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模拟高速飞行器服役环境下的热发电系统研究

陈亚楠 李波 于鹏

集成技术2025,Vol.14Issue(6):77-87,11.
集成技术2025,Vol.14Issue(6):77-87,11.DOI:10.12146/j.issn.2095-3135.20250802001

模拟高速飞行器服役环境下的热发电系统研究

Research on Thermal Power Generation System in Simulated Service Environment of High Speed Aircraft

陈亚楠 1李波 1于鹏1

作者信息

  • 1. 北京空天技术研究所 北京 100074||空天飞行技术全国重点实验室 北京 100074||空天科技发展(河北雄安)有限责任公司 雄安 070001
  • 折叠

摘要

Abstract

High-speed aircrafts belong to the future aircraft with significant disruptive significance,and energy is the key technology for high-speed aircraft.Thermoelectric power generation technology based on semiconductors is expected to achieve lightweight energy devices for high-speed aircraft.In response to the key issues of thermal/energy management for high-speed aircraft and the demands for high specific power and high specific energy,driven by the highly lightweight,integrated and integrated design requirements for structures and equipment proposed by high-speed aircraft,research on the integration technology of lightweight and efficient thermal insulation and heat dissipation materials and thermoelectric devices was carried out.The design of the integrated prototype scheme of the thermoelectric power generation system and the development of the principle prototype were accomplished.The thermal performance test of the integrated device under the ground simulation heating environment was designed and carried out.The results show that under the temperature difference of around 275℃,the maximum output power of the thermoelectric power generation system integrated prototype is 103.9 W,the maximum system conversion efficiency is 7.4%,and the stable power generation is not less than 1800 s.

关键词

高速飞行器/热电器件/热发电系统/集成样机

Key words

high speed aircraft/thermoelectric device/thermal power generation system/integrated prototype

分类

信息技术与安全科学

引用本文复制引用

陈亚楠,李波,于鹏..模拟高速飞行器服役环境下的热发电系统研究[J].集成技术,2025,14(6):77-87,11.

基金项目

国家重点研发计划项目(2018YFA0702100) This work is supported by National Key Research and Development Program of China(2018YFA0702100) (2018YFA0702100)

集成技术

2095-3135

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