Skip to main content

Tag: αντισεισμική μηχανική

RCSolver Concrete design software to Eurocodes

RCSolver Concrete design software to Eurocodes

RCsolver is a software for
the quick and accurate design of concrete members according to Eurocode
specifications (primarily 2 and 8). RCsolver provides a 3-dimensional
presentation of the concrete members along with the calculated tensile
and shear reinforcement bars, as well as the full calculation procedure
according to Eurocode specifications, acting as a great engineering-teaching as well as a valuable tool for engineers that
wish to quickly check their calculations. 

RCSolver free version is available at the software website

Impressive new exhibit at the California Academy of Sciences in San Francisco

Impressive new exhibit at the California Academy of Sciences in San Francisco

Director Stephen Mahin’s recent research test for the NEEStips project at the nees@berkeley lab is featured in a new exhibit at the California Academy of Sciences in San Francisco.  The new exhibit, called “EARTHQUAKE: Life on a Dynamic Planet,” explores the seismic science that has shaped Earth’s evolution and continues to impact our lives today.

A key feature of the new exhibit is the Earthquake planetarium show, in the largest all-digital planetarium in the world.  The show explores the forces that transform the earth’s surface by examining the San Andreas Fault and San Francisco’s 1906 earthquake.  The show concludes with a focus on how engineers today help buildings resist earthquake shaking safely and highlights the benefits of earthquake resisting features, such as seismic isolation.

The nees@berkeley staff and researchers worked closely with the California Academy of Sciences to film the seismically isolated two bay, two story specimen that was being tested on nees@berkeley’s new hybrid shaking table.  The final resulting footage used in the planetarium show depicts the specimen being shaken as it zooms into a close up to one of the isolators.  If you go to see the planetarium show, be sure to look for the nees@berkeley team in the credits!

For more information about research highlighted in the planetarium show, watch an interview with Professor Mahin about the NEEStips testing at UC Berkeley.  Professor Keri Ryan of University Nevada, Reno is the PI of the NEEStips research program.

For more information about the California Academy of Science exhibit, visit the “EARTHQUAKE: Life on a Dynamic Planet” website.

To watch the Academy’s “Science in Action” video trailer highlighting the filming process and the importance of earthquake engineering research at PEER and nees@berkeley, visit the ScienceToday website.

Seismo-Artif: a new freeware for generating artificial earthquake accelerograms

Seismo-Artif: a new freeware for generating artificial earthquake accelerograms

Seismosoft has announced the release of SeismoArtif, an application capable of generating artificial
earthquake accelerograms matched to a specific target response spectrum
using different calculation methods and varied assumptions. In other
words, the ideal companion tool of SeismoMatch, to be used in those cases where spectrum matching of real accelerograms is not pursuable.

In
tandem with this new release, Seismosoft has also published new versions of
SeismoSignal, SeismoSpect and SeismoMatch. In the News
 section of the official website it is possible to get a glimpse of the novelties and
improvements introduced in these programs, which can all be downloaded
from here


NEEShub Release 4.0

NEEShub Release 4.0

The NEEScomm IT Team announced Release 4.0, a major NEEShub
Release.  Release enhancements are related to the Project Warehouse, Project Reviews, Data Status Report Generation, Digital Object Identifiers and Project Warehouse and Project Editor support for Simulation and Hybrid Simulation Experiments. They are described in detail in http://nees.org/announcements/neeshubrelease40

OpenSees Days 2012

OpenSees Days 2012

PEER and NEES will host OpenSees Days 2012 on August 15-16 at the
Richmond Field Station, an off-campus facility of the University of
California, Berkeley
.  Students, researchers, and practitioners are
welcome to attend any of the days.

Wednesday, August 15: Getting Started With OpenSees
The annual one-day training workshop on how to use OpenSees will be
more hands-on this year. This workshop is intended for beginning users.
This workshop will introduce users to the tcl scripting language, and
basic modeling and analysis techniques using OpenSees.

Thursday, August 16: OpenSees: Beyond the Basics

Seal of the University of California, Berkeley
Seal of the University of California, Berkeley (Photo credit: Wikipedia)

This workshop is intended for intermediate users and those who have
attended the Getting Started Workshop. The workshop will focus on
structural and geotechnical modeling using OpenSees, and how to extend
OpenSees for your own research needs.  The afternoon sessions will be
devoted to presentations from industry and research representatives who
will discuss how OpenSees has been used and extended to further their
work.

**Anyone from industry or academia interested in presenting on August 16th is encouraged to send a short abstract to Frank McKenna before July 1, 2012.**

The event is free, but registration is required because space is
limited to the first 100 applicants.  Registration closes on August 10,
2012.

Registration and additional program information can be found the OpenSees Days 2012 website.

Enhanced by Zemanta
Hybrid Simulation Workshop at NEES@Berkeley - June 28 & 29

Hybrid Simulation Workshop at NEES@Berkeley – June 28 & 29

The NEES site at the University of California, Berkeley (UC Berkeley) will host the annual Hybrid Simulation Workshop June 28 and 29, 2012, at its Richmond Field Station.

