首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >DAMPING EFFECT ON THE WAVE PROPAGATION IN CARBON STEEL PIPELINES UNDER FLUID HAMMER CONDITIONS
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DAMPING EFFECT ON THE WAVE PROPAGATION IN CARBON STEEL PIPELINES UNDER FLUID HAMMER CONDITIONS

机译:流体锤条件下碳钢管道波传播的阻尼效应

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A sudden reduction of the fluid flow yields a pressure shock, which travels along the pipeline with a high speed. Due to this transient loading, dynamic hoop stresses are developed, that may cause catastrophic damages in pipeline integrity. The vibration of the pipe wall is affected by the flow parameters as well as by the elastic and damping characteristics of the material. Most of the studies on dynamic response of pipelines (a) neglect the effect of the material damping, and (b) are usually limited to harmonic pressure oscillations. The present work is an attempt to fill the above research gap. To achieve this target, an analytic solution of the governing motion equation of pipelines under moving pressure shock is derived. The proposed methodology takes into account both elastic and damping characteristics of the steel. With the aid of Laplace and Fourier integral transforms and generalized functions properties, the solution is based on the transformation of the dynamic partial differential equation into an algebraic form. Analytical inversion of the transformed dynamic radial deflection variable is achieved, yielding the final solution. The proposed methodology is implemented in an engineering example; and the results are shown and discussed.
机译:流体流动的突然减小产生压力休克,其沿着速度沿管道行进。由于这种瞬态负载,开发了动态箍应力,这可能导致管道完整性造成灾难性损害。管壁的振动受到流动参数的影响以及材料的弹性和阻尼特性。大多数关于管道(a)的动态响应的研究忽略了材料阻尼的效果,并且(b)通常限于谐波压力振荡。目前的作品是填补上述研究差距的尝试。为了实现该目标,推导出在移动压力冲击下管道的控制运动方程的分析解决方案。所提出的方法考虑了钢的弹性和阻尼特性。借助拉普拉斯和傅里叶积分变换和广义功能属性,解决方案基于动态部分微分方程转换成代数形式。实现了转化的动态径向偏转变量的分析反演,产生了最终解决方案。所提出的方法在工程例中实施;结果显示并讨论。

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