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Remembrance: Worcester Cold Storage Tragedy

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Worcester Cold Storage Tragedy

On December 3, 1999, a five-alarm fire at the Worcester Cold Storage & Warehouse Co. building claimed the lives of six brave firefighters who responded to the call. These six heros, The Worcester 6, sacrificed their lives to try and rescue two individuals who were believed to be trapped inside the inferno. May the Worcester 6 always be remembered; “Fallen Heroes Never Forgotten.”

Firefighter Paul A. Brotherton
Firefighter
Paul A. Brotherton
Firefighter Timothy P. Jackson
Firefighter
Timothy P. Jackson
Firefighter Jeremiah M. Lucey
Firefighter
Jeremiah M. Lucey
Firefighter James F. Lyons
Firefighter
James F. Lyons
Firefighter Joseph T. McGuirk
Firefighter
Joseph T. McGuirk
Lieutenant Thomas E. Spencer
Lieutenant
Thomas E. Spencer

Looking Back at One Meridian Plaza High Rise Fire: 1991

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One Meridian Plaza Fire 1991, Provided Photo Source Not Known, All rights reserved

On what began as an uneventful Saturday night twenty-one years ago, a fire on the 22nd floor of the 38-story Meridian Bank Building, also known as One Meridian Plaza, was reported to the Philadelphia Fire Department on February 23, 1991 at approximately 2040 hours and went on to burned for more than 19 hours.

The fire caused three firefighter fatalities (LODD) and injuries to 24 firefighters.

PFD Line of Duty Deaths:

  • Captain David P. Holcombe, age 52
  • Firefighter Phyllis McAllister, age 43
  • Firefighter James A. Chappell, age 29

 The 12-alarms brought 51 engine companies, 15 ladder companies, 11 specialized units, and over 300 firefighters to the scene. It was one of the largest high-rise office building fire in modern American history –completely consuming eight floors of the building –and was controlled only when it reached a floor that was protected by automatic sprinklers.

  • The Fire Department arrived to find a well-developed fire on the 22nd floor, with fire dropping down to the 21st floor through a set of convenience stairs.
  • Heavy smoke had already entered the stairways and the floors immediately above the 22nd.
  • Fire attack was hampered by a complete failure of the building’s electrical system and by inadequate water pressure, caused in part by improperly set pressure reducing valves on standpipe hose outlets.

For a detailed accounting, diagrams and links, click over to Buildingsonfire.com HERE

Remembrance: Worcester Cold Storage Warehouse Fire and the Worcester Six

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Today December 3, 2011 marks the 12th anniversary of the Worcester Cold Storage Warehouse fire that resulted in the line of duty death of six courages brother firefighters.   

For those of you who remember this event, take the time to reflect and honor the sacrifice made this day; to those of you who have not heard about the fire before- take the time to learn about the incident, the firefighters, the building, the operational factors and challenges, the courage, fortitude and convictions that define the American Fire Service, it’s honor, tradition and brotherhood.   

The Worcester Six;   

  • Firefighter Paul Brotherton Rescue 1
  • Firefighter Jeremiah Lucey Rescue 1
  • Lieutenant Thomas Spencer Ladder 2
  • Firefighter Timothy Jackson Ladder 2
  • Firefighter James Lyons Engine 3
  • Firefighter Joseph McGuirk Engine

   

On Friday, December 3, 1999, at 1813 hours, the Worcester, Massachusetts Fire Department dispatched Box 1438 for 266 Franklin Street, the Worcester Cold Storage and Warehouse Co. A motorist had spotted smoke coming from the roof while driving on an adjacent elevated highway. The original building was constructed in 1906, contained another 43,000 square feet. Both were 6 stories above grade. The building was known to be abandoned for over 10 years.   

   

Provisional 2010 Firefighter LODD Fatality Statistics

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There were 85 LODD in the United States in 2010

Provisional 2010 Firefighter Fatality Statistics

The United States Fire Administration (USFA) recently released the Provisional 2010 Firefighter Fatality Statistics.

According to the report there were 85 onduty firefighter fatalities in the United States as a result of incidents that occurred in 2010, a 6 percent decrease from the 90 fatalities reported for 2009.

The 85 fatalities were spread across 31 states.

  • Illinois experienced the highest number of fatalities (9).
  • In addition to Illinois, only New York (8),
  • Ohio (8),
  • Pennsylvania (7), and
  • Kansas (5) had 5 or more firefighter fatalities.

Heart attacks and strokes were responsible for the deaths of 51 firefighters (60%) in 2010, nearly the same proportion of firefighter deaths from heart attack or stroke (58%) in 2009.

