Thursday, December 2, 2010
Measuring Earthquakes in Western New York
Each year, dozens of small, mostly harmless earthquakes quakes rattle the northeastern United States and southern Canada, and one quite active area runs along the shores of lakes Erie and Ontario, in western New York. In order to learn more about what generates these, and the possible threat of something bigger, scientists at Columbia University’s Lamont-Doherty Earth Observatory have installed a new seismometer at the West Valley Central School, southeast of Buffalo. Officially announced on Oct. 15, it is the latest addition to the Lamont Cooperative Seismic Network, which monitors earthquakes throughout the region. The station not only sends data to the scientific community, but gives hands-on experience to West Valley students, who have been given computer hardware and software t0 analyze signals from the instrument.
Funded with a $25,000 grant from the New York State Energy Research and Development Authority, the station was installed by Lamont seismologist Won-Young Kim, head of the network. There are now 28 stations including this one, from New York’s Central Park to near the Canadian border. Many are run in cooperation with schools, universities, museums and other organizations. Signals are sent in real time to Lamont, and disseminated to scientists worldwide via the internet.
Sunday, November 22, 2009
Seismograph mashups of the future?
By Emma Gallegos, Staff Writer
Whittier Daily News
Posted: 11/22/2009 06:02:20 AM PST
PASADENA - Researchers at Caltech who study earthquakes want to enlist Southern Californians with cell phones or computers to help them measure strong jolts in the region.
A couple of years ago, the researchers noticed that accelerators - small devices that measure motion - were becoming common, and now they're practically a standard part of Macintosh laptops and touch-screen cell phones.
That's when it clicked that the accelerometers might help them with their research.
"Lightbulbs went on in people's heads - there's seismometers all over the place," said Tom Heaton, director of the Earthquake Engineering Research Laboratory at Caltech.
This summer the group of professors and students received a grant from the National Science Foundation to create a program that could use the data from thousands - if not millions - of accelerometers to give seismic experts a better picture of earthquakes and the faults that cause them.
Right now there are about 200 high-quality seismic stations throughout Southern California. There's one at the U.S. Geological Survey on the Caltech campus, but the next one is in Glendale.
That doesn't cut it for researchers, who would like to be able to get a block-by-block portrait of what happens when an earthquake strikes but can't afford to pay the $15,000 it costs to pay for and maintain these seismic stations.
"Instead of a small number of high-quality instruments, we'd rather (have) a
larger number of lesser-quality instruments, trading quality for quantity," said Robert Clayton, a Caltech professor in the seismological lab.
The accelerometers could not only help measure quakes block by block but also floor by floor, said civil engineering Professor Monica Kohler. She's interested in the way the data could help civil engineers understand how buildings move and sway when a quake hits.
There are a couple buildings that have seismometers installed, but they tend to be costly and intrusive, she said.
"It's become obvious that this is a very easy way to start putting sensors and getting building motions up potentially every floor of a high-rise building," Kohler said.
The accelerometers aren't as sensitive as pricey seismic stations, but industry demands have brought the costs of some down to $50 to $100.
The researchers already have a working model that transforms the same technology that deploys air bags in cars and makes the Nintendo Wii remote possible to measure strong quakes.
The test accelerometers aren't much larger than a quarter, and they can attach to laptops via a USB port. When you bang on the table where these laptops are sitting, a red spot appears on a Google map showing the "epicenter" of the quake centered on the Caltech campus.
Of course, once thousands or millions of these devices are hooked up to a ShakeOut map, researchers say that this everyday jostling and knocking on a table won't register as an earthquake.
It's the simultaneous motion of these accelerometers that will signal that an earthquake has occurred. The group is working to make sure that this information moves quickly - transmitted via a wireless signal and then out of the system where it will be safe.
"What we'd like to do is to be able to take the earliest motions and get the information out of the region as fast as possible," Clayton said.
He calls this the "Indiana Jones effect." After the first wave of a major earthquake, the infrastructure of the city and electrical systems will begin to fail in a wave. That information needs to be able to move ahead of the first wave of the earthquake, like Indiana Jones in the "Temple of Doom."
The group is planning to slowly release distribute the devices to the community, beginning in 2010, Clayton said.
Caltech community members will be the first to test the accelerometers. By spring, the group plans to release the accelerometers into the local school system, tapping into science teachers, who could use them as teaching tools. Next summer, the group will distribute them to other school systems in Los Angeles and to fire stations.
And if all goes well on this project in Southern California, Clayton said that the research could be applied to other earthquake-prone areas - especially developing countries that suffer from strong earthquakes but have a weak system for sensing them. It would be as simple as distributing the sensors to local Internet cafes.
