This article studies the seismic performance of a rocking-isolated bridge pier on surface foundation, resting on sand. A series of reduced-scale shaking table tests are conducted, comparing the performance of a rocking-isolated system to a pier founded on conventionally designed foundation. The two design alternatives are subjected to a variety of shaking events, comprising real records and artificial motions of varying intensity. In an effort to explore system performance in successive seismic events, three different shaking sequences are performed. Rocking isolation is proven quite effective in reducing the inertia forces transmitted onto the superstructure. The rocking-isolated pier is effectively protected, surviving all seismic excitat...
Rocking as an acceptable mode of seismic response has been investigated extensively and has shown to...
To date, a significant research effort has been devoted attempting to introduce novel seismic protec...
[[abstract]]This research aims to investigate the dynamic characteristic of rocking bridge columns s...
This article studies the seismic performance of a rocking-isolated bridge pier on surface foundation...
Recent studies have highlighted the beneficial role of foundation uplifting and the potential effect...
The conventional design philosophy of bridges allows damage in the pier through yielding. A fuse-lik...
Rocking isolation of structures is evolving as an alternative design concept in earthquake engineeri...
Rocking and uplifting of shallow foundation bridge pier during earthquake is known to act as a form ...
This paper presents the results of shaking table tests of a system exhibiting negative stiffness. As...
Life line structures such as elevated flyovers and rail over bridges should remain functional after ...
Controlled rocking of steel braced frames has been proposed for the seismic retrofit of structures. ...
Rocking isolation of structures is evolving as an alternative design concept in earthquake engineeri...
Experimental proof is provided of an unconventional seismic design concept, which is based on delibe...
Rocking as an acceptable mode of seismic response has been investigated extensively and has shown to...
To date, a significant research effort has been devoted attempting to introduce novel seismic protec...
[[abstract]]This research aims to investigate the dynamic characteristic of rocking bridge columns s...
This article studies the seismic performance of a rocking-isolated bridge pier on surface foundation...
Recent studies have highlighted the beneficial role of foundation uplifting and the potential effect...
The conventional design philosophy of bridges allows damage in the pier through yielding. A fuse-lik...
Rocking isolation of structures is evolving as an alternative design concept in earthquake engineeri...
Rocking and uplifting of shallow foundation bridge pier during earthquake is known to act as a form ...
This paper presents the results of shaking table tests of a system exhibiting negative stiffness. As...
Life line structures such as elevated flyovers and rail over bridges should remain functional after ...
Controlled rocking of steel braced frames has been proposed for the seismic retrofit of structures. ...
Rocking isolation of structures is evolving as an alternative design concept in earthquake engineeri...
Experimental proof is provided of an unconventional seismic design concept, which is based on delibe...
Rocking as an acceptable mode of seismic response has been investigated extensively and has shown to...
To date, a significant research effort has been devoted attempting to introduce novel seismic protec...
[[abstract]]This research aims to investigate the dynamic characteristic of rocking bridge columns s...