RELIABILITY ANALYSIS OF DYNAMIC STRUCTURES

  • سال انتشار: 1377
  • محل انتشار: سومین همایش بین المللی سواحل، بنادر و سازه های دریایی
  • کد COI اختصاصی: ICOPMAS03_032
  • زبان مقاله: انگلیسی
  • تعداد مشاهده: 2123
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نویسندگان

Daghigh

Department of Mechanical Engineering and Marine Technology, Sharif University of Technology, Azadi Ave., Postbus ۱ ۱۳۶۵۱۹۵۶۷, Islamic Republic of Iran

Hengest

Department of Mechanical Engineering and Marine Technology, Delft University of Technology

Vrouwenvelder

۲Department of Mechanical Engineering and Marine Technology, Delft University of Technology

Boonstra

Department of Mechanical Engineering and Marine Technology, Delft University of Technology

چکیده

In this paper the concepts to compute reliabilities for stationary and ergodic conditions in the presence of time-invariant non-ergodic parameters will first be reviewed. Focus wili be on numerical techniques like FORM and numerical integration. The effect of correlation between the environmental processes within a sea state is studied, as opposed to between sea state correlation that turns out to be unimportant. The system reliability of jack-up structures is discussed using a combination of dynamic simulation of a stick model and the static analysis of a detailed jack-up model. First, the dynamic time domain simulation, the quasi-static time-domain simulation and the design wave analysis are applied for different sea-states using a stick structural model. In the second phase, the concepts of Dynamic Amplz~cation Factors (DAF) and Calibration Fhctors (CF) are introduced for extreme responses of a detailed structural model of jack-up structure. To utilize the analogical quantities for stick and detailed structural models, the design wave responses of the detailed structural model are linked with the extreme responses and the probabilistic models of dynamic effects using a stick structural model.

کلیدواژه ها

Jack-up structure, failure mechanism, Dynamic Amplification Factor, stochastic dynamic analysis, system reliability

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