Nine onduty firefighters died in association with wildland fires, about half the number that died in association with wildland fires in 2009 and a third of the 26 such fatalities in 2008.

Forty-eight percent of all firefighter fatalities occurred while performing emergency duties.

Eleven firefighters died in 2010 as the result of vehicle crashes, down substantially from 16 deaths in 2009, and for the first time since 1999, none the of the deaths involved aircraft. Four firefighters in 2010 died in accidents involving firefighters responding in personal vehicles. Seven firefighter deaths involved fire department apparatus, one of which was a double firefighter fatality incident.

These 2010 firefighter fatality statistics are provisional and may change as the USFA contacts State Fire Marshals to verify the names of firefighters reported to have died onduty during 2010.

The final number of firefighter fatalities will be reported in USFA’s annual firefighter fatality report, expected to be available by July.

  • 2010 Firefighter Fatality Provisional Statistics (PDF, 11 Kb) HERE
  • 2010 Firefighter Fatality Provisional Statistics (Text, 4 Kb) HERE
  • USFA 2010 LODD Fatality Notices, HERE
  • USFA 2011 LODD Fatality Notices, HERE

2010 Line of Duty

As Report From the USFA web Site

Firefighter’s Name City, State Date of Death
Hardy, Tom  Athens, Michigan 12/31/2010 
Adamo, Kenneth  Elmwood Park, New Jersey 12/28/2010 
Stringer, Edward  Chicago, Illinois 12/22/2010 
Ankum, Corey  Chicago, Illinois 12/22/2010 
Null, Chad  Sullivan, Indiana 12/16/2010 
Tuberville, Jimmy  Milledgeville, Tennessee 12/13/2010 
Denton, Dillon C. Lancaster, South Carolina 12/07/2010 
Valentino, Gary M. Brooklyn, New York 11/26/2010 
Marshall, Jr., Kenneth  Rehoboth, Massachusetts 11/25/2010 
Sanchez, Fernando  South Sacramento, California 11/23/2010 
Hall, Worne T. Hitchins, Kentucky 11/19/2010 
Zobel, Chance  Columbia, South Carolina 11/13/2010 
Gumbert, James  North Irwin, Pennsylvania 11/10/2010 
Murray, Leonard Arthur Nashville, Indiana 11/05/2010 
Drake, Rick  Taylorsville, Indiana 11/01/2010 
Cummins, Gary L. Brocton, Illinois 10/31/2010 
Quinn, Kevin  Dayton, Ohio 10/30/2010 
Bachinsky, Bruce  Waterbury, Connecticut 10/26/2010 
Davenport, Randall Scott Marshall, Missouri 10/24/2010 
Wilson, Daniel C. Curtice, Ohio 10/23/2010 
Akin, Jr., William  Ghent, New York 10/19/2010 
Saunders, Jim  Sacramento, California 10/07/2010 
Innes, Thomas  Hindsboro, Illinois 10/03/2010 
Hall, Robert  Lynchburg, Ohio 09/27/2010 
Mosley, Edward  Morgan, Texas 09/26/2010 
Stephan, Ronald W. Lynn, Indiana 09/25/2010 
Seitz, Ryan Neil McArthur, Ohio 09/24/2010 
Clark, William Harold “Hal” Atlantic, Virginia 09/24/2010 
Johnson, Mark  Hinsdale, Illinois 09/20/2010 
Owen, James M. Irvine, California 09/16/2010 
Kelly, John  Tarrytown, New York 09/06/2010 
Suiter, Larry  Lorraine, Kansas 09/04/2010 
Farrington, Douglas  Delta, Pennsylvania 08/23/2010 
Littleton, Jonathan Lewis “Johnny” Pine Level, North Carolina 08/20/2010 
Wheatley, Christopher  Chicago, Illinois 08/09/2010 
Adams, Christopher W. Little Rock, Arkansas 08/02/2010 
Costello, Steven N. Burlington, Vermont 07/30/2010 
Altice, William Daniel “Danny” Rocky Mount, Virginia 07/26/2010 
Dillon, Posey  Rocky Mount, Virginia 07/26/2010 
Sullivan, David  Otis, Massachusetts 07/25/2010 
Velasquez, Steven John Bridgeport, Connecticut 07/24/2010 
Baik, Michel  Bridgeport, Connecticut 07/24/2010 
Springman, Richard L. Trout Run, Pennsylvania 07/14/2010 
Hornberger, Charles  Milmont Park, Pennsylvania 07/12/2010 
Smith, Douglas L. Williamstown, Pennsylvania 07/09/2010 
Flintom, Charles “Bob” Robert Greer, South Carolina 07/04/2010 
Araguz III, Thomas  Wharton, Texas 07/03/2010 
Fouts, V, Frank William Kankakee, Illinois 07/01/2010 
Brown, Jay C. Eastman, Georgia 06/27/2010 
Bauermeister, Chet  Mesa, Washington 06/23/2010 
Davis, Scott W. Oswego, New York 06/20/2010 
Eckert, Edward  Manahawkin, New Jersey 06/06/2010 
Schneider Jr., Donald A. Belleville, Wisconsin 05/29/2010 
Meusel, Kurt  Scales Mound, Illinois 05/22/2010 
Curlin, David  Pine Bluff, Arkansas 05/22/2010 
Glaser, John  Shawnee, Kansas 05/22/2010 
IRR, David  Yuma, Arizona 05/22/2010 
Johnson, Paul  Fort Cobb, Oklahoma 05/19/2010 
Caldwell, Donnie  Ghent, West Virginia 05/13/2010 
Polimine, John  Windber, Pennsylvania 05/01/2010 
Crannell, Steven Scott Guthrie Center, Iowa 04/22/2010 
Iaccino, Vincent  Hyde Park, New York 04/12/2010 
Loomis, Garrett  Sackets Harbor, New York 04/11/2010 
Reed, Sr., Harold  Peru, Kansas 04/11/2010 
Schaper, Donald E Gainsville, Missouri 04/09/2010 
Powell, Leo  Lucasville, Ohio 04/03/2010 
Teare, Edward  Independence, Ohio 03/31/2010 
Robinson, Dennis  Tucson, Arizona 03/31/2010 
Carey, Brian  Homewood, Illinois 03/30/2010 
Moore, John P. Columbus, Ohio 03/29/2010 
Bolick, Jeremy  Blowing Rock, North Carolina 03/21/2010 
Wright, Tommy  Blowing Rock, North Carolina 03/21/2010 
Adkins, Donald “Donnie”  Glasgow, West Virginia 03/13/2010 
Swan, Kevin  Beacon Falls, Connecticut 03/10/2010 
Marcheterre, Gerard  Skaneateles, New York 03/06/2010 
Rowe, Brian  West Fork, Maine 03/05/2010 
Waynant, Sr., Brian P. Wilmington, Delaware 03/01/2010 
Siemers, Jonathan  Clay Center, Kansas 02/21/2010 
Mellott, Donald G. Woolrich, Pennsylvania 02/12/2010 
Giles, Stanley L. Linn Valley, Kansas 02/10/2010 
Coyle, John  Priest River, Idaho 02/08/2010 
Sandy, Henry  Batesville, Arkansas 01/26/2010 
Cannon, Terry  Louisville, Kentucky 01/17/2010 
McCafferty, Joseph Mack Lancaster, Ohio 01/16/2010 
Thompson, Jerry  Union, Mississippi 01/14/2010 
Kemp, Leroy  Tioga Center, New York 01/13/2010 
Eck, Urban Aloyisous Wichita, Kansas 01/02/2010 

