Matches in SemOpenAlex for { <https://semopenalex.org/work/W2794168032> ?p ?o ?g. }
- W2794168032 endingPage "88" @default.
- W2794168032 startingPage "78" @default.
- W2794168032 abstract "In refrigeration systems, frost accumulation on the evaporator demands periodic defrosting. Chemical coatings (either hydrophilic or hydrophobic) are sometimes used to mitigate frost build-up and/or improve drainage during the defrost cycle. Although several studies have been performed on frost growth behavior, relatively few studies have specifically examined the effect of surface wettability on the frost growth rate. This paper focuses on the influence of environmental operating conditions on the growth of a frost layer on surfaces which span a wide range of contact angles under natural convection conditions. A new semi-empirical correlation which includes the surface contact angle θ and the modified Jakob number Λ as parameters is reported with an average predictive error of 11.7% (N = 930) for all non-zero experimental data. The correlation was developed using multivariable regression analysis and data which span different surface temperatures (−13 °C to −5°C), relative humidities (40–80%), and static contact angles ranging from 45° (hydrophilic) to 160° (hydrophobic)." @default.
- W2794168032 created "2018-03-29" @default.
- W2794168032 creator A5060880869 @default.
- W2794168032 creator A5064364198 @default.
- W2794168032 creator A5070719363 @default.
- W2794168032 date "2018-07-01" @default.
- W2794168032 modified "2023-09-30" @default.
- W2794168032 title "The role of surface wettability on natural convection frosting: Frost growth data and a new correlation for hydrophilic and hydrophobic surfaces" @default.
- W2794168032 cites W1967990940 @default.
- W2794168032 cites W1973805066 @default.
- W2794168032 cites W1976153668 @default.
- W2794168032 cites W1983863882 @default.
- W2794168032 cites W1994212835 @default.
- W2794168032 cites W1995411853 @default.
- W2794168032 cites W1996611818 @default.
- W2794168032 cites W2007190794 @default.
- W2794168032 cites W2012124706 @default.
- W2794168032 cites W2013655609 @default.
- W2794168032 cites W2017854144 @default.
- W2794168032 cites W2020471379 @default.
- W2794168032 cites W2027622840 @default.
- W2794168032 cites W2041674410 @default.
- W2794168032 cites W2041887127 @default.
- W2794168032 cites W2042537538 @default.
- W2794168032 cites W2043923447 @default.
- W2794168032 cites W2047404157 @default.
- W2794168032 cites W2048859669 @default.
- W2794168032 cites W2049600484 @default.
- W2794168032 cites W2058049647 @default.
- W2794168032 cites W2058307809 @default.
- W2794168032 cites W2064775343 @default.
- W2794168032 cites W2070370859 @default.
- W2794168032 cites W2072942422 @default.
- W2794168032 cites W2075589410 @default.
- W2794168032 cites W2075900479 @default.
- W2794168032 cites W2084005517 @default.
- W2794168032 cites W2086097428 @default.
- W2794168032 cites W2091126511 @default.
- W2794168032 cites W2122043584 @default.
- W2794168032 cites W2128237306 @default.
- W2794168032 cites W2140806937 @default.
- W2794168032 cites W2153298142 @default.
- W2794168032 cites W2300455956 @default.
- W2794168032 cites W2431486103 @default.
- W2794168032 cites W2548739709 @default.
- W2794168032 cites W2587570737 @default.
- W2794168032 doi "https://doi.org/10.1016/j.ijheatmasstransfer.2018.01.074" @default.
- W2794168032 hasPublicationYear "2018" @default.
- W2794168032 type Work @default.
- W2794168032 sameAs 2794168032 @default.
- W2794168032 citedByCount "36" @default.
- W2794168032 countsByYear W27941680322018 @default.
- W2794168032 countsByYear W27941680322019 @default.
- W2794168032 countsByYear W27941680322020 @default.
- W2794168032 countsByYear W27941680322021 @default.
- W2794168032 countsByYear W27941680322022 @default.
- W2794168032 countsByYear W27941680322023 @default.
- W2794168032 crossrefType "journal-article" @default.
- W2794168032 hasAuthorship W2794168032A5060880869 @default.
- W2794168032 hasAuthorship W2794168032A5064364198 @default.
- W2794168032 hasAuthorship W2794168032A5070719363 @default.
- W2794168032 hasConcept C107706546 @default.
- W2794168032 hasConcept C10899652 @default.
- W2794168032 hasConcept C121332964 @default.
- W2794168032 hasConcept C127413603 @default.
- W2794168032 hasConcept C134514944 @default.
- W2794168032 hasConcept C159985019 @default.
- W2794168032 hasConcept C192562407 @default.
- W2794168032 hasConcept C2779553506 @default.
- W2794168032 hasConcept C42360764 @default.
- W2794168032 hasConcept C4988496 @default.
- W2794168032 hasConcept C54791560 @default.
- W2794168032 hasConcept C57879066 @default.
- W2794168032 hasConcept C6556556 @default.
- W2794168032 hasConcept C69907114 @default.
- W2794168032 hasConcept C97355855 @default.
- W2794168032 hasConceptScore W2794168032C107706546 @default.
- W2794168032 hasConceptScore W2794168032C10899652 @default.
- W2794168032 hasConceptScore W2794168032C121332964 @default.
- W2794168032 hasConceptScore W2794168032C127413603 @default.
- W2794168032 hasConceptScore W2794168032C134514944 @default.
- W2794168032 hasConceptScore W2794168032C159985019 @default.
- W2794168032 hasConceptScore W2794168032C192562407 @default.
- W2794168032 hasConceptScore W2794168032C2779553506 @default.
- W2794168032 hasConceptScore W2794168032C42360764 @default.
- W2794168032 hasConceptScore W2794168032C4988496 @default.
- W2794168032 hasConceptScore W2794168032C54791560 @default.
- W2794168032 hasConceptScore W2794168032C57879066 @default.
- W2794168032 hasConceptScore W2794168032C6556556 @default.
- W2794168032 hasConceptScore W2794168032C69907114 @default.
- W2794168032 hasConceptScore W2794168032C97355855 @default.
- W2794168032 hasLocation W27941680321 @default.
- W2794168032 hasOpenAccess W2794168032 @default.
- W2794168032 hasPrimaryLocation W27941680321 @default.
- W2794168032 hasRelatedWork W2020628440 @default.
- W2794168032 hasRelatedWork W2023784679 @default.
- W2794168032 hasRelatedWork W2033703833 @default.
- W2794168032 hasRelatedWork W2246321598 @default.