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dc.contributor.authorMarkal, Burak
dc.contributor.authorCandere, Ayşe Candan
dc.contributor.authorAvcı, Mete
dc.contributor.authorAydın, Orhan
dc.date.accessioned2022-09-30T07:41:30Z
dc.date.available2022-09-30T07:41:30Z
dc.date.issued2021en_US
dc.identifier.citationMarkal, B., Candere, A., Avci, M. & Aydin, O. (2021). Investigation of flat plate type pulsating heat pipes via flow visualization-assisted experiments: Effect of cross sectional ratio. International Communications in Heat and Mass Transfer, 125, 105289. https://doi.org/10.1016/j.icheatmasstransfer.2021.105289en_US
dc.identifier.issn0735-1933
dc.identifier.issn1879-0178
dc.identifier.urihttps://doi.org/10.1016/j.icheatmasstransfer.2021.105289
dc.identifier.urihttps://hdl.handle.net/11436/6606
dc.description.abstractIn the present study, combined influence of filling ratio, geometry, inclination angle and heating power on heat transfer characteristics of the pulsating heat pipes (PHPs) are investigated accompanying analysis of complex thermophysical mechanism. Three different flat-plate type closed loop PHPs covering uniform or non-uniform channel-pairs are investigated at different angles (0 degrees - 90 degrees) and filling ratios (50% and 80%). It is concluded that phase change phenomena and bubble dynamics play key roles on thermal characteristics. In addition to unbalanced capillary force, evaporation momentum force is an important factor to improve operational performance of non-uniform PHPs in the lack of gravity support. Non-uniform design decreases the influence of gravity on results. At horizontal position for medium filling ratio (FR = 50%), uniform PHP (PHP1) collapses. Compared to angled conditions, maximum heat input of PHP1 drops from 65 W to 45 W (nearly 30% decrease). At horizontal orientation, non-uniform PHPs maintain operation, and perform better performance than PHP1. For a relatively high filling ratio (FR = 80%), effect of inclination angle is more obvious, especially for uniform PHP. In the existence of liquid-excess (at FR = 80%), a new type operation mode is defined as column type bulk condensation flow.en_US
dc.language.isoengen_US
dc.publisherElsevieren_US
dc.rightsinfo:eu-repo/semantics/closedAccessen_US
dc.subjectPulsating heat pipeen_US
dc.subjectThermal behavioren_US
dc.subjectVisualizationen_US
dc.subjectExperimental investigationen_US
dc.titleInvestigation of flat plate type pulsating heat pipes via flow visualization-assisted experiments: Effect of cross sectional ratioen_US
dc.typearticleen_US
dc.contributor.departmentRTEÜ, Mühendislik ve Mimarlık Fakültesi, Makine Mühendisliği Bölümüen_US
dc.contributor.institutionauthorMarkal, Burak
dc.contributor.institutionauthorAvcı, Mete
dc.identifier.doi10.1016/j.icheatmasstransfer.2021.105289en_US
dc.identifier.volume125en_US
dc.identifier.startpage105289en_US
dc.relation.journalInternational Communications in Heat and Mass Transferen_US
dc.relation.tubitak217M341
dc.relation.publicationcategoryMakale - Uluslararası Hakemli Dergi - Kurum Öğretim Elemanıen_US


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