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Characterization of Radial Curved Fin Heat Sink under Natural and Forced Convection

机译:自然和强制对流下径向弯曲翅片散热器的特征

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摘要

Heat exchangers are important structures widely used in power plants, food industries, refrigeration, and air conditioners and now widely used in computing systems. Finned type of heat sink is widely used in computing systems. The main aim of the design of the heat sink is to maintain the optimum temperature level. To achieve this goal so many geometrical configurations are implemented. This paper presents a characterization of radially curved fin heat sink under natural and forced convection. Forced convection is studied for the optimization of temperature for better efficiency. The different alternatives in geometry are considered in characterization are heat intensity, the height of the fin and speed of the fan. By recognizing these alternatives the heat sink is characterized by the heat flux usually generated in high-end PCs. The temperature drop characteristics across height and radial direction are presented for the constant heat input and air flow in the heat sink. The effect of dimensionless elevation height (0 ≤ Z~* ≤ 1) and Elenbaas Number (0.4 ≤ El ≤ 2.8) of the heat sink were investigated for study of the Nusselt number. Based on experimental characterization, process plan has been developed for the selection of the similar heat sinks for desired output (heat dissipation and temperature distribution).
机译:热交换器是电厂,食品工业,制冷和空调中广泛应用的重要结构,现在广泛用于计算系统。翅片类型的散热片广泛用于计算系统。散热器设计的主要目的是保持最佳温度水平。为了实现这一目标,实现了许多几何配置。本文介绍了自然和强制对流下径向弯曲的翅片散热器的表征。研究了强制对流,以优化温度以获得更好的效率。几何形状中的不同替代方案被认为是热强度,翅片的高度和风扇的速度。通过识别出这些替代方案,散热器的特征在于通常在高端PC中产生的热通量。呈现高度和径向方向上的温度降低特性,用于散热器中的恒定热输入和空气流动。研究了散热器的无量纲仰卧高度(0≤Z〜*≤1)和散热器的elenbaas数(0.4≤her≤2.8)以研究营养数。基于实验表征,已经开发了用于选择相似的散热器的过程计划,用于所需输出(散热和温度分布)。

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