Matches in SemOpenAlex for { <https://semopenalex.org/work/W2003803108> ?p ?o ?g. }
- W2003803108 endingPage "737" @default.
- W2003803108 startingPage "724" @default.
- W2003803108 abstract "Abstract A very common problem in solar power generation plants and various other industrial processes is the existing gap between the period of thermal energy availability and its period of usage. This situation creates the need for an effective method by which excess heat can be stored for later use. Latent heat thermal energy storage is one of the most efficient ways of storing thermal energy through which the disparity between energy production or availability and consumption can be corrected, thus avoiding wastage and increasing the process efficiency. This paper reviews a series of phase change materials, mainly inorganic salt compositions and metallic alloys, which could potentially be used as storage media in a high temperature (above 300 °C) latent heat storage system, seeking to serve the reader as a comprehensive thermophysical properties database to facilitate the material selection task for high temperature applications. Widespread utilization of latent heat storage systems has been held back by the poor thermal conductivity and some other inherent drawbacks of the use of PCMs; this paper reviews several heat transfer and performance enhancement techniques proposed in the literature and discusses a number of design considerations that must be taken into account aiming to provide a broad overview for the design of high temperature latent heat based thermal energy storage systems." @default.
- W2003803108 created "2016-06-24" @default.
- W2003803108 creator A5005843435 @default.
- W2003803108 creator A5036100100 @default.
- W2003803108 date "2013-11-01" @default.
- W2003803108 modified "2023-10-04" @default.
- W2003803108 title "High temperature latent heat thermal energy storage: Phase change materials, design considerations and performance enhancement techniques" @default.
- W2003803108 cites W1670591183 @default.
- W2003803108 cites W1965505767 @default.
- W2003803108 cites W1968671164 @default.
- W2003803108 cites W1969048057 @default.
- W2003803108 cites W1972203805 @default.
- W2003803108 cites W1974287801 @default.
- W2003803108 cites W1975227800 @default.
- W2003803108 cites W1975240629 @default.
- W2003803108 cites W1985581419 @default.
- W2003803108 cites W1988149977 @default.
- W2003803108 cites W1990349392 @default.
- W2003803108 cites W1992434813 @default.
- W2003803108 cites W1994083864 @default.
- W2003803108 cites W1999254850 @default.
- W2003803108 cites W1999921012 @default.
- W2003803108 cites W2008819652 @default.
- W2003803108 cites W2009166330 @default.
- W2003803108 cites W2014871558 @default.
- W2003803108 cites W2017579366 @default.
- W2003803108 cites W2025279721 @default.
- W2003803108 cites W2025516135 @default.
- W2003803108 cites W2026767219 @default.
- W2003803108 cites W2031470336 @default.
- W2003803108 cites W2037340113 @default.
- W2003803108 cites W2039670364 @default.
- W2003803108 cites W2040999692 @default.
- W2003803108 cites W2043481477 @default.
- W2003803108 cites W2044139275 @default.
- W2003803108 cites W2050779718 @default.
- W2003803108 cites W2050919152 @default.
- W2003803108 cites W2052737636 @default.
- W2003803108 cites W2056074029 @default.
- W2003803108 cites W2063510789 @default.
- W2003803108 cites W2068123987 @default.
- W2003803108 cites W2070197492 @default.
- W2003803108 cites W2071601377 @default.
- W2003803108 cites W2075409469 @default.
- W2003803108 cites W2078623619 @default.
- W2003803108 cites W2079827834 @default.
- W2003803108 cites W2082100976 @default.
- W2003803108 cites W2086345879 @default.
- W2003803108 cites W2086491174 @default.
- W2003803108 cites W2088570576 @default.
- W2003803108 cites W2092812805 @default.
- W2003803108 cites W2092826425 @default.
- W2003803108 cites W2098737116 @default.
- W2003803108 cites W2102958527 @default.
- W2003803108 cites W2122690837 @default.
- W2003803108 cites W2126738674 @default.
- W2003803108 cites W2128663603 @default.
- W2003803108 cites W2147997303 @default.
- W2003803108 cites W2151080396 @default.
- W2003803108 cites W2154240424 @default.
- W2003803108 cites W2163755005 @default.
- W2003803108 cites W2325101416 @default.
- W2003803108 cites W2329868591 @default.
- W2003803108 cites W2526241047 @default.
- W2003803108 cites W4246798162 @default.
- W2003803108 doi "https://doi.org/10.1016/j.rser.2013.07.028" @default.
- W2003803108 hasPublicationYear "2013" @default.
- W2003803108 type Work @default.
- W2003803108 sameAs 2003803108 @default.
- W2003803108 citedByCount "347" @default.
- W2003803108 countsByYear W20038031082014 @default.
- W2003803108 countsByYear W20038031082015 @default.
- W2003803108 countsByYear W20038031082016 @default.
- W2003803108 countsByYear W20038031082017 @default.
- W2003803108 countsByYear W20038031082018 @default.
- W2003803108 countsByYear W20038031082019 @default.
- W2003803108 countsByYear W20038031082020 @default.
- W2003803108 countsByYear W20038031082021 @default.
- W2003803108 countsByYear W20038031082022 @default.
- W2003803108 countsByYear W20038031082023 @default.
- W2003803108 crossrefType "journal-article" @default.
- W2003803108 hasAuthorship W2003803108A5005843435 @default.
- W2003803108 hasAuthorship W2003803108A5036100100 @default.
- W2003803108 hasConcept C116915560 @default.
- W2003803108 hasConcept C121332964 @default.
- W2003803108 hasConcept C127413603 @default.
- W2003803108 hasConcept C133256868 @default.
- W2003803108 hasConcept C163258240 @default.
- W2003803108 hasConcept C183287310 @default.
- W2003803108 hasConcept C192562407 @default.
- W2003803108 hasConcept C204530211 @default.
- W2003803108 hasConcept C21880701 @default.
- W2003803108 hasConcept C2778119658 @default.
- W2003803108 hasConcept C39432304 @default.
- W2003803108 hasConcept C58024561 @default.
- W2003803108 hasConcept C61696701 @default.
- W2003803108 hasConcept C73916439 @default.
- W2003803108 hasConcept C78519656 @default.