MULTI-OBJECTIVE OPTIMIZATION OF A THREE-ELEMENT TUNED MASS DAMPER FOR OFFSHORE PLATFORMS UNDER GROUND ACCELERATION

Tran Ngoc An1, Vu Thi Chi1, Pham Thi Ly1,
1 Faculty of Civil Engineering, Vietnam Maritime University

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Tóm tắt

TThis paper presents a comparative study between the three-element tuned mass damper (T-TMD) and the conventional tuned mass damper (TMD) for vibration mitigation of offshore platforms subjected to ground excitations. The T-TMD is an enhanced configuration of the TMD, in which a viscous damper is connected in series with an additional spring. The equations of motion of offshore platforms equipped with the T-TMD are derived using the Lagrangian method. The constraint conditions of the T-TMD are analyzed to formulate the optimization problem, in which two objective functions are considered: maximizing vibration suppression efficiency and minimizing the device mass. The T-TMD parameters are optimized for a specific offshore platform based on these objectives. Numerical simulations demonstrate that the T-TMD provides superior performance and enhanced robustness compared to a conventional TMD of equal mass.

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Tài liệu tham khảo

[1] L Zhang, Q-J Yue, W-S Zhang, C Hsiao (2008), Experimental study on mitigation of ice-induced vibration for offshore platforms with a tuned mass damper, Proceedings of the Institution of Mechanical Engineers, Part M: Journal of Engineering for the Maritime Environment, Vol.222 (3), pp.121-132.
[2] Qiong Wu, Xilu Zhao, Rencheng Zheng (2016), Experimental study on a tuned-mass damper of offshore for vibration reduction, Journal of Physics: Conference Series, Vol.744, p. 012045.
[3] Kaien Jiang, Guangyi Zhu, Guoer Lv, Huafeng Yu, Lizhong Wang, Mingfeng Huang, Lilin Wang (2025), Dynamic response mitigation of offshore jacket platform using tuned mass damper under misaligned typhoon and typhoon wave, Applied Sciences, Vol.15(13), p. 7321.
[4] Golafshani, AA, Gholizad, A. Tuned Mass Damper for Vibration Control in Steel Jacket Platforms, Proceedings of the ASME 2008 27th International Conference on Offshore Mechanics and Arctic Engineering, Volume 1: Offshore Technology, pp.35-42
[5] Fan Yang, Ramin Sedaghati, Ebrahim Esmailzadeh (2022), Vibration suppression of structures using tuned mass damper technology: A state-of-the-art review, Journal of Vibration and Control, Vol.28 (7-8), pp.812-836.
[6] Toshihiko Asami, Osamu Nishihara (1999), Analytical and experimental evaluation of an air damped dynamic vibration absorber: design optimizations of the three-element type model, Journal of Vibration and Acoustics, ASME, Vol.121 (3), pp.334-342.
[7] N.D. Anh, N.X. Nguyen, L.T. Hoa (2013), Design of three-element dynamic vibration absorber for damped linear structures, Journal of Sound and Vibration, Vol.332, pp. 4482-4495.
[8] Onur Araz (2021), Optimization of three-element tuned mass damper for single degree of freedom structures under ground acceleration, El-Cezerî Journal of Science and Engineering, Vol.8 (3), pp.1264-1271.
[9] Onur Araz (2022), Optimization of three-element tuned mass damper based on minimization of the acceleration transfer function for seismically excited structures, Journal of the Brazilian Society of Mechanical Sciences and Engineering, Vol.44, pp.459.
[10] Huong Quoc Cao, Ngoc-An Tran, Xuan-Thuan Nguyen (2024), Tuned two-mass dampers for vibration control of offshore platforms, Engineering Research Express, Vol.6(3), p. 035511.
[11] Hun Jun Li, Sau-Lon James Hu, Christopher Jakubiak (2003), H2 active vibration control for offshore platform subjected to wave loading, Journal of Sound and Vibration, Vol.263, pp.709-724.
[12] María Isabel Hartillo-Hermoso, Haydee Jiménez-Tafur, José María Ucha-Enríquez (2020), An exact algebraic ϵ-constraint method for bi-objective linear integer programming based on test sets, European Journal of Operational Research, Vol.282 (2), pp.453-463.
[13] Hamid Hokmabady, Alireza Mojtahedi, Samira Mohammadyzadeh (2020), Uncertainty analysis of an offshore jacket-type platform using a developed numerical model updating technique, Ocean Engineering, Vol.211 (1), 107608.