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Showing posts with label service. Show all posts
Showing posts with label service. Show all posts

Wednesday, December 4, 2013

After 10 years of service, GOES-12 satellite retires

August 19, 2013

GOES-12 captured this visible image of Hurricane Katrina on August 28, 2005, at 11:45 a.m. (EDT). At that time, the storm was at Category 5 strength and projected to impact New Orleans.

GOES-12 captured this visible image of Hurricane Katrina on August 28, 2005, at 11:45 a.m. (EDT). At that time, the storm was at Category 5 strength and projected to impact New Orleans.

High resolution (Credit: NOAA)

GOES-12 has seen it all, from Hurricane Katrina that hit the Gulf Coast in 2005, to the Christmas blizzard that crippled the Central United States in 2009. It even traveled south of the equator to provide coverage for South America starting in 2010. Now, after more than 10 years of stellar service, NOAA’s Geostationary Operational Environmental Satellite (GOES)-12 spacecraft is being retired.

Launched on July 23, 2001, the satellite lasted well beyond its original operational design life of two years for on-orbit storage and five years of actual operations to support forecasters and scientists in NOAA’s National Weather Service.

“GOES-12 gave the Western Hemisphere many years of reliable data as the operational eastern GOES for accurate forecasts, from small storms to those of historic proportions,” said Mary Kicza, assistant administrator for NOAA’s Satellite and Information Service.

Built by Space Systems/Loral, GOES-12 became operational April 1, 2003 as the GOES-East satellite, monitoring weather across the U.S. East Coast and part of the Atlantic Ocean. On May 10, 2010, when GOES-12 was no longer able to be maintained to meet the requirements of the National Weather Service, it was shifted to a new position, where it provided coverage of weather conditions affecting South America, including volcanic ash clouds, wildfires, and drought.

When NOAA decommissions a geostationary satellite like GOES-12, it is boosted further into orbit, the remaining fuel is expended, the battery is disabled and the transmitters are turned off. These maneuvers reduce the chances the satellite will collide with other operational spacecraft. Additionally, decommissioning lowers the risk of orbital debris and stops the satellite from transmitting any signals that could interfere with any current or future spacecraft.

NOAA continues to operate GOES-13, which serves as the GOES East satellite for the United States and GOES-15, which is the GOES West satellite - both hovering 22,300 miles above the equator. NOAA also has an orbital backup geostationary satellite, GOES-14, which can be activated if any of the operational satellites experience trouble.

Kicza added: “The NOAA-NASA partnership is making steady progress toward developing and launching the more advanced GOES-R satellite series to position us into the future.”

GOES-R is expected to more than double the clarity of today’s GOES imagery and provide more atmospheric observations than current capabilities with more frequent images.

On January 29, 2010, GOES-12 captured a powerful storm developing in the U.S. mid-west. In the coming days, two blizzards hit the East Coast resulting in historic snowfall totals.

On January 29, 2010, GOES-12 captured a powerful storm developing in the U.S. mid-west. In the coming days, two blizzards hit the East Coast resulting in historic snowfall totals.

High resolution (Credit: NOAA)

Data from the GOES-R instruments will be used to create many different products that will help NOAA meteorologists and other users monitor the atmosphere, land, ocean and the sun. GOES-R will also carry a new Geostationary Lightning Mapper that will provide for the first time a continuous surveillance of total lightning activity throughout the Americas and adjacent oceans.

In addition to GOES, NOAA also operates the polar operational environmental satellite (POES) program satellites, the Defense Meteorological Satellites Program series satellites and the Suomi NPP spacecraft.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Friday, November 15, 2013

National Weather Service more than doubles computing capacity

July 29, 2013

This is the Hurricane Weather Research and Forecasting (HWRF) model showing the Tropical Storm Flossie precipitation forecast for the Hawaiian Islands on July 29, 2013.

This is the Hurricane Weather Research and Forecasting (HWRF) model showing the Tropical Storm Flossie precipitation forecast for the Hawaiian Islands on July 29, 2013. HWRF is one of the sophisticated numerical computer models now being run on NOAA's new supercomputers.

Download here (Credit: NOAA)

Whizzing through 213 trillion calculations per second, newly upgraded supercomputers of NOAA’s National Weather Service are now more than twice as fast in processing sophisticated computer models to provide more accurate forecasts further out in time. And as the hurricane season ramps up, forecasters will be armed with an enhanced hurricane model that will improve track and intensity forecasts.

