W1FINITE ELEMENT ANALYSIS OF PIPES CONVEYING FLUID MOUNTED ON VISCOELASTIC FOUNDATIONS

N. Mostafa
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Abstract

AbstractIn this study, the stability of a simply supported pipeline conveying fluid with different velocities and resting on viscoelastic foundation is investigated by using finite element analysis, and the critical fluid velocity with different parameters such as stiffness and viscous coefficients of foundation are obtained. This structural system could be found in pipes conveying petrol, water, and sewage. The foundation is simulated using the modified Winkler's model to introduce the effect of time dependent viscosity term. Some known results are confirmed and some new ones obtained. Two components of foundation, stiffness and viscosity, seemed to act on the critical flow velocity of the pipe in contrary trend. Where, increasing the foundation stiffness tended to increase the critical flow velocity in the pipe. While, increasing foundation viscosity attempted to decrease it. At some ranges of pipe length, the foundation viscosity effect seems to be more extreme. Increasing the fluid velocity leads to monotonic reduction in the system damping ratio. Two parameters, pipe length and fluid density which relate to the natural frequency of pipeline conveying fluid are studied in detail and the results indicate that the effect of Coriolis force on natural frequency is become more effective by increasing pipe length and fluid density besides increasing fluid flow velocity.
粘弹性基础上流体输送管道的有限元分析
摘要本文采用有限元分析方法,研究了粘弹性地基上不同速度流体输送的简支管道的稳定性,得到了地基刚度和粘性系数等不同参数下的临界流体速度。这种结构系统可以在输送汽油、水和污水的管道中找到。采用改进的Winkler模型对地基进行了模拟,引入了时间相关粘度项的影响。一些已知的结果得到了证实,并获得了一些新的结果。基础的两个组成部分,刚度和粘度,似乎对管道的临界流速起着相反的作用。其中,增加基础刚度往往会增加管道中的临界流速。而增加地基粘度试图降低地基粘度。在一定的管道长度范围内,地基粘度效应似乎更为极端。增加流体速度导致系统阻尼比的单调减小。详细研究了管道长度和流体密度这两个与管道输送流体固有频率有关的参数,结果表明,科里奥利力对固有频率的影响除了增加流体流速外,还通过增加管道长度和液体密度变得更有效。
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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24 weeks
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