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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Mathematical and simulation analysis of natural convection heat transfer for DC-DC converter
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Mathematical and simulation analysis of natural convection heat transfer for DC-DC converter

机译:DC-DC转换器自然对流传热的数学和仿真分析

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摘要

Thermal management of electronic systems is the utmost concern to achieve optimum efficiency under space and weight constraints. For the optimal functioning of a system, the heat generated by the electronic components needs to be dissipated efficiently. The passive cooling technique is extensively used in electronic systems, wherein the more contact surface area of a heat source and the surroundings are utilized. This paper focuses on mathematical and simulation analysis for different types of heat sink designs for the 30 W multi-output DC-DC converter. Heat sink with inverted trapezoidal fins has resulted in efficient thermal management of the converter at its safe operating temperature of 398 K. Results show that the maximum temperature attained by the converter was 352 K which was in the safe operating zone of the converter. A comparative study of the effectiveness of heat dissipation with respect to maximum temperature attained has been discussed. Mathematical verification of Rayleigh number for different heat sink designs has also been carried out for its critical value.
机译:电子系统的热管理是在空间和重量约束下实现最佳效率的最大问题。为了获得系统的最佳功能,需要有效地消散电子元件产生的热量。被动冷却技术广泛用于电子系统中,其中利用热源和周围环境的更多接触表面区域。本文侧重于30 W多输出DC-DC转换器的不同类型散热器设计的数学和仿真分析。具有倒梯形翅片的散热器导致转换器的有效热管理在其安全工作温度为398 K.结果表明,转换器获得的最高温度为352 k,在转换器的安全操作区中。已经讨论了对最大温度的散热有效性的对比研究。还对其临界值进行了不同散热器设计的瑞利数的数学验证。

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