The scientific data and insights that these newly upgraded supercomputers will provide are essential to help government officials, communities, and businesses better understand and manage the risks associated with extreme weather and water events. In support of the president’s Climate Action Plan, the administration will continue to take steps like this to analyze and predict climate variability amid an increasing number of extreme natural events affecting the nation.

“These improvements are just the beginning and build on our previous success. They lay the foundation for further computing enhancements and more accurate forecast models that are within reach,” said Louis W. Uccellini, Ph.D., director of NOAA’s National Weather Service. “These upgrades are a game-changer for the entire public and private weather industry. In addition to the benefits to our own forecasters and products, we will provide our private sector partners with better information to empower them to enhance their services.”

Nicknamed “Tide,” the supercomputer in Reston, Va., and its Orlando-based backup named “Gyre,” are operating with 213 teraflops (TF) — up from the 90 TF with the computers that preceded them. This higher processing power allows the National Weather Service to implement an enhanced Hurricane Weather Research and Forecasting (HWRF) model.

"These forecasting advances can save lives,” said U.S. Sen. Bill Nelson, who helped get funding to add even more capacity to the supercomputer. “It's going to allow for better tracking of life-threatening storms and more accurately predict when and where they'll hit, and with what intensity."

With improved physics and a storm-tracking algorithm, the model has displayed up to a 15 percent improvement in both track and intensity forecasts, compared to last year's version of the model. The upgraded HWRF is also capable of processing real-time data collected from the inner core of a tropical system by the tail Doppler radar attached to NOAA’s P3 hurricane hunter aircraft, data which are expected to produce even greater forecast improvements.

“Next comes the quantum leap,” added Uccellini. Following this round of long-planned upgrades, funding requested in the FY 2014 President’s Budget, in addition to funding provided to NOAA by Congress in the spring of 2013 as part of the Hurricane Sandy emergency supplemental appropriations bill, would increase computing power even further to 1,950 TF by summer 2015. “That gives us the necessary computer power to run an enhanced version of our primary forecast model, the Global Forecast System,” said Uccellini.

"Given recent events like the tornado in Moore, Oklahoma or Superstorm Sandy, federal weather resources and personnel should be considered vital national assets. These upgrades assure world-class capabilities and a continued pathway to keep American lives and property safer," said J. Marshall Shepherd Ph.D., president of the American Meteorological Society and Professor at the University of Georgia. "As a father of two children and a scientist that understands looming weather threats, I take comfort in these developments."

Investments in supercomputing power for weather prediction are another step in NOAA’s efforts to build a Weather-Ready Nation. NOAA’s Weather-Ready Nation initiative, launched nearly two-years ago, has resulted in improvements in products, services and the way information is communicated to the public and partners. These improvements increase resilience to severe weather and reduce the potential of significant societal and economic impacts from severe weather.  A Weather-Ready Nation is a society that is prepared for, and responds effectively to, weather-related events.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Thursday, October 3, 2013

Final report on Sandy service assessment released

May 15, 2013

NOAA/NASA’s Suomi NPP polar-orbiting satellite image of Sandy.

This image was taken on October 29, 2012 from NOAA/NASA’s Suomi NPP polar-orbiting satellite. Using its Visible Infrared Imaging Radiometer Suite, or VIIRS, the satellite provides forecasters more information about the storm’s cloud structure.

Download here (Credit: NOAA/NASA)

After a thoughtful and deliberate review, today NOAA released a report on the National Weather Service’s performance during hurricane/post tropical cyclone Sandy. The report, Hurricane/Post Tropical Cyclone Sandy Service Assessment, reaffirms that the National Weather Service provided accurate forecasts for Sandy, giving people early awareness of the significant storm churning toward the mid-Atlantic and Northeast. The report includes recommendations to improve products and services to fully meet customer and partner needs in the future.

“We found that core partners highly value the National Weather Service and thought the forecasts for Sandy were quite good – forecasters performed well predicting the track of this extremely large and complex storm, which undoubtedly saved lives,” said Peyton Robertson, director of NOAA’s Chesapeake Bay Office and team leader for the Sandy Assessment. “But we also found problems with NOAA’s ability to communicate the impacts associated with storm surge, one of the most significant hazards associated with Sandy.”

