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Influence Study of the Viscoelastic Fluids Features in Drag Reduction in Laminar Regime Flow in Pipeline

机译:粘弹性流体特性对管道层流中减阻的影响研究

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The drag reduction by polymer addition is wide interest in several areas. It has been shown that the polymer addition cushions the dissipative effects in turbulent flows. The main objective of this work is to establish a methodology for the numerical simulation of viscoelastic fluid through internal subroutines implemented in the Fluent code, via UDF. The validation of this methodology is made for the laminar flow regime case in pipeline. To describe the viscoelastic effect, it was used the Finitely Extensible Nonlinear Elastic model closing with Peterlin model. To taking in account the viscous effects 50≤Re≤2000 values were used. In addition, for the polymer concentration analysis it was used values which depend on the polymers molecular weight and the solution concentration that ranged from 0≤Cw≤20. The molecular elasticity and extensibility were maintained at constant values. The results showed that the addition of polymers regardless of their molecular weight in laminar flow regime causes no change in power dissipation. This result, which is consistent with the literature, is a significant advance in defining a credible and appropriate methodology to viscoelastic fluid flow study by UDF implementation of constituent models that characterize these fluids.
机译:通过聚合物添加的减阻在多个领域引起广泛关注。已经表明,聚合物的添加缓冲了湍流中的耗散作用。这项工作的主要目的是建立通过Fluent代码中通过UDF实现的内部子例程对粘弹性流体进行数值模拟的方法。这种方法论的验证是针对管道中的层流状态的情况。为了描述粘弹性效应,使用了与Peterlin模型闭合的有限可扩展非线性弹性模型。考虑到粘性效应,使用50≤Re≤2000的值。另外,对于聚合物浓度分析,使用取决于聚合物分子量和溶液浓度的值,其范围为0≤Cw≤20。分子弹性和延伸性保持在恒定值。结果表明,无论层流状态下分子量如何,添加聚合物都不会引起功耗的变化。该结果与文献一致,这是在通过UDF实现表征这些流体的组成模型来定义一种可靠且适当的方法进行粘弹性流体流动研究方面的一项重大进展。

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