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CFD simulation of thermal dissipation from fan-added plate fin and offset strip fin heat sinks

机译:带有风扇的板翅片和偏置板翅片散热器的散热的CFD模拟

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In the present study, we have performed two-dimensional CFD simulations on thermal dissipation from isothermal plate fins and offset strip fins with a specific DC fan. Computations are implemented on a single flow passage between fins due to the periodicity in the lateral direction, and analysis of thermal performance is carried out for a heat sink for CPU cooling with a width of 60 mm and a length of 65 mm. As anticipated, the offset strip fin leads to 35% higher Nusselt number at each fin surface compared to the plate fin. However, the optimum OSF heat sink has 42% wider fin pitch to compensate for increased pressure drop, which results in smaller fin surface area than the plate fin heat sink. Consequently, the overall thermal performance of the offset strip fin heat sink is about 4% lower than that of the plate fin heat sink considered in this study, irrespective of the enhanced surface geometry.
机译:在本研究中,我们对带有特定直流风扇的等温板翅片和偏置板翅片的散热进行了二维CFD模拟。由于在横向上的周期性,因此在散热片之间的单个流动通道上进行计算,并且针对宽度为60毫米,长度为65毫米的CPU冷却散热器进行了热性能分析。如预期的那样,与板状鳍片相比,偏置带状鳍片在每个鳍片表面的Nusselt数高出35%。但是,最佳OSF散热器的翅片间距要宽42%,以补偿增加的压降,从而导致翅片表面积小于平板翅片散热器。因此,无论表面几何形状如何增强,偏置条形翅片散热器的整体热性能均比本研究中所考虑的板翅片散热器的整体热性能低约4%。

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