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Seismic control of concrete buildings with nonlinear behavior, considering soil structure interaction using AMD and TMD

机译:用非线性行为的混凝土建筑物的地震控制,考虑使用AMD和TMD的土壤结构相互作用

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The seismic analysis of structures without applying the effects of soil can undermine functional objectives of structure so that it can affect all the desired purposes at the design and control stages of the structure. In this research, employing OpenSees and MATLAB software simultaneously and developing a definite three-dimensional finite element model of a highrise concrete structure, designed using performance-based plastic design approach, the performance of Tuned Mass Damper (TMD) and Active Mass Damper (AMD) is both examined and compared. Moreover some less noted aspects such as nonlinear interaction of soil and structure, uplift, nonlinear behavior of structure and structural torsion have received more attention. For this purpose, the analysis of time history on the structural model has been performed under 22 far-field accelerogram records. Examining a full range of all structural seismic responses, including lateral displacement, acceleration, inter-story drift, lost plastic energy, number of plastic hinges, story shear force and uplift. The results indicate that TMD performs better than AMD except for lateral displacement and inter-story drift to control other structural responses. Because on the one hand, nonlinear structural parameters and soil-structure interaction have been added and on the other hand, the restriction on the control force applied that leads up to saturation phenomenon in the active control system affect the performance of AMD. Moreover, the control force applied by structural control system has created undesirable acceleration and shear force in the structure.The seismic analysis of structures without applying the effects of soil can undermine functional objectives of structure so that it can affect all the desired purposes at the design and control stages of the structure. In this research, employing OpenSees and MATLAB software simultaneously and developing a definite three-dimensional finite element model of a highrise concrete structure, designed using performance-based plastic design approach, the performance of Tuned Mass Damper (TMD) and Active Mass Damper (AMD) is both examined and compared. Moreover some less noted aspects such as nonlinear interaction of soil and structure, uplift, nonlinear behavior of structure and structural torsion have received more attention. For this purpose, the analysis of time history on the structural model has been performed under 22 far-field accelerogram records. Examining a full range of all structural seismic responses, including lateral displacement, acceleration, inter-story drift, lost plastic energy, number of plastic hinges, story shear force and uplift. The results indicate that TMD performs better than AMD except for lateral displacement and inter-story drift to control other structural responses. Because on the one hand, nonlinear structural parameters and soil-structure interaction have been added and on the other hand, the restriction on the control force applied that leads up to saturation phenomenon in the active control system affect the performance of AMD. Moreover, the control force applied by structural control system has created undesirable acceleration and shear force in the structure. Keywords: active mass damper; soil-structure interaction; non-linear analysis; concrete high-rise structures; openSees;
机译:结构的地震分析在不施加土壤效果的情况下可以破坏结构的功能目标,以便它可以影响结构的设计和控制阶段的所有所需目的。在这项研究中,采用开放式和MATLAB软件的同时和开发一定的高层混凝土结构的明确三维有限元模型,采用基于性能的塑料设计方法设计,调谐质量阻尼器(TMD)和有源质量阻尼器的性能(AMD )均检查并进行比较。此外,一些较少的指出,诸如土壤和结构的非线性相互作用,隆起,结构扭转的隆起,非线性行为得到更多的关注。为此目的,在22个远场加速器记录下进行了对结构模型的时间历史分析。检查全系列的所有结构地震反应,包括横向位移,加速,故事际漂移,丢失的塑料能量,塑料铰链数,故事剪切力和隆起。结果表明,除横向位移和故事际漂移以控制其他结构反应之外,TMD比AMD更好。由于一方面,另一方面添加了非线性结构参数和土壤结构相互作用,因此对主动控制系统中施加到饱和现象的控制力的限制影响了AMD的性能。此外,结构控制系统施加的控制力在结构中产生了不希望的加速和剪切力。结构的抗震分析而不施加土壤的影响,可能会破坏结构的功能目标,以便它可以影响设计中的所有所需目的结构控制阶段。在这项研究中,采用开放式和MATLAB软件的同时和开发一定的高层混凝土结构的明确三维有限元模型,采用基于性能的塑料设计方法设计,调谐质量阻尼器(TMD)和有源质量阻尼器的性能(AMD )均检查并进行比较。此外,一些较少的指出,诸如土壤和结构的非线性相互作用,隆起,结构扭转的隆起,非线性行为得到更多的关注。为此目的,在22个远场加速器记录下进行了对结构模型的时间历史分析。检查全系列的所有结构地震反应,包括横向位移,加速,故事际漂移,丢失的塑料能量,塑料铰链数,故事剪切力和隆起。结果表明,除横向位移和故事际漂移以控制其他结构反应之外,TMD比AMD更好。由于一方面,另一方面添加了非线性结构参数和土壤结构相互作用,因此对主动控制系统中施加到饱和现象的控制力的限制影响了AMD的性能。此外,结构控制系统施加的控制力在结构中产生了不希望的加速度和剪切力。关键词:有源质量阻尼器;土壤结构相互作用;非线性分析;具体高层结构;开放;

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