[1] Sakai F, Takaeda S, and Tamaki T. 1989. Tuned liquid column damper—new type device for suppression of building vibration. Proceedings of International Conference on High-rise Buildings, Nanjing, China, 926–931.
[2] Felix J. L. P., Balthazar J. M., and Brasil R. M. 2005. On tuned liquid column dampers mounted on a structural frame under a non-ideal excitation. Journal of Sound and Vibration 282 (3–5), 1285–1292.
[3] Chang C. C., Hsu C. T. 1998. Control performance of liquid column vibration absorbers. Engineering Structures 20 (7), 580–586.
[4] Wu J. C., Shih M. H., Lin Y. Y., and Shen Y. C. 2005. Design guidelines for tuned liquid column damper for structures responding to wind. Engineering Structures 27 (13), 1893–1905.
[5] Yalla S., Kareem A. 2000. Optimum absorber parameters for tuned liquid column dampers. ASCE Journal of Structural Engineering 126 (8), 906–915.
[6] Gao H., Kwok K. S. C., and Samali B. 1999. Characteristics of multiple tuned liquid column dampers in suppressing structural vibration. Engineering Structures 21, 316–331.
[7] Wu J. C., Chang C. H., and Lin Y.Y. 2009. Optimal designs for non-uniform tuned liquid column dampers in horizontal motion. Journal of Sound and Vibration, 1-2, 104-122.
[8] Haroun M. A., Pires J. A. 1995. Active orifice control in hybrid liquid column dampers. Proceedings of 1st World Conf. on Structural Control, Vol. I, Los Angeles, Lewis FL, Syrmos VL, editors. Optimal Control. New York: Wiley.
[9] Mensah A. F., Akwasi F., and Dueñas-Osorio L. 2014. Improved reliability of wind turbine towers with tuned liquid column dampers (TLCDs). Structural Safety, 47, 78-86.
[10] Mahmudur R., Ong Z. C., Chong W. T., Julai S., and Khoo S. Y. 2015. Performance enhancement of wind turbine systems with vibration control: A review. Renewable and Sustainable Energy Reviews; 51, 43-54.
[11] Gkoumas K., Petrini F., and Bontempi F. 2015. Design of Cable-Supported Bridges: Control Strategies. Encyclopedia of Earthquake Engineering, 1-16.
[12] Reiterer M., and Hochrainer M. 2004. Damping of Pedestrian‐Induced Bridge Vibrations by Tuned Liquid Column Dampers. Proceedings in Applied Mathematics and Mechanics (PAMM); 4(1), 109-110.
[13]
Chatterjee T., and
Chakraborty S. 2014. Vibration mitigation of structures subjected to random wave forces by liquid column dampers.
Ocean Engineering, 87, 151-161.
[14] Al-Saif K. A., Aldakkan K. A., Foda M. A. 2011. Modified liquid column damper for vibration control of structures. International Journal of Mechanical Sciences, 53, 505-512.
[15] Gur S., Roy K., and Mishra S. K. 2015. Tuned liquid column ball damper for seismic vibration control. Structural Control and Health Monitoring, DOI: 10.1002/stc.1740
[16] Meghana K., and Chaudhuri S. R. 2015. Comparison of Performance of Different Tuned Liquid Column Dampers (TLCDs). Advances in Structural Engineering. Springer India, 1257-1269.
[17] Chapra S. C., Canale R. P. 2010. Numerrical Methods for Engineers. 6th Edition, McGraw-Hill, New York.