Matches in SemOpenAlex for { <https://semopenalex.org/work/W2977384297> ?p ?o ?g. }
- W2977384297 endingPage "123012" @default.
- W2977384297 startingPage "123012" @default.
- W2977384297 abstract "Abstract At the moment the energies of fossil origin, under different forms (petroleum transformed into different fuels, gases...), represent the most used energy source because available in large quantities and still relatively have a low cost and easily exploitable. The impact on the environment of their massive use leads to thinking on the decrease of these energy consumption or even their replacement. Stirling engines can operate in reverse cycle and, rather than provide work from two thermal sources, provide thermal energy from a mechanical work and another source of heat. In this investigation a new mode of operation experimentally by generating cold have been explored. The needs in thermal sources (air conditioning, heat pump) are important and current responses are often energy intensive. This can offer Stirling machines other openings than the production of work. The cycle being the same, the work done on Stirling engines can make it possible to study the reverse Stirling cycle and thus serve as a basis for machine optimization refrigerators or Stirling heat pumps." @default.
- W2977384297 created "2019-10-10" @default.
- W2977384297 creator A5000594901 @default.
- W2977384297 creator A5062221845 @default.
- W2977384297 date "2020-02-01" @default.
- W2977384297 modified "2023-10-17" @default.
- W2977384297 title "Thermodynamic analysis and optimization of solar thermal engine: Performance enhancement" @default.
- W2977384297 cites W1020968387 @default.
- W2977384297 cites W1637271811 @default.
- W2977384297 cites W1969003559 @default.
- W2977384297 cites W1987300939 @default.
- W2977384297 cites W1987689421 @default.
- W2977384297 cites W1989244036 @default.
- W2977384297 cites W1995137168 @default.
- W2977384297 cites W1996516107 @default.
- W2977384297 cites W2000798336 @default.
- W2977384297 cites W2001150705 @default.
- W2977384297 cites W2002153793 @default.
- W2977384297 cites W2009956666 @default.
- W2977384297 cites W2015663107 @default.
- W2977384297 cites W2026000306 @default.
- W2977384297 cites W2039921925 @default.
- W2977384297 cites W2047407454 @default.
- W2977384297 cites W2060361666 @default.
- W2977384297 cites W2069294053 @default.
- W2977384297 cites W2085767955 @default.
- W2977384297 cites W2088510928 @default.
- W2977384297 cites W2089216521 @default.
- W2977384297 cites W2155295749 @default.
- W2977384297 cites W2194360737 @default.
- W2977384297 cites W2205623998 @default.
- W2977384297 cites W2376250687 @default.
- W2977384297 cites W2605571355 @default.
- W2977384297 cites W2789359416 @default.
- W2977384297 cites W2789713032 @default.
- W2977384297 cites W2792743077 @default.
- W2977384297 cites W2795211703 @default.
- W2977384297 cites W2795791707 @default.
- W2977384297 cites W2796925929 @default.
- W2977384297 cites W2797820430 @default.
- W2977384297 cites W2800389131 @default.
- W2977384297 cites W2800745406 @default.
- W2977384297 cites W2801960849 @default.
- W2977384297 cites W2802169397 @default.
- W2977384297 cites W2802655396 @default.
- W2977384297 cites W2805519436 @default.
- W2977384297 cites W2886466521 @default.
- W2977384297 cites W2887274003 @default.
- W2977384297 cites W2889479480 @default.
- W2977384297 cites W2893866332 @default.
- W2977384297 cites W2896348022 @default.
- W2977384297 cites W2897790570 @default.
- W2977384297 cites W2900684713 @default.
- W2977384297 cites W2912283239 @default.
- W2977384297 cites W2922863460 @default.
- W2977384297 cites W2924049752 @default.
- W2977384297 cites W2939336122 @default.
- W2977384297 cites W2942618479 @default.
- W2977384297 cites W2954598521 @default.
- W2977384297 cites W2961947232 @default.
- W2977384297 cites W2969675276 @default.
- W2977384297 doi "https://doi.org/10.1016/j.physa.2019.123012" @default.
- W2977384297 hasPublicationYear "2020" @default.
- W2977384297 type Work @default.
- W2977384297 sameAs 2977384297 @default.
- W2977384297 citedByCount "3" @default.
- W2977384297 countsByYear W29773842972020 @default.
- W2977384297 countsByYear W29773842972022 @default.
- W2977384297 crossrefType "journal-article" @default.
- W2977384297 hasAuthorship W2977384297A5000594901 @default.
- W2977384297 hasAuthorship W2977384297A5062221845 @default.
- W2977384297 hasConcept C121332964 @default.
- W2977384297 hasConcept C127413603 @default.
- W2977384297 hasConcept C192562407 @default.
- W2977384297 hasConcept C204530211 @default.
- W2977384297 hasConcept C39432304 @default.
- W2977384297 hasConcept C61696701 @default.
- W2977384297 hasConcept C78519656 @default.
- W2977384297 hasConcept C97355855 @default.
- W2977384297 hasConceptScore W2977384297C121332964 @default.
- W2977384297 hasConceptScore W2977384297C127413603 @default.
- W2977384297 hasConceptScore W2977384297C192562407 @default.
- W2977384297 hasConceptScore W2977384297C204530211 @default.
- W2977384297 hasConceptScore W2977384297C39432304 @default.
- W2977384297 hasConceptScore W2977384297C61696701 @default.
- W2977384297 hasConceptScore W2977384297C78519656 @default.
- W2977384297 hasConceptScore W2977384297C97355855 @default.
- W2977384297 hasFunder F4320322804 @default.
- W2977384297 hasLocation W29773842971 @default.
- W2977384297 hasOpenAccess W2977384297 @default.
- W2977384297 hasPrimaryLocation W29773842971 @default.
- W2977384297 hasRelatedWork W2003600407 @default.
- W2977384297 hasRelatedWork W2067690070 @default.
- W2977384297 hasRelatedWork W2583300098 @default.
- W2977384297 hasRelatedWork W2612053427 @default.
- W2977384297 hasRelatedWork W2897668306 @default.
- W2977384297 hasRelatedWork W2899084033 @default.
- W2977384297 hasRelatedWork W3013256287 @default.