Matches in SemOpenAlex for { <https://semopenalex.org/work/W3132096474> ?p ?o ?g. }
- W3132096474 endingPage "105127" @default.
- W3132096474 startingPage "105127" @default.
- W3132096474 abstract "We present numerical models to account for the transient free convection in the melted phase and heat transfer in porous foams filled in cavities with various aspect ratios. A visualization test-bed is set up, allowing for observing the solid-liquid interface and measuring internal temperature distribution. Simulation results are analyzed in terms of the melting rate, flow streamline and phase interface, temperature response, heat storage capacity and heat transfer performance. It is found that for a given aspect ratio, the inclination of the heating surface has a negligible influence on the melting rate, temperature uniformity, temperature response, and energy storage capacity for phase change materials in metal foam. However, for different aspect ratios, the case with a smaller aspect ratio (AR = 0.1) outperforms the one with a bigger ratio (AR = 8.0): a 4.96 and 15.85 times higher temperature uniformity and temperature response are achieved." @default.
- W3132096474 created "2021-03-01" @default.
- W3132096474 creator A5011175790 @default.
- W3132096474 creator A5040523461 @default.
- W3132096474 creator A5055136738 @default.
- W3132096474 creator A5057027283 @default.
- W3132096474 creator A5058447280 @default.
- W3132096474 creator A5076612953 @default.
- W3132096474 date "2021-03-01" @default.
- W3132096474 modified "2023-10-01" @default.
- W3132096474 title "Influence of aspect ratios for a tilted cavity on the melting heat transfer of phase change materials embedded in metal foam" @default.
- W3132096474 cites W1680626636 @default.
- W3132096474 cites W1748899687 @default.
- W3132096474 cites W1965647309 @default.
- W3132096474 cites W1966238553 @default.
- W3132096474 cites W1966790574 @default.
- W3132096474 cites W1983187797 @default.
- W3132096474 cites W1993778776 @default.
- W3132096474 cites W1999844787 @default.
- W3132096474 cites W2031886186 @default.
- W3132096474 cites W2046552811 @default.
- W3132096474 cites W2049154686 @default.
- W3132096474 cites W2049683272 @default.
- W3132096474 cites W2062533124 @default.
- W3132096474 cites W2064665286 @default.
- W3132096474 cites W2064982060 @default.
- W3132096474 cites W2083191003 @default.
- W3132096474 cites W2093783731 @default.
- W3132096474 cites W2099807199 @default.
- W3132096474 cites W2121837178 @default.
- W3132096474 cites W2143912722 @default.
- W3132096474 cites W2195103862 @default.
- W3132096474 cites W2543322715 @default.
- W3132096474 cites W2616354302 @default.
- W3132096474 cites W2754301738 @default.
- W3132096474 cites W2761823034 @default.
- W3132096474 cites W2767190330 @default.
- W3132096474 cites W2773361201 @default.
- W3132096474 cites W2779712381 @default.
- W3132096474 cites W2809423217 @default.
- W3132096474 cites W2910228930 @default.
- W3132096474 cites W2943488695 @default.
- W3132096474 cites W2944602173 @default.
- W3132096474 cites W2952904361 @default.
- W3132096474 cites W2962777839 @default.
- W3132096474 cites W2963340924 @default.
- W3132096474 cites W2982031675 @default.
- W3132096474 cites W2991108639 @default.
- W3132096474 cites W2994729310 @default.
- W3132096474 cites W2996936554 @default.
- W3132096474 cites W2998858836 @default.
- W3132096474 cites W3005346678 @default.
- W3132096474 cites W3005857912 @default.
- W3132096474 cites W3012900875 @default.
- W3132096474 cites W3016341705 @default.
- W3132096474 cites W3016996316 @default.
- W3132096474 cites W3018581690 @default.
- W3132096474 cites W3026145169 @default.
- W3132096474 cites W3045337047 @default.
- W3132096474 cites W3082096295 @default.
- W3132096474 cites W3082195942 @default.
- W3132096474 cites W3083090764 @default.
- W3132096474 doi "https://doi.org/10.1016/j.icheatmasstransfer.2021.105127" @default.
- W3132096474 hasPublicationYear "2021" @default.
- W3132096474 type Work @default.
- W3132096474 sameAs 3132096474 @default.
- W3132096474 citedByCount "46" @default.
- W3132096474 countsByYear W31320964742021 @default.
- W3132096474 countsByYear W31320964742022 @default.
- W3132096474 countsByYear W31320964742023 @default.
- W3132096474 crossrefType "journal-article" @default.
- W3132096474 hasAuthorship W3132096474A5011175790 @default.
- W3132096474 hasAuthorship W3132096474A5040523461 @default.
- W3132096474 hasAuthorship W3132096474A5055136738 @default.
- W3132096474 hasAuthorship W3132096474A5057027283 @default.
- W3132096474 hasAuthorship W3132096474A5058447280 @default.
- W3132096474 hasAuthorship W3132096474A5076612953 @default.
- W3132096474 hasConcept C10899652 @default.
- W3132096474 hasConcept C121332964 @default.
- W3132096474 hasConcept C133256868 @default.
- W3132096474 hasConcept C159985019 @default.
- W3132096474 hasConcept C178790620 @default.
- W3132096474 hasConcept C185592680 @default.
- W3132096474 hasConcept C192562407 @default.
- W3132096474 hasConcept C2778119658 @default.
- W3132096474 hasConcept C44280652 @default.
- W3132096474 hasConcept C47519245 @default.
- W3132096474 hasConcept C50517652 @default.
- W3132096474 hasConcept C54791560 @default.
- W3132096474 hasConcept C57879066 @default.
- W3132096474 hasConcept C6648577 @default.
- W3132096474 hasConcept C82558694 @default.
- W3132096474 hasConcept C97355855 @default.
- W3132096474 hasConceptScore W3132096474C10899652 @default.
- W3132096474 hasConceptScore W3132096474C121332964 @default.
- W3132096474 hasConceptScore W3132096474C133256868 @default.
- W3132096474 hasConceptScore W3132096474C159985019 @default.
- W3132096474 hasConceptScore W3132096474C178790620 @default.