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Flow induced hotspot migration studies with heat spreader integrated microchannels using reduced graphene oxide nanofluids

机译:流量诱导热点迁移研究与散热器综合微通道使用氧化石墨烯纳米流体

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The present study involves experimental and numerical investigations of laminar forced convection in parallel microchannel heat sink accompanied with heat spreader of size 30 mm2. Water and reduced graphene oxide nanofluid of 0.07-0.12 vf % is used as working fluid. The numerical study is performed by incorporating the thermo physical properties of reduced graphene oxide nanofluid for different Reynolds number (Re) ranging from 150 to 360 for a constant heat flux of 35 W/cm2. Additionally, studies on migration of hotspot with heat spreader from the bottom of the heat sink under varying Reynolds number are also discussed.
机译:本研究涉及并行微通道散热器中层状强制对流的实验性和数值研究,伴随尺寸为30mm 2 的散热器。用水和氧化石墨烯氧化物纳米流体为0.07-0.12 VF %作为工作流体。通过将10w / cm 2 2 的恒定热通量掺入不同的雷诺氧化物纳米烯流体的热物理性质,通过将来自150-360的不同雷诺数(Re)的热物理性质掺入150-360的恒定热通量来进行。另外,还讨论了与散热器底部在不同雷诺数下与散热器底部迁移热点的研究。

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