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Hyperbolic contraction measuring systems for extensional flow

机译:扩展流量的双曲凝集测量系统

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In this paper an experimental method for extensional measurements on medium viscosity fluids in contraction flow is evaluated through numerical simulations and experimental measurements. This measuring technique measures the pressure drop over a hyperbolic contraction, caused by fluid extension and fluid shear, where the extensional component is assumed to dominate. The present evaluative work advances our previous studies on this experimental method by introducing several contraction ratios and addressing different constitutive models of varying shear and extensional response. The constitutive models included are those of the constant viscosity Oldroyd-B and FENE-CR models, and the shear-thinning LPTT model. Examining the results, the impact of shear and first normal stress difference on the measured pressure drop are studied through numerical pressure drop predictions. In addition, stream function patterns are investigated to detect vortex development and influence of contraction ratio. The numerical predictions are further related to experimental measurements for the flow through a 15:1 contraction ratio with three different test fluids. The measured pressure drops are observed to exhibit the same trends as predicted in the numerical simulations, offering close correlation and tight predictive windows for experimental data capture. This result has demonstrated that the hyperbolic contraction flow is well able to detect such elastic fluid properties and that this is matched by numerical predictions in evaluation of their flow response. The hyperbolical contraction flow technique is commended for its distinct benefits: it is straightforward and simple to perform, the Hencky strain can be set by changing contraction ratio, non-homogeneous fluids can be tested, and one can directly determine the degree of elastic fluid behaviour. Based on matching of viscometric extensional viscosity response for FENE-CR and LPTT models, a decline is predicted in pressure drop for the shear-thinning LPTT model. This would indicate a modest impact of shear in the flow since such a pressure drop decline is relatively small. It is particularly noteworthy that the increase in pressure drop gathered from the experimental measurements is relatively high despite the low Deborah number range explored.
机译:本文通过数值模拟和实验测量评估了收缩流动中介质粘度流体的延伸测量的实验方法。该测量技术测量由流体延伸和流体剪切引起的双曲凝集的压力下降,其中假设延伸部件支配。目前的评价工作通过引入若干收缩比和解决不同剪切和扩展反应的不同本构模型来实现对该实验方法之前的研究。包括的本构模型是恒定粘度oldroyd-b和FENE-CR模型的模型,以及剪切变薄LPTT模型。检查结果,通过数值压降预测研究了测量压降的剪切和第一正常应力差的影响。此外,研究流功能模式以检测涡旋发育和收缩率的影响。数值预测与通过与三种不同的测试流体的15:1收缩比的流动的实验测量进一步相关。观察到测量的压降表现出与数值模拟中预测的相同趋势,为实验数据捕获提供了紧密相关性和紧密预测窗口。该结果表明,双曲性收缩流能够检测这种弹性流体特性,并且这与评估其流动响应的数值预测匹配。代表双曲线收缩流动技术对于其独特的益处:执行简单且简单,可以通过改变收缩率来设定Hencky应变,可以测试非均匀流体,并且可以直接确定弹性流体行为的程度。基于FENE-CR和LPTT模型的粘度伸展粘度响应的匹配,预测剪切变薄LPTT模型的压降下降。这将表示剪切在流动中的适度影响,因为这种压降下降相对较小。尤其值得注意的是,尽管探索了低毁战人数范围,但实验测量收集的压力下降的增加相对较高。

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