Please use this identifier to cite or link to this item: http://bura.brunel.ac.uk/handle/2438/9476
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dc.contributor.authorGedupudi, S-
dc.contributor.authorKenning, DBR-
dc.contributor.authorKarayiannis, T-
dc.contributor.author4th Micro and Nano Flows Conference (MNF2014)-
dc.coverage.spatialUCL, London, UK-
dc.coverage.spatialUCL, London, UK-
dc.date.accessioned2014-12-10T16:32:16Z-
dc.date.available2014-09-07-
dc.date.available2014-12-10T16:32:16Z-
dc.date.issued2014-
dc.identifier.citation4th Micro and Nano Flows Conference, University College London, UK, 7-10 September 2014, Editors CS König, TG Karayiannis and S. Balabanien_US
dc.identifier.isbn978-1-908549-16-7-
dc.identifier.urihttp://bura.brunel.ac.uk/handle/2438/9476-
dc.descriptionThis paper was presented at the 4th Micro and Nano Flows Conference (MNF2014), which was held at University College, London, UK. The conference was organised by Brunel University and supported by the Italian Union of Thermofluiddynamics, IPEM, the Process Intensification Network, the Institution of Mechanical Engineers, the Heat Transfer Society, HEXAG - the Heat Exchange Action Group, and the Energy Institute, ASME Press, LCN London Centre for Nanotechnology, UCL University College London, UCL Engineering, the International NanoScience Community, www.nanopaprika.eu.en_US
dc.description.abstractPressure changes caused by the growth of confined bubbles during flow boiling in mini/microchannels lead to transient flow reversal in the presence of inlet (upstream) compressibility. A 1-D model is presented to study the effect of inlet resistance on maximum flow reversal distance, return time and local pressure fluctuations for different initial upstream compressible volumes for water boiling at atmospheric pressure. The two upstream compressibility models considered are condensable vapour in a subcooled boiling region and trapped non-condensable gas.en_US
dc.language.isoenen_US
dc.publisherBrunel University Londonen_US
dc.relation.ispartofseriesID 179-
dc.source4th Micro and Nano Flows Conference-
dc.source4th Micro and Nano Flows Conference-
dc.subjectConfined bubbleen_US
dc.subjectFlow boilingen_US
dc.subjectMicro-channelen_US
dc.subjectFlow instabilityen_US
dc.titleFlow boiling in rectangular microchannels: 1-D modelling of the influence of inlet resistance on flow reversalen_US
dc.typeConference Paperen_US
pubs.finish-date2014-09-10-
pubs.finish-date2014-09-10-
pubs.start-date2014-09-07-
pubs.start-date2014-09-07-
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pubs.organisational-data/Brunel/Brunel Staff by College/Department/Division/College of Engineering, Design and Physical Sciences-
pubs.organisational-data/Brunel/Brunel Staff by College/Department/Division/College of Engineering, Design and Physical Sciences/Dept of Mechanical, Aerospace and Civil Engineering-
pubs.organisational-data/Brunel/Brunel Staff by College/Department/Division/College of Engineering, Design and Physical Sciences/Dept of Mechanical, Aerospace and Civil Engineering/Mechanical and Aerospace Engineering-
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pubs.organisational-data/Brunel/Brunel Staff by Institute/Theme/Institute of Energy Futures-
pubs.organisational-data/Brunel/Brunel Staff by Institute/Theme/Institute of Energy Futures/Energy Efficient and Sustainable Technologies-
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pubs.organisational-data/Brunel/University Research Centres and Groups/Brunel Business School - URCs and Groups-
pubs.organisational-data/Brunel/University Research Centres and Groups/Brunel Business School - URCs and Groups/Centre for Research into Entrepreneurship, International Business and Innovation in Emerging Markets-
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