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导热和自然对流对石蜡定向熔化特性的影响 被引量:1
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作者 方健 冯文创 +2 位作者 丁斌 朱传勇 巩亮 《科学通报》 EI CAS CSCD 北大核心 2021年第21期2758-2765,共8页
相变散热器在有效保障功率瞬变、间歇性工作电子器件安全运行方面具有极大潜力.针对现有相变散热器性能亟需进一步提升的问题,本文通过改变加热位置和添加泡沫铜,实验探究了石蜡在导热+自然对流、导热、导热增强+自然对流抑制以及导热增... 相变散热器在有效保障功率瞬变、间歇性工作电子器件安全运行方面具有极大潜力.针对现有相变散热器性能亟需进一步提升的问题,本文通过改变加热位置和添加泡沫铜,实验探究了石蜡在导热+自然对流、导热、导热增强+自然对流抑制以及导热增强4种作用条件下的定向熔化特性.研究发现,在导热和自然对流同时作用条件下,石蜡的温度经历缓慢上升、极速上升、缓慢波动和继续上升4个阶段,自然对流的作用可将相变散热器的有限保护时间从导热作用时的483 s延长至4400 s.虽然添加泡沫铜能降低石蜡内部的温度梯度,但会延长自然对流作用的起始时间、缩短作用时长以及削弱作用强度,导致自然对流的作用权重比从8.1降至0.72,有效保护时间仅提升80 s.因此,采用相变材料(phase change material, PCM)散热器冷却低热流密度的电子器件时,应优先强化工质熔化过程中的自然对流,随着热流密度的增加,再逐渐强化其导热性能. 展开更多
关键词 石蜡 相变散热器 自然对流 熔化
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A review on heat transfer in nanoporous silica aerogel insulation materials and its modeling 被引量:1
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作者 chuan-yong zhu Hai-Bo Xu +2 位作者 Xin-Peng Zhao Liang Gong Zeng-Yao Li 《Energy Storage and Saving》 2022年第4期217-240,共24页
Silica aerogels are widely used in many fields for thermal insulation,such as building insulation,electric power energy,energy storage systems,and high-temperature thermal protection due to their excellent insulation ... Silica aerogels are widely used in many fields for thermal insulation,such as building insulation,electric power energy,energy storage systems,and high-temperature thermal protection due to their excellent insulation per-formance.Therefore,the heat transfer in silica aerogels and its modeling in recent years have attracted much attention and many valuable achievements have been acquired.The heat transfer in nano-porous silica aerogels and its modeling methods are reviewed in this work.This review starts with a brief introduction of heat transfer characteristics in silica aerogels,including the multi-component and multi-mode coupling effect,size effect,and multiscale effect.Then the heat transfer mechanism of each mode,including heat transfer via gas phase,solid phase,and thermal radiation,is reviewed,and the models for predicting the gaseous thermal conductivity in nanoscale pores,gas-contributed thermal conductivity,the apparent thermal conductivity of solid skeleton,and finally the effective thermal conductivity are collected and discussed in details.Besides,modeling of transient heat transfer in silica aerogels is also briefly introduced.Finally,the conclusions and some problems which need to be further investigated in the future are provided. 展开更多
关键词 Nanoporous silica aerogels Heat transfer characteristics Thermal conductivity Thermal insulation MODELING
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