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Performance Analysis of KSLV-II Launch Vehicle with Liquid Rocket Boosters

액체로켓 부스터를 부착한 한국형발사체의 발사 성능 분석

  • Yang, Won-Seok (Department of Aerospace Engineering, Pusan National University) ;
  • Choi, Jeong-Yeol (Department of Aerospace Engineering, Pusan National University)
  • Received : 2014.02.24
  • Accepted : 2014.05.27
  • Published : 2014.07.01

Abstract

A program of launch vehicle performance analysis is composed for the education of the conceptual design of launch vehicles and the requirement analysis for the propulsion system design. The program is applied for the mission analysis of space launch vehicles based on KSLV-II with liquid rocket boosters. The 75-ton class liquid rocket engine is assumed for the boosters by referring the mass ratio of KSLV-II second stage. The launch performance analysis is carried out for KSLV-II with 2, 3 and 4 boosters by targeting the circular orbit of 700 km altitude. The trajectory is assumed as two-dimension considering the variation of the flight environment. Payload of advanced KSLV-II could be increased to maximum 3 tons, though it is limited by the thrust performance of the upper stage.

발사체 개념설계 교육 및 추진기관 요구 분석에 활용을 목적으로 발사체 성능 해석 프로그램을 작성하였으며, 이를 이용하여 액체로켓 부스터를 장착한 한국형발사체의 성능해석을 수행하였다. 액체로켓 부스터의 성능은 75톤급 액체로켓엔진을 기본으로 하여 한국형발사체의 2단부 구조비를 참고하였다. 발사체의 성능해석은 700 km궤도를 목표로 부스터의 수를 2, 3, 4개로 늘려가며 분석하였다. 발사체 궤적은 비행환경을 고려한 2차원으로 가정하였다. 부스터를 장착하는 경우 탑재가능화물 무게는 3톤까지 증가함을 확인하였지만, 화물 능력은 상단부의 추력에 크게 제한받는 것으로 판단된다.

Keywords

References

  1. Choi, J.M., Lim, J.B., Park, J.H., "Trend and Prospect of Commercial Space Launch Vehicle Development and Korea Strategy on Global Space Launch Service Market Entry," The Journal of Aerospace Industry, 2013, pp. 53-65.
  2. Sutton, G.P., Rocket Propulsion Elements, 6th ed., John Wiley & Sons Inc., New Jersey, U.S.A., 2010.
  3. Fleeman, E.L., Tactical Missile Design, AIAA Inc., Virginia, 2001
  4. Oh, B.-S., Lee, J.H., Roh, W.-R., Joe, M., Park, J.-J., Cho, G.-R., "The Conceptual Design of Launch Vehicle," Journal of Korean Society for Aeronautical and Space Science, 2002, pp. 130-141. https://doi.org/10.5139/JKSAS.2002.30.6.130
  5. Noh, W. R., Cho, S. B., Sun, B. C., Choi, K. S., Jung, D. W., Park, C. S., Oh, J. S., and Park, T. H., "Mission and System Design Status of Korea Space Launch Vehicle-II succeeding Naro Launch Vehicle," Proceeding of the 2012 KSAS Fall Conference, TC2-2, 2012. pp. 233-239.

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  1. Conceptual Design of a Launch Vehicle for Lunar Exploration by Combining Naro-1 and KSLV-II vol.42, pp.8, 2014, https://doi.org/10.5139/JKSAS.2014.42.8.654
  2. Optimization Design of Space Launch Vehicle Using Genetic Algorithm vol.22, pp.4, 2018, https://doi.org/10.6108/KSPE.2018.22.4.001