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Mathematical modeling of concrete pipes reinforced with CNTs conveying fluid for vibration and stability analyses

机译:碳纳米管增强输送流体的混凝土管的数学模型,用于振动和稳定性分析

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摘要

In this study, vibration and stability of concrete pipes reinforced with carbon nanotubes (CNTs) conveying fluid are presented. Due to the existence of CNTs, the structure is subjected to magnetic field. The radial fore induced with fluid is calculated using Navier-Stokes equations. Characteristics of the equivalent composite are determined using Mori-Tanaka model. The concrete pipe is simulated with classical cylindrical shell model. Employing energy method and Hamilton's principal, the motion equations are derived. Frequency and critical fluid velocity of structure are obtained analytically based on Navier method for simply supported boundary conditions at both ends of the pipe. The effects of fluid, volume percent of CNTs, magnetic field and geometrical parameters are shown on the frequency and critical fluid velocity of system. Results show that with increasing volume percent of CNTs, the frequency and critical fluid velocity of concrete pipe are increased.
机译:在这项研究中,提出了用碳纳米管(CNTs)输送流体增强的混凝土管的振动和稳定性。由于CNT的存在,该结构经受磁场。使用Navier-Stokes方程计算流体引起的径向前倾。使用Mori-Tanaka模型确定等效复合材料的特性。用经典的圆柱壳模型对混凝土管道进行了模拟。利用能量法和汉密尔顿原理,推导了运动方程。基于管两端的简单支撑边界条件,基于Navier方法解析地获得了结构的频率和临界流体速度。显示了流体,碳纳米管的体积百分比,磁场和几何参数对系统频率和临界流体速度的影响。结果表明,随着碳纳米管体积百分比的增加,混凝土管的频率和临界流体速度都增加。

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