The report includes 23 recommendations for service improvements, identifying better storm surge forecasts as the highest priority. Although surge forecasts for Sandy were available two days before the storm, the team found that officials in New York and New Jersey needed information sooner and in more user-friendly, unified formats, including GIS maps and warnings that provide specific local impacts. Among others, the report recommends that NOAA unify public communications of forecast information and expand the use of social science to develop products, services and communication tools to drive public preparedness and response to severe weather.

NOAA GOES-13 satellite image of Sandy.

This NOAA GOES-13 satellite image taken on October 29, 2012, shows the storm as it is centered off of Maryland and Virginia. The storm is heading in a northwestern direction towards the Delaware and southern New Jersey coast. 

Download here (Credit: NOAA/NASA)

The National Weather Service has already implemented one of the team’s recommendations and is developing an action plan to ensure that the team’s remaining recommendations become reality. Earlier this year, the National Hurricane Center moved to change its policy to issue forecasts and warnings for dangerous storms like Sandy, even when they are expected to become post-tropical cyclones by landfall. This policy will be in place for the June 1 start of hurricane season.

“I’m committed to implementing these recommendations to give America a National Weather Service that is second to none,” said Dr. Louis Uccellini, director of NOAA’s National Weather Service. “We will achieve better storm surge forecasts, and more accurate and reliable weather forecasts across the board, with increased high performance computing capacity that is planned within the next few years to support improved numerical weather prediction models.”

He explained that the agency’s structure and operations were last modernized two decades ago, and much of the agency’s communications capacity was designed in the 1980s.

This spring Congress passed the Sandy Supplemental Appropriations Act, providing NOAA with unprecedented opportunity to strengthen the National Weather Service. The Act provides $48 million in supplemental funding to the agency’s FY13 budget for Sandy recovery efforts and to improve response and recovery capability for future weather events. The funding will allow the National Weather Service to make critical improvements in high-speed computing, higher resolution weather prediction models and key observation systems, among other projects that will improve the agency’s support to local communities for extreme weather events.

Sandy was a complex storm, resulting in 72 direct deaths across eight states and at least 75 indirect deaths, damages in excess of $50 billion, storm surge in excess of eight feet and up to three feet of snow in some places. At close to 1,000 miles in diameter, it was among the largest storms ever to strike the United States. The storm caused impacts in 24 states.

NOAA formed a team to assess the National Weather Service’s performance before and during the storm, as it does for destructive or deadly weather events. Team members were selected from across NOAA and other government agencies. The team’s charter called for the review of three key areas: the issuance and communication of watches and warnings during Sandy; National Weather Service’s use of the Internet to communicate with the customers and partners; and the development and communication of storm surge forecasts and information across NOAA.

The National Weather Service is the primary source of weather data, forecasts and warnings for the United States and its territories. Working with partners, NOAA’s National Weather Service is building a Weather-Ready Nation to support community resilience in the face of increasing vulnerability to extreme weather. Visit us online at weather.gov and join us on Facebook, Twitter and our other social media channels.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Tuesday, October 1, 2013

National Weather Service completes Doppler radar upgrades

April 25, 2013

Dual-pol data shows what type of precipitation is falling based on its shape.

Dual-pol data shows what type of precipitation is falling based on its shape.

Download here (Credit: NOAA)

This week, the National Weather Service completed the dual-polarization technology update in Brownsville, Texas – concluding the 122 NWS radar site upgrades throughout the country. This new advanced technology is helping federal weather forecasters more accurately track, assess and warn the public of approaching high-impact weather.

Dual-polarization is the most significant enhancement made to the nation’s federal weather radar system since Doppler technology was first installed in the early 1990s. Dual-pol radar sends and receives both horizontal and vertical pulses, which produces a much more informative picture of the size and shape of the objects in the sky. This provides meteorologists the ability to distinguish between rain, snow, hail and non-weather items like wildfire smoke plumes, birds and insects. Conventional Doppler radar only has a one-dimensional view making it difficult to tell the type of precipitation or object in the sky.

The radar receiving dish inside the protective cover. Dual-pol is both a hardware and software upgrade to the radar.

The radar receiving dish inside the protective cover. Dual-pol is both a hardware and software upgrade to the radar.

Download here (Credit: NOAA)

“This achievement is the result of years of research, development and continued investment that’s helping us become a more weather-ready nation,” said Dr. Louis Uccellini, director, NOAA’s National Weather Service. “It is amazing what we can see with dual-pol technology. This game-changing technology has already helped forecasters issue more accurate and timely warnings to the public and has saved lives.”