 

Links of Interest

  • NIOSH Firefighter Fatality Investigation and Prevention Program
  • National Fallen Firefighters Foundation
  • EveryoneGoesHome.com
  • Firefighter Close Calls.com
  • Buildingsonfire.com
  • IAFC Safety, Health and Survival
  • National Firefighter Near-Miss Reporting System
  • Make Everyday a Training Opportunity

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    Worcester Cold Storage Warehouse Fire 1999

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    Today December 3, 2010 marks the 11th anniversary of the Worcester Cold Storage Warehouse fire that resulted in the line of duty death of six courages brother firefighters.   

    For those of you who remember this event, take the time to reflect and honor the sacrifice made this day; to those of you who have not heard about the fire before- take the time to learn about the incident, the firefighters, the building, the operational factors and challenges, the courage, fortitude and convictions that define the American Fire Service, it’s honor, tradition and brotherhood.   

    The Worcester Six;   

    • Firefighter Paul Brotherton Rescue 1
    • Firefighter Jeremiah Lucey Rescue 1
    • Lieutenant Thomas Spencer Ladder 2
    • Firefighter Timothy Jackson Ladder 2
    • Firefighter James Lyons Engine 3
    • Firefighter Joseph McGuirk Engine

       

    On Friday, December 3, 1999, at 1813 hours, the Worcester, Massachusetts Fire Department dispatched Box 1438 for 266 Franklin Street, the Worcester Cold Storage and Warehouse Co. A motorist had spotted smoke coming from the roof while driving on an adjacent elevated highway. The original building was constructed in 1906, contained another 43,000 square feet. Both were 6 stories above grade. The building was known to be abandoned for over 10 years.   

