承载顶部质量的密度可变垂直梁/柱的屈曲现象

IF 1.4 4区 工程技术 Q2 ENGINEERING, MULTIDISCIPLINARY
Mustafa Turkyilmazoglu
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引用次数: 0

摘要

本研究的重点是对支撑恒定顶部质量的理想非均匀立梁和立塔进行建模。我们还分析了它们的动态稳定性,因为确定影响其形状和稳定性的设计参数对结构工程具有重要价值。起初,我们采用静力学方法来平衡机械力和重力。通过求解初值问题,我们得出了柱子的横截面积。我们的研究结果表明,这些面积而非形状是影响柱子工程性能的主要因素。此外,柱顶质量是横截面积的乘数因子,而柱顶的密度分布决定了柱顶应该更重还是更轻。此外,我们还证明,指数截面、抛物线截面或线性截面以及明显加宽的底部剖面对于承受较重的顶部荷载至关重要。在动态分析方面,我们考虑了两种理想的塔架配置:FC 和 SC。数值和分析结果表明,较高的模式表现出较短的振幅。FC 模式需要更高的设计参数来抵抗屈曲现象,而 SC 模式对振动偏移的抵抗力较低。在稳定性方面,较重的顶部质量可增强垂直梁的稳定性,而具有抛物线基座的塔架则更容易受到不稳定性的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Buckling phenomenon of vertical beam/column of variable density carrying a top mass

Buckling phenomenon of vertical beam/column of variable density carrying a top mass

This study focuses on modeling ideal nonuniform standing beams and towers supporting a constant top mass. We also analyze their dynamical stability, as determining the design parameters influencing their shape and stability holds significant value for structural engineering. Initially, we employ a statical mechanics approach to balance the mechanical and gravitational forces. By solving an initial-value problem, we derive the cross-sectional areas of the columns. Our findings reveal that these areas, rather than the shapes, are the primary contributors to the engineering performance of the columns. Additionally, the top mass acts as a multiplying factor for the cross-sectional areas, and the density distribution along the column determines whether the top should be heavier or lighter. Furthermore, we demonstrate that exponential, parabolic, or linear cross-sections with significantly wider base profiles are crucial for accommodating heavier top loads. Moving on to the dynamical analysis, we consider two ideal tower configurations: FC and SC. Numerical and analytical results reveal that higher modes exhibit shorter amplitudes. FC modes necessitate higher design parameters to resist buckling phenomena, whereas SC modes show lower resistance to vibrational deflections. In terms of stability, a heavier top mass enhances the vertical beam’s stability, while towers with parabolic bases are more susceptible to instabilities.

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来源期刊
Journal of Engineering Mathematics
Journal of Engineering Mathematics 工程技术-工程:综合
CiteScore
2.10
自引率
7.70%
发文量
44
审稿时长
6 months
期刊介绍: The aim of this journal is to promote the application of mathematics to problems from engineering and the applied sciences. It also aims to emphasize the intrinsic unity, through mathematics, of the fundamental problems of applied and engineering science. The scope of the journal includes the following: • Mathematics: Ordinary and partial differential equations, Integral equations, Asymptotics, Variational and functional−analytic methods, Numerical analysis, Computational methods. • Applied Fields: Continuum mechanics, Stability theory, Wave propagation, Diffusion, Heat and mass transfer, Free−boundary problems; Fluid mechanics: Aero− and hydrodynamics, Boundary layers, Shock waves, Fluid machinery, Fluid−structure interactions, Convection, Combustion, Acoustics, Multi−phase flows, Transition and turbulence, Creeping flow, Rheology, Porous−media flows, Ocean engineering, Atmospheric engineering, Non-Newtonian flows, Ship hydrodynamics; Solid mechanics: Elasticity, Classical mechanics, Nonlinear mechanics, Vibrations, Plates and shells, Fracture mechanics; Biomedical engineering, Geophysical engineering, Reaction−diffusion problems; and related areas. The Journal also publishes occasional invited ''Perspectives'' articles by distinguished researchers reviewing and bringing their authoritative overview to recent developments in topics of current interest in their area of expertise. Authors wishing to suggest topics for such articles should contact the Editors-in-Chief directly. Prospective authors are encouraged to consult recent issues of the journal in order to judge whether or not their manuscript is consistent with the style and content of published papers.
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