Combining Rocking Tubular Structural System with Yielding-plate Dampers to Create Repairable Buildings
سال انتشار: 1394
نوع سند: مقاله کنفرانسی
زبان: انگلیسی
مشاهده: 1,063
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شناسه ملی سند علمی:
ICICA01_0288
تاریخ نمایه سازی: 27 اسفند 1394
چکیده مقاله:
Almost all seismic design codes allow heavy damage to building systems in case of strong earthquake, and this allowance has some adverse consequences such as very large volume of reconstruction works, therefore, creation of repairable buildings is quite desired. In this study the ‘deliberate directing of damage’ idea has been employed for design of repairable regular 10- to 15-story steel buildings by using tubular frame structural system with rocking motion. The rocking mechanism is created by removing all internal columns in the lowest story, and employing yielding plate dampers under all circumferential columns which give the building structure the required energy dissipation capacity. The dampers should be adjusted so that they work only in tension. In this way the base of each circumferential column can easily move upwards to make possible the building’s rocking motion, while behaves almost rigidly downward. The use of tubular system helps the building to reliably carry all its weight in the columns of each of its four sides during rocking motion. To show the efficiency of the proposed structural system in creation of repairable buildings, a series of nonlinear time history analysis were performed by using a set of 3-component accelerograms of some selected earthquakes, containing both mid- and long-period ones, on some buildings with ordinary structural system, designed by using a common seismic code, and their rocking counterparts, and the plastic hinge formation were observed in the two sets. Numerical results show that the proposed rocking structure can efficiently control the seismic damage in the building, so that plastic deformation happens only in the energy dissipaters, and the main structural elements remain elastic, and therefore, the buildings designed and constructed by the proposed technique can be easily repaired even after major earthquakes having up to 0.5gPGA values.
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نویسندگان
Hamidreza Ebrahimi1
Graduate Student, Department of Civil Engineering, Isfahan (Khorasgan) Branch Islamic Azad University, Isfahan, Iran,
Mahmood Hosseini
Assoc. Professor, Structural Engineering Research Center, International Institute of Earthquake Engineering and Seismology(IIEES), Tehran, Iran
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