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首页> 外文期刊>IEEE Transactions on Components and Packaging Technologies >Transient thermal management of temperature fluctuations during time varying workloads on portable electronics
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Transient thermal management of temperature fluctuations during time varying workloads on portable electronics

机译:便携式电子设备在时变工作负载期间温度波动的瞬态热管理

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This paper describes the investigation of solid to liquid phase change materials (PCM's) for passive energy storage during the condition of time varying workloads on portable electronics. The model investigated includes a thermal control unit (TCU) embedded in an epoxy polymer. A TCU is an enclosure that contains phase change material (PCM) and a thermal conductivity enhancer, is located near the power source, and acts as an energy storage and heat-spreading module. Physical experiments were carried out to investigate the performance improvements of introducing a TCU into an embedded system and were used to validate the accuracy of the numerical model. Numerical simulations were performed to study the effect duty cycles and substrate thermal conductivities have on the thermal performance of the electronic wearable computer system with passive energy storage. Additionally, the TCU was numerically modeled to determine the influence of boundary conditions on TCU performance. To quantify the improvements of the system, metrics were developed from analyzing the thermal evolution of the TCU parameters, such as temperature fields, temperature bands, PCM characteristics, and power loads. Results indicate that using a TCU for passive energy storage significantly increases the portable electronics system's operational performance. Duty cycles with the same average power over the duration of the cycle do not influence the length of the PCM phase change time, but do impact the mean value of the temperature fluctuation bands.
机译:本文描述了在便携式电子设备上时变工作负载的情况下,用于无源能量存储的固态到液态相变材料(PCM)的研究。研究的模型包括嵌入在环氧聚合物中的热控制单元(TCU)。 TCU是包含相变材料(PCM)和导热系数增强剂的外壳,位于电源附近,并用作能量存储和散热模块。进行了物理实验,以研究将TCU引入嵌入式系统的性能改进,并用于验证数值模型的准确性。进行了数值模拟,以研究占空比和基底热导率对具有无源能量存储的电子可穿戴计算机系统的热性能的影响。此外,对TCU进行了数值建模,以确定边界条件对TCU性能的影响。为了量化系统的改进,通过分析TCU参数(例如温度场,温度带,PCM特性和功率负载)的热演化来开发度量。结果表明,使用TCU进行无源能量存储可显着提高便携式电子系统的运行性能。在周期持续时间内具有相同平均功率的占空比不会影响PCM相变时间的长度,但会影响温度波动带的平均值。

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