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Measurement of temperature-dependent viscosity and thermal conductivity of alumina and titania thermal oil nanofluids

机译:氧化铝和二氧化钛导热油纳米流体随温度变化的粘度和导热系数的测量

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摘要

In this study the results of simultaneous measurements of dynamic viscosity, thermal conductivity, electrical conductivity and pH of two nanofluids, i.e., thermal oil/Al2O3 and thermal oil/TiO2 are presented. Thermal oil is selected as a base liquid because of possible application in ORC systems as an intermediate heating agent. Nanoparticles were tested at the concentration of 0.1%, 1%, and 5% by weight within temperature range from 20 °C to 60 °C. Measurement devices were carefully calibrated by comparison obtained results for pure base liquid (thermal oil) with manufacturer’s data. The results obtained for tested nanofluids were compared with predictions made by use of existing models for liquid/solid particles mixtures.
机译:在这项研究中,给出了同时测量两种纳米流体即导热油/ Al2O3和导热油/ TiO2的动态粘度,导热率,电导率和pH值的结果。选择导热油作为基础液体是因为它可能在ORC系统中用作中间加热剂。在20℃至60℃的温度范围内以0.1重量%,1重量%和5重量%的浓度测试纳米颗粒。通过比较获得的纯基础液体(导热油)的结果与制造商的数据,对测量设备进行了仔细的校准。将测试的纳米流体获得的结果与使用现有模型的液/固颗粒混合物的预测结果进行比较。

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