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Flow of Oldroyd 8-constant fluid in a scraped surface heat exchanger

机译:刮板式换热器中Oldroyd 8常数流体的流动

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In this work the flow of the Oldroyd 8-constant fluid model in a scraped surface heat exchanger (SSHE) is studied. We have taken the steady incompressible isothermal flow of a fluid around a periodic arrangement of pivoted scraper blades in a channel for a generalized Poiseuille flow, and the flow is modeled using the lubrication-approximation theory (LAT), where as in SSHE the gaps between the blades and the device walls are narrow. Using these approximations we got the non-linear boundary value problem which is solved using the Adomian decomposition method. Expressions for velocity profiles for different regions, flow rates, stream function are obtained. Graphical and tabular representation for the velocity profile and for the different flow parameters involved is also incorporated. Foodstuffs behave as non-Newtonian material, possess shear-thinning and shear-thickening effects, so they are considered for the understanding of non-Newtonian effects inside the SSHE Oldroyd 8-constant fluid model. In addition to food industry this work will also be helpful in pharmaceutical and chemical industries as most of the materials used in the industry are non-Newtonian in nature.
机译:在这项工作中,研究了刮板式换热器(SSHE)中Oldroyd 8常数流体模型的流动。我们采用了流体在管道中周期性旋转刮刀叶片的周期性排列的稳态不可压缩等温流,以进行广义的泊固流,该流使用润滑近似理论(LAT)进行建模,其中在SSHE中,刀片和设备壁很窄。使用这些近似值,我们得到了非线性边界值问题,该问题使用Adomian分解方法得以解决。获得了不同区域的速度分布,流量,流函数的表达式。速度分布图和所涉及的不同流量参数的图形和表格表示也包括在内。食品的行为类似于非牛顿材料,具有剪切稀化和剪切增稠作用,因此考虑将它们用于理解SSHE Oldroyd 8常数流体模型内部的非牛顿效应。除食品工业外,这项工作还将对制药和化学工业有所帮助,因为该工业中使用的大多数材料本质上都是非牛顿性的。

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