Matches in SemOpenAlex for { <https://semopenalex.org/work/W2944571907> ?p ?o ?g. }
Showing items 1 to 78 of
78
with 100 items per page.
- W2944571907 endingPage "21" @default.
- W2944571907 startingPage "12" @default.
- W2944571907 abstract "The regenerator is the core segment of a regenerative cryogenic refrigerator. The phase characteristics at the cold and hot ends of the regenerator determine the cooling capacity, regenerator efficiency and electrical input work of the coupled compressor. The measurement of the regenerator phase characteristics can focus optimization in the right direction of the refrigerator prototype and be used to correct the theoretical predictions. As the phase characteristics of the regenerator are difficult to measure directly, an indirect measurement method is proposed in this paper based on the dual-driven Stirling cryocooler. The indirect method uses only displacement sensors and pressure transducers, which have advantages such as easy operation, no effect on the flow of the working gas and cooler performance. The influencing factors of the regenerator void volume mass flow were analyzed, and the experimental amplitudes and phase angles were compared with that predicted by a thermodynamic analysis method. Based on the statistical results of differences between the theory and experiments, a simple corrected method of the theoretical mass flow phasor at the void volume of the regenerator is given. When the mass flow at one end of the regenerator is known, the corrected method of the void volume mass flow can be used to estimate the mass flow at the other end of the regenerator. We used the above corrected method to estimate the mass flow at the cold end of the regenerator for a Stirling-type pulse tube cryocooler, and eventually give a new construction method of the theoretical phasor diagram for this type of cooler." @default.
- W2944571907 created "2019-05-16" @default.
- W2944571907 creator A5033229269 @default.
- W2944571907 creator A5042761982 @default.
- W2944571907 creator A5048474099 @default.
- W2944571907 creator A5070921788 @default.
- W2944571907 date "2019-07-01" @default.
- W2944571907 modified "2023-10-15" @default.
- W2944571907 title "Indirect measurement of regenerator phase characteristics for cryogenic refrigerators" @default.
- W2944571907 cites W1680694895 @default.
- W2944571907 cites W1977939390 @default.
- W2944571907 cites W2007993375 @default.
- W2944571907 cites W2248334265 @default.
- W2944571907 cites W2756596919 @default.
- W2944571907 doi "https://doi.org/10.1016/j.cryogenics.2019.05.003" @default.
- W2944571907 hasPublicationYear "2019" @default.
- W2944571907 type Work @default.
- W2944571907 sameAs 2944571907 @default.
- W2944571907 citedByCount "2" @default.
- W2944571907 countsByYear W29445719072022 @default.
- W2944571907 crossrefType "journal-article" @default.
- W2944571907 hasAuthorship W2944571907A5033229269 @default.
- W2944571907 hasAuthorship W2944571907A5042761982 @default.
- W2944571907 hasAuthorship W2944571907A5048474099 @default.
- W2944571907 hasAuthorship W2944571907A5070921788 @default.
- W2944571907 hasConcept C107706546 @default.
- W2944571907 hasConcept C121332964 @default.
- W2944571907 hasConcept C125557594 @default.
- W2944571907 hasConcept C127413603 @default.
- W2944571907 hasConcept C131097465 @default.
- W2944571907 hasConcept C164915370 @default.
- W2944571907 hasConcept C179725390 @default.
- W2944571907 hasConcept C192562407 @default.
- W2944571907 hasConcept C27134321 @default.
- W2944571907 hasConcept C33493971 @default.
- W2944571907 hasConcept C38375558 @default.
- W2944571907 hasConcept C4846943 @default.
- W2944571907 hasConcept C57879066 @default.
- W2944571907 hasConcept C63257944 @default.
- W2944571907 hasConcept C78519656 @default.
- W2944571907 hasConcept C97355855 @default.
- W2944571907 hasConceptScore W2944571907C107706546 @default.
- W2944571907 hasConceptScore W2944571907C121332964 @default.
- W2944571907 hasConceptScore W2944571907C125557594 @default.
- W2944571907 hasConceptScore W2944571907C127413603 @default.
- W2944571907 hasConceptScore W2944571907C131097465 @default.
- W2944571907 hasConceptScore W2944571907C164915370 @default.
- W2944571907 hasConceptScore W2944571907C179725390 @default.
- W2944571907 hasConceptScore W2944571907C192562407 @default.
- W2944571907 hasConceptScore W2944571907C27134321 @default.
- W2944571907 hasConceptScore W2944571907C33493971 @default.
- W2944571907 hasConceptScore W2944571907C38375558 @default.
- W2944571907 hasConceptScore W2944571907C4846943 @default.
- W2944571907 hasConceptScore W2944571907C57879066 @default.
- W2944571907 hasConceptScore W2944571907C63257944 @default.
- W2944571907 hasConceptScore W2944571907C78519656 @default.
- W2944571907 hasConceptScore W2944571907C97355855 @default.
- W2944571907 hasFunder F4320335787 @default.
- W2944571907 hasLocation W29445719071 @default.
- W2944571907 hasOpenAccess W2944571907 @default.
- W2944571907 hasPrimaryLocation W29445719071 @default.
- W2944571907 hasRelatedWork W1017629221 @default.
- W2944571907 hasRelatedWork W2012487117 @default.
- W2944571907 hasRelatedWork W2130037667 @default.
- W2944571907 hasRelatedWork W2329685801 @default.
- W2944571907 hasRelatedWork W2347476794 @default.
- W2944571907 hasRelatedWork W2724158057 @default.
- W2944571907 hasRelatedWork W3188714793 @default.
- W2944571907 hasRelatedWork W582932490 @default.
- W2944571907 hasRelatedWork W90026116 @default.
- W2944571907 hasRelatedWork W97824092 @default.
- W2944571907 hasVolume "101" @default.
- W2944571907 isParatext "false" @default.
- W2944571907 isRetracted "false" @default.
- W2944571907 magId "2944571907" @default.
- W2944571907 workType "article" @default.