弹性支承边界条件下双参数基础输液管道振动稳定性分析

IF 13 1区 工程技术 Q1 ENGINEERING, MARINE
Yongqi Ma , Yunxiang You , Ke Chen , Aichun Feng
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引用次数: 0

摘要

本研究探讨了在四种不同的弹性支撑边界条件下,静止在双参数地基上的流体输送管道的振动稳定性。在弹性地基和边界条件下,采用谐波微分四次方(HDQ)法求解基于欧拉-伯努利梁理论推导的控制振动方程。通过适当设置末端弹簧的刚度,可以轻松研究具有经典或非经典边界条件的各种系统的动力学。数值模拟研究了管道失稳性能与各种边界条件、弹性支撑参数、弹性地基参数和流体质量比的关系。通过与已公布的数据进行比较,对数值模型进行了验证。结果发现,弹性支撑边界条件对弹性地基上管道的稳定性有显著影响。管道稳定性能对两个弹性地基参数非常敏感。流体质量比越大,管道飘动稳定性能越好,但对发散没有影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of vibration stability of fluid conveying pipe on the two-parameter foundation with elastic support boundary conditions
In this study, the vibration stability of fluid conveying pipe resting on two-parameter foundation is investigated under four different elastic support boundary conditions. The harmonic differential quadrature (HDQ) method is applied to solve the governing vibration equation derived based on Euler–Bernoulli beam theory subject to the elastic foundation and boundary conditions. As a result, a general set of second-order ordinary differential equations emerges, and by appropriately setting the stiffness of the end springs, one can easily study the dynamics of various systems with classical or non-classical boundary conditions. The numerical simulations are conducted to study the pipe instability performance with respect to various boundary conditions, elastic support parameters, elastic foundation parameters and fluid mass ratios. The numerical model is validated by comparison with published data. It is found that the elastic support boundary conditions have significant effects on the stability of pipe resting on elastic foundation. The pipe stability performance is very sensitive to the two elastic foundation parameters. Larger fluid mass ratio enhances the pipe flutter stability performance but has no effects on the divergence.
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来源期刊
CiteScore
11.50
自引率
19.70%
发文量
224
审稿时长
29 days
期刊介绍: The Journal of Ocean Engineering and Science (JOES) serves as a platform for disseminating original research and advancements in the realm of ocean engineering and science. JOES encourages the submission of papers covering various aspects of ocean engineering and science.
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