Publication
Exploring heat exchange in space: Recent advances in two-phase fluid experiments in microgravity
| dc.contributor.author | Nobrega, Glauco | |
| dc.contributor.author | Afonso, Inês Santos | |
| dc.contributor.author | Cardoso, Beatriz D. | |
| dc.contributor.author | Souza, Reinaldo Rodrigues de | |
| dc.contributor.author | Moita, Ana S. | |
| dc.contributor.author | Ribeiro, J.E. | |
| dc.contributor.author | Lima, Rui A. | |
| dc.date.accessioned | 2024-12-20T16:28:19Z | |
| dc.date.available | 2024-12-20T16:28:19Z | |
| dc.date.issued | 2024 | |
| dc.description.abstract | Thermal regulation has assumed a central role in space expeditions ever since the inception of Sputnik-1 in 1957. Throughout the years, numerous techniques have been developed to regulate temperatures in spacecraft and space habitats. Initially, passive systems like heat shields and thermal linings were employed, while newer missions embrace active cooling using fluids like ammonia and water. With significant advancements in lunar exploration, thermal management systems have been integrated to ensure effective heat protection and dissipation. Experiments carried out in drop towers, parabolic flights, sounding rockets, and aboard the International Space Station (ISS) have yielded valuable insights into the physics of fluids, pool boiling, boiling in two-phase flow, and cooling phenomena. However, conducting tests in microgravity conditions can lead to lower performances, and accurate numerical simulations remain a challenge. At present, various organizations are conducting research to drive progress in thermal management and enhance the technology of space devices. This review describes the most recent advances in two-phase fluid experiments in microgravity. Furthermore, the major challenges that persist in this field are presented and discussed, along with observations on trends and possibilities for the future of thermal control in space. This review attempts to be a relevant guide for future research and developments on thermal control in space. | pt_PT |
| dc.description.sponsorship | Authors acknowledge to Fundação da Ciência e da Tecnologia (FCT), for partially funding this research through project PTDC/EME-TED/7801/2020, and by LA/P/0083/2020 IN +, UIDP/50009/2020-FCT and UIDB/50009/2020, UIDB/04077/2020, UIDP/04077/2020, UIDB/ 00532/2020, LA/P/0045/2020 (ALiCE), CIMO (UIDB/00690/2020) and SusTEC (LA/P/0007/2020), and 2022.03151.PTD (https://doi.org/ 10.54499/2022.03151.PTDC). G. Nobrega was supported by the doctoral PRT/BD/153088/2021, financed by the Portuguese Foundation for Science and Technology (FCT), and with funds from MCTES/ República Portuguesa, under MIT Portugal Program. I. Afonso was supported by the doctoral 2024.05919.BDANA, financed by the Portuguese Foundation for Science and Technology (FCT). A.S. Moita also acknowledges FCT for partially financing her contract through CEECINST/00043/2021/CP2797/CT0005, doi: 10.54499/CEECINST/ 00043/2021/CP2797/CT0005. | pt_PT |
| dc.description.version | info:eu-repo/semantics/publishedVersion | pt_PT |
| dc.identifier.citation | Nobrega, Glauco; Afonso, Inês Santos; Cardoso, Beatriz; Souza, Reinaldo Rodrigues de; Moita, Ana; Ribeiro, João Eduardo; Lima, Rui A. (2024). Exploring heat exchange in space: Recent advances in two-phase fluid experiments in microgravity. Thermal Science and Engineering Progress. ISSN 2451-9049. 56, p. 1-18. | pt_PT |
| dc.identifier.doi | 10.1016/j.tsep.2024.103025 | pt_PT |
| dc.identifier.issn | 2451-9049 | |
| dc.identifier.uri | http://hdl.handle.net/10198/30768 | |
| dc.language.iso | eng | pt_PT |
| dc.peerreviewed | yes | pt_PT |
| dc.publisher | Elsevier | pt_PT |
| dc.relation | Interfacial COOLing Strategies for high POwer dissipation conversion Technologies | |
| dc.relation | LARSyS - Laboratory of Robotics and Engineering Systems | |
| dc.relation | Laboratory of Robotics and Engineering Systems | |
| dc.relation | Laboratory of Robotics and Engineering Systems | |
| dc.relation | Mechanical Engineering and Resource Sustainability Center | |
| dc.relation | Mechanical Engineering and Resource Sustainability Center | |
| dc.relation | Transport Phenomena Research Center | |
| dc.relation | ALICE - Associate Laboratory in Chemical Engineering | |
| dc.relation | Mountain Research Center | |
| dc.relation | Associate Laboratory for Sustainability and Tecnology in Mountain Regions | |
| dc.relation | Not Available | |
| dc.rights.uri | http://creativecommons.org/licenses/by/4.0/ | pt_PT |
| dc.subject | Thermal control | pt_PT |
| dc.subject | Microgravity | pt_PT |
| dc.subject | Flow boiling | pt_PT |
| dc.subject | Vapor compression cycle | pt_PT |
| dc.subject | Pool boiling | pt_PT |
| dc.subject | Heat pipe | pt_PT |
| dc.subject | Phase change material | pt_PT |
| dc.title | Exploring heat exchange in space: Recent advances in two-phase fluid experiments in microgravity | pt_PT |
| dc.type | journal article | |
| dspace.entity.type | Publication | |
| oaire.awardTitle | Interfacial COOLing Strategies for high POwer dissipation conversion Technologies | |
| oaire.awardTitle | LARSyS - Laboratory of Robotics and Engineering Systems | |
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| oaire.citation.endPage | 18 | pt_PT |
| oaire.citation.startPage | 1 | pt_PT |
| oaire.citation.title | Thermal Science and Engineering Progress | pt_PT |
| oaire.citation.volume | 56 | pt_PT |
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| rcaap.rights | openAccess | pt_PT |
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