Design of passive interconnections in tall buildings subject to earthquake disturbances to suppress inter-storey drifts
This paper studies the problem of passive control of a multi-storey building subjected to an earthquake disturbance. The building is represented as a homogeneous mass chain model, i.e., a chain of identical masses in which there is an identical passive connection between neighbouring masses and a si...
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Published in | Journal of physics. Conference series Vol. 744; no. 1; pp. 12063 - 12073 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Bristol
IOP Publishing
01.09.2016
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ISSN | 1742-6588 1742-6596 |
DOI | 10.1088/1742-6596/744/1/012063 |
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Abstract | This paper studies the problem of passive control of a multi-storey building subjected to an earthquake disturbance. The building is represented as a homogeneous mass chain model, i.e., a chain of identical masses in which there is an identical passive connection between neighbouring masses and a similar connection to a movable point. The paper considers passive interconnections of the most general type, which may require the use of inerters in addition to springs and dampers. It is shown that the scalar transfer functions from the disturbance to a given inter-storey drift can be represented as complex iterative maps. Using these expressions, two graphical approaches are proposed: one gives a method to achieve a prescribed value for the uniform boundedness of these transfer functions independent of the length of the mass chain, and the other is for a fixed length of the mass chain. A case study is presented to demonstrate the effectiveness of the proposed techniques using a 10-storey building model. The disturbance suppression performance of the designed interconnection is also verified for a 10-storey building model which has a different stiffness distribution but with the same undamped first natural frequency as the homogeneous model. |
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AbstractList | This paper studies the problem of passive control of a multi-storey building subjected to an earthquake disturbance. The building is represented as a homogeneous mass chain model, i.e., a chain of identical masses in which there is an identical passive connection between neighbouring masses and a similar connection to a movable point. The paper considers passive interconnections of the most general type, which may require the use of inerters in addition to springs and dampers. It is shown that the scalar transfer functions from the disturbance to a given inter-storey drift can be represented as complex iterative maps. Using these expressions, two graphical approaches are proposed: one gives a method to achieve a prescribed value for the uniform boundedness of these transfer functions independent of the length of the mass chain, and the other is for a fixed length of the mass chain. A case study is presented to demonstrate the effectiveness of the proposed techniques using a 10-storey building model. The disturbance suppression performance of the designed interconnection is also verified for a 10-storey building model which has a different stiffness distribution but with the same undamped first natural frequency as the homogeneous model. |
Author | Yamamoto, K Smith, MC |
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CitedBy_id | crossref_primary_10_1098_rspa_2019_0232 crossref_primary_10_1146_annurev_control_053018_023917 crossref_primary_10_1109_TAC_2019_2929967 crossref_primary_10_1177_09596518211004303 |
Cites_doi | 10.1002/9780470824931 10.1002/stc.457 10.1016/j.probengmech.2014.03.007 10.1243/09544062JMES1909 10.1061/(ASCE)0733-9445(1992)118:5(1251) 10.1002/eqe.1138 10.1109/TAC.2015.2478126 10.1002/sapm1931101191 10.1109/TAC.2002.803532 10.1002/eqe.2390 10.1016/0266-8920(96)00007-0 10.3130/jaabe.11.375 |
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SubjectTerms | Chains Earthquake dampers Earthquakes Graphical representations Interconnections Iterative methods Multistory buildings Passive control Physics Resonant frequencies Seismic response Springs (elastic) Stiffness Tall buildings Transfer functions |
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Title | Design of passive interconnections in tall buildings subject to earthquake disturbances to suppress inter-storey drifts |
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