TECHNICAL PAPERS
References
Lee, K.O., Kim, D.J., Park, S.Y. and Lee, K., “An Analysis of Stretegies of Engine Development of SpaceX,” The Fall Conference of The Korean Society of Propulsion Engineers, Busan, Korea, pp. 249-257, Dec. 2018.
Lee, K.O., “An Analysis of Launch Vehicle Development Stretagy of SpaceX,” Journal of the Korean Society of Propulsion Engineers, Vol. 23, No. 6, pp. 72-86, 2019.
10.6108/KSPE.2019.23.6.072Lee, K.O., Lee, J., Park, S.Y., Roh, W.R., Im, S.H., Nam, G.W. and Seo, D., “Korean Reusable Launch Vehicle Development Strategy using SpaceX’s Strategy,” Journal of the Korean Society of Propulsion Engineers, Vol. 25, No. 3, pp. 101-112, 2021.
10.6108/KSPE.2021.25.3.101Lee, K.O., Seo, D., Lim, B., Lee, J., Park, J., Choi, S. and Lee, K., “Falcon 9 Type Korean RLV and GTO-LV Mission Design,” Journal of the Korean Society of Propulsion Engineers, Vol. 26, No. 3, pp. 32-42, 2022.
10.6108/KSPE.2022.26.3.032Lee, K.O., Seo, D. and Lee, J., “Comparison of Economic Feasibility of Falcon 9 Type Methane Launch Vehicle and Kerosene Launch Vehicle,” The Fall Conference of The Korean Society for Aeronautical and Space Sciences, Jeju, Korea, pp. 438-439, Nov. 2022.
“Staged combustion cycle,” retrieved 20 March. 2024 from https://en.wikipedia.org/wiki/Staged_combustion_cycle
“U.S. rocket propulsion company URSA MAJOR announces new engine to displace now unavailable Russian-made propulsion sources,” retrieved 20 March. 2024 from https://www.ursamajor.com/media/press-release/ursa-major-announces-heavy-launch-rocket-engine-arroway
“RD0177,” retrieved 20 March. 2024 from https://kbkha.ru/deyatel-nost/raketnye-dvigateli-ao-kbha/rd0177/
“Prometheus engine,” retrieved 20 March. 2024 from https://www.ariane.group/wp-content/uploads/2020/06/Prometheus_2020_05_DS_EN_Web.pdf
Kim, C.W. and Park, J.S., “Comparison and Characteristics of Various Staged Combustion Cycles of Liquid Rocket Engine”, The Fall Conference of The Korean Society of Propulsion Engineers, Busan, 2022.
Dietrich, E.K., Handbook of Cost Engineering and Design of Space Transportation Systems, 8.2 ed., TCS-TR-200, TransCostSystems (TCS), Ottobrunn Germany, 2013.
Drenthe, N.T., SOLSTICE: Small Orbital Launch Systems, a Tentative Initial Cost Estimate, TU Delft, 2016.
Vera-Cruz, G., Reliability and Cost Modeling of Reusable Launch Vehicles: Predicting, Preventing and Mitigating the Cost of Failure, TU Delft, 2022.
Choi, S.H., Lee, K. and Lim, S.H., “Cost Estimation of Small-Lift Launchers using TransCost and SOLSTICE,” The Spring Conference of The Korean Society of Propulsion Engineers, Jeju, Korea, pp. 99-111, May 2022.
“Russia will cut space launch prices by 30 percent in response to SpaceX predatory pricing,” retrieved 12 Apr. 2020 from https://www.spacedaily.com/reports/Russia_will_cut_space_launch_prices_by_30_percent_in_response_to_SpaceX_predatory_pricing_999.html
“SpaceX: Elon Musk breaks down the cost of reusable rockets,” retrieved 21 Aug. 2020 from https://www.inverse.com/innovation/spacex-elon-musk-falcon-9-economics.
“SpaceX: Elon Musk breaks down the cost of reusable rockets,” retrieved 21 Aug. 2020 from https://www.inverse.com/innovation/spacex-elon-musk-falcon-9-economics.
- Publisher :The Korean Society of Propulsion Engineers
- Publisher(Ko) :한국추진공학회
- Journal Title :Journal of the Korean Society of Propulsion Engineers
- Journal Title(Ko) :한국추진공학회지
- Volume : 28
- No :2
- Pages :83-96
- Received Date : 2023-12-06
- Revised Date : 2024-03-25
- Accepted Date : 2024-03-28
- DOI :https://doi.org/10.6108/KSPE.2024.28.2.083


Journal of the Korean Society of Propulsion Engineers