This
year’s Hybrid Simulation Workshop emphasizes real-time loading,
including demonstrations of our new “smart” dynamic platform. Attendees
will:
·         Learn the basics of hybrid simulation methods
·         Learn about the basic tools OpenSees and OpenFresco
·         Conduct several real-time hybrid simulation demonstrations at the NEES@Berkeley equipment site
·         Be able to use hybrid simulation in your NEES and non-NEES projects
·         Prepare to develop new hybrid simulation tests and algorithms
·         Learn
about pros and cons (accuracy, limits, ease of use, field applications
in damage assessment) of modern non-conventional monitoring and
measuring techniques.



The registration deadline is June 15.  This workshop is offered at no cost to participants.

Limited
travel support is available for graduate students, post-doctoral
researchers, or tenure-track faculty at US schools.  Please register and
apply for travel support using the online registration form at the  Hybrid Simulation Workshop web page.

New Oakland Bay Bridge

New Oakland Bay Bridge

SAN FRANCISCO — Venture deep inside the new skyway of the San
Francisco-Oakland Bay Bridge, and it becomes clear that the bridge’s
engineers have planned for the long term.

At intervals inside the elevated roadway’s box girders — which have the
closed-in feel of a submarine, if a submarine were made of concrete —
are anchor blocks, called deadmen, cast into the structure. They are
meant to be used decades from now, perhaps in the next century, when in
their old age the concrete girders will start to sag. By running cables
from deadman to deadman and tightening them, workers will be able to
restore the girders to their original alignment.
The deadmen are one sign that the new eastern span
of the Bay Bridge, which includes the skyway and a unique suspension
bridge, is meant to last at least 150 years after its expected opening
in 2013. (The existing eastern bridge, which is still in use, will then
be torn down.)
But to make it to the 22nd century, the new span may at some point have
to survive a major earthquake, like the one that destroyed much of San
Francisco in 1906 or the one that partly severed the Bay Bridge in 1989.
With two faults nearby that are capable of producing such large quakes,
survival is no simple matter.
Say what you want about the project — and as the construction timeline
has lengthened past a decade and costs have soared over $6 billion,
plenty has been said — keeping the bridge intact in an earthquake has
always been the engineers’ chief goal.
And to meet that goal, they are going with the flow: designing flexible
structures in which any potential damage would be limited to specific
elements.
“We wanted to make this bridge flexible so that when the earthquake
comes in, the flexibility of the system is such that it basically rides
the earthquake,” said its lead designer, Marwan Nader, a vice president
at the engineering firm T. Y. Lin International.
That contrasts with another potential approach: making the bridge
structures large enough, and rigid enough, to resist movement. “Massive
and stiff structures would look absolutely ugly and be very, very
expensive,” said Frieder Seible, dean of the Jacobs School of
Engineering at the University of California, San Diego, who tested many
elements of the bridge design.
That design includes a 525-foot-tall suspension bridge tower made up of
four steel shafts that should sway in a major earthquake, up to about
five feet at the top. But the brunt of the force would be absorbed by
connecting plates between the shafts, called shear links.
The bridge’s concrete piers are designed to sway as well, limiting
damage to areas with extra steel reinforcing. And at joints along the
entire span there are 60-foot sliding steel tubes, called hinge pipe
beams, with sacrificial sections of weaker steel that should help spare
the rest of the structure as it moves in a quake.
“At the seismic displacement that we anticipate, there will be damage,”
Mr. Nader said. “But the damage is repairable and the bridge can be
serviceable with no problems.”
Emergency vehicles and personnel, at the least, should be able to use
the bridge within hours of a major earthquake, after crews inspect the
structure and make temporary fixes, like placing steel plates over
certain joints. Given that the Bay Area’s two major airports would be
expected to be out of service after such a disaster, this bridge and the
Benicia-Martinez Bridge, another seismically secure span about 20 miles
to the northeast, would be “lifeline” structures to bring assistance to
the stricken region from an Air Force base inland, said Bart Ney, a
spokesman for the California Department of Transportation.
It was an earthquake that made this replacement span, which runs for 2.2
miles between Oakland and Yerba Buena Island in the middle of San
Francisco Bay, necessary. The Loma Prieta quake of 1989, the first to
occur along the San Andreas fault zone since the 1906 disaster, caused
part of the existing steel-truss span to collapse,
killing a motorist. The bridge was closed for a month. That quake, with
a magnitude of 6.9, caused strong shaking that lasted about 15 seconds
and movement far greater than the 1930s-vintage bridge had been designed
to handle.
Πηγή: New York Times
Seismic Design and Assessment of Bridges

Seismic Design and Assessment of Bridges

Kυκλοφόρησε από τον οίκο Springer το βιβλίο “Seismic Design and Assessment of Bridges”, των Kappos, Saiidi, Aydinoglu, και Isakovic (ως τόμος 21 της σειράς Geotechnical, Geological and Earthquake Engineering) σε έντυπη και ηλεκτρονική μορφή.Μέσω της ιστοσελίδας του βιβλίου
http://www.springer.com/engineering/civil+engineering/book/978-94-007-3942-0?changeHeader
είναι δυνατή η δωρεάν πρόσβαση σε όλα τα κεφάλαια του βιβλίου (απαιτείται πανεπιστημιακή σύνδεση).