Numerical Analysis of Viscoelastic Start-up Flow in Abrupt Contraction-Expansion Channels using Stress Power

Takehiro Yamamoto, K. Nakamura
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引用次数: 1

Abstract

The Start-up flow of viscoelastic fluids in three abrupt contraction-expansion channels was numerically studied using the Leonov model. A slit channel connects two parallel conduits, and the three contraction-expansion channels are different in the slit length. The analysis in terms of the stress power showed that the swell of the flow at the expansion region was related to the release of elastic energy which was stored in the upstream channel; when the slit length is shorter, more elastic energy should be released at the expansion region, hence the swell occurred more greatly.
基于应力功率的突然收缩-膨胀通道粘弹性启动流数值分析
利用Leonov模型对粘弹性流体在三种突然收缩-膨胀通道中的启动流动进行了数值研究。两条平行管道之间以狭缝通道连接,三条收缩-膨胀通道的狭缝长度不同。从应力功率的角度分析表明,膨胀区水流的膨胀与上游通道中储存的弹性能的释放有关;狭缝长度越短,膨胀区释放的弹性能越多,膨胀越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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