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Titlebook: Energy-Based Seismic Engineering; Proceedings of IWEBS Amadeo Benavent-Climent,Fabrizio Mollaioli Conference proceedings 2021 The Editor(s)

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A Review on Performance-Based Plastic Design Method: Concept and Recent Developments,e strength is derived corresponding to a target deformation level and a selected yield mechanism using the energy balance concept. The method directly accounts for inelastic behavior and considers the internal force distribution at the ultimate limit state by ensuring the formation of a pre-selected
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Least-Square Effective Stiffness to be Used for Equivalent Linear Model,t cycle. Using an original approach, the stiffness parameter is derived by a least-square formula from the discrete input force-displacement point coordinates of the loop. The damping ratio is obtained in a classic manner from the quotient of absorbed and elastic energy. The obtained stiffness and d
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Key Points and Pending Issues in the Energy-Based Seismic Design Approach,g, it is overshadowed by the force-based design (FBD) approach, and its implementation in seismic codes is currently limited to structures with energy dissipation systems in Japan. The “Vision 2000” report on future design codes identified EBD as a most promising approach towards the paradigm of per
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An Energy-Based Prediction of Deformation Demand on Low- to Mid-Rise R/C Buildings with Hysteretic n demand after damper installation. The proposed methodology considers not only structural and dynamic characteristics of the main frame and dampers, but also input ground motion characteristics. For this purpose, five R/C building structures with 2, 4, 6, 8 and 10 stories were designed according to
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Energy-Based Topology Optimization Under Stochastic Seismic Ground Motion: Preliminary Framework, and more attractive to achieve high structural performances while reducing the use of building materials and thus cutting the total costs. In case of buildings under dynamic loads, displacement- and acceleration-based criteria are most commonly employed in topology optimization for preventing damag
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Energy-Based Seismic Design Method for Coupled CLT Shear Walls,-panel systems have a well-defined center of rotation, the resulting kinematic behavior is termed as coupled-panel (CP). In this paper, an iterative energy-based design (EBD) method is proposed for CLT shear walls based on energy balance established on their CP kinematic. Holz-Stahl-Komposit (HSK) c
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Vector-Valued Intensity Measures to Predict Peak and Hysteretic Energy Demands of 3D R/C Buildings,etic energy demands of 3D reinforced concrete (R/C) buildings subjected to narrow-band motions. The selected vector-valued . are based on the spectral acceleration, pseudo-velocity, velocity and input energy at first mode of the structure as first component. As the second component, ground motion pa
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