제 유량변이에 따른 수치 해석을 진행하였다. 해석결과, 사출관의 압력은 냉각제의 유무에 따라 큰 차이를 보였고, 냉각제량에 따라서도 각각의 차이를 보였다. 탄의 속도와 가속도의 변이는 압력에 종속하여 나타났다.

In this study, an analysis of the thermo-fluid dynamic and missile-motion performance was carried out through a numerical simulation inside the missile canister. Calculation was made in an analytical volume using dynamic grid and evaporated water was used as a coolant. To analyze the interaction among the hot gas, coolant, and mixture flow, Realizable $k-{\varepsilon}$ turbulence and VOF (Volume Of Fluid) model were chosen and a parametric study was performed with the change of coolant flow rate. As a result of the analysis, pressure of the canister showed a large difference depending on the presence or absence of the coolant, and also showed a dependancy on the amount of coolant. Velocity and acceleration were dependent on the canister pressure.

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참고문헌

  1. Edquist, C.T. and Romine, G.L., "Canister Gas Dynamics of Gas Generator Launched Missiles," 16th Joint Propulsion Conference, Hartford, C.T., U.S.A., AIAA 1980-1186, Jun. 1980.
  2. Edquist, C.T., "Prediction of the Launch Pulse for Gas Generator Launched Missiles," 24th Joint Propulsion Conference, Boston, M.A., U.S.A., AIAA 1988-3290, Jun. 1988.
  3. Liu, Y. and Xi, A., "An Interior Trajectory Simulation of the Gas-steam Missile Ejection," Journal of Computers, Vol. 8, No. 5, pp. 1321-1326, 2013.
  4. Byun, J.R., "Analytical Study on the Launching System with gas Generator," Journal of the Korean Society of Propulsion Engineers, Vol. 5, No. 3, pp. 52-59, 2001.
  5. Baek, G.H. and Yim, Y.J., "Coolant Effect on Gas Generator Propellant," Journal of the Korean Society of Propulsion Engineers, Vol. 9, No. 2, pp. 1-8, 2005.
  6. Kim, H.M., Bae, S.H., Park, C.H., Jeon, H.S. and Kim, J.S., "Thermo-fluid Dynamic Analysis through a Numerical Simulation of Canister," Journal of the Korean Society of Propulsion Engineers, Vol. 21, No. 1, pp. 72-83, 2017. https://doi.org/10.6108/KSPE.2017.21.1.072
  7. ANSYS, Inc., ANSYS FLUENT 14.5 Theory Guide, 2012.