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Simultaneous Measurement of Thermal Conductivity, Thermal Diffusivity, and Specific Heat of IVIanofluids

机译:同时测量IVIanofluids的热导率,热扩散率和比热

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Effective thermal conductivity, effective thermal diffusivity, and effective specific heat of nanofluids were simultaneously measured by using a transient double hot-wire technique. Several types of nanofluids were prepared by suspending different volume percentages (1 to 5%) of titanium dioxide (TiO_2), aluminum oxide (Al_2O_3), and aluminum (Al) nanoparticles in ethy-lene glycol and engine oil. While effective specific heats of these nanofluids decrease substantially with nanoparticle volume fraction, the enhanced effective thermal conductivity and effective thermal diffusivity were found to increase significantly with increasing volumetric loading of these nanoparticles. The increments of the effective thermal diffusivity of nanofluids were slightly larger than their effective thermal conductivity values. Predictions of the effective specific heats of nanofluids by the volume fraction mixture rule-based model showed fairly good agreement (within 7%) with the experimental results. Besides particle volume fraction, particle material, particle shape and the type of base fluid were identified to have influence on these properties of nanofluids. Both the calibration results of the base fluids (system accurate to ≤2.7%) and uncertainty analysis (uncertainty ≤2.1%) indicate high accuracy of using the double hot-wire method to simultaneously measure the effective thermal conductivity, effective thermal diffusivity, and specific heat of nanofluids.
机译:使用瞬态双热线技术同时测量了纳米流体的有效导热率,有效热扩散率和有效比热。通过将不同体积百分比(1-5%)的二氧化钛(TiO_2),氧化铝(Al_2O_3)和铝(Al)纳米颗粒悬浮在乙二醇和发动机油中,制备了几种类型的纳米流体。尽管这些纳米流体的有效比热随纳米颗粒的体积分数而显着降低,但发现随着这些纳米颗粒的体积载荷的增加,有效导热率和有效热扩散率的提高显着增加。纳米流体的有效热扩散率增量略大于其有效热导率值。基于体积分数混合规则的模型对纳米流体的有效比热的预测与实验结果显示出相当好的一致性(在7%之内)。除了颗粒体积分数之外,还确定了颗粒材料,颗粒形状和基础流体的类型对纳米流体的这些性能有影响。基础流体的校准结果(系统精度≤2.7%)和不确定度分析(不确定度≤2.1%)均表明使用双热线法同时测量有效导热系数,有效热扩散系数和比值的准确性很高。纳米流体的热量。

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