"Experimental Study on Vibration Control of Offshore Wind Turbines Using a Ball Vibration Absorber"
written by Jie Li, Zili Zhang, Jianbing Chen,
published by Energy and Power Engineering, Vol.4 No.3, 2012
has been cited by the following article(s):
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[2] AN INNOVATIVE FRICTION BASE RESTRAINT TO REDUCE STRUCTURAL DEMAND TO WIND TURBINES
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[4] Mathematical Model of the Damping Process in a One System with a Ball Vibration Absorber
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[5] Condition monitoring and fault detection of wind turbines generator
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[6] Wind Turbine Condition Monitoring using Multi-Sensor Data system
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[7] Dynamics of Vibration Isolation System with a Ball Vibration Absorber
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[8] Mathematical Model of the Dynamics in a One Nonholonomic Vibration Protection System
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[9] Shaking table test on vibration control effects of a monopile offshore wind turbine with a tuned mass damper
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[10] Optimization of a tuned liquid column damper subject to an arbitrary stochastic wind
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[11] Mathematical Modeling of the Process of Vibration Protection in a System with two-mass Damper Pendulum.
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[12] Active structural control of a floating wind turbine with a stroke-limited hybrid mass damper
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[13] Mathematical Modeling of the Process of Vibration Protection in a System with two-mass Damper Pendulum
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[14] Design of offshore wind turbine towers
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[15] Perrin and Förster unified: Dual-laser triple-polarization FRET (3polFRET) for interactions at the Förster-distance and beyond
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[16] Ultimate analysis of PWR prestressed concrete containment under long-term prestressing loss
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[17] Controle semiativo de modelo de pêndulo invertido para aerogeradores offshore
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[18] 減震技術於離岸風力發電支撐結構之應用研究
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[19] A review of vibration control methods for marine offshore structures
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[20] Effectiveness of a Roller Damper in Suppressing Conductor Galloping
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[21] Design and calibration of a semi-active control logic to mitigate structural vibrations in wind turbines
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[22] Подавление колебаний проводов и тросов с использованием двухмассового маятникового гасителя
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[23] Pitch motion mitigation of spar-type floating substructure for offshore wind turbine using multilayer tuned liquid damper
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[24] Real-time monitoring and structural control of a wind turbine using a rocking system
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[25] Optimization design of tuned mass damper for vibration suppression of a barge-type offshore floating wind turbine
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[26] 狀態空間分析法於離岸風機結構非線性制震控制之應用研究
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[27] 近海单桩风机在波浪地震联合作用下的动力特性分析
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[28] Shaking table test and numerical analysis of offshore wind turbine tower systems controlled by TLCD
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[29] Semi-active control of a wind turbine via magnetorheological dampers
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[30] Performance enhancement of wind turbine systems with vibration control: A review
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[31] Joint earthquake and wave action on the monopile wind turbine foundation: An experimental study
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[32] Determining the Tuning Parameters for a Roller Damper with Constraints
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[33] Определение параметров настройки роликового гасителя с ограничениями
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[34] Theoretical study and experimental verification of vibration control of offshore wind turbines by a ball vibration absorber
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[35] Modelling and optimization of a passive structural control design for a spar-type floating wind turbine
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[36] Análise dinâmica linear de aerogeradores offshore
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[37] Structural monitoring and smart control of a wind turbine
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[38] 減震技術於離岸風力發電支承結構之應用研究
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[39] Elija una forma de registrarse
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[40] Passive damping systems for floating vertical axis wind turbines analysis
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[41] Passive-damping design for vibration control of large structures
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[42] Modeling and Parameter Analysis of the OC3-Hywind Floating Wind Turbine with a Tuned Mass Damper in Nacelle
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[43] MODELLING AND PARAMETER ANALYSIS OF THE OC3-HYWIND FLOATING WIND TURBINE WITH A TUNED MASS DAMPER IN NACELLE
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[44] Optimal passive-damping design using a decentralized velocity-feedback H∞ approach
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