Source: Associated Press
Date: 3/28/2012
Description
Recent investigation found one damaged reactor at Japan's crippled Fukushima Dai-ichi nuclear power plant has extremely high levels of radiation and very little water. Authorities haven't been able to probe two others that had meltdowns. (March 28)
Read here for more about the recent probe of the reactor 2 core at Fukushima Daiichi from the Associated Press.
Source: RedButtonStudios, NHK World
Date: Wednesday, March 28, 2012 11:13 +0900 (JST)
Description
Great remix of NHK World by RedButtonStudios
Showing posts with label Associated Press. Show all posts
Showing posts with label Associated Press. Show all posts
Wednesday, March 28, 2012
Friday, September 2, 2011
9/2/2011 Earthquake risk to nuclear reactors greater than thought
Source: AP via pal-item.com
Date: 9/2/2011
by: Dina Cappiello and Jeff Donn
WASHINGTON (AP) — The risk that an earthquake would cause a severe accident at a U.S. nuclear plant is greater than previously thought, 24 times as high in one case, according to an AP analysis of preliminary government data. The nation’s nuclear regulator believes a quarter of America’s reactors may need modifications to make them safer.
...
Read full article here
Date: 9/2/2011
by: Dina Cappiello and Jeff Donn
WASHINGTON (AP) — The risk that an earthquake would cause a severe accident at a U.S. nuclear plant is greater than previously thought, 24 times as high in one case, according to an AP analysis of preliminary government data. The nation’s nuclear regulator believes a quarter of America’s reactors may need modifications to make them safer.
...
Read full article here
Labels:
Associated Press,
earthquake,
NRC,
nuclear power plants
Saturday, July 23, 2011
7/22/2011 Inside the Innards of a Nuclear Reactor: Tiny Robots May Monitor Underground Pipes for Radioactive Leaks
Source: Science Daily
Date: 7/22/2011
A spherical robot equipped with a camera may navigate underground pipes of a nuclear reactor by propelling itself with an internal network of valves and pumps. (Credit: Harry Asada/d'Arbeloff Laboratory)
ScienceDaily (July 22, 2011) — As workers continue to grapple with the damaged Fukushima Daiichi nuclear powerplant in Japan, the crisis has shone a spotlight on nuclear reactors around the world. In June, The Associated Press released results from a yearlong investigation, revealing evidence of "unrelenting wear" in many of the oldest-running facilities in the United States.
That study found that three-quarters of the country's nuclear reactor sites have leaked radioactive tritium from buried piping that transports water to cool reactor vessels, often contaminating groundwater. According to a recent report by the U.S. Government Accountability Office, the industry has limited methods to monitor underground pipes for leaks.
"We have 104 reactors in this country," says Harry Asada, the Ford Professor of Engineering in the Department of Mechanical Engineering and director of MIT's d'Arbeloff Laboratory for Information Systems and Technology. "Fifty-two of them are 30 years or older, and we need immediate solutions to assure the safe operations of these reactors."
Asada says one of the major challenges for safety inspectors is identifying corrosion in a reactor's underground pipes. Currently, plant inspectors use indirect methods to monitor buried piping: generating a voltage gradient to identify areas where pipe coatings may have corroded, and using ultrasonic waves to screen lengths of pipe for cracks. The only direct monitoring requires digging out the pipes and visually inspecting them -- a costly and time-intensive operation.
Now Asada and his colleagues at the d'Arbeloff Laboratory are working on a direct monitoring alternative: small, egg-sized robots designed to dive into nuclear reactors and swim through underground pipes, checking for signs of corrosion. The underwater patrollers, equipped with cameras, are able to withstand a reactor's extreme, radioactive environment, transmitting images in real-time from within.
The group presented details of its latest prototype at the 2011 IEEE International Conference on Robotics and Automation.
...
Read full article here
Date: 7/22/2011
A spherical robot equipped with a camera may navigate underground pipes of a nuclear reactor by propelling itself with an internal network of valves and pumps. (Credit: Harry Asada/d'Arbeloff Laboratory)
ScienceDaily (July 22, 2011) — As workers continue to grapple with the damaged Fukushima Daiichi nuclear powerplant in Japan, the crisis has shone a spotlight on nuclear reactors around the world. In June, The Associated Press released results from a yearlong investigation, revealing evidence of "unrelenting wear" in many of the oldest-running facilities in the United States.
That study found that three-quarters of the country's nuclear reactor sites have leaked radioactive tritium from buried piping that transports water to cool reactor vessels, often contaminating groundwater. According to a recent report by the U.S. Government Accountability Office, the industry has limited methods to monitor underground pipes for leaks.
"We have 104 reactors in this country," says Harry Asada, the Ford Professor of Engineering in the Department of Mechanical Engineering and director of MIT's d'Arbeloff Laboratory for Information Systems and Technology. "Fifty-two of them are 30 years or older, and we need immediate solutions to assure the safe operations of these reactors."
Asada says one of the major challenges for safety inspectors is identifying corrosion in a reactor's underground pipes. Currently, plant inspectors use indirect methods to monitor buried piping: generating a voltage gradient to identify areas where pipe coatings may have corroded, and using ultrasonic waves to screen lengths of pipe for cracks. The only direct monitoring requires digging out the pipes and visually inspecting them -- a costly and time-intensive operation.
Now Asada and his colleagues at the d'Arbeloff Laboratory are working on a direct monitoring alternative: small, egg-sized robots designed to dive into nuclear reactors and swim through underground pipes, checking for signs of corrosion. The underwater patrollers, equipped with cameras, are able to withstand a reactor's extreme, radioactive environment, transmitting images in real-time from within.
The group presented details of its latest prototype at the 2011 IEEE International Conference on Robotics and Automation.
...
Read full article here
Labels:
Associated Press,
corroding pipes,
d'Arbeloff Laboratory,
Fukushima,
Harry Asada,
MIT,
robots,
tritium,
underground pipes
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