Dual-pol is credited with providing improved detection of heavy rainfall, which can increase warning time for flash floods. During winter storms, forecasters use dual-pol information to monitor a transition from snow to sleet and freezing rain, which allows for a more accurate forecast. Dual-pol can also spot airborne debris giving forecasters the ability to confirm a tornado on the ground, even in the dark or when hidden by heavy rain. The new technology has also been used to help detect hazards to aircraft, such as volcanic ash plumes, icing conditions and birds.

“I am committed to supporting the National Weather Service’s critical mission of forecasting and warning about severe weather, and supporting the men and women who work every day to fulfill that mission”, said Senator Barbara A. Mikulski, chairwoman of the Appropriations subcommittee that funds NOAA, “We owe it to our communities – to the coastal states that depend on accurate hurricane forecasts, and to the interior states that depend on timely tornado warnings – to make sure our weather offices are fit for duty. These new state-of-the-art radars will ensure our forecasters have the tools and technology they need to protect lives and livelihoods.”

Dual-polarization is the most significant enhancement made to the nation’s Next Generation Weather Radar network, NEXRAD, since Doppler radar was first installed in the early 1990s.

Dual-polarization is the most significant enhancement made to the nation’s Next Generation Weather Radar network, NEXRAD, since Doppler radar was first installed in the early 1990s.

Download here (Credit: NOAA)

The National Weather Service has used dual-pol to develop 14 new radar products that have improved the speed, understanding, and accuracy of the information it provides about extreme weather. Forecasters now have more confidence to accurately assess weather events and be more descriptive in weather warnings, which helps improve public response to the warnings.

The nationwide dual-pol upgrade began in Sept. 2011 and the public has been benefiting from the new technology every day since. Here are a few successes:

On Feb. 10, 2013, NWS weather forecasters in Jackson, Miss., used the new radar technology to confirm a powerful tornado (EF-4) was moving across Southern Mississippi’s Lamar County toward the populated city of Hattiesburg. Forecasters warned the public using detailed, descriptive language about the tornado’s size and path, resulting in no fatalities. On the same day, dual-pol information helped the Jackson forecasters recognize thunderstorms with particularly heavy rainfall rates, enabling them to issue flash flood warnings more than an hour before flash flooding started. Dual-pol technology can also identify non-weather targets such as bugs, bats or debris from a tornado producing damage on the ground.

Dual-pol technology can also identify non-weather targets such as bugs, bats or debris from a tornado producing damage on the ground.

Download here (Credit: NOAA)

On Nov. 7-8, 2012, NWS meteorologists at the Boston forecast office relied on dual-pol radar information to help locate the rain/snow line as a nor’easter traversed the area. During the afternoon and evening, a storm formed across Rhode Island and eastern Massachusetts. Snow fell to the west of the boundary where temperatures dipped into the 30s, while rain fell to the east where temperatures held in the 40s. Using dual-pol information, forecasters were able to accurately track the slow progress of the rain-snow line and provide short term forecasts which helped department of transportation officials focus their snow removal assets and for the media to highlight the hazardous routes to the traveling public. The NWS forecast office in Phoenix relied on dual-pol technology to successfully warn for a very large dust storm that moved across the metro area during the early evening of July 5, 2011. There were widespread reports of near-zero visibility and winds gusting more than 50 mph. Dual-pol radar data estimated this dust storm reached a peak height of at least 5,000 to 6,000 feet, with a leading edge stretching close to 100 miles and traveling at least 150 miles. Forecasters collaborated with emergency management and media partners, providing details on potential impacts as the dust approached from the southeast.  Dust storm warnings described the large size of the dust area and the potential for widespread low visibilities of less than a quarter mile.  Safety tips in the warnings and updating warning statements helped people in the storm's path make fast and smart decisions.

In addition to the 122 NWS-owned radars, the full nationwide radar network includes another 37 radar sites owned by the FAA and Defense Department, which will be completely upgraded to dual-pol technology this summer. NOAA’s NEXRAD radar program is a tri-agency effort with NOAA, the Federal Aviation Administration, and the United States Air Force.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Thursday, September 12, 2013

After 10 years of service, GOES-12 satellite retires

August 19, 2013

GOES-12 captured this visible image of Hurricane Katrina on August 28, 2005, at 11:45 a.m. (EDT). At that time, the storm was at Category 5 strength and projected to impact New Orleans.

