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Laminar-Turbulent Transition Flows of Non-Newtonian Slurries: Models Assessment

机译:非牛顿浆料的层压湍流过渡流量:模型评估

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In this study, a qualitative assessment of transitional velocity engineering models for predicting non-Newtonian slurry flows in a horizontal pipe was performed using data from a wide range of pipe diameters (25-268 mm). In addition, the gamma theta transition model was used to compute selected flow conditions. These models were used to predict transitional velocities in large pipe diameters (up to 420 mm) for slurries. In general, it was observed that most of the current engineering models predict transitional velocities conservatively. Based on the gamma theta transition model results, for large Hedstrom numbers (He greater than or similar to 10(5)), other methods should be used to predict transitional velocities if a change in the pipe diameter (scale-up) results in an order of magnitude increase in the He value. It was also found that the gamma theta transition model predicted a laminar flow condition in the fully developed region for flow conditions with a small plug region (low-yield stress-to-wall shear stress ratio), which is contrary to what has been observed in some experiments. This is attributed to the local fluid rheological parameters values, which might be different from those reported. However, the gamma theta transition model results are in good agreement with the experimental data for flow conditions that have a large plug region (high-yield stress-to-wall shear stress ratio).
机译:在该研究中,使用来自各种管道直径(25-268mm)的数据进行用于预测水平管中的非牛顿浆料流动的过渡速度工程模型的定性评估。此外,使用伽玛θ转换模型来计算所选择的流动条件。这些模型用于预测大管直径(高达420mm)的过渡速度用于浆料。通常,观察到,大多数当前的工程模型保守地预测过渡速度。基于Gamma Theta转换模型结果,对于大型Hedstrom编号(他大于或类似于10(5)),如果管道直径(缩放)的变化导致的导致管道直径(缩放)的变化,则应使用其他方法来预测流动速度他的价值增加了​​数量级。还发现γθ转换模型预测了具有小插头区域(低屈服应力与壁剪切应力比)的流动条件的完全发育区域中的层流变条件,这与已经观察到的内容相反在一些实验中。这归因于局部流体流变参数值,这可能与报告的那些不同。然而,伽玛θ转换模型结果与具有大插头区域的流动条件(高屈服应力与壁剪切应力比)良好的经验数据良好。

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