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Static and dynamic response of elastic suspended cables with thermal effects

机译:具有热效应的弹性悬挂电缆的静态和动态响应

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摘要

Cable structures are often subjected to severe and variable environmental conditions, and their mechanical behavior is known to be particularly sensitive to different ambient factors. The paper analyzes temperature effects on the static and dynamic response of suspended inclined cables through a continuous monodimensional model including geometric nonlinearities. Uniform temperature changes are introduced through a non-homogeneous constitutive law for the material linear elasticity. Exact and approximate solutions of the equations governing the cable static equilibrium under self-weight are achieved, and the significance of the temperature-dependent variation of tension and sag are parametrically investigated. The spectral properties characterizing the free dynamics are obtained in a closed-form fashion for shallow parabolic cables within the low frequency vibration range. The sensitivity of the linear frequencies to temperature changes is discussed, outlining two thermal effects, which are distinguished by their different origins, geometric or static. For a generic temperature change, the geometric effect produces a systematic increment or reduction of all the frequencies, for both symmetric and anti-symmetric modes. The static effect stiffens or softens only the symmetric modes, and may prevail over the competing geometric effect, depending on the cable Irvine parameter. Finally, the thermal effects on the frequency veering and modal hybridization phenomena, which characterize quasi-resonant shallow cubic cables, are analyzed.
机译:电缆结构通常会经受严酷和多变的环境条件,并且已知其机械性能对不同的环境因素特别敏感。通过包括几何非线性的连续一维模型,分析了温度对悬挂式倾斜电缆静,动态响应的影响。通过非均匀本构定律引入均匀的温度变化,以实现材料的线性弹性。获得了控制自重下电缆静平衡方程的精确解和近似解,并通过参数研究了温度随张力和垂度变化的重要性。低频振动范围内的浅抛物线电缆以封闭形式获得表征自由动力学的光谱特性。讨论了线性频率对温度变化的敏感性,概述了两种热效应,这两种热效应的不同来源是几何或静态。对于一般的温度变化,对于对称模式和反对称模式,几何效应都会导致所有频率的系统增加或减少。取决于电缆Irvine参数,静态效果只会使对称模式变硬或变软,并且可能优于竞争的几何效果。最后,分析了对准谐振浅立方电缆特征的频率变化和模态混合现象的热影响。

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