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Sökning: id:"swepub:oai:DiVA.org:mdh-65199" > Melting-solidificat...

Melting-solidification cycle of finned heat storage tank : Optimization of fin structure by response surface method

Du, Z. (författare)
Institute of the Building Environment & Sustainability Technology, School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, 710049, China
Huang, X. (författare)
Institute of the Building Environment & Sustainability Technology, School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, 710049, China
Li, Y. (författare)
Institute of the Building Environment & Sustainability Technology, School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, 710049, China
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Yang, X. (författare)
Institute of the Building Environment & Sustainability Technology, School of Human Settlements and Civil Engineering, Xi'an Jiaotong University, Xi'an, 710049, China
Li, Hailong, 1976- (författare)
Mälardalens universitet,Framtidens energi
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 (creator_code:org_t)
Elsevier Ltd, 2023
2023
Engelska.
Ingår i: Case Studies in Thermal Engineering. - : Elsevier Ltd. - 2214-157X. ; 52
  • Tidskriftsartikel (refereegranskat)
Abstract Ämnesord
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  • The impact of the enhanced heat transfer performance of longitudinal fins on the entire process of melting and solidification in a phase change heat storage unit is investigated through experiments and numerical simulations in this paper. The position and structure of the longitudinal fins are optimized by using the response surface method while ensuring that the total volume of the heat storage medium remains unchanged. Studies have identified that some challenging zones in melting and solidification significantly impact the heat transfer of the entire heat storage cycle. Specifically, the challenging zone in melting primarily exists in the lower part of the unit during the charing process, while the challenging zone in solidification is mainly distributed around the unit during the discharging process. Through optimization, the optimized structure (fin spacing is 22.5 mm, fin width is 6.05 mm) can reduce the charging and discharging time by 16.94 % and 45.90 %, respectively. Additionally, the round trip time is significantly reduced by 39.19 %, and the mean heat absorption rate during the melting process is enhanced by 20.28 %. Moreover, the mean heat release rate during solidification is enhanced by 80.23 %.

Ämnesord

TEKNIK OCH TEKNOLOGIER  -- Maskinteknik -- Energiteknik (hsv//swe)
ENGINEERING AND TECHNOLOGY  -- Mechanical Engineering -- Energy Engineering (hsv//eng)

Nyckelord

Latent heat energy storage
Melting-solidification process
Optimal design
Temperature response
Fins (heat exchange)
Heat storage
Heat transfer
Melting
Structural optimization
Surface properties
Heat storage tanks
Longitudinal fin
Melting and solidification
Optimisations
Response surfaces methods
Solidification process
Solidification

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Av författaren/redakt...
Du, Z.
Huang, X.
Li, Y.
Yang, X.
Li, Hailong, 197 ...
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TEKNIK OCH TEKNOLOGIER
TEKNIK OCH TEKNO ...
och Maskinteknik
och Energiteknik
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Mälardalens universitet

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