TY - JOUR
T1 - Cumulative damage prediction for passive controlled high-rise building with hysteretic dampers on wind-induced response
AU - Sato, Daiki
AU - Ikegami, Masashi
AU - Hirai, Hiroyuki
AU - Yoshie, Keisuke
AU - Sato, Toshiaki
AU - Kitamura, Haruyuki
PY - 2016/10
Y1 - 2016/10
N2 - An energy balance-based design method for earthquake-induced response of a building has been proposed by Dr. Akiyama; it is very useful for the evaluation of the cumulative damage. However, an energy balance-based design method for the wind-induced response of buildings has not been established yet. In this study, we establish a prediction method based on energy balance for estimating the cumulative damage to hysteretic dampers installed in a high-rise building on wind-induced response. We propose a new optimum yield shear force coefficient distribution and damage concentration factor for prediction of damage caused by wind-induced response. The validity of this prediction method is confirmed by comparing the results with time history analysis results.
AB - An energy balance-based design method for earthquake-induced response of a building has been proposed by Dr. Akiyama; it is very useful for the evaluation of the cumulative damage. However, an energy balance-based design method for the wind-induced response of buildings has not been established yet. In this study, we establish a prediction method based on energy balance for estimating the cumulative damage to hysteretic dampers installed in a high-rise building on wind-induced response. We propose a new optimum yield shear force coefficient distribution and damage concentration factor for prediction of damage caused by wind-induced response. The validity of this prediction method is confirmed by comparing the results with time history analysis results.
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U2 - 10.3130/aijs.81.1635
DO - 10.3130/aijs.81.1635
M3 - Article
AN - SCOPUS:84993940212
SN - 1340-4202
VL - 81
SP - 1635
EP - 1645
JO - Journal of Structural and Construction Engineering
JF - Journal of Structural and Construction Engineering
IS - 728
ER -