Matches in SemOpenAlex for { <https://semopenalex.org/work/W3032071472> ?p ?o ?g. }
- W3032071472 endingPage "106494" @default.
- W3032071472 startingPage "106494" @default.
- W3032071472 abstract "Herein, a net-based topology optimization approach for cooling channels is presented, which helps to make a balance between power dissipation, thermal stress and temperature limitation in forced internal cooling problems with approximate but fast and low-cost calculations. The topology optimization procedure consists of a discrete based flow and heat coupling analysis, the flow analysis by the improved pipe-net calculation, as well as the genetic algorithm (GA). The channel sizes are used as optimization variables in the GA to achieve optimization in terms of the size and topology structure of the cooling region. Numerical simulation is carried out to validate the proposed model's applicability in topology optimization for cooling channels. A comparative study illustrates that different optimization objectives lead to varying topology features and this approach can obtain a complicated and fine optimization result within a relatively short time. Moreover, the optimization results can significantly reduce the maximum temperature and temperature distribution nonuniformity of the heating surface with a lower pressure drop." @default.
- W3032071472 created "2020-06-05" @default.
- W3032071472 creator A5066708654 @default.
- W3032071472 creator A5078872109 @default.
- W3032071472 creator A5087393727 @default.
- W3032071472 date "2020-10-01" @default.
- W3032071472 modified "2023-10-18" @default.
- W3032071472 title "Net-based topology optimization approach for cooling channels" @default.
- W3032071472 cites W1965791127 @default.
- W3032071472 cites W1973282871 @default.
- W3032071472 cites W1975063788 @default.
- W3032071472 cites W1996065861 @default.
- W3032071472 cites W2004518241 @default.
- W3032071472 cites W2004945242 @default.
- W3032071472 cites W2021939682 @default.
- W3032071472 cites W2034034480 @default.
- W3032071472 cites W2057082485 @default.
- W3032071472 cites W2066415725 @default.
- W3032071472 cites W2068668671 @default.
- W3032071472 cites W2069697210 @default.
- W3032071472 cites W2076268118 @default.
- W3032071472 cites W2079860436 @default.
- W3032071472 cites W2083756736 @default.
- W3032071472 cites W2089593572 @default.
- W3032071472 cites W2090997360 @default.
- W3032071472 cites W2092771588 @default.
- W3032071472 cites W2092801729 @default.
- W3032071472 cites W2119231508 @default.
- W3032071472 cites W2128876590 @default.
- W3032071472 cites W2143163345 @default.
- W3032071472 cites W2146674345 @default.
- W3032071472 cites W2181453853 @default.
- W3032071472 cites W2208260034 @default.
- W3032071472 cites W2220999736 @default.
- W3032071472 cites W2284703169 @default.
- W3032071472 cites W2511841581 @default.
- W3032071472 cites W2518445019 @default.
- W3032071472 cites W2753018752 @default.
- W3032071472 cites W2765326612 @default.
- W3032071472 cites W2766645376 @default.
- W3032071472 cites W2788109773 @default.
- W3032071472 cites W2796278176 @default.
- W3032071472 cites W2884605725 @default.
- W3032071472 cites W2895819062 @default.
- W3032071472 cites W2900218561 @default.
- W3032071472 cites W2913334312 @default.
- W3032071472 cites W2972546660 @default.
- W3032071472 cites W804192014 @default.
- W3032071472 doi "https://doi.org/10.1016/j.ijthermalsci.2020.106494" @default.
- W3032071472 hasPublicationYear "2020" @default.
- W3032071472 type Work @default.
- W3032071472 sameAs 3032071472 @default.
- W3032071472 citedByCount "7" @default.
- W3032071472 countsByYear W30320714722021 @default.
- W3032071472 countsByYear W30320714722022 @default.
- W3032071472 countsByYear W30320714722023 @default.
- W3032071472 crossrefType "journal-article" @default.
- W3032071472 hasAuthorship W3032071472A5066708654 @default.
- W3032071472 hasAuthorship W3032071472A5078872109 @default.
- W3032071472 hasAuthorship W3032071472A5087393727 @default.
- W3032071472 hasConcept C114088122 @default.
- W3032071472 hasConcept C114614502 @default.
- W3032071472 hasConcept C121332964 @default.
- W3032071472 hasConcept C126255220 @default.
- W3032071472 hasConcept C131584629 @default.
- W3032071472 hasConcept C135628077 @default.
- W3032071472 hasConcept C137836250 @default.
- W3032071472 hasConcept C163258240 @default.
- W3032071472 hasConcept C184720557 @default.
- W3032071472 hasConcept C189216461 @default.
- W3032071472 hasConcept C191897082 @default.
- W3032071472 hasConcept C192562407 @default.
- W3032071472 hasConcept C33923547 @default.
- W3032071472 hasConcept C41008148 @default.
- W3032071472 hasConcept C57879066 @default.
- W3032071472 hasConcept C97355855 @default.
- W3032071472 hasConceptScore W3032071472C114088122 @default.
- W3032071472 hasConceptScore W3032071472C114614502 @default.
- W3032071472 hasConceptScore W3032071472C121332964 @default.
- W3032071472 hasConceptScore W3032071472C126255220 @default.
- W3032071472 hasConceptScore W3032071472C131584629 @default.
- W3032071472 hasConceptScore W3032071472C135628077 @default.
- W3032071472 hasConceptScore W3032071472C137836250 @default.
- W3032071472 hasConceptScore W3032071472C163258240 @default.
- W3032071472 hasConceptScore W3032071472C184720557 @default.
- W3032071472 hasConceptScore W3032071472C189216461 @default.
- W3032071472 hasConceptScore W3032071472C191897082 @default.
- W3032071472 hasConceptScore W3032071472C192562407 @default.
- W3032071472 hasConceptScore W3032071472C33923547 @default.
- W3032071472 hasConceptScore W3032071472C41008148 @default.
- W3032071472 hasConceptScore W3032071472C57879066 @default.
- W3032071472 hasConceptScore W3032071472C97355855 @default.
- W3032071472 hasLocation W30320714721 @default.
- W3032071472 hasOpenAccess W3032071472 @default.
- W3032071472 hasPrimaryLocation W30320714721 @default.
- W3032071472 hasRelatedWork W1920374470 @default.
- W3032071472 hasRelatedWork W2121940324 @default.
- W3032071472 hasRelatedWork W2218068969 @default.