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Flow regime analysis of non-Newtonian duct flows

机译:非牛顿管道流动的流态分析

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Reoriented duct flows of generalized Newtonian fluids are an idealization of non-Newtonian fluid flow in industrial in-line mixers. Based on scaling analysis and computation we find that non-Newtonian duct flows have several limit behaviors, in the sense that such flows can become (nearly) independent of one or more of the rheological and dynamical control parameters, simplifying the general flow and mixing problem. These limit flows give several levels of modeling complexity to the full problem of non-Newtonian duct flow. We describe the sets of simplified flow models and their corresponding regions of validity. This flow-model decomposition captures the essential rheological and dynamical characteristics of the reoriented duct flows and enables a more efficient and systematic study and design of flow and mixing of non-Newtonian fluids in ducts. Key aspects of the flow-model decomposition are demonstrated via a specific, but representative, duct flow.
机译:广义牛顿流体的重新定向管道流是工业在线混合器中非牛顿流体流的理想化。基于比例分析和计算,我们发现非牛顿管道流具有几种极限行为,即这种流可以(几乎)独立于一个或多个流变和动力学控制参数,从而简化了一般的流和混合问题。这些极限流量为非牛顿管道流量的整个问题提供了几个级别的建模复杂性。我们描述了简化流模型的集合及其相应的有效性区域。这种流动模型分解捕获了重新定向的管道流的基本流变和动力学特性,并使管道中非牛顿流体的流动和混合更加有效和系统地研究和设计。流量模型分解的关键方面通过特定但有代表性的管道流进行了演示。

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