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Random vibration and statistical linearization

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TLDR
In this paper, a comprehensive account of statistical linearization with related techniques allowing the solution of a very wide variety of practical non-linear random vibration problems is given, and the principal value of these methods is that they are readily generalized to deal with complex mechanical and structural systems and complex types of excitation such as earthquakes.
Abstract
Interest in the study of random vibration problems using the concepts of stochastic process theory has grown rapidly due to the need to design structures and machinery which can operate reliably when subjected to random loads, for example winds and earthquakes. This is the first comprehensive account of statistical linearization - powerful and versatile methods with related techniques allowing the solution of a very wide variety of practical non-linear random vibration problems. The principal value of these methods is that unlike other analytical methods, they are readily generalized to deal with complex mechanical and structural systems and complex types of excitation such as earthquakes.

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Magneto-rheological tuned liquid column dampers (MR-TLCDs) for vibration mitigation of tall buildings: modelling and analysis of open-loop control

TL;DR: In this paper, a novel semi-active tuned liquid column damper using magneto-rheological fluid (MR-TLCD) is devised for wind-induced vibration mitigation of tall building structures.
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Response probability density functions of strongly non-linear systems by the path integration method

TL;DR: In this paper, the authors discuss challenges in numerical analysis and numerical/analytical results for strongly non-linear systems with "signum" type nonlinearities, such as systems with instantaneous variations of the systems' parameters, to reduce their mean energy response when subjected to random excitations.
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Harmonic wavelets based response evolutionary power spectrum determination of linear and non-linear oscillators with fractional derivative elements

TL;DR: In this article, a harmonic wavelets based approximate analytical technique for determining the response evolutionary power spectrum of linear and non-linear (time-variant) oscillators endowed with fractional derivative elements is developed.
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Mass Damper Using Friction-Dissipating Devices

TL;DR: In this paper, a nonlinear mass damper that uses friction dampers acting transversely to the direction of the motion of the mass-damper as a means for energy dissipation is proposed.
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Exact solutions for a Wick-type stochastic reaction Duffing equation

TL;DR: In this article, Wang et al. studied a Wick-type stochastic reaction Duffing equation, and obtained some new exact solutions with the help of the white-noise theory and the exact solution of the Riccati equation.