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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Numerical development of EHD cooling systems for laptop applications
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Numerical development of EHD cooling systems for laptop applications

机译:笔记本电脑应用EHD冷却系统的数值开发

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摘要

Electrohydrodynamic (EHD) air blowers are uniquely positioned to overcome the limitations of miniaturized mechanical fans in small-scale and consumer electronic devices. A novel cooling system design using optimized EHD blowers integrated with a plate-fin heat sink is presented and proposed for thin consumer electronics such as laptop applications. A three-dimensional (3D) numerical model is developed and validated to solve the coupled equations of EHD flow and conjugate heat transfer and predict the cooling performance of the integrated EHD system. For a range of heat sink heights from 6 to 12 mm, a parametric study is performed to investigate the influence of geometric parameters and operating conditions on the thermal performance of the EHD systems based on heat sink thermal resistance and the highest operating temperature. Numerical results demonstrate that the proposed EHD cooling system is able to provide effective cooling performance and maintain the temperature within the safe and typical operating range. Under a range of thermal design power (TDP) up to 30 W, trends of predicted operating temperatures show that the developed EHD cooling systems have great potential to compete with mechanical blowers in low-profile laptops with higher TDP, lower device height and reduced installation volume compared to a selected list of current standard laptops available commercially.
机译:电流动力学(EHD)风吹机独特地定位,以克服小规模和消费电子设备中小型化机械风扇的局限性。提出了一种新的冷却系统设计,采用与板翅散热器集成的优化EHD鼓风机,并提出了薄的消费电子产品,例如笔记本电脑应用。开发并验证了三维(3D)数值模型以解决EHD流动和共轭传热的耦合方程,并预测集成EHD系统的冷却性能。对于从6到12mm的散热器高度范围,执行参数研究以研究几何参数和操作条件对基于散热散热性和最高工作温度的EHD系统的热性能的影响。数值结果表明,所提出的EHD冷却系统能够提供有效的冷却性能并将温度保持在安全和典型的操作范围内。在一系列热设计功率(TDP)至30 W中,预测操作温度的趋势表明,开发的EHD冷却系统具有较大的潜力,可以在低调笔记本电脑中与较高的TDP,更低的设备高度和安装减少的机械鼓风机竞争体积与商业上可用的当前标准笔记本电脑的选定列表相比。

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