首页> 外文会议>ASME international mechanical engineering congress and exposition;IMECE2011 >MEASUREMENT AND MODEL CORRELATION OF SPECIFIC HEAT CAPACITY OF WATER- BASED NANOFLUIDS WITH SILICA, ALUMINA AND COPPER OXIDE NANOPARTICLES
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MEASUREMENT AND MODEL CORRELATION OF SPECIFIC HEAT CAPACITY OF WATER- BASED NANOFLUIDS WITH SILICA, ALUMINA AND COPPER OXIDE NANOPARTICLES

机译:二氧化硅,氧化铝和氧化铜纳米粒子的水基纳米流体比热容的测量和模型相关

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Nanofluids are being considered for heat transfer applications. However, their thermo-physical properties are poorly known. Here we focus on nanoftuid specific heat capacity. Currently, there exist two models to predict a nanofluid's specific heat capacity as a function of nanoparticle concentration and material. Model I is a straight volume-weighted average; Model II is based on the assumption of thermal equilibrium between the particles and the surrounding fluid. These two models give significantly different predictions for a given system. Using differential scanning calorimetry, the specific heat capacities of water based silica, alumina, and copper oxide nanofluids were measured. Nanoparticle concentrations were varied between 5wt% and 50wt%. Test results were found to be in excellent agreement with Model II, while the predictions of Model I deviate very significantly from the data.
机译:正在考虑将纳米流体用于传热应用。但是,它们的热物理性质知之甚少。在这里,我们关注纳米流体的比热容。当前,存在两种模型来预测纳米流体的比热容作为纳米颗粒浓度和材料的函数。模型I是直接的体积加权平均值;模型II基于颗粒与周围流体之间热平衡的假设。对于给定的系统,这两个模型给出了明显不同的预测。使用差示扫描量热法,测量了水基二氧化硅,氧化铝和氧化铜纳米流体的比热容。纳米颗粒浓度在5wt%和50wt%之间变化。测试结果与模型II非常吻合,而模型I的预测则与数据有很大出入。

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