Numerical Study of Static and Dynamic Instabilities of Pinned-Pinned Pipe under Different Parameters

Dahmane Mouloud, Zahaf Samir, Benkhettab Mohamed, Boutchicha Djilali
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Abstract

In this study, the natural frequencies of the pipe transporting an fluid resting on an elastic Winkler-type and the critical velocities of instabilities are obtained by the standard finite element method. A dynamic characteristic of a pipe carrying internal fluid undergoes mechanical load due to inertia effect of fluid, Coriolis force, fluid kinetic force due to fluid flow velocity, dynamic load due to inertia effect on the pipe structure. A numerical modal analysis is realized in the fluid-structure interaction configuration. One dimensional beam finite element is used for investigating the dynamic behavior of the thin pipe. According to the approved method, the different elementary matrices were extracted, which were including to a code called Matlab. We developed a program under Matlab with R2017b version, where computations are in the complex planes. The initial approach is based on some research and analytical models. The numerical results show satisfactory agreement with the analytical results. The increase in flow velocity, mass ratio and length reduced from the rigidity of the system. Regions and range of instabilities are presented by numerical aspects. We determined the influence of the different parameters on the static and dynamic instabilities of the system.
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不同参数下钉-钉管静、动不稳定性数值研究
本文采用标准有限元法计算了基于弹性温克勒型管道的固有频率和临界失稳速度。承载内部流体的管道的动态特性是由于流体的惯性作用而受到机械载荷、科里奥利力、流体流速引起的流体动能、管道结构的惯性作用引起的动载荷。对流固耦合态进行了数值模态分析。采用一维梁有限元法对细管的动力特性进行了研究。根据认可的方法,提取不同的初等矩阵,并将其包含到Matlab代码中。我们在Matlab下开发了一个R2017b版本的程序,其中计算是在复平面上进行的。最初的方法是基于一些研究和分析模型。数值计算结果与分析结果吻合较好。流速、质量比和长度的增加减少了系统的刚性。数值方面给出了不稳定的区域和范围。确定了不同参数对系统静态和动态不稳定性的影响。
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