    Due to these and other factors, the responding District Chief ordered a second alarm within 4 minutes of the initial dispatch. The first alarm assignment brought 30 firefighters and officers and 7 pieces of apparatus to the scene. The second provided an additional 12 men and 3 trucks as well as a Deputy Chief. Firefighters encountered a light smoke condition throughout the warehouse, and crews found a large fire in the former office area of the second floor. An aggressive interior attack was started within the second floor and ventilation was conducted on the roof. There were no windows or other openings in the warehousing space above the second floor.   

    Eleven minutes into the fire, the owner of the abutting Kenmore Diner advised fire operations of two homeless people who might be living in the warehouse. The rescue company, having divided into two crews, started a building search. Some 22 minutes later the rescue crew searching down from the roof became lost in the vast dark spaces of the fifth floor. They were running low on air and called for help. Interior conditions were deteriorating rapidly despite efforts to extinguish the blaze, and visibility was nearly lost on the upper floors. Investigators have placed these two firefighters over 150 feet from the only available exit.   

    Copywrite 1999 Roger B. Conant All Rights Reserved

    An extensive search was conducted by Worcester Fire crews through the third and fourth alarms. Suppression efforts continued to be ineffective against huge volumes of petroleum based materials, and ultimately two more crews became disoriented on the upper floors and were unable to escape. When the evacuation order was given one hour and forty-five minutes into the event, five firefighters and one officer were missing. None survived.   

    A subsequent exterior attack was set up and lasted for over 20 hours utilizing aerial pieces and deluge guns from Worcester and neighboring departments. Task force groups from across the State of Massachusetts responded to initial suppression and subsequent recovery efforts. During this time, the four upper floors collapsed onto the second which became known as “the deck”. Over 6 million gallons of water were used during the suppression efforts.   

    According to NFPA records, this is the first loss of six firefighters in a structure fire where neither building collapse nor an explosion was a contributing factor to the fatalities.     

     

    Fireground Operations

        

    KEY ISSUES   

    Abandoned building left unprotected and unsecured.   

    • The failure to properly secure and maintain security at this warehouse allowed vagrants to enter, live in, and cause a fire in the building.
    • The lack of detection and suppression systems allowed the fire to grow unrestrained until discovered from the outside.

    No barriers to prevent the spread of fire and smoke in a large space.   

    • Despite some floors having over 15,000 square feet of storage space, there were no rated fire walls, functioning fire doors, or even an interior finish that would help limit fire growth and the spread of heat and smoke.

    Fire spread via combustible interior finishes.   

    • Being a cold storage warehouse, many walls and ceilings were covered with a combustible insulation material including cork, tar, expanded polystyrene foam, and sprayed-on polyurethane foam.

    Delayed fire reporting   

    • The building occupants left the warehouse without notifying authorities, and the fire was reported by passing motorists who observed smoke venting from the roof.
    • The absence of uncovered windows also prevented earlier detection from the exterior.

    Access limitations for fire suppression and rescue.   

    • Building construction featured a single staircase from the basement to the roof. This vertical opening was the only way to move through all levels and was congested with men and equipment from the start of operations.
    • The storage areas of the warehouse had no windows. These two factors left firefighters above the first floor without a secondary escape route and prevented ladder and rescue operations through windows.

    Unusually long interior travel distances.   

    • Firefighters had to crawl over 200 feet through heavy smoke from the single staircase to conduct a proper search.
    • Most lifelines were only 50 foot and SCBA air was limited to 30 minutes.
    • Searches and rescue operations were ineffective under these circumstances.

        

    Exterior Circa 1998

    BUILDING HISTORY AND CONSTRUCTION   

    The Worcester Cold Storage and Warehouse building was a six story structure at 266 Franklin Street in the heart of Worcester’s former warehousing and cold storage district. In the first half of the 21st century, cold storage was vital to the preservation and delivery of food before refrigerators became commonplace in American kitchens. The location was ideal with rail service provided by the former Boston and Albany Railroad which had a siding against the south end of the warehouse.   

    Even after the post-WWII decline in railroads, truck traffic was easily accommodated over nearby roads and later on the abutting Interstate 290 which was built in the late 1960’s.   

    The original warehouse (called “A-building” in previous reports) was constructed in 1906, faced due north onto Franklin Street and bordered Arctic Street to the east. There were six storage levels as well as a basement. The building measured 88 feet by 88 feet and had over 7,000 square feet of floor space on each level. The warehouse had an approximate exterior height of 80 feet.   

