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<dc:title xml:lang="pl"><![CDATA[Overview of the Mechanical Forced Vibration Used to Enhance Heat Transfer]]></dc:title>
<dc:creator><![CDATA[Majeed, Zainab Kh.]]></dc:creator>
<dc:creator><![CDATA[Abbas, Ehsan Fadhil]]></dc:creator>
<dc:creator><![CDATA[Hasan, Iesam J.]]></dc:creator>
<dc:subject xml:lang="pl"><![CDATA[mechanical vibration]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[heat transfer enhancement]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[thermal management]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[convective heat transfer]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[vibrational systems]]></dc:subject>
<dc:subject xml:lang="pl"><![CDATA[energy system]]></dc:subject>
<dc:description xml:lang="pl"><![CDATA[This review systematically examines the role of mechanical vibrations in enhancing heat transfer across various thermal systems. Although vibrations are traditionally considered detrimental to mechanical integrity, controlled application of vibrational forces can significantly improve thermal performance by promoting fluid mixing and surface turbulence. The study synthesizes findings from theoretical, numerical, and experimental research involving different geometries such as flat plates, cylinders, and microchannel structures.]]></dc:description>
<dc:description xml:lang="pl"><![CDATA[Results consistently demonstrate that specific ranges of vibration frequency and amplitude can enhance convective heat transfer, with some studies reporting improvements up to 250%. Conversely, inappropriate vibrational conditions can lead to performance degradation or mechanical failure. Key parameters influencing outcomes include vibration mode, fluid properties, system configuration, and thermal boundary conditions. Applications span aerospace, electronics cooling, and energy systems, where vibrational techniques have reduced fouling, improved heat exchanger efficiency, and enabled lightweight thermal management solutions.]]></dc:description>
<dc:description xml:lang="pl"><![CDATA[The findings highlight the importance of carefully tailoring vibrational characteristics to optimize heat transfer while maintaining structural integrity. This work provides critical insights for the design of advanced thermal systems utilizing vibration-assisted heat transfer mechanisms.]]></dc:description>
<dc:publisher><![CDATA[Zielona Góra: Uniwersytet Zielonogórski]]></dc:publisher>
<dc:contributor><![CDATA[Jurczak, Paweł - red.]]></dc:contributor>
<dc:date><![CDATA[2026]]></dc:date>
<dc:type xml:lang="pl"><![CDATA[artykuł]]></dc:type>
<dc:format xml:lang="pl"><![CDATA[application/pdf]]></dc:format>
<dc:identifier><![CDATA[http://zbc.uz.zgora.pl/Content/97597/Volume31_Issue1_04.pdf]]></dc:identifier>
<dc:identifier><![CDATA[https://zbc.uz.zgora.pl/dlibra/publication/109309/edition/97597/content]]></dc:identifier>
<dc:identifier><![CDATA[oai:zbc.uz.zgora.pl:97597]]></dc:identifier>
<dc:source xml:lang="pl"><![CDATA[IJAME, volume 31, number 1 (2026)]]></dc:source>
<dc:language><![CDATA[eng]]></dc:language>
<dc:relation><![CDATA[oai:zbc.uz.zgora.pl:publication:109309]]></dc:relation>
<dc:rights xml:lang="pl"><![CDATA[Biblioteka Uniwersytetu Zielonogórskiego]]></dc:rights>
<dc:rights xml:lang="pl"><![CDATA[CC 4.0]]></dc:rights>
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