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Effect of non-uniform temperature field in viscosity measurement

机译:温度场不均匀对粘度测量的影响

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摘要

In viscosity measurement, temperature control is very important. In this research, the effects of temperature distribution in viscosity measurement are investigated. Vibrational viscometers are preferred in experiments over other types of viscometers due to their low cost, easy to use and effective continuous viscosity measurement capability. This study was conducted in two parts. In the first part, thermal convection phenomenon within the experimental cup is analyzed. The experiments are carried out with three different standard fluids in continuously increasing temperature environment. Experimental outcomes show that when viscosity of the test fluid increases, the non-uniformity of the temperature field grows in the cup and results in viscosity measurement errors. In the second part, thermal conduction phenomenon is investigated. This experiment is repeated several times with different heating speeds in one selected standard fluid to gain a better understanding about the effect of thermal conduction in fluid viscosity. Experimental outcomes show that under some conditions viscosity measurement errors could reach up to 49.6 %. These findings have also been verified by mathematical calculations.
机译:在粘度测量中,温度控制非常重要。在这项研究中,研究了温度分布对粘度测量的影响。在实验中,振动粘度计比其他类型的粘度计更可取,因为它们的成本低,易于使用且具有有效的连续粘度测量能力。这项研究分为两个部分。在第一部分中,分析了实验杯内的热对流现象。实验是在持续升高温度的环境中使用三种不同的标准流体进行的。实验结果表明,当测试流体的粘度增加时,杯中温度场的不均匀性会增加,并导致粘度测量误差。在第二部分中,研究了热传导现象。在一种选定的标准流体中以不同的加热速度重复进行几次该实验,以更好地了解导热对流体粘度的影响。实验结果表明,在某些条件下,粘度测量误差可能高达49.6%。这些发现也已经通过数学计算得到了验证。

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