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Laminar thermal-hydraulic efficiency of polyacrylamide solution in double pipe heat exchanger

机译:双管热交换器中聚丙烯酰胺溶液的层状热液压效率

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This paper discusses the thermal-hydraulic efficiency of polyacrylamide (PAA) solution in a double pipe heat exchanger. This study focuses on the laminar regime, with the Reynolds number range from 250 to 2000. This research is carried out numerically through using the ANSYS Fluent software version 15.0. The overall heat transfer coefficient of PAA solution is found to be three times larger than that of water with the concentration of merely 10 ppm. This heat transfer augmentation is attributed to the purely viscous shear-thinning characteristic of the solution. However, the maximum pressure drop of the PAA solution is approximately 31.7 times greater than the value of water. The increased viscosity of the solution is the main contributor of the pressure drop increment. The pressure drop can be reduced by increasing the PAA inlet temperature. As a result of the high pressure drop of the PAA solution, its thermal-hydraulic efficiency is not as good as compared to that of water, particularly at generalized Reynolds number smaller than 1500. The flow of PAA solution is observed to have its best efficiency at the concentration of 10 ppm, generalized Reynolds number of 2000 and PAA inlet temperature of 313.15 K. The best performance index obtained is approximately 1.108.
机译:本文讨论了双管热交换器中聚丙烯酰胺(PAA)溶液的热液压效率。这项研究的重点是层流政权,从250到2000年。这项研究是通过使用ANSYS FLUENT软件15.0版进行数字雷诺数范围。发现PAA溶液的总传热系数比仅为10ppm浓度的水大的三倍。该传热增强归因于溶液的纯粘性剪切变薄特性。然而,PAA溶液的最大压降比水的值大约为31.7倍。溶液的增加粘度是压降增量的主要因素。通过增加PAA入口温度可以降低压降。由于PAA溶液的高压降,其热液压效率与水相比,其温度不如水,特别是在广义雷诺数,在小于1500的广义雷诺数。观察PAA溶液的流动具有其最佳效率在10 ppm的浓度下,广义雷诺2000的数量和Paa入口温度为313.15k。获得的最佳性能指数约为1.108。

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