Matches in SemOpenAlex for { <https://semopenalex.org/work/W3048269324> ?p ?o ?g. }
- W3048269324 endingPage "118412" @default.
- W3048269324 startingPage "118412" @default.
- W3048269324 abstract "In recent years, building energy saving technologies are attracting more and more attention worldwide. A PCM-embedded wall coupled with a nocturnal sky radiator is proposed for active heat defense with the outer dynamic thermal environment. This new system can improve the building energy performance and utilization efficiency of PCM with diurnal building insulation through co-work of the PCM, nocturnal sky radiator, and active heat removal mechanism of circulating water. This paper investigates the thermal and energy performance of a typical room with the new wall system in cooling season. The system energy efficiency is analyzed by comparing with a common PCM wall and a common wall without PCM. Main influential factors on system energy efficiency are analyzed and results show that, comparing with a common wall, the average temperature of internal surface of the new system is reduced by 1.6 °C. The reduction of the cooling demand and energy-saving ratio are respectively 37.8%–57.8% and 15.7%–24.1% comparing with the reference system. Besides, the impacts of pump operation hours, area of the nocturnal sky radiator, the wall orientations and phase change temperature are discussed in depth, which can provide a useful guide for its further developments and applications." @default.
- W3048269324 created "2020-08-13" @default.
- W3048269324 creator A5001713310 @default.
- W3048269324 creator A5026208295 @default.
- W3048269324 creator A5032062328 @default.
- W3048269324 creator A5048193755 @default.
- W3048269324 creator A5049174801 @default.
- W3048269324 date "2020-11-01" @default.
- W3048269324 modified "2023-10-02" @default.
- W3048269324 title "Performance evaluation of a PCM-embedded wall integrated with a nocturnal sky radiator" @default.
- W3048269324 cites W1020474836 @default.
- W3048269324 cites W1243064274 @default.
- W3048269324 cites W1902962252 @default.
- W3048269324 cites W1977804330 @default.
- W3048269324 cites W1990914318 @default.
- W3048269324 cites W1991873640 @default.
- W3048269324 cites W1999039640 @default.
- W3048269324 cites W2004530898 @default.
- W3048269324 cites W2004882910 @default.
- W3048269324 cites W2009916161 @default.
- W3048269324 cites W2010610770 @default.
- W3048269324 cites W2020292162 @default.
- W3048269324 cites W2028019540 @default.
- W3048269324 cites W2030762638 @default.
- W3048269324 cites W2031317822 @default.
- W3048269324 cites W2031845993 @default.
- W3048269324 cites W2042897685 @default.
- W3048269324 cites W2051618896 @default.
- W3048269324 cites W2057500021 @default.
- W3048269324 cites W2059844979 @default.
- W3048269324 cites W2064175450 @default.
- W3048269324 cites W2077693893 @default.
- W3048269324 cites W2078524726 @default.
- W3048269324 cites W2081493057 @default.
- W3048269324 cites W2091693228 @default.
- W3048269324 cites W2308361057 @default.
- W3048269324 cites W2340904673 @default.
- W3048269324 cites W2359573896 @default.
- W3048269324 cites W2585989228 @default.
- W3048269324 cites W2601546773 @default.
- W3048269324 cites W2616667861 @default.
- W3048269324 cites W2625447489 @default.
- W3048269324 cites W2626489783 @default.
- W3048269324 cites W2761463112 @default.
- W3048269324 cites W2787309629 @default.
- W3048269324 cites W2804089405 @default.
- W3048269324 cites W2884150571 @default.
- W3048269324 cites W2894124515 @default.
- W3048269324 cites W2897625978 @default.
- W3048269324 cites W2902632852 @default.
- W3048269324 cites W2905581630 @default.
- W3048269324 cites W2910216837 @default.
- W3048269324 cites W2921509514 @default.
- W3048269324 cites W2944602173 @default.
- W3048269324 cites W2945005127 @default.
- W3048269324 cites W2954316797 @default.
- W3048269324 cites W3008960883 @default.
- W3048269324 doi "https://doi.org/10.1016/j.energy.2020.118412" @default.
- W3048269324 hasPublicationYear "2020" @default.
- W3048269324 type Work @default.
- W3048269324 sameAs 3048269324 @default.
- W3048269324 citedByCount "14" @default.
- W3048269324 countsByYear W30482693242020 @default.
- W3048269324 countsByYear W30482693242021 @default.
- W3048269324 countsByYear W30482693242022 @default.
- W3048269324 countsByYear W30482693242023 @default.
- W3048269324 crossrefType "journal-article" @default.
- W3048269324 hasAuthorship W3048269324A5001713310 @default.
- W3048269324 hasAuthorship W3048269324A5026208295 @default.
- W3048269324 hasAuthorship W3048269324A5032062328 @default.
- W3048269324 hasAuthorship W3048269324A5048193755 @default.
- W3048269324 hasAuthorship W3048269324A5049174801 @default.
- W3048269324 hasConcept C116915560 @default.
- W3048269324 hasConcept C119599485 @default.
- W3048269324 hasConcept C121332964 @default.
- W3048269324 hasConcept C127413603 @default.
- W3048269324 hasConcept C1276947 @default.
- W3048269324 hasConcept C153294291 @default.
- W3048269324 hasConcept C171146098 @default.
- W3048269324 hasConcept C18762648 @default.
- W3048269324 hasConcept C204530211 @default.
- W3048269324 hasConcept C2742236 @default.
- W3048269324 hasConcept C2778119658 @default.
- W3048269324 hasConcept C2779613214 @default.
- W3048269324 hasConcept C2982928256 @default.
- W3048269324 hasConcept C39432304 @default.
- W3048269324 hasConcept C63034144 @default.
- W3048269324 hasConcept C73329638 @default.
- W3048269324 hasConcept C7694927 @default.
- W3048269324 hasConcept C78519656 @default.
- W3048269324 hasConceptScore W3048269324C116915560 @default.
- W3048269324 hasConceptScore W3048269324C119599485 @default.
- W3048269324 hasConceptScore W3048269324C121332964 @default.
- W3048269324 hasConceptScore W3048269324C127413603 @default.
- W3048269324 hasConceptScore W3048269324C1276947 @default.
- W3048269324 hasConceptScore W3048269324C153294291 @default.
- W3048269324 hasConceptScore W3048269324C171146098 @default.
- W3048269324 hasConceptScore W3048269324C18762648 @default.