Matches in SemOpenAlex for { <https://semopenalex.org/work/W4380569392> ?p ?o ?g. }
- W4380569392 endingPage "128126" @default.
- W4380569392 startingPage "128126" @default.
- W4380569392 abstract "Direct drop contact and immersion contact liquid cooling technology have proven to be effective in heat transfer and temperature control for lithium-ion batteries. In this study, a novel drop contact cooling system with a multi-hole outlet pipe was proposed to enhance the uniformity of coolant outflow in the reservoir based on an analysis of the contact cooling system for lithium-ion battery modules. The heat dissipation performances between the drop contact cooling system (DCCS) and immersion contact cooling system (ICCS) were compared through numerical simulations and experiments. The numerical results demonstrate the DCCS can achieve lower maximum temperature and temperature differences in the lithium-ion battery module. The experiment tests were conducted at a total flow rate of 560 mL/min to compare the performance of the battery module between DCCS and ICCS. The results show that the maximum temperature of the battery module with DCCS was approximately 3.9 °C lower than that with ICCS with the temperature difference of 4 °C. It can be inferred that DCCS of lithium-ion battery modules under the same conditions can lead to superior heat dissipation effects compared with ICCS." @default.
- W4380569392 created "2023-06-15" @default.
- W4380569392 creator A5036754842 @default.
- W4380569392 creator A5062064406 @default.
- W4380569392 creator A5062718375 @default.
- W4380569392 creator A5079849954 @default.
- W4380569392 creator A5090614960 @default.
- W4380569392 date "2023-09-01" @default.
- W4380569392 modified "2023-09-27" @default.
- W4380569392 title "Heat dissipation performance research between drop contact and immersion contact of lithium-ion battery cooling" @default.
- W4380569392 cites W1971122783 @default.
- W4380569392 cites W1996599007 @default.
- W4380569392 cites W2054133200 @default.
- W4380569392 cites W2069765676 @default.
- W4380569392 cites W2153849517 @default.
- W4380569392 cites W2345470676 @default.
- W4380569392 cites W2778130788 @default.
- W4380569392 cites W2783086568 @default.
- W4380569392 cites W2790045128 @default.
- W4380569392 cites W2805253609 @default.
- W4380569392 cites W2809975514 @default.
- W4380569392 cites W2910875173 @default.
- W4380569392 cites W2914180718 @default.
- W4380569392 cites W2921198291 @default.
- W4380569392 cites W2947058125 @default.
- W4380569392 cites W2968437743 @default.
- W4380569392 cites W2982018779 @default.
- W4380569392 cites W2999271973 @default.
- W4380569392 cites W3004740826 @default.
- W4380569392 cites W3016697992 @default.
- W4380569392 cites W3089669456 @default.
- W4380569392 cites W3099534786 @default.
- W4380569392 cites W3123759815 @default.
- W4380569392 cites W3127082377 @default.
- W4380569392 cites W3133713397 @default.
- W4380569392 cites W3185060104 @default.
- W4380569392 cites W3196863119 @default.
- W4380569392 cites W3201390657 @default.
- W4380569392 cites W3208586180 @default.
- W4380569392 cites W3212247879 @default.
- W4380569392 cites W3212486550 @default.
- W4380569392 cites W3214335100 @default.
- W4380569392 cites W4200178038 @default.
- W4380569392 cites W4210478822 @default.
- W4380569392 cites W4211130358 @default.
- W4380569392 cites W4212811901 @default.
- W4380569392 cites W4214691682 @default.
- W4380569392 cites W4220781179 @default.
- W4380569392 cites W4221023977 @default.
- W4380569392 cites W4221122922 @default.
- W4380569392 cites W4224932926 @default.
- W4380569392 cites W4226312272 @default.
- W4380569392 cites W4283028259 @default.
- W4380569392 cites W4283824006 @default.
- W4380569392 cites W4285082270 @default.
- W4380569392 cites W4310205558 @default.
- W4380569392 cites W4311848588 @default.
- W4380569392 cites W4320516344 @default.
- W4380569392 cites W4321612123 @default.
- W4380569392 cites W4322632278 @default.
- W4380569392 doi "https://doi.org/10.1016/j.energy.2023.128126" @default.
- W4380569392 hasPublicationYear "2023" @default.
- W4380569392 type Work @default.
- W4380569392 citedByCount "0" @default.
- W4380569392 crossrefType "journal-article" @default.
- W4380569392 hasAuthorship W4380569392A5036754842 @default.
- W4380569392 hasAuthorship W4380569392A5062064406 @default.
- W4380569392 hasAuthorship W4380569392A5062718375 @default.
- W4380569392 hasAuthorship W4380569392A5079849954 @default.
- W4380569392 hasAuthorship W4380569392A5090614960 @default.
- W4380569392 hasConcept C116915560 @default.
- W4380569392 hasConcept C121332964 @default.
- W4380569392 hasConcept C127413603 @default.
- W4380569392 hasConcept C135402231 @default.
- W4380569392 hasConcept C145148216 @default.
- W4380569392 hasConcept C163258240 @default.
- W4380569392 hasConcept C178790620 @default.
- W4380569392 hasConcept C185592680 @default.
- W4380569392 hasConcept C192562407 @default.
- W4380569392 hasConcept C199068039 @default.
- W4380569392 hasConcept C202444582 @default.
- W4380569392 hasConcept C2779197387 @default.
- W4380569392 hasConcept C2781345722 @default.
- W4380569392 hasConcept C33923547 @default.
- W4380569392 hasConcept C50517652 @default.
- W4380569392 hasConcept C555008776 @default.
- W4380569392 hasConcept C57879066 @default.
- W4380569392 hasConcept C7694927 @default.
- W4380569392 hasConcept C78519656 @default.
- W4380569392 hasConcept C91914117 @default.
- W4380569392 hasConcept C97355855 @default.
- W4380569392 hasConceptScore W4380569392C116915560 @default.
- W4380569392 hasConceptScore W4380569392C121332964 @default.
- W4380569392 hasConceptScore W4380569392C127413603 @default.
- W4380569392 hasConceptScore W4380569392C135402231 @default.
- W4380569392 hasConceptScore W4380569392C145148216 @default.
- W4380569392 hasConceptScore W4380569392C163258240 @default.
- W4380569392 hasConceptScore W4380569392C178790620 @default.