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Dynamic stress, strain and deflection analysis of pipes conveying nanofluid buried in the soil medium considering damping effects subjected to earthquake load

机译:在考虑到地震载荷的阻尼效应,在土壤中埋藏纳米流体管的动态应力,应变和挠度分析

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In this paper, dynamic stress, strain and deflection analysis of concrete pipes conveying nanoparticles-water under the seismic load are studied. The pipe is buried in the soil which is modeled by spring and damper elements. The Navier- Stokes equation is used for obtaining the force induced by the fluid and the mixture rule is utilized for considering the effect of nanoparticles. Based on refined two variables shear deformation theory of shells, the pipe is simulated and the equations of motion are derived based on energy method. The Galerkin and Newmark methods are utilized for calculating the dynamic stress, strain and deflection of the concrete pipe. The influences of internal fluid, nanoparticles volume percent, soil medium and damping of it as well as length to diameter ratio of the pipe are shown on the dynamic stress, strain and displacement of the pipe. The results show that with enhancing the nanoparticles volume percent, the dynamic stress, strain and deflection decrease.
机译:本文研究了在地震荷载下输送纳米颗粒 - 水的混凝土管的动态应力,应变和偏转分析。管道埋在土壤中,该土壤由弹簧和阻尼元件建模。 Navier-Stokes方程用于获得由流体引起的力,并且混合规则用于考虑纳米颗粒的作用。基于精致的两个变量剪切变形理论的壳体,模拟管道,并基于能量法导出运动方程。 Galerkin和Newmark方法用于计算混凝土管的动态应力,应变和偏转。内部流体,纳米颗粒体积百分比,土壤介质和阻尼的影响以及管道的长度与管道的长度的影响,在管道的动态应力,应变和位移上。结果表明,随着纳米颗粒体积%,动态应力,应变和偏转减少。

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