首页> 外文会议>HTD-vol.375-2; American Society of Mechanical Engineers(ASME) International Mechanical Engineering Congress and Exposition vol.2; 20041113-19; Anaheim,CA(US) >EVALUATION OF THE TEMPERATURE OSCILLATION TECHNIQUE TO CALCULATE THERMAL CONDUCTIVITY OF WATER AND SYSTEMATIC MEASUREMENT OF THE THERMAL CONDUCTIVITY OF ALUMINUM OXIDE - WATER NANOFLUID
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EVALUATION OF THE TEMPERATURE OSCILLATION TECHNIQUE TO CALCULATE THERMAL CONDUCTIVITY OF WATER AND SYSTEMATIC MEASUREMENT OF THE THERMAL CONDUCTIVITY OF ALUMINUM OXIDE - WATER NANOFLUID

机译:计算水的热导率的温度振荡技术的评估和氧化铝-水纳米流体的热导率的系统测量

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摘要

A nanofluid is a fluid containing suspended solid particles, with sizes of the order of nanometers. The nanofluids are better conductors of heat than the base fluid itself. Therefore it is of interest to measure the effective thermal conductivity of such a nanofluid. We use temperature oscillation technique to measure the thermal conductivity of the nanofluid. However, first we evaluate the temperature oscillation technique as a tool to measure thermal conductivity of water. Then we validate our experimental setup by measuring the thermal conductivity of the aluminum oxide - water nanofluid and comparing our results with previously published work. Finally, we do a systematic series of measurements of the thermal conductivities of aluminum oxide - water nanofluids at various temperatures and explain the reasons behind the dependence of the enhancement in thermal conductivity of the nanofluid on temperature.
机译:纳米流体是包含悬浮的固体颗粒的流体,其大小为纳米量级。纳米流体比基础流体本身是更好的热导体。因此,感兴趣的是测量这种纳米流体的有效导热率。我们使用温度振荡技术来测量纳米流体的热导率。但是,首先,我们将温度振荡技术评估为一种测量水的热导率的工具。然后,我们通过测量氧化铝-水纳米流体的热导率并将我们的结果与以前发表的工作进行比较来验证我们的实验设置。最后,我们对氧化铝-水纳米流体在不同温度下的热导率进行了一系列系统的测量,并解释了纳米流体的热导率增强对温度的依赖性背后的原因。

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