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CONCEPT AND DEVELOPMENT OF HYBRID SOLUTIONS FOR SEISMIC RESISTANT BRIDGE SYSTEMS
Authors:ALESSANDRO PALERMO  STEFANO PAMPANIN  GIAN MICHELE CALVI
Institution:1. Department of Civil Engineering , University of Canterbury , Private Bag 4800, Christchurcn, 8020, New Zealand;2. Department of Structural Mechanics , University of Pavia , Via Ferrata 1, Pavia, 27100, Italy
Abstract:The development of alternative solutions for precast concrete buildings based on jointed ductile connections has introduced innovative concepts in the design of lateral-load resisting frame and wall systems. Particularly efficient is the hybrid system, where precast elements are connected via post-tensioning techniques and self-centring and energy dissipating properties are adequately combined to achieve the target maximum displacement with negligible residual displacements. In this contribution, the concept of hybrid system is extended to bridges as a viable and efficient solution for an improved seismic performance when compared with monolithic counterparts. Critical discussion on the cyclic behaviour of hybrid systems, highlighting the most significant parameters governing the response, is carried out.

The concept of a flexible seismic design (displacement-based) of hybrid bridge piers and systems is proposed and its reliability confirmed by quasi-static cyclic (push-pull) and nonlinear time-history analyses based on lumped plasticity numerical models.
Keywords:bridges  controlled rocking  hybrid systems  piers  residual displacements  self-centring capacity  unbonded post-tensioning
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