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Natural and forced convection heat transfer coefficients of various finned heat sinks for miniature electronic systems

机译:小型电子系统的各种翅片散热器的自然对流换热系数和强制对流换热系数

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摘要

Downward lighting light-emitting diodes require cooling with cylindrical fin heat sinks to be mounted on top and cooled under natural convection air cooling mode. Performance simulation would involve specification of the heat transfer coefficient. Numerous methods are available to simulate the performance of conventional plate fin heat sinks including computational fluid dynamics packages. It would be feasible to perform simulation based on conventional flat plate fin heat sinks. A cylindrical fin heat sinks could be simply treated as a plate fin heat sink, if we imagine it cut open and laid out horizontally. A theoretical model is proposed in this paper. An experimental investigation is conducted here to validate its accuracy. Convective heat transfer coefficients were experimentally determined for a horizontally and vertically inclined bare plate operating under natural and forced air cooling modes. In addition, a vertical plate fin heat sink and a vertical cylindrical fin heat sink under natural convection were investigated. Power inputs were kept from 5 to 40W in order to keep operating temperatures below 100?. Comparison of the experimental heat transfer coefficients and those obtained from well-known existing Nusselt number correlations show that agreement was poor for the bare plate but satisfactory for the plate and cylindrical fin heat sinks. Although they are within the generally accepted range, it would be advisable for actual measurements to be carried out in order to provide more accurate sizing for thermal measurements.
机译:向下照明的发光二极管需要使用圆柱形翅片散热器进行冷却,并将其安装在顶部并在自然对流空气冷却模式下进行冷却。性能模拟将涉及传热系数的规范。有许多方法可用来模拟常规板翅式散热器的性能,包括计算流体动力学程序包。基于常规平板翅片散热器进行仿真将是可行的。如果我们将圆柱形翅片散热器切开并水平放置,则可以将其简单地视为板翅片散热器。本文提出了一个理论模型。在此进行实验研究以验证其准确性。对流传热系数是通过实验确定在自然和强制空气冷却模式下运行的水平和垂直倾斜裸板的。此外,研究了自然对流下的垂直板翅式散热器和垂直圆柱形翅片散热器。输入功率保持在5至40W,以保持工作温度低于100°C。实验传热系数与从已知的现有Nusselt数相关性获得的传热系数的比较表明,裸板的一致性较差,而板翅片和圆柱形翅片散热器的一致性令人满意。尽管它们在公认的范围内,但建议进行实际测量,以便为热测量提供更准确的尺寸。

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