"If you could put one of these in every Internet cafe, you'd have an instant seismic network," Clayton said.
Friday, November 20, 2009
Educational seismographs for discounted sale
DTA, formerly a U.S. Sales and Service Center for Guralp Systems, a world leader in the design and manufacture of low-noise broadband seismometers, is now in the process of closing down, and has a few Educational Seismographs ("PEPP" and "EDU" instruments) in its inventory for sale. These instruments are fully operational. The instruments are listed below, along with their condition and price. Because DTA is closing down, warranties cannot be provided. If you are interested in purchasing any of these instruments, conatct Bruce Pauly. Quotations will be prepared upon request. Delivery would be immediate from the shelf. First come first served.PEPP Style:
PEPP-V V7207 USED $2000 (25% off)
PEPP-V V7209 USED $2000 (25% off)
PEPP-T T6285 USED $5000 (25% off)
PEPP-T T6284 USED $3000 (55% off) (no GPS receiver)
PEPP-V V7219 NEW $2160 (20% off)
EDU Style:
EDU-V V7320 NEW $2295 (15% off)
EDU-T T6827 NEW $5950 (15% off)
Monday, November 2, 2009
Seismograph widget for your Macintosh
My IT colleague Teb not only relieved me of some candy this weekend (with his kids), but he told me that this capability is now available for Macs as a "widget" (a little snippet of software).
You can download it from Apple. Free, only 141k.
System requirements - Mac OS X 10.4 or later; Macbook, Powerbook or iBook
Tuesday, November 25, 2008
What's shaking?
In the old days of a drum recorder, we often lost data when we forgot to change the paper. Now that the recording is digital, we are doing better. And we have evidence for that. Mitch, maybe you can explain those QUACK statistics?
Monday, October 27, 2008
Turn your laptop into a seismograph
"It turns out that the same chip is a pretty good earthquake sensor, too—especially if the signals from lots of them are compared, in order to filter out more mundane sources of laptop vibrations, such as typing.
"It's an approach that is starting to gain acceptance. The project Quake Catcher Network (QCN), already has about 1500 laptops connected in a network that has detected several tremors, including a magnitude 5.4 quake in Los Angeles in July. Led by Elizabeth Cochran at the University of California, Riverside, and Jesse Lawrence at Stanford University, QCN uses the same BOINC platform for volunteer computing that projects like SETI@home rely on.
"One of the benefits of this new technology is price: Research-grade earthquake sensors typically cost between $10,000 and $100,000. Of course, they are much more sensitive, and can detect the subtle signals of far-away quakes that laptops will never pick up. But Lawrence notes that, 'with many more cheap sensors, instead of guessing where strong motions were felt by interpolating between sensors, we should be able to know where strong motions were felt immediately, because we have sensors there.'
"Another advantage is that QCN sensors can record the maximum ground shaking. Many high-sensitivity sensors cut short the full extent of the oscillations they are measuring even for moderate earthquakes. Lawrence argues that with enough sensors, eventually 'we should have the ability to triangulate earthquakes for earthquake early warning, providing several seconds of warning before the earthquake hits neighboring populated regions.'
"There is a catch with the QCN sensors, though: getting accurate coordinates for their position. At present, since most laptops do not have GPS, the project relies on coordinates that the users type in. Fortunately, rough coordinates can also be automatically retrieved from network routers that the laptop is connected to, as a backup.
It all started with teenage mutant ninjas
"Laptop accelerometers were never meant to be used this way. But in 2005, a benign hacker group called the teenage mutant ninjas figured out how to access the 'sudden motion sensor' in Apple computers. A year later, David Griscom at the company Suitable Systems wrote SeisMac as an educational tool for IRIS, a group of U.S. earthquake seismologists.
"Cochran had the idea that this approach could be linked with BOINC. Carl Christensen, a distributed computing expert, was recruited to implement QCN in BOINC last year. A first limited release was made in March of this year, and by April the network had already detected its first quake, in Reno, Nevada.
"Christensen is now working on integrating stand-alone sensors that attach to desktop machines with USB connections (since desktops don't get bumped around like laptops, they don't have built-in sensors). These USB sensors can be as cheap as $30, and the idea is to have large numbers of them sponsored as educational tools for schools.
"Lawrence notes that "the USB accelerometers will provide a stable backbone, without which the ever-changing configuration of laptops would not be quite as reliable. The USB accelerometers can also mount directly to the floor, which means they will have better sensitivity to ground motions." From AAAS.
Download Seismac for your Mac.
Join the Quake-Catcher Network.

