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Rheological analysis of MWCNT, TiO2, CuO based Nano-Fluids under varying temperatures and concentrations

机译:不同温度和浓度下MWCNT,TiO2,CuO基纳米流体的流变学分析

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The present work aims to determine the effect of Nanoparticles in Water - Ethylene glycol mixture on contradictory results in literature, which includes thermo-physical property focusing on viscosity. The experimental analysis was carried out using Rheometer on Water -Ethylene glycol based Nano fluid containing 0.015 % and 0.15 % by weight concentration of cylindrical MWCNT, spherical CuO and TiO2 at 10 °C, 20 °C, 30 °C and 40 °C. The Rheometer procured result of viscosity shows that the Newtonian to shear thinning transition takes place at high shear stress range in comparison to the base fluid. At 10 °C, highest increment in the viscosity was noted by MWCNT (0.015 % by mass) over (0.15 % by mass) for CuO, 139.3 % increment and TiO2 recorded 64.73 % for (0.015 % by mass) over (0.15 % by mass). Moreover, the modified Maron and Pierce model predicted the viscosity of Nano-Fluid which in turn resulted in showing that viscosity ration of Nano-Fluid increased with increase in temperature due to the addition of high surface activity Nano particles into water-ethylene glycol mixture. The aspect ratio, Brownian motion, shear thinning and surface activity of Nano particles played a major role in the viscosity analysis.
机译:本作者的目的旨在确定纳米颗粒在水 - 乙二醇混合物中对文献中的矛盾结果的影响,包括聚焦粘度的热物理性质。使用流变仪在含有0.015%和0.15重量%的圆柱形MWCNT,球形CUO和TiO 2的纳米流体上使用流变仪进行实验分析,在10℃,20℃,30℃和40℃下进行圆柱形MWCNT,球形CuO和TiO 2。流变仪采购的粘度结果表明,与基础流体相比,牛顿对剪切稀疏转变发生在高剪切应力范围。在10℃下,用MWCNT(0.015质量%)对CUO的MWCNT(0.15质量%)(0.15质量%)指出的最高递增,139.3%的增量和TiO 2记录64.73%(0.015质量%)(0.15%)大量的)。此外,改性的Maron和Pierce模型预测了纳米流体的粘度,这反过来导致纳米流体的粘度率随着加入高表面活性纳米颗粒的温度增加而增加,进入水 - 乙二醇混合物。纳米颗粒的纵横比,布朗运动,剪切稀释和表面活性在粘度分析中发挥了重要作用。

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