    An addition (called “B-building”) was constructed in 1912 against the west wall of A-building and measured 72 feet by 120 feet on the third floor and above. The 72 foot wall faced Franklin Street. The first and second floors were 88 foot and 101 foot deep respectively to accommodate railroad sidings and other structures on the southern on “C” side. Other investigations have referred to the former western exterior wall of A-building as “the fire wall” but there is no indication that this was a planned function. At least one opening was cut through this party wall on each level to access the new addition. B-building provided an additional 7,000 square feet of storage on the third floor and over 8,000 on floors four through six.   

    The Worcester Cold Storage complex involved additional structures to the south, but these were physically separate buildings and were not involved in this incident. The known openings between the warehouse and the southern structures were for utilities and refrigerants. The only effect was to block aerial access from the south during the fire.   

    • Construction methods appear to be the same in both A and B buildings.
    • Exterior walls were 18 inches thick and consisted of brick and mortar. Interior floors on the first and second levels were poured concrete and were supported by cast iron columns.
    • The concrete was covered with carpet or asbestos tile where appropriate for use.
    • Upper floors were of heavy timber construction with 12 foot long 4 inch by 12 inch wood joists (16 inch o.c.) resting in pockets in the east and west brick exterior walls and attached to 16 inch by 16 inch wood girders on the inside.
    • The girders were on 12 foot centers and rested on 16 inch by 16 inch wood columns which were spaced 12 feet apart in both dimensions.
    • Flooring consisted of two layers of tongue and groove hardwood with some areas having an additional layer of 3/8 inch diamond plate.
    • Ceilings on individual floors varied from open joists in storage areas to be a suspended ceiling in the office area on the second floor.
    • Photographs taken prior to the fire suggest that some sections also had “glass board” as a finished surface. The exact make up of this material has not been determined.
    • No documentation was made of ceiling heights within the warehouse, but it appears they were approximately 11 foot throughout.
    • The roof was tar and gravel over a wood deck which covered a 4 foot tall cockloft above the sixth floor ceiling/roof assembly.
    • Roof penetrations included the stairway and elevator shaft on the east end of A-building and a skylight over the elevator shafts on B-building. An illuminated billboard sat on the roof of B-building and received power external to the warehouse structure.

    NOTE: For the balance of this report the entire fire building will be referred to as the “warehouse” which consists of “A-building” on the east and “B-building” on the west. The A and B terminology was adopted early on in other investigations and should not be confused with fireground identifications of sides “A, B, C, & D”. In a large complex such as this, other terminology could have been created such as “Building 1”, “Building Z”, etc. (refer to the USFA Report for diagrams)   

    BUILDING USE   

    Worcester Cold Storage, a business, occupied the warehouse from 1906 until 1983 when it was sold to Chicago Dressed Beef. In 1987, CDB Realty Trust purchased the warehouse. CDB moved its operations to Millbrook Street in 1988 and shut down the refrigeration system in 1989 at which time the building was abandoned.   

    During its use, various petroleum based insulation materials were incorporated into the building including rigid expanded polystyrene boards and blown on polyurethane foam. These were applied to improve the temperature performance of the buildings Additionally, condensation along the exterior walls lead to the decay of some floor joists. Steel beams or angle brackets were added against the brick walls to pick up the floor load in several places.   

    • Even to long term employees, the building was hard to navigate.
    • The upper four stories were almost identical, and some workers reported getting lost under the dim interior lighting conditions.
    • Condensation would cause ice to form around the ceiling fixtures, and this cone of ice would severely limit the amount of illumination.
    • There was no useful external light then or during the fire.

    After it’s closing in 1989, the building was illegally entered on many occasions, resulting in vandalism, occupancy by homeless individuals, and a number of small “campfires.” At the time the fire occurred, there were no utility services in operation. Significant amounts of garbage and human wastes were scattered around the warehouse. The homeless woman involved in this incident said the interior smelled like a sewer.   

    VERTICAL PENETRATIONS   

    There were three stairways in the warehouse. Stairway 1 was in the northwest corner of B-building and went from the first floor (approximate street level) up to the second floor office area. Stairway 2 was located in the southern portion of B-building and went from the first floor to the third. It may have also accessed the basement. Stairway 3 was on the east side of A-building and ran from the basement to the roof. This was the only means of egress from the upper floors and was used heavily during the fire.   

    Two elevators were adjacent to stairway 3, and two more were adjacent to Stairway 2. At the time of the fire, all had been disabled, and the cars were in the basement. It is unknown if individual access doors were open or closed. The elevator shaft in B-building had a reinforced glass canopy at the roof level.   

    • A 14 inch by 14 inch shaft penetrated the ceiling of the second floor office area and originally housed a 12 inch pipe for the ammonia recovery system.
    • This may have opened through all floors, and the presence of the pipe could not be confirmed.

