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MHD and heat transfer analyses of a fluid flow through scraped surface heat exchanger by analytical solver

机译:通过分析求解器通过刮过的表面热交换器的流体流动的MHD和传热分析

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摘要

Scraped surface heat exchangers (SSHEs) diversely used in various industries for different settings when continuous processing of fluid and related material is required. In this work, heat transfer for steady incompressible flow of a Newtonian fluid in the presence of high magnetic field with temperature variant viscosity in a small gap of SSHE is studied for a fixed temperature difference narrow gaps between rotor and stator. The fluidic system is modeled mathematically in terms of PDEs for non-isothermal megnetohydrodynamic (MHD) flow with temperature dependent viscosity for linear blade shape. The solution of modeled PDEs are obtained analytically by exploiting the strength of Adomian decomposition method (ADM). The effects of different flow parameters of the systems are studied and their results are presented with analytical expressions and graphical illustrations.
机译:刮削表面热交换器(SSHES)在需要连续处理流体和相关材料时,各种行业多样化。在这项工作中,研究了在SSHE小间隙中具有温度变化粘度的高磁场存在的牛顿流体的稳定不可压缩流动的热传递,用于转子和定子之间的固定温度差窄间隙。流体系统以非等温百万流体动力学(MHD)流动的PDE在数学上进行建模,具有温度依赖性粘度,用于线性叶片形状。通过利用ADOMIAN分解方法(ADM)的强度分析模拟PDE的溶液。研究了系统的不同流动参数的影响,并通过分析表达和图形插图提出了它们的结果。

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