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FLOW INTERACTION WITH COMPOSITE WALL

机译:与复合墙的流相互作用

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摘要

Stability of the steady flow of a viscous liquid through the thick-walled multilayered viscoelastic tubes with different Theological properties of the layers for no stress boundary conditions at the outer surface of the tube is investigated. The eigen values of the system are found. The influence of the material parameters of the layers and the Reynolds number on the spatial and temporal amplification rate of the most unstable mode is investigated. It is shown that the system can be stabilized by increasing the shear modules of the inner and middle layers. The temporal amplification rate significantly decreases and becomes negative with increasing the shear modules of the outer layer, that corresponds to temporal stability of the system. The comparative study of the obtained dependences with the solution of the same problem at no displacement boundary conditions is carried out. The results may be applied to the fluid flows in the ducts of different technical devices as well as to the blood flow in the arteries and veins which are composed of three layers with different functions, structure and material parameters.
机译:研究了粘性液体通过厚壁多层粘弹性管的稳定流动的稳定性,该层具有不同的流变学特性,且在管的外表面没有应力边界条件。找到系统的特征值。研究了层的材料参数和雷诺数对最不稳定模态的时空放大率的影响。结果表明,可以通过增加内层和中间层的剪切模量来稳定系统。随着外层剪切模量的增加,时间放大率显着降低,并变为负值,这与系统的时间稳定性相对应。在没有位移边界条件的情况下,对获得的依赖关系与相同问题的解决方案进行了比较研究。该结果可应用于不同技术设备的导管中的流体流动以及由具有不同功能,结构和材料参数的三层组成的动脉和静脉中的血液流动。

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