GOES-12 captured this visible image of Hurricane Katrina on August 28, 2005, at 11:45 a.m. (EDT). At that time, the storm was at Category 5 strength and projected to impact New Orleans.

High resolution (Credit: NOAA)

GOES-12 has seen it all, from Hurricane Katrina that hit the Gulf Coast in 2005, to the Christmas blizzard that crippled the Central United States in 2009. It even traveled south of the equator to provide coverage for South America starting in 2010. Now, after more than 10 years of stellar service, NOAA’s Geostationary Operational Environmental Satellite (GOES)-12 spacecraft is being retired.

Launched on July 23, 2001, the satellite lasted well beyond its original operational design life of two years for on-orbit storage and five years of actual operations to support forecasters and scientists in NOAA’s National Weather Service.

“GOES-12 gave the Western Hemisphere many years of reliable data as the operational eastern GOES for accurate forecasts, from small storms to those of historic proportions,” said Mary Kicza, assistant administrator for NOAA’s Satellite and Information Service.

Built by Space Systems/Loral, GOES-12 became operational April 1, 2003 as the GOES-East satellite, monitoring weather across the U.S. East Coast and part of the Atlantic Ocean. On May 10, 2010, when GOES-12 was no longer able to be maintained to meet the requirements of the National Weather Service, it was shifted to a new position, where it provided coverage of weather conditions affecting South America, including volcanic ash clouds, wildfires, and drought.

When NOAA decommissions a geostationary satellite like GOES-12, it is boosted further into orbit, the remaining fuel is expended, the battery is disabled and the transmitters are turned off. These maneuvers reduce the chances the satellite will collide with other operational spacecraft. Additionally, decommissioning lowers the risk of orbital debris and stops the satellite from transmitting any signals that could interfere with any current or future spacecraft.

NOAA continues to operate GOES-13, which serves as the GOES East satellite for the United States and GOES-15, which is the GOES West satellite - both hovering 22,300 miles above the equator. NOAA also has an orbital backup geostationary satellite, GOES-14, which can be activated if any of the operational satellites experience trouble.

Kicza added: “The NOAA-NASA partnership is making steady progress toward developing and launching the more advanced GOES-R satellite series to position us into the future.”

GOES-R is expected to more than double the clarity of today’s GOES imagery and provide more atmospheric observations than current capabilities with more frequent images.

On January 29, 2010, GOES-12 captured a powerful storm developing in the U.S. mid-west. In the coming days, two blizzards hit the East Coast resulting in historic snowfall totals.

On January 29, 2010, GOES-12 captured a powerful storm developing in the U.S. mid-west. In the coming days, two blizzards hit the East Coast resulting in historic snowfall totals.

High resolution (Credit: NOAA)

Data from the GOES-R instruments will be used to create many different products that will help NOAA meteorologists and other users monitor the atmosphere, land, ocean and the sun. GOES-R will also carry a new Geostationary Lightning Mapper that will provide for the first time a continuous surveillance of total lightning activity throughout the Americas and adjacent oceans.

In addition to GOES, NOAA also operates the polar operational environmental satellite (POES) program satellites, the Defense Meteorological Satellites Program series satellites and the Suomi NPP spacecraft.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Wednesday, September 11, 2013

National Weather Service more than doubles computing capacity

July 29, 2013

This is the Hurricane Weather Research and Forecasting (HWRF) model showing the Tropical Storm Flossie precipitation forecast for the Hawaiian Islands on July 29, 2013.

This is the Hurricane Weather Research and Forecasting (HWRF) model showing the Tropical Storm Flossie precipitation forecast for the Hawaiian Islands on July 29, 2013. HWRF is one of the sophisticated numerical computer models now being run on NOAA's new supercomputers.

Download here (Credit: NOAA)

Whizzing through 213 trillion calculations per second, newly upgraded supercomputers of NOAA’s National Weather Service are now more than twice as fast in processing sophisticated computer models to provide more accurate forecasts further out in time. And as the hurricane season ramps up, forecasters will be armed with an enhanced hurricane model that will improve track and intensity forecasts.

The scientific data and insights that these newly upgraded supercomputers will provide are essential to help government officials, communities, and businesses better understand and manage the risks associated with extreme weather and water events. In support of the president’s Climate Action Plan, the administration will continue to take steps like this to analyze and predict climate variability amid an increasing number of extreme natural events affecting the nation.

