首页> 外文会议>OMAE2010;International conference on ocean, offshore and arctic engineering >VIBRATION AND STABILITY BEHAVIOUR OF SANDWICHED VISCOELASTIC PIPES CONVEYING A NON-NEWTONIAN FLUID
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VIBRATION AND STABILITY BEHAVIOUR OF SANDWICHED VISCOELASTIC PIPES CONVEYING A NON-NEWTONIAN FLUID

机译:输送非牛顿流体的夹心粘弹性管的振动和稳定性

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Internal fluid flow parameters in conjunction with elastomechanical properties of conveyance systems have significantly modulated flow induced vibrations in pipeline and riser systems. Recent advances on the mechanics of sandwich elastic systems as effective vibration and noise reduction mechanisms have simulated the possibility of replacing traditional steel pipes with sandwich pipes in deepwater environment. The dynamic behaviour and stability of sandwich elastic pipes conveying a non-Newtonian fluid are investigated in this paper. For this problem, a set of generalised non-linear equations governing the vibration of sandwich pipes held together in pressurised environment and conveying a non-Newtonian fluid is presented. By linearizing the governing partial differential equation matching the problem physics, under slight perturbation of the internal fluid velocity and other flow variables closed form analytical results for the system dual natural frequencies and stability under external excitation are computed for field designs and applications. Results show that for a given length of pipe, beyond the critical velocity, instability increases with the velocity of conveyance.
机译:内部流体流动参数与输送系统的弹性力学特性相结合,显着调节了管道和立管系统中的流动引起的振动。三明治弹性系统的力学方面的最新进展是有效的振动和降噪机制,已经模拟了在深水环境中用三明治管代替传统钢管的可能性。研究了输送非牛顿流体的夹层弹性管的动力学行为和稳定性。针对此问题,提出了一组广义的非线性方程式,用于控制在压力环境中保持在一起的三明治管的振动并输送非牛顿流体。通过线性化与问题物理学相匹配的支配的偏微分方程,在内部流体速度和其他流动变量受到轻微扰动的情况下,针对系统的双固有频率和稳定性计算了系统的分析结果,以供现场设计和应用。结果表明,对于给定长度的管道,超过临界速度时,不稳定性会随输送速度的增加而增加。

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