Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls

Under the action of the seismic waves, reinforced concrete shear walls (RC shear walls) often exhibit hysteresis characteristics such as strength and stiffness degradation, and pinching effects due to factors such as slippage, cumulative damage of concrete, and non-uniform corrosion of steel bars or...

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Main Authors: Zhou Lina, Zhang Senlin
Format: Article
Language:English
Published: SAGE Publishing 2023-08-01
Series:Advances in Mechanical Engineering
Online Access:https://doi.org/10.1177/16878132231192226
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author Zhou Lina
Zhang Senlin
author_facet Zhou Lina
Zhang Senlin
author_sort Zhou Lina
collection DOAJ
description Under the action of the seismic waves, reinforced concrete shear walls (RC shear walls) often exhibit hysteresis characteristics such as strength and stiffness degradation, and pinching effects due to factors such as slippage, cumulative damage of concrete, and non-uniform corrosion of steel bars or reinforcements. The hysteresis curve is asymmetric. In this paper, a nonlinear restoring force mechanical model, based on the Bouc-Wen-Baber-Noori (BWBN) model, that can describe the hysteresis characteristics of the RC shear wall is obtained by introducing the asymmetry factor. Particular attention is the solution of equation that the hysteretic energy ε at different loading stages in this model is regarded as parameters to be identified. The ordinary differential equations for parameter identification are derived into four segments. The improved particle swarm organization (IPSO) algorithm is used for parameters identification, which superiority is verified by comparison to the genetic algorithm. The accuracy of this model is verified by using RC shear wall finite element simulation data.
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spelling doaj.art-f30f81ea17d24c18a5b1e6e6915b8cb32023-08-12T12:33:19ZengSAGE PublishingAdvances in Mechanical Engineering1687-81402023-08-011510.1177/16878132231192226Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear wallsZhou Lina0Zhang Senlin1Luzhou Vocational and Technical College, Luzhou, ChinaCISDI Group Co., Ltd, Chongqing, ChinaUnder the action of the seismic waves, reinforced concrete shear walls (RC shear walls) often exhibit hysteresis characteristics such as strength and stiffness degradation, and pinching effects due to factors such as slippage, cumulative damage of concrete, and non-uniform corrosion of steel bars or reinforcements. The hysteresis curve is asymmetric. In this paper, a nonlinear restoring force mechanical model, based on the Bouc-Wen-Baber-Noori (BWBN) model, that can describe the hysteresis characteristics of the RC shear wall is obtained by introducing the asymmetry factor. Particular attention is the solution of equation that the hysteretic energy ε at different loading stages in this model is regarded as parameters to be identified. The ordinary differential equations for parameter identification are derived into four segments. The improved particle swarm organization (IPSO) algorithm is used for parameters identification, which superiority is verified by comparison to the genetic algorithm. The accuracy of this model is verified by using RC shear wall finite element simulation data.https://doi.org/10.1177/16878132231192226
spellingShingle Zhou Lina
Zhang Senlin
Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
Advances in Mechanical Engineering
title Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
title_full Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
title_fullStr Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
title_full_unstemmed Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
title_short Modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
title_sort modeling and parameter identification of asymmetric restoring force of reinforced concrete shear walls
url https://doi.org/10.1177/16878132231192226
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AT zhangsenlin modelingandparameteridentificationofasymmetricrestoringforceofreinforcedconcreteshearwalls