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首页> 外文期刊>Journal of thermal analysis and calorimetry >Experimental investigation for developing a new model for the dynamic viscosity of silver/ethylene glycol nanofluid at different temperatures and solid volume fractions
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Experimental investigation for developing a new model for the dynamic viscosity of silver/ethylene glycol nanofluid at different temperatures and solid volume fractions

机译:不同温度和固体体积分数下银/乙二醇纳米流体动态粘度新模型的实验研究

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摘要

This experimental study addressed developing a new model for the dynamic viscosity of silver/ethylene glycol nanofluid within the temperature range of 25-55 degrees C for samples with volume fractions of 0.25, 0.5, 0.75, 1, 1.5, and 2%. In this experiment, the nanofluid was exposed to ultrasound waves for various durations to study the effect of this parameter on dynamic viscosity of the fluid. Dynamics viscosity of nanofluid is measured using the DVI PRIME Brookfield digital viscometer which has a doublewall cylindrical container. According the results, dynamic viscosity increases with increasing the volume fraction. On the other hand, dynamic viscosity of the fluid decreases with increasing temperature. Relative viscosity of the nanofluid increased approximately by 88.46, 90.44, 83.25, and 82.06% by increasing the volume fraction from 0.25 to 2% at 40, 45, 50, and 55 degrees C, respectively. Due to the lack of a precise and appropriate equation for the prediction of dynamics viscosity of silver/ethylene glycol nanofluid, an equation was provided based on the measurement results, which was a function of volume fraction and temperature. Investigations showed that maximum value for the margin of deviation for the proposed equation was equal to 8%, which is acceptable for an experimental equation.
机译:该实验研究解决了在25-55℃的温度范围内为含银/乙二醇纳米流体的动态粘度的新模型,其具有0.25,0.5,0.75,1,1,1.5和2%的体积级分的样品。在该实验中,将纳米流体暴露于超声波,用于各种持续时间,以研究该参数对流体动态粘度的影响。使用具有双壁圆柱形容器的DVI Prime Brookfield数字粘度计测量纳米流体的动力学粘度。结果,随着体积分数的增加,动态粘度增加。另一方面,流体的动态粘度随温度的增加而降低。纳米流体的相对粘度通过在40,45,50和55摄氏度下增加0.25至2%的体积分数,增加了88.46,90.44,83.25和82.06%。由于缺乏用于预测银/乙二醇纳米流体的动力学粘度的精确和适当的方程,基于测量结果提供了一种等式,这是体积分数和温度的函数。研究表明,所提出的等式的偏差裕度的最大值等于8%,这对于实验方程可以接受。

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