题名 | Design controllable TPMS structures for solar thermal applications: A pore-scale vs. volume-averaged modeling approach |
作者 | |
通讯作者 | Lin,Meng |
发表日期 | 2023-02-01
|
DOI | |
发表期刊 | |
ISSN | 0017-9310
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EISSN | 1879-2189
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卷号 | 201 |
摘要 | The performance of solar energy conversion processes is largely dependent on the porous material which absorbs the irradiation, provides reaction sites, and facilitates mass transport. Porous media is the key energy conversion media in solar thermal/thermochemical conversion devices. The conventional way of fabricating porous structure shows limited flexibility in varying local morphology for better transport properties. The material structure optimization is hindered by the lack of methodology for precisely tuning material structure and lagged modeling framework to assess the structure-property relationship of designed materials. This structure-property relation can be further linked to the final conversion performance of receivers/reactors using such material. The triply periodic minimum surface (TPMS) structures are promising candidates due to their flexible lattice structure design, well-defined analytical expression, and easiness in anisotropic feature introduction. Moreover, the recent development of direct ceramic 3D printing technologies enables a unique route for the fabrication of gradient functional materials with complex structures. In this study, we focused on the quantification of TPMS structures’ transport properties with a case study to show their impact on the solar thermal conversion behavior. The identified effective properties were then used in a volume-averaged multi-physics model for the evaluation of an FKS structure under direct solar illuminations. This modeling framework offers a highfidelity numerical tool for the quantification of the link between porous material structure and their effective properties in solar thermal/thermochemical conversion applications. |
关键词 | |
相关链接 | [Scopus记录] |
收录类别 | |
语种 | 英语
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学校署名 | 通讯
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资助项目 | National Natural Science Foundation of China[52006097];
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WOS研究方向 | Thermodynamics
; Engineering
; Mechanics
|
WOS类目 | Thermodynamics
; Engineering, Mechanical
; Mechanics
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WOS记录号 | WOS:001017418200003
|
出版者 | |
EI入藏号 | 20224713140565
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EI主题词 | 3D printers
; Functional materials
; Morphology
; Solar energy
; Solar energy conversion
; Structural design
; Structural optimization
; Structural properties
; Transport properties
|
EI分类号 | Structural Design:408
; Structural Design, General:408.1
; Solar Energy and Phenomena:657.1
; Printing Equipment:745.1.1
; Optimization Techniques:921.5
; Physical Properties of Gases, Liquids and Solids:931.2
; Materials Science:951
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ESI学科分类 | ENGINEERING
|
Scopus记录号 | 2-s2.0-85141962752
|
来源库 | Scopus
|
引用统计 |
被引频次[WOS]:6
|
成果类型 | 期刊论文 |
条目标识符 | http://sustech.caswiz.com/handle/2SGJ60CL/415739 |
专题 | 工学院_机械与能源工程系 工学院_碳中和能源研究院 |
作者单位 | 1.Harbin Institute of Technology,Harbin,150001,China 2.Solar Energy Conversion and Utilization Laboratory,Department of Mechanical and Energy Engineering,Southern University of Science and Technology,Shenzhen,518055,China 3.SUSTech Energy Institute for Carbon Neutrality,Southern University of Science and Technology,Shenzhen,518055,China |
第一作者单位 | 机械与能源工程系; 碳中和能源研究院 |
通讯作者单位 | 机械与能源工程系; 碳中和能源研究院 |
推荐引用方式 GB/T 7714 |
Xu,Da,Lin,Meng. Design controllable TPMS structures for solar thermal applications: A pore-scale vs. volume-averaged modeling approach[J]. INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,2023,201.
|
APA |
Xu,Da,&Lin,Meng.(2023).Design controllable TPMS structures for solar thermal applications: A pore-scale vs. volume-averaged modeling approach.INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER,201.
|
MLA |
Xu,Da,et al."Design controllable TPMS structures for solar thermal applications: A pore-scale vs. volume-averaged modeling approach".INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER 201(2023).
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