“These improvements are just the beginning and build on our previous success. They lay the foundation for further computing enhancements and more accurate forecast models that are within reach,” said Louis W. Uccellini, Ph.D., director of NOAA’s National Weather Service. “These upgrades are a game-changer for the entire public and private weather industry. In addition to the benefits to our own forecasters and products, we will provide our private sector partners with better information to empower them to enhance their services.”

Nicknamed “Tide,” the supercomputer in Reston, Va., and its Orlando-based backup named “Gyre,” are operating with 213 teraflops (TF) — up from the 90 TF with the computers that preceded them. This higher processing power allows the National Weather Service to implement an enhanced Hurricane Weather Research and Forecasting (HWRF) model.

"These forecasting advances can save lives,” said U.S. Sen. Bill Nelson, who helped get funding to add even more capacity to the supercomputer. “It's going to allow for better tracking of life-threatening storms and more accurately predict when and where they'll hit, and with what intensity."

With improved physics and a storm-tracking algorithm, the model has displayed up to a 15 percent improvement in both track and intensity forecasts, compared to last year's version of the model. The upgraded HWRF is also capable of processing real-time data collected from the inner core of a tropical system by the tail Doppler radar attached to NOAA’s P3 hurricane hunter aircraft, data which are expected to produce even greater forecast improvements.

“Next comes the quantum leap,” added Uccellini. Following this round of long-planned upgrades, funding requested in the FY 2014 President’s Budget, in addition to funding provided to NOAA by Congress in the spring of 2013 as part of the Hurricane Sandy emergency supplemental appropriations bill, would increase computing power even further to 1,950 TF by summer 2015. “That gives us the necessary computer power to run an enhanced version of our primary forecast model, the Global Forecast System,” said Uccellini.

"Given recent events like the tornado in Moore, Oklahoma or Superstorm Sandy, federal weather resources and personnel should be considered vital national assets. These upgrades assure world-class capabilities and a continued pathway to keep American lives and property safer," said J. Marshall Shepherd Ph.D., president of the American Meteorological Society and Professor at the University of Georgia. "As a father of two children and a scientist that understands looming weather threats, I take comfort in these developments."

Investments in supercomputing power for weather prediction are another step in NOAA’s efforts to build a Weather-Ready Nation. NOAA’s Weather-Ready Nation initiative, launched nearly two-years ago, has resulted in improvements in products, services and the way information is communicated to the public and partners. These improvements increase resilience to severe weather and reduce the potential of significant societal and economic impacts from severe weather.  A Weather-Ready Nation is a society that is prepared for, and responds effectively to, weather-related events.

NOAA’s mission is to understand and predict changes in the Earth's environment, from the depths of the ocean to the surface of the sun, and to conserve and manage our coastal and marine resources. Join us on Facebook, Twitter and our other social media channels.


View the original article here

Wednesday, January 25, 2012

Hope fades for four missing at Mount Rainier, Park Service says (Reuters)

SEATTLE (Reuters) – Chances are slim of finding four people alive who have been missing since last week on Mount Rainier in Washington state as rescue efforts were suspended on Tuesday due to a snow storm that hit the region, a Park Service official said.

The suspension of the search came a day after officials, taking advantage of a break between winter storms, conducted a major operation to look for the missing people.

An Army Chinook helicopter, a private helicopter and a Washington State Patrol plane with infrared capabilities were used in the latest unsuccessful search, along with seven ground teams, the U.S. National Park Service said in a statement.

But on Tuesday, a winter storm brought more snowfall to Mount Rainier, 50 miles southeast of Seattle, hindering further rescue efforts. Heavy snow blanketed Mount Rainier last week during an unusually strong winter storm that virtually paralyzed nearby Seattle.

The four missing people were in two separate parties. Mark Vucich, 37, of San Diego and Michelle Trojanowski, 30, of Atlanta had been planning to camp at Muir Snowfield at the mountain, the Park Service said. They had said they would exit the park on Sunday, January 15.

The second party consisted of two 52-year-old climbers. Sork Yang of Springfield, Oregon, and Seol Hee Jin of South Korea, were trying to reach the mountain's summit and planned to return on Monday, January 16, the Park Service said.

Patti Wold, a spokeswoman for the Park Service, said on Tuesday that the chances of finding the four people alive were "very minimal, minimum to none."

