Ultimate Bearing Capacity Forecast of Derrick Steel Structures Based on Dynamic Measurement Parameters

HAN Dongying;ZHOU Guoqiang;LI Zifeng;SHI Peiming

Journal of Vibration and Shock ›› 2011, Vol. 30 ›› Issue (1) : 106-110.

PDF(1121 KB)
PDF(1121 KB)
Journal of Vibration and Shock ›› 2011, Vol. 30 ›› Issue (1) : 106-110.
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Ultimate Bearing Capacity Forecast of Derrick Steel Structures Based on Dynamic Measurement Parameters

  • HAN Dongying1; ZHOU Guoqiang2;LI Zifeng1; SHI Peiming1
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Abstract

In order to forecast the ultimate bearing capacity of derrick steel structures, two novel methods are proposed based on kinetic parameters identified from vibration measurement. Aiming at the design feature and force characteristic of derrick steel structures, it is simplified freely supported beam. According to the relations between load and frequency, the expression for ultimate bearing capacity determined by frequency is deduced. This method is easy and feasible and the system model needn’t be built. The first order optimization is used for updating the dynamic model in the second method, and then the linear buckle, nonlinear and double nonlinear analysis are carried out to evaluate the ultimate bearing capacity. This method is more complex, but accuracy. At last, the dynamic test of some type of derrick steel structures is carried out using approximate stationary random motivation. The ultimate bearing capacity is obtained by the two mentioned methods. The results show that the relative error is small, which also indicates that the ultimate bearing capacity can be forecasted accuracy by these two methods. These methods also offer an effective way for the ultimate bearing capacity forecast and safety evaluation for complex load carrying steel structures.

Key words

derrick steel structures / vibration measurement / finite element model / optimization / ultimate bearing capacity

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HAN Dongying;ZHOU Guoqiang;LI Zifeng;SHI Peiming. Ultimate Bearing Capacity Forecast of Derrick Steel Structures Based on Dynamic Measurement Parameters[J]. Journal of Vibration and Shock, 2011, 30(1): 106-110
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