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首页> 外文期刊>Computers & Structures >Fluid-structure interaction in straight pipelines: Friction coupling mechanisms
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Fluid-structure interaction in straight pipelines: Friction coupling mechanisms

机译:直管道中的流固耦合:摩擦耦合机制

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The present paper approaches fluid-structure interaction by means of a 4-equation model. Experimental data collected from a straight copper pipe-rig lying directly on the lab floor is used for the model validation in terms of wave shape, timing and damping. The main focus lies on the friction coupling modelling considering skin and dry friction. For skin friction three approaches are analysed: quasi-steady, Brunone's and Trikha's unsteady friction. For dry friction Coulomb's model is added in the beam momentum conservation equation. Results present a good fitting between experimental and numerical data, showing the dissipative effect of dry friction phenomenon which complement that of skin friction, specially in the short term simulation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:本文通过4方程模型研究流体-结构的相互作用。从直接位于实验室地板上的铜制直管钻机收集的实验数据用于波形,时序和阻尼方面的模型验证。主要重点在于考虑皮肤和干摩擦的摩擦耦合建模。对于皮肤摩擦,分析了三种方法:准稳态摩擦,Brunone和Trikha的非稳态摩擦。对于干摩擦,在束动量守恒方程中增加了库仑模型。结果在实验数据和数值数据之间显示出很好的拟合,表明干摩擦现象的耗散效应与皮肤摩擦的耗散效应互补,特别是在短期模拟中。 (C)2016 Elsevier Ltd.保留所有权利。

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