    HORIZONTAL PENETRATIONS   

    There was one opening on each level through the party wall dividing A-building from B-building. There were numerous doors and windows on the first floor, and several were forced open by firefighters to gain access. All windows on this level were secured with plywood to prevent entry. Windows on the second floor of B-building were limited to the office area in the northwest section and were also covered with plywood. There was a window on each of the second, third, and fourth floors in stairway 3 on the east side of A-building. A window opened into the adjacent elevator shaft on each of these floors also. All were blocked with plywood.   

    INTERIOR FINISH   

    Because the warehouse was used for cold storage, the insides of exterior walls and the roof were heavily insulated. Barriers between office space and freezer space were also heavily insulated. The original material of choice was cork which was impregnated or secured with tar. The thickness has been described from 6 inches to 18 inches depending on the location. Evidence was also found of additional layers of expanded polystyrene sheets and blown on polyurethane. In many places the finished surface was “glass board”. A recovered piece of this glass board was ignited by Worcester Fire personnel after this incident. The sample sustained combustion and gave off stringy black smoke not unlike pure styrene.   

    It was reported that all the interior partitions were made of corkboard, but it was probably a covering rather than a structural element. The office walls on the second floor were paneling installed over drywall. Many photographs of the cold storage areas taken before the fire show interior surfaces with a clean outer appearance consistent with the glass board. This would have provided a cleanable and wear resistant surface as opposed to bare cork or foam insulation.   

    INTERIOR LAYOUT   

    Since the fire did not extend to the basement or first floor, the layout of these spaces is less important. The first floor did, however, provide the access to the rest of the building for fire operations. All space above the first floor was used for cold storage or moving goods with the exception of the second floor office area on the northern half of B-building.   

      

        

     

      

    Vacant Residential Building Fires Report

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    The Federal Emergency Management Agency’s (FEMA) United States Fire Administration (USFA) issued a special report examining the characteristics of fires in vacant residential buildings. The report, Vacant Residential Building Fires, was developed by USFA’s National Fire Data Center and is further evidence of FEMA’s commitment to sharing information with fire departments and first responders around the country to help them keep their communities safe.

    The report is part of the Topical Fire Report Series and is based on 2006 to 2008 data from the National Fire Incident Reporting System (NFIRS). According to the report, an estimated 28,000 vacant residential building fires occur annually in the United States, resulting in an estimated average of 45 deaths, 225 injuries, and $900 million in property loss. Vacant residential fires are considered part of the residential fire problem as they comprise approximately 7 percent of residential building fires. In addition, intentional is the leading cause of vacant residential building fires which are more prevalent in July (9 percent), due in part to an increase in intentional fires on July 4 and 5. Finally, almost all vacant residential building fires are non-confined and half spread to involve the entire building.

    The topical reports are designed to explore facets of the U.S. fire problem as depicted through data collected in NFIRS. Each topical report briefly addresses the nature of the specific fire or fire-related topic, highlights important findings from the data, and may suggest other resources to consider for further information. Also included are recent examples of fire incidents that demonstrate some of the issues addressed in the report or that put the report topic in context.

    The report, Vacant Residential Building Fires,HERE

    Findings

    ■ An estimated 28,000 vacant residential building fires are reported to U.S. fire departments each year and cause an estimated 45 deaths, 225 injuries, and $900 million in property loss.

    ■ Vacant residential building fires are considered part of the residential fire problem and comprise approximately 7 percent of all residential building fires.

    ■ Almost all vacant residential building fires are non-confined fires (over 99 percent).

    ■ Intentional is the leading cause of vacant residential building fires (37 percent).

    ■ Half of vacant residential building fires spread to involve the entire building. An additional 11 percent extend beyond the building to adjacent properties.

    ■ Bedrooms are the primary origin of all vacant residential building fires (12 percent). Following closely are common rooms such as dens, family and living rooms (10 percent), and cooking areas, kitchens (9 percent).

    ■ Vacant residential building fires are more prevalent in July (9 percent), due in part to an increase in intentional fires on July 4 and 5.

    ■ January 1, July 4 and 5, and October 31 have the highest incidence of vacant residential fires.

    From 2006 to 2008, an estimated 28,000 vacant residential building fires were reported annually in the United States. The number of vacant residential buildings has always been seen as an issue in our society. These buildings are rarely maintained and often serve as a common site for illicit or illegal activity. In addition, vacant residential buildings are sometimes used by homeless people as temporary shelters or housing. A major concern when a vacant building catches fire is that little is known about the building’s overall condition.

    Many buildings are in disrepair and can be missing certain structures, such as staircases or portions of floors. If individuals are known to use the vacant building as a residence, the unknown condition of the building and the unknown number of people using the building as shelter can put the firefighters’ lives in danger when they enter the building to attempt a rescue during a fire. The surrounding non-vacant properties are also at risk when vacant residential buildings catch fire.

