膨胀管中屈服应力材料动员的屈服条件

T. Sochi
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引用次数: 1

摘要

本文研究了屈服应力材料在膨胀管中动员的屈服条件。我们讨论了在屈服之前模拟屈服应力材料的两种可能性:类固体材料和高粘性流体,并确定了这两种方法对屈服条件的逻辑后果。我们的研究结果表明,这两种建模方法对产量瓶颈有深远的影响,因此应该根据实验证据进行严格检查。作为本研究的一部分,我们使用一维Navier-Stokes流动模型结合基于弹性管壁特性的压力面积本构关系,推导出具有牛顿流的可膨胀管内压力场的解析表达式。该解析表达式比屈服应力材料屈服条件的识别具有更广泛的适用性。
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The yield condition in the mobilization of yield-stress materials in distensible tubes
In this paper we investigate the yield condition in the mobilization of yield-stress materials in distensible tubes. We discuss the two possibilities for modeling the yield-stress materials prior to yield: solid-like materials and highly-viscous fluids and identify the logical consequences of these two approaches on the yield condition. Our results reveal that these two modeling approaches have far reaching consequences on the yield bottleneck and hence should be critically examined in the light of experimental evidence. As part of this investigation we derive an analytical expression for the pressure field inside a distensible tube with a Newtonian flow using a one-dimensional Navier-Stokes flow model in conjunction with a pressurearea constitutive relation based on elastic tube wall characteristics. This analytical expression has wider applicability than in the identification of the yield condition of yield-stress material.
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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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3.3 months
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