IMECH-IR  > 先进制造工艺力学重点实验室
Inverse estimation of near-field temperature and surface heat flux via single point temperature measurement
Wu CW(吴臣武); Shu YH(舒永华); Xie JJ(谢季佳); Jiang JZ(蒋建政); Fan J(樊菁)
Source PublicationHEAT AND MASS TRANSFER
2017
Volume53Issue:2Pages:439-450
ISSN0947-7411
AbstractA concept was developed to inversely estimate the near-field temperature as well as the surface heat flux for the transient heat conduction problem with boundary condition of the unknown heat flux. The mathematical formula was derived for the inverse estimation of the near-field temperature and surface heat flux via a single point temperature measurement. The experiments were carried out in a vacuum chamber and the theoretically predicted temperatures were justified in specific positions. The inverse estimation principle was validated and the estimation deviation was evaluated for the present configuration.
DOI10.1007/s00231-016-1831-4
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Indexed BySCI ; EI
Language英语
WOS IDWOS:000392612900007
WOS Research AreaThermodynamics ; Mechanics
WOS SubjectThermodynamics ; Mechanics
Funding OrganizationThis work was supported by the National Natural Science Foundation of China (Grant No. 11332011 and No. 11572327). Thanks are also due to Dr. He-Ji Huang, Mr. She Chen and Mr. Hao-Lin Li, et al. for the assistance in conducting the experimental work.
DepartmentMAM表面与界面改性 ; LHD微尺度和非平衡流动 ; LNM实验平台
ClassificationQ3
Ranking1
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Document Type期刊论文
Identifierhttp://dspace.imech.ac.cn/handle/311007/60107
Collection先进制造工艺力学重点实验室
非线性力学国家重点实验室
高温气体动力学国家重点实验室
Recommended Citation
GB/T 7714
Wu CW,Shu YH,Xie JJ,et al. Inverse estimation of near-field temperature and surface heat flux via single point temperature measurement[J]. HEAT AND MASS TRANSFER,2017,53(2):439-450.
APA 吴臣武,舒永华,谢季佳,蒋建政,&樊菁.(2017).Inverse estimation of near-field temperature and surface heat flux via single point temperature measurement.HEAT AND MASS TRANSFER,53(2),439-450.
MLA 吴臣武,et al."Inverse estimation of near-field temperature and surface heat flux via single point temperature measurement".HEAT AND MASS TRANSFER 53.2(2017):439-450.
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