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CFD analysis of the flow pattern and local shear rate in a scraped surface heat exchanger

机译:刮板式换热器中流型和局部剪切率的CFD分析

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A numerical investigation of a scraped surface heat exchanger (SSHE) was undertaken using the commercial CFD code FLUENT to characterize the shear rates for Newtonian and Non-Newtonian fluids.Simulations are carried out in standard geometries of SSHE.The electrochemical method was first employed to achieve experimental measurements of the shear rates.A two-dimensional model was created to perform the simulation,keeping the dimensions and flow parameters of the experiment.Because of the symmetry of the geometry,a bidimensional resolution of the continuity and momentum equations was conducted.A hybrid mesh was retained with a grid refinement between the tip of the blades and stator where high shear rates occur.A single reference frame approach was then applied to obtain the laminar steady-state flow induced by the rotation of blades in the geometry.A grid refinement in the zone localized between the tip of the blades and the stator is used.A comparison of predictions with experimental measurements was carried out,showing relative agreement between shear rates (S_(max)) predicted and measured for three fluids (HV45,CMC and guar gum).The little differences observed were principally explained by the 2D simulation which neglects Taylor vortices,when Taylor number (Ta_g) exceeds a critical value.In the case of HV45,rotating velocity can influence the scraper angle position due to the floating blade.This can induce a change in the gap between the tip of the blade and stator assembly (from 90 tol30 mu m) that was investigated here.
机译:使用商业CFD代码FLUENT对刮板式换热器(SSHE)进行了数值研究,以表征牛顿流体和非牛顿流体的剪切速率。在SSHE的标准几何形状中进行了模拟。建立了一个二维模型进行模拟,并保留了实验的尺寸和流动参数。由于几何形状的对称性,对连续性和动量方程进行了二维解析。在发生高剪切速率的叶片尖端与定子之间保留网格细化的混合网格,然后应用单个参考框架方法来获得由叶片旋转引起的层状稳态流。叶片尖端和定子之间的区域中的网格细化被使用。进行了测量,显示了三种流体(HV45,CMC和瓜尔胶)预测和测量的剪切速率(S_(max))之间的相对一致性。观察到的微小差异主要由忽略泰勒涡旋的二维模拟解释,泰勒(Ta_g)超过临界值。在HV45的情况下,旋转速度可能会由于浮动叶片而影响刮板角度位置,这可能会导致叶片尖端与定子组件之间的间隙发生变化(从90到30微米)在这里进行了调查。

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