TY - GEN
T1 - Collaborative optimization design of reinforcement concrete bridge considering aseismic requirements
AU - Wang, Lian Fa
AU - Tang, Ai Ping
PY - 2011
Y1 - 2011
N2 - Collaborative Optimization (CO) strategy is applied to aseismatic design of reinforcement concrete bridge. The design procedure is regarded as a whole system. The procedure is decomposed into a double-level nonlinear optimization problem. Besides system level, disciplines level is subdivided into three disciplines in term of stress states of the bridge: statics discipline, linear dynamics discipline, and nonlinear dynamics discipline. Corresponding finite element model is builded as discipline analysis model respectively. Gradient-based strategy is adopted as the optimizer of system level, statics discipline and linear dynamics discipline. Genetic algorithm is adopted as the optimizer of nonlinear dynamics discipline. The validity of Collaborative Optimization strategy is examined by comparing optimum results from Collaborative Optimization to optimum results from traditional optimization method. By comparison, Collaborative Optimization strategy is time saving and more efficient than traditional optimization method with the same optimization results.
AB - Collaborative Optimization (CO) strategy is applied to aseismatic design of reinforcement concrete bridge. The design procedure is regarded as a whole system. The procedure is decomposed into a double-level nonlinear optimization problem. Besides system level, disciplines level is subdivided into three disciplines in term of stress states of the bridge: statics discipline, linear dynamics discipline, and nonlinear dynamics discipline. Corresponding finite element model is builded as discipline analysis model respectively. Gradient-based strategy is adopted as the optimizer of system level, statics discipline and linear dynamics discipline. Genetic algorithm is adopted as the optimizer of nonlinear dynamics discipline. The validity of Collaborative Optimization strategy is examined by comparing optimum results from Collaborative Optimization to optimum results from traditional optimization method. By comparison, Collaborative Optimization strategy is time saving and more efficient than traditional optimization method with the same optimization results.
KW - Aseismic design
KW - Collaborative Optimization
KW - Reinforcement concrete bridge
UR - https://www.scopus.com/pages/publications/79959641685
U2 - 10.1109/ICETCE.2011.5774535
DO - 10.1109/ICETCE.2011.5774535
M3 - 会议稿件
AN - SCOPUS:79959641685
SN - 9781457702907
T3 - 2011 International Conference on Electric Technology and Civil Engineering, ICETCE 2011 - Proceedings
SP - 164
EP - 167
BT - 2011 International Conference on Electric Technology and Civil Engineering, ICETCE 2011 - Proceedings
T2 - 2011 International Conference on Electric Technology and Civil Engineering, ICETCE 2011
Y2 - 22 April 2011 through 24 April 2011
ER -