    It typically takes longer for vacant residential building fires to be detected as there are no occupants to be alerted by the smell or sound of the fires or respond to an alarm and the property loss is greater. In addition, if the fire has been intentionally set, especially with multiple ignition points, the damage can be greater, placing the lives of more individuals’ firefighters, adjacent residents, and any squatters in danger.

    Fires in vacant residential buildings have become an even greater issue in the past few years. Many communities have seen an increase in the number of vacant residential buildings as the economy has declined; and with that an increase in the number of vacant residential building fires. From 2006 to 2008, intentionally set fires was the main cause of all vacant residential building fires (37 percent, as discussed later in this report), posing a serious issue for the community.

    These types of fires continue to be a problem and concern within our society. “Devil’s Night” in Detroit, MI, is an example of the intentional fire issue in vacant properties. Prior to the late 1970s, October 30 or “Devil’s Night,” as it has been referred to in Detroit, was full of childhood pranks and minor vandalism acts. It was not until the late 1970s that this night of mischief went from being innocent to terrifying when arson became the leading cause of fire on Devil’s Night. Devil’s Night activity peaked in 1984 when over 800 fires were set in Detroit alone.

    This issue of arson was exacerbated as Detroit was seeing a decrease in real estate values, resulting in some owners of vacant residences using the fires as a means to collect insurance dollars. This situation exists currently in Detroit (as well as other cities). In the 1990s, Detroit’s mayor took a major step in fighting Devil’s Night arson by renaming it “Angel’s Night” and calling upon police, firefighters, and local citizens to help patrol vacant properties that night and by cleaning up, or in some cases, removing the property entirely.

    The efforts have proved effective but there is concern that the increase of vacant property within the past few years may lead to an upswing in fires in vacant and abandoned buildings. This topical report addresses the characteristics of vacant residential building fires reported to the National Fire Incident Reporting System (NFIRS) from 2006 to 2008. Vacant residential building fires, as analyzed in this report, include properties where the building is under construction, under major renovation, vacant and secured, vacant and unsecured, and being demolished. The remaining building status categories (occupied and operating; idle, not routinely used; building status, other; and undetermined) are considered “non-vacant” but not necessarily occupied. For the purpose of this report, the terms “residential fires” and “vacant residential fires” are synonymous with “residential building fires” and “vacant residential building fires,” 

    From 2006 to 2008, an estimated 28,000 vacant residential building fires were reported annually in the United States. The number of vacant residential buildings has always been seen as an issue in our society. These buildings are rarely maintained and often serve as a common site for illicit or illegal activity. In addition, vacant residential buildings are sometimes used by homeless people as temporary shelters or housing. A major concern when a vacant building catches fire is that little is known about the building’s overall condition.

    Many buildings are in disrepair and can be missing certain structures, such as staircases or portions of floors. If individuals are known to use the vacant building as a residence, the unknown condition of the building and the unknown number of people using the building as shelter can put the firefighters’ lives in danger when they enter the building to attempt a rescue during a fire. The surrounding non-vacant properties are also at risk when vacant residential buildings catch fire.

    It typically takes longer for vacant residential building fires to be detected as there are no occupants to be alerted by the smell or sound of the fires or respond to an alarm and the property loss is greater. In addition, if the fire has been intentionally set, especially with multiple ignition points, the damage can be greater, placing the lives of more individuals’ firefighters, adjacent residents, and any squatters in danger.

    Fires in vacant residential buildings have become an even greater issue in the past few years. Many communities have seen an increase in the number of vacant residential buildings as the economy has declined; and with that an increase in the number of vacant residential building fires. From 2006 to 2008, intentionally set fires was the main cause of all vacant residential building fires (37 percent, as discussed later in this report), posing a serious issue for the community.

    These types of fires continue to be a problem and concern within our society. “Devil’s Night” in Detroit, MI, is an example of the intentional fire issue in vacant properties. Prior to the late 1970s, October 30 or “Devil’s Night,” as it has been referred to in Detroit, was full of childhood pranks and minor vandalism acts. It was not until the late 1970s that this night of mischief went from being innocent to terrifying when arson became the leading cause of fire on Devil’s Night. Devil’s Night activity peaked in 1984 when over 800 fires were set in Detroit alone.

    This issue of arson was exacerbated as Detroit was seeing a decrease in real estate values, resulting in some owners of vacant residences using the fires as a means to collect insurance dollars. This situation exists currently in Detroit (as well as other cities). In the 1990s, Detroit’s mayor took a major step in fighting Devil’s Night arson by renaming it “Angel’s Night” and calling upon police, firefighters, and local citizens to help patrol vacant properties that night and by cleaning up, or in some cases, removing the property entirely.

