A novel plate fin heat sink design with rectangular slots and interruptions: A computational approach

IF 1.6 4区 工程技术 Q3 ENGINEERING, MECHANICAL Journal of Thermal Science and Engineering Applications Pub Date : 2024-04-17 DOI:10.1115/1.4065359
Rahul Ray, Santosh Senapati, Aurovinda Mohanty
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Abstract

In the present work, we have studied the performance of vertical plate finned heat sinks that protrude from a vertical base. The difference between the heat sinks base temperature and the ambient, i.e., ΔT, has been varied in the range of 10° C to 60° C, and the flow undergoes a natural convection regime. To enhance the thermal performance, we have explored different configurations of the heat sink by providing rectangular slots, varying the neck thickness, changing the neck location from the fin base, and providing interruptions along the fin height. The pertinent quantities, i.e., heat dissipation rate, Nusselt number, effectiveness, mass of heat sink, and heat dissipation per unit mass, have been obtained by performing 3D computational simulations. The results obtained are compared to assess the thermal performance of Heat sinks. We found that among various designs of heat sinks proposed, the heat sink with two slots, with the location of neck closer to the fin base (xm = 9 mm), and with interrupted fins dissipates maximum heat (12.86% more compared to the commonly used rectangular plate finned heat sink). In addition to the heat transfer improvement, 19.82% mass reduction has also been achieved. Based on the simulation data, we have proposed a correlation for the mean Nusselt number as a function of relevant non-dimensional parameters.
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带有矩形槽和间断的新型板翅式散热器设计:计算方法
在本研究中,我们对从垂直基座伸出的垂直板式翅片散热器的性能进行了研究。散热器底座温度与环境温度之差(即 ΔT)在 10° C 至 60° C 范围内变化,气流处于自然对流状态。为了提高散热性能,我们探索了散热器的不同配置,包括提供矩形槽、改变颈部厚度、改变颈部与鳍片基座的位置以及沿鳍片高度提供间断。通过进行三维计算模拟,获得了相关数量,即散热率、努塞尔特数、散热效果、散热器质量和单位质量散热量。通过对所得结果进行比较,评估了散热器的散热性能。我们发现,在所提出的各种散热器设计中,带有两个槽、颈部位置更靠近鳍片基座(xm = 9 毫米)、鳍片间断的散热器散热量最大(与常用的矩形板式鳍片散热器相比,散热量增加了 12.86%)。除了传热性能的提高,质量也减少了 19.82%。根据模拟数据,我们提出了平均努塞尔特数与相关非尺寸参数的函数关系。
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来源期刊
Journal of Thermal Science and Engineering Applications
Journal of Thermal Science and Engineering Applications THERMODYNAMICSENGINEERING, MECHANICAL -ENGINEERING, MECHANICAL
CiteScore
3.60
自引率
9.50%
发文量
120
期刊介绍: Applications in: Aerospace systems; Gas turbines; Biotechnology; Defense systems; Electronic and photonic equipment; Energy systems; Manufacturing; Refrigeration and air conditioning; Homeland security systems; Micro- and nanoscale devices; Petrochemical processing; Medical systems; Energy efficiency; Sustainability; Solar systems; Combustion systems
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