"We're not searching today," Wold said. "We are scaling back the operation."

The families of the four missing people have been told that the chances of finding them alive were small, she added.

(Reporting by Laura L. Myers: Writing by Alex Dobuzinskis; Editing by Cynthia Johnston)


View the original article here

Monday, October 17, 2011

Weather Service Confirms Seven Fall Tornadoes Hit Virginia (ContributorNetwork)

Rare falltime tornadoes hit north central Virginia on Thursday in the midafternoon as a cold front swept through the state. The Washington Post reports the National Weather Service confirmed seven twisters touched down in Fairfax, Prince William, Louisa, Strafford and Fauquier counties. Four funnel clouds were within 50 miles of the nation's capital. No injuries or deaths were reported.

One twister was seen in the middle of rush hour traffic along Interstate 95 near Fredericksburg. A video on YouTube was uploaded by a motorist stuck in traffic watching the twister go by. The car was stopped on a bridge as the edges of the tornado crossed the highway. Leaves can be seen blowing horizontally and sheets of rain were pelting the car. Fortunately the tornado was weak enough to only blow around small bits of debris and rain.

The only victims of the high winds in Louisa County may have been historic structures. NBC 12 in Richmond, Va., reported a house built in 1746 had the roof blown off and some columns collapse in Sylvania, which is in Louisa County. The plantation house was hit around 3:45 p.m.

Damage reports in New Kent County were more drastic. About 30 homes were damaged in New Kent County and Woodhaven. Hundreds of trees were downed by the tornadoes. The elementary school suffered minor damage.

Louisa County is the same locality that was hit by an earthquake Aug. 23 that caused damage in Washington. After that, Hurricane Irene rolled through. Now a tornado has damaged parts of the county. The recent storm was just the eighth tornado to hit Louisa County since 1950. The area has suffered $18 million in damage yet has not been given any federal disaster aid.

The National Weather Service states deadly tornadoes in Virginia are rare. From 1950 to 1993, there were only two deadly tornadoes in Virginia. Twisters in 1993 accounted for four deaths and 238 injuries.

There still may be more twisters in store for the U.S. The 2011 count is already above average. Taking into account preliminary reports, there have been 1,814 twisters. That's 400 above a three-year average. The record for the most tornado deaths in one year was set in 2011 with 547 deaths, 530 in April and May. There were 160 of those deaths in one storm that destroyed 30 percent of Joplin, Mo.

There may be a spike in tornado activity in later October and early November as warm and cold air clash during the change of seasons. Tornadoes can occur anytime, anywhere, even though the most prominent times are in April and May for the United States.


View the original article here

Friday, September 9, 2011

Weather service: Tornado touched down in NY (AP)

AMSTERDAM, N.Y. – A tornado that caused property damage near the state capital, Albany, was spawned in a string of violent thunderstorms a week after Tropical Storm Irene brought destructive flooding to the region.

The tornado was about a half-mile wide and on the ground for more than 10 minutes Sunday evening, said Steve DiRienzo, a National Weather Service meteorologist who assessed the damage Monday. Amateur video posted online shows a dark funnel cloud crossing the New York Thruway, where it knocked down trees.

DiRienzo said the tornado hit around 5:20 p.m. and traveled east about 4 miles along the Mohawk River, from the town of Amsterdam into Schenectady County's hilly West Glenville. Estimates of wind speeds weren't immediately available, he said. But trees and power lines were knocked down, parts of some roofs and pieces of siding were torn off and windows were blown out. There were no reports of serious injuries.

Amsterdam Town Supervisor Tom DiMezza said it could have been "a lot worse."

"There's sections where trees fell between homes and missed both houses. Huge trees," DiMezza said.

He said 30 to 40 homes and businesses had damage.

"After the tropical storm, we were just getting things cleaned up, and this happens," said DiMezza, who declared a state of emergency in the town.

He said 39 National Grid utility crews were working to restore power, particularly in the hard-hit Cranesville neighborhood. The utility reported about 300 customers in the immediate area still without electricity Monday afternoon.

Extra state police and some members of the National Guard, including a military police unit, were dispatched to help with traffic control, DiMezza said.

Most of the damage was in Montgomery County, already eligible for federal disaster assistance after Irene.

___

Online:

Amateur video: http://www.youtube.com/watch?v8pWkmTVbqcA


View the original article here