In previous chapters, the secondary concentrator, absorption cavity, heat exchanger core, and nozzle of the solar thermal propulsion (STP) system are integratedly designed, and regenerative cooling and laminated heat exchange technologies are used to effectively combine these components. This chapter analyzes the overall efficiency of the STP system and uses quantum genetic algorithms to perform a multiobjective optimization for space missions.

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Integrated Design of Solar Thermal Propulsion and Task Optimization

  • Minchao Huang,
  • Jianjun Wu,
  • Jian Li,
  • Yuqiang Cheng

摘要

In previous chapters, the secondary concentrator, absorption cavity, heat exchanger core, and nozzle of the solar thermal propulsion (STP) system are integratedly designed, and regenerative cooling and laminated heat exchange technologies are used to effectively combine these components. This chapter analyzes the overall efficiency of the STP system and uses quantum genetic algorithms to perform a multiobjective optimization for space missions.