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Suboptimal Rayleigh damping coefficients in seismic analysis of viscously-damped structures 被引量:7

Suboptimal Rayleigh damping coefficients in seismic analysis of viscously-damped structures
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摘要 An optimization method for the consistent evaluation of two Rayleigh damping coefficients is proposed. By minimizing an objective function such as an error term of the peak displacement of a structure, the two coefficients can be determined with response spectral analysis. The optimization method degenerates into the conventional method used in current practices when only two modes of vibration are included in the objective function. Therefore, the proposed method with all significant modes included for simplicity in practical applications results in suboptimal damping coefficients. The effects of both spatial distribution and frequency content of excitations as well as structural dynamic characteristics on the evaluation of Rayleigh damping coefficients were investigated with a five-story building structure. Two application examples with a 62-story high-rise building and a 840 m long cable-stayed bridge under ten earthquake excitations demonstrated the accuracy and effectiveness of the proposed method to account for all of the above effects. An optimization method for the consistent evaluation of two Rayleigh damping coefficients is proposed. By minimizing an objective function such as an error term of the peak displacement of a structure, the two coefficients can be determined with response spectral analysis. The optimization method degenerates into the conventional method used in current practices when only two modes of vibration are included in the objective function. Therefore, the proposed method with all significant modes included for simplicity in practical applications results in suboptimal damping coefficients. The effects of both spatial distribution and frequency content of excitations as well as structural dynamic characteristics on the evaluation of Rayleigh damping coefficients were investigated with a five-story building structure. Two application examples with a 62-story high-rise building and a 840 m long cable-stayed bridge under ten earthquake excitations demonstrated the accuracy and effectiveness of the proposed method to account for all of the above effects.
出处 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2014年第4期653-670,共18页 地震工程与工程振动(英文刊)
基金 National Natural Science Foundation of China under Grant No.51078032 the Visiting Scholar Foundation of China Scholarship Council the Center for Infrastructure Engineering Studies at Missouri University of Science and Technology
关键词 Rayleigh damping response spectral analysis structural dynamics structural analysis optimization method Rayleigh damping response spectral analysis structural dynamics structural analysis optimization method
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参考文献17

  • 1Ambrosini RD (2006), "Material Damping vs. Radiation Damping in Soil-structure Interaction Analysis," Computers and Geotechnics, 33(2): 86-92.
  • 2Berthelot JM, Assarar M, Sefrani Y and Mahi AE (2008), "Damping Analysis of Composite Materials and Structures," Composite Structures, 85(3): 189-204.
  • 3"Proportional Damping Approximation for Structures with Added Viscoelastic Dampers," Finite Elements in Analysis and Design, 42(6): 492-502.
  • 4Chen W and Deng X (2005), "Structural Damping Caused by Micro-slip along Frictional Interfaces," International Journal of Mechanical Sciences, 47(8): 1191-1211.
  • 5Chopra AK (1995), Dynamics of Structures: Theory and Applications to Earthquake Engineering, Englewood Cliffs, Prentice-Hall, New Jersey.
  • 6Clough RW and Penzien J (1995), Dynamics of Structures, McGraw-Hill, New York.
  • 7Housner GW, Bergman LA, Caughey TK, Chassiakos AG, Claus RO, Masri SF, Skelton RE, Soong TT, Spencer BF and Yao JTP (1997), "Structural Control: Past, Present, and Future," Journal of Engineering Mechanics, ASCE, 123(9): 897-971.
  • 8Jeary AP (1997), "Damping in Structures", Journal of Wind Engineering and Industrial Aerodynamics, 72: 345-355.
  • 9Kareem A and Gurley K (1996), "Damping in Structures: Its Evaluation and Treatment of Uncertainty", Journal of Wind Engineering and Industrial Aerodynamics, 59(2-3): 131-157.
  • 10Klamo JT, Leonard A and Roshko A (2006), "The Effects of Damping on the Amplitude and Frequency Response of a Freely Vibrating Cylinder in Cross-flow," Journal of Fluids and Structures, 22(6-7): 845-856.

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