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Optimization of wick structure is an important method to improve the flow and heat transfer performance of flat heat pipe. For the design of wick structures, the method of designing high performance wick structures was revealed, and guidance was provided for the selection and application of macromeso-micro multiscale numerical model. For wick surface modification, the importance to improve nanostructure mechanical stability, adjust heat transfer mechanism and carry out numerical simulation research was emphasized. To solve the problems of heat dissipation and high radiation in space environment, the development directions of flat heat pipe in spacecraft thermal control were figured out, and the shortcomings of current research were analyzed., authors=LENG Yakun1 , ZHANG Xu2 , ZHEN Hualong1 , LIU Yingchun2 , WANG Zhongqi1 , PU Liang1 , authorsList=LENG Yakun, ZHANG Xu, ZHEN Hualong, LIU Yingchun, WANG Zhongqi, PU Liang, authorCompany=1. 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科技导报
| 专题:热管理技术及应用 2024, 42(24): 46-57
平板热管性能优化及其在航天热控中的应用进展
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冷亚坤1 , 张旭2 , 甄华龙1 , 刘迎春2 , 王仲琦1 , 蒲亮1
作者信息
1. 西安交通大学能源与动力工程学院, 西安 710049; 2. 中国科学院上海微小卫星工程中心, 上海 201304
Application and development of flat heat pipe in spacecraft thermal control
Affiliations
出版时间: 2024-12-28
doi: 10.3981/j.issn.1000-7857.2023.06.00912
文章导航
平板热管具有传热效率高、均温性好、安全可靠等优点,已成为航天器热控的重要途径之一。吸液芯结构优化是提高平板热管流动传热性能的主要方式。在吸液芯结构设计方面,综述了高性能吸液芯结构设计方法,并分析了宏观-介观-微观多尺度数值模型的选择和应用。在吸液芯表面改性方面,探讨了提高纳米结构机械稳定性、调整传热机制和开展数值模拟研究的重要性。针对太空环境下高辐射和散热困难难题,展望了平板热管在航天器热控中的发展方向。
平板热管
/
吸液芯
/
结构优化
/
多尺度
/
数值模型
Flat heat pipe, due to its advantages of high heat transfer efficiency, great temperature uniformity, and safety and reliability, has become one of the important options for spacecraft thermal control. Optimization of wick structure is an important method to improve the flow and heat transfer performance of flat heat pipe. For the design of wick structures, the method of designing high performance wick structures was revealed, and guidance was provided for the selection and application of macromeso-micro multiscale numerical model. For wick surface modification, the importance to improve nanostructure mechanical stability, adjust heat transfer mechanism and carry out numerical simulation research was emphasized. To solve the problems of heat dissipation and high radiation in space environment, the development directions of flat heat pipe in spacecraft thermal control were figured out, and the shortcomings of current research were analyzed.
flat heat pipe
/
wick
/
structural optimization
/
multiscale
/
numerical model
冷亚坤, 张旭, 甄华龙, 刘迎春, 王仲琦, 蒲亮.
平板热管性能优化及其在航天热控中的应用进展.
科技导报,
2024
, 42
(24)
: 46
-57
.
DOI: 10.3981/j.issn.1000-7857.2023.06.00912
LENG Yakun, ZHANG Xu, ZHEN Hualong, LIU Yingchun, WANG Zhongqi, PU Liang.
Application and development of flat heat pipe in spacecraft thermal control[J].
Science & Technology Review ,
2024
, 42
(24)
: 46
-57
.
DOI: 10.3981/j.issn.1000-7857.2023.06.00912
2024年第42卷第24期
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文章信息
doi: 10.3981/j.issn.1000-7857.2023.06.00912
接收时间:2023-06-14
首发时间:2025-01-15
出版时间:2024-12-28
收稿日期:2023-06-14
修回日期:2023-12-07
https://castjournals.cast.org.cn/joweb/kjdb/CN/10.3981/j.issn.1000-7857.2023.06.00912
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2种不同金属材料的力学参数
科 Family 属数 Number of genus 种数 Number of species 占总种数比例 Percentage of total species (%) 属 Genus 种数 Number of species 占总种数比例 Percentage of total species (%) 鹅膏菌科Amanitaceae 2 11 5.26 鹅膏菌属 Amanita 10 4.78 小菇科 Mycenaceae 2 12 5.74 丝盖伞属 Inocybe 5 2.39 多孔菌科 Polyporaceae 8 14 6.70 蜡蘑属 Laccaria 5 2.39 红菇科 Russulaceae 3 23 11.00 小皮伞属 Marasmius 6 2.87 小菇属 Mycena 11 5.26 光柄菇属 Pluteus 5 2.39 红菇属 Russula 17 8.13 栓菌属 Trametes 5 2.39
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