Special Lateral Seismic Joints on Bridges

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dc.contributor.author Ergys Caushi; Polytechnic University of Tirana
dc.contributor.author Luan MurtajURTAJ; Polytechnic University of Tirana
dc.date 2013-06-14 09:21:47
dc.date.accessioned 2013-07-15T11:48:54Z
dc.date.accessioned 2015-11-23T16:10:10Z
dc.date.available 2013-07-15T11:48:54Z
dc.date.available 2015-11-23T16:10:10Z
dc.date.issued 2013-07-15
dc.identifier http://ecs.epoka.edu.al/index.php/iscce/iscce2012/paper/view/621
dc.identifier.uri http://dspace.epoka.edu.al/handle/1/681
dc.description.abstract Bridges are some of the most important structures in infrastructure and transportation system. They are design to sustains traffic loads and environmental actions. The selection of structural type and joints details are a challenge for structural engineer. Different structures types behaves in a different ways. A statically determine structures give a good behaviour to environmental action as temperature and ground displacement. Usually they are indifferent tothis action, but they do not give a good performance due to earthquake loading. On the other side, the statically undetermined structures, gives a good performance due to earthquake action,but they express additional stresses under the change in temperature or ground displacement.So, it's wise to think for intelligent structures, which demonstrate the best characteristics and behaviour under different types of loadings and actions. In this study is observed the behaviour of transportation bridge with a traditional joints and intelligent joints.The intelligent joints consist of a dashpot filled with high viscose silicon. To the low rateof velocities, the silicon can flow through the chambers of dashpot without resistance. For highrate of velocities, the silicon react as solid body and prohibit the movement.Mounting this dashpot in bridge joint, depending upon the rate velocities of themovement, the structures will react in intelligent manner. Under the temperature gradient, therates are to slow, and the dashpot does not act as a restrain. Under the seismic loads, the rates are rather high, and the dashpot act as a restrain. So, we got the same structures, but behavingaccordantly to the loading or actions exposed.Through different case analyses, the behaviour of the structures is observed. Some essentials results and comments are derived.
dc.format application/pdf
dc.language en
dc.publisher International Student Conference of Civil Engineering
dc.rights Authors who submit to this conference agree to the following terms:<br /> <strong>a)</strong> Authors retain copyright over their work, while allowing the conference to place this unpublished work under a <a href="http://creativecommons.org/licenses/by/3.0/">Creative Commons Attribution License</a>, which allows others to freely access, use, and share the work, with an acknowledgement of the work's authorship and its initial presentation at this conference.<br /> <strong>b)</strong> Authors are able to waive the terms of the CC license and enter into separate, additional contractual arrangements for the non-exclusive distribution and subsequent publication of this work (e.g., publish a revised version in a journal, post it to an institutional repository or publish it in a book), with an acknowledgement of its initial presentation at this conference.<br /> <strong>c)</strong> In addition, authors are encouraged to post and share their work online (e.g., in institutional repositories or on their website) at any point before and after the conference.
dc.source International Student Conference of Civil Engineering; International Student Conference of Civil Engineering
dc.subject Tune Mass Damper; Modal Analysis; Time History
dc.title Special Lateral Seismic Joints on Bridges
dc.type Peer-reviewed Paper


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