Analysis of Energy Utilization for Chemical Rockets

被引:3
|
作者
Riggins, David W. [1 ]
Abbas, Mohammad [1 ]
Wainwright, Mitchell [1 ]
Camberos, Jose [2 ,3 ]
机构
[1] Missouri Univ Sci & Technol, Dept Mech & Aerosp Engn, Rolla, MO 65409 USA
[2] US Air Force Res Lab, Dayton, OH 45433 USA
[3] Aerosp Syst Hyperson, Aerosp Syst Directorate, High Speed Syst Div, Wright Patterson AFB, OH USA
关键词
3-DIMENSIONAL FLOWFIELD COMPUTATIONS; PERFORMANCE ASSESSMENT; HYPERSONIC ENGINES; WAKE INTEGRATION; EXERGY ANALYSIS; THRUST LOSSES; VEHICLES; METHODOLOGY;
D O I
10.2514/1.A34296
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
Methodology is developed for the comprehensive analysis and quantification of energy utilization in chemical rockets, based on the overall thermochemical and kinetic energy availability of the stored propellant. The energy utilization balances for both single- and two-stage rockets operating in a gravitational field and with external atmospheric drag are derived and discussed in terms of contributors to that balance, including irreversibility occurring in the rocket engine and external to the vehicle, work required to lift expended propellant to altitude, and the productive utilization of energy as realized by kinetic and potential energy changes achieved by the final rocket mass. For multiple-stage systems, additional contributors are the energy utilizations associated with kinetic and potential energies of discarded structural masses at staging. The energy utilization balance can be tracked in time through a given mission. Calculation of the thermochemical availability for chemical rockets necessary for a complete thermodynamic analysis of energy utilization is described. A case study for first- and second-stage operations of the legacy Saturn V access-to-space launch vehicle using Apollo 11 data is performed. Details of the time evolution and final balance of energy utilization are provided for this system using the methodology developed.
引用
收藏
页码:695 / 707
页数:13
相关论文
共 50 条
  • [31] Analysis of Energy Utilization Efficiency of Integrated Energy System
    Ye, Jianmin
    Wang, Qingwei
    Wang, Yongli
    Huang, Feifei
    Ma, Yang
    Ma, Yuze
    Dong, Huanran
    Song, Fuhao
    2020 6TH INTERNATIONAL CONFERENCE ON ADVANCES IN ENERGY, ENVIRONMENT AND CHEMICAL ENGINEERING, PTS 1-5, 2020, 546
  • [33] ABOUT THE ANALYSIS OF THE ENERGY-UTILIZATION
    RONNEBECK, G
    BACKER UND KONDITOR, 1980, 34 (09): : 259 - 260
  • [34] Utilization of daylighting and energy saving analysis
    Chen, Hongbing
    Tu, Guangbei
    Chan, K.T.
    Taiyangneng Xuebao/Acta Energiae Solaris Sinica, 2004, 25 (04): : 515 - 518
  • [35] Dynamic analysis of rockets launcher
    Vujic, Dragoljub
    Djurkovic, Vlado
    Milenkovic, Nikola
    Trajkovic, Slavisa
    Tehnicki Vjesnik, 2021, 28 (02): : 530 - 539
  • [36] Discussion on the Analysis of Biomass Energy Utilization
    Wang, Haiyang
    2018 4TH INTERNATIONAL CONFERENCE ON ENVIRONMENTAL SCIENCE AND MATERIAL APPLICATION, 2019, 252
  • [37] Chemical cars: Baking soda rockets and geriatric turtles
    McGuire, NK
    CHEMICAL INNOVATION, 2001, 31 (03): : 48 - 49
  • [38] UTILIZATION OF ELECTRON-ENERGY LOSSES FOR LOCAL CHEMICAL-ANALYSIS WITH RESPECT TO ELECTRON-MICROSCOPY
    JOUFFREY, B
    SEVELY, J
    REVUE DE PHYSIQUE APPLIQUEE, 1976, 11 (01): : 101 - 111
  • [39] Harvest and utilization of chemical energy in wastes by microbial fuel cells
    Sun, Min
    Zhai, Lin-Feng
    Li, Wen-Wei
    Yu, Han-Qing
    CHEMICAL SOCIETY REVIEWS, 2016, 45 (10) : 2847 - 2870
  • [40] EFFECT OF CHEMICAL AND PHYSICAL PROPERTIES OF PHOSPHATES ON ENERGY UTILIZATION BY CHICKS
    NELSON, TS
    MILES, RD
    POULTRY SCIENCE, 1973, 52 (02) : 481 - 485