首页> 外文会议>ASME(American Society of Mechanical Engineers) InterPack Conference 2007(IPACK2007) >IMPACT OF THERMODIFFUSION ON TEMPERATURE FIELDS IN STATIONARY NANOFLUIDS
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IMPACT OF THERMODIFFUSION ON TEMPERATURE FIELDS IN STATIONARY NANOFLUIDS

机译:热扩散对稳态纳米流体温度场的影响

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The research community has reported a large variety of at times contradictory thermal conductivity enhancements for nanofluids. Some of the differences may result from thermodiffusion, which is the coupled transport of heat and nanoparticles in a temperature gradient. Thermodiffusion can influence the apparent conductivity observed in a given experimental setup. This work explores the potential impact of thermodiffusion on the inconsistencies of the previous results and on the observed temperature dependence of the thermal conductivity enhancement. The thermal conductivity variation with temperature is captured using infrared microscopy. The thermal conductivity distribution varies significantly over the temperature range 27 - 73°C. This work also explores the potential impact of aggregation, gravitational separation, and thermodiffusion on the time-evolution of the thermal conductivity. For 1 percent by volume aluminum oxide in deionized water, this work finds a thermal conductivity enhancement of between 1 and 15 percent depending on temperature and time, which corresponds to an enhancement factor of between 1 and 15. For 0.2 percent by volume carbon nanotubes in silicone oil, this work finds a thermal conductivity enhancement of 8 percent with no dependence on temperature, which corresponds to an enhancement factor of 40.
机译:研究社区报告了纳米流体有时相互矛盾的热导率增强。某些差异可能是由于热扩散引起的,即温度梯度中热量和纳米颗粒的耦合传输。热扩散会影响在给定实验设置中观察到的表观电导率。这项工作探讨了热扩散对先前结果的不一致性以及所观察到的导热系数提高的温度依赖性的潜在影响。使用红外显微镜捕获热导率随温度的变化。在27-73°C的温度范围内,热导率分布会发生显着变化。这项工作还探讨了聚集,重力分离和热扩散对热导率时间演化的潜在影响。对于去离子水中的1%体积的氧化铝,这项工作发现,根据温度和时间的不同,导热系数将提高1%至15%,这对应于1%至15%的增强系数。对于0.2%的体积百分比的碳纳米管,硅油,这项工作发现导热系数提高了8%,与温度无关,相当于提高了40倍。

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