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The effect of gas and fluid flows on nonlinear lateral vibrations of rotating drill strings

机译:气体和流体流动对旋转钻柱非线性横向振动的影响

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In this work we develop nonlinear mathematical models describing coupled lateral vibrations of a rotating drill string under the effect of external supersonic gas and internal fluid flows. An axial compressive load and a torque also affect the drill string. The mathematical models are derived by the use of Novozhilov's nonlinear theory of elasticity with implementation of Hamilton's variation principle. Expressions for the gas flow pressure are determined according to the piston theory. The fluid flow is considered as added mass inside the curved tube of the drill string. Using an algorithm developed in the Mathematica computation program on the basis of the Galerkin approach and the stiffness switching method the numerical solution of the obtained approximate differential equations is found. Influences of the external loads, drill string angular speed of rotation, parameters of the gas and fluid flows on the drill string vibrations are shown. (C) 2017 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们开发了非线性数学模型,该模型描述了在外部超音速气体和内部流体流的作用下旋转钻柱的耦合横向振动。轴向压缩载荷和扭矩也会影响钻柱。数学模型是通过使用Novozhilov的非线性弹性理论和汉密尔顿的变分原理来推导的。气流压力的表达式根据活塞理论确定。流体流动被视为钻柱弯曲管内部的附加质量。使用在Mathematica计算程序中基于Galerkin方法和刚度转换方法开发的算法,可以找到获得的近似微分方程的数值解。显示了外部负载,钻柱旋转角速度,气体和流体流量参数对钻柱振动的影响。 (C)2017 Elsevier B.V.保留所有权利。

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