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Mathematical model and computation of heat distribution for LED heat sink

机译:LED散热器散热分布的数学模型与计算

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摘要

The light-emitting diode (LED) has many advantages over conventional lighting including lower energy consumption, longer lifetime, improved physical robustness, smaller size, and faster switching. It is noted, however, that its efficiency and lifetime will be degraded severely when it is operated at high temperature. Both previous simulations and experimental results have already indicated that the heat transfer in vertical direction of the LED lamp by conduction is the critical component. In this paper, a simplified mathematical model of the heat source and the conduction distribution for the LED heat sink is developed to estimate the heat distribution in the spherical coordinate system, which can be used for the shape optimization design. Furthermore, the model of the heat conduction equation is solved numerically with the explicit finite-difference method (EFDM). Several numerical simulations show that the model performs well when considering the real situation, so our method is feasible and effective.
机译:与常规照明相比,发光二极管(LED)具有许多优势,包括更低的能耗,更长的使用寿命,更高的物理强度,更小的尺寸以及更快的开关速度。然而,应注意的是,当其在高温下操作时,其效率和寿命将严重降低。先前的仿真和实验结果都已经表明,通过传导在LED灯的垂直方向上的传热是关键因素。本文建立了LED散热器热源和导热分布的简化数学模型,以估计球坐标系中的热分布,可用于形状优化设计。此外,使用显式有限差分法(EFDM)对导热方程模型进行数值求解。数值模拟表明,该模型在考虑实际情况时表现良好,是可行和有效的。

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