    The efforts have proved effective but there is concern that the increase of vacant property within the past few years may lead to an upswing in fires in vacant and abandoned buildings. This topical report addresses the characteristics of vacant residential building fires reported to the National Fire Incident Reporting System (NFIRS) from 2006 to 2008. Vacant residential building fires, as analyzed in this report, include properties where the building is under construction, under major renovation, vacant and secured, vacant and unsecured, and being demolished. The remaining building status categories (occupied and operating; idle, not routinely used; building status, other; and undetermined) are considered “non-vacant” but not necessarily occupied. For the purpose of this report, the terms “residential fires” and “vacant residential fires” are synonymous with “residential building fires” and “vacant residential building fires,” respectively. “Vacant residential fires” is used through-out the body of this report; the findings, tables, charts, headings, and footnotes reflect the full category, “vacant residential building fires.”

    Additional References;

    Fatal Fires in Residential Buildings Report issued by the USFA

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    The Federal Emergency Management Agency’s (FEMA) United States Fire Administration (USFA)has  issued a special report examining the characteristics of fatal fires in residential buildings. The report, Fatal Fires in Residential Buildings, was developed by USFA’s National Fire Data Center and is further evidence of FEMA’s commitment to sharing information with fire departments and first responders around the country to help them keep their communities safe.

    The report is part of the Topical Fire Report Series and is based on 2006 to 2008 data from the National Fire Incident Reporting System (NFIRS). According to the report, an estimated 1,800 fatal residential building fires occur annually in the United States, resulting in an estimated average of 2,635 deaths, 725 injuries, and $196 million in property loss. The leading cause of fatal residential fires is smoking (19 percent) and the leading areas of fire origin are bedrooms (27 percent) and common areas such as living and family rooms (23 percent). In addition, fatal residential fires, which tend to be larger, cause more damage, and have higher injury rates than nonfatal residential fires, occur most frequently in the late evening and early morning hours, peaking from midnight to 5 a.m. Finally, these types of fires are more prevalent in the cooler months, peaking in January (13 percent).

    The topical reports are designed to explore facets of the U.S. fire problem as depicted through data collected in NFIRS. Each topical report briefly addresses the nature of the specific fire or fire-related topic, highlights important findings from the data, and may suggest other resources to consider for further information. Also included are recent examples of fire incidents that demonstrate some of the issues addressed in the report or that put the report topic in context.

    Findings

    ■ An estimated 1,800 fatal residential building fires are reported to U.S. fire departments each year and cause an estimated 2,635 deaths, 725 injuries, and $196 million in property loss.

    ■ Fatal residential building fires tend to be larger, cause more damage, and have higher injury rates than nonfatal residential fires.

    ■ Smoking is the leading cause of fatal residential building fires (19 percent).

    ■ The leading areas of fire origin in fatal residential building fires are bedrooms (27 percent) and common areas such as living and family rooms (23 percent).

    ■ Fatal residential building fires are more prevalent in the cooler months, peaking in January (13 percent).

    ■ Fatal residential building fires occur most frequently in the late evening and early morning hours, peaking from midnight to 5 a.m. One-third (33 percent) of fatal residential fires occur during these 5 hours.

    ■ About two-thirds (66 percent) of fatal residential building fires are confined to the building of origin or extend beyond the building of origin.

    The U.S. fire death rate has gone down dramatically over the past three decades since the creation of the U.S. Fire Administration (USFA), from over 30 deaths per million population to 11 deaths per million population. The United States, however, continues to have one of the highest fire death rates per capita among Western Nations.

     The original goal for USFA was to help lead a reduction in fire deaths by 50 percent in a generation. With annual fire deaths dropping from over 9,000 to less than 3,500 in that period of time, USFA’s goal has been achieved. Nevertheless, fire deaths are still high. Approximately 1,800 fatal residential building fires occurred annually in recent years (2006 to 2008). These fires resulted in an annual average of approximately 2,635 deaths, 725 injuries, and $196 million in property loss.

    This report is one of a continuing series of topical reports issued by the USFA’s National Fire Data Center and addresses the characteristics of fatal residential building fires reported to the National Fire Incident Reporting System (NFIRS) from 2006 to 2008, the most recent data available at the time of the analysis. Because 79 percent of fire deaths occur in residential buildings, they are the focus of this report. The information in this report about fatal residential fires can be used not only to assess progress but also to understand the nature of the fatal fire problem and its implications for targeting of prevention programs. For the purpose of this report, the terms “residential fires” and “fatal residential fires” are synonymous with “residential building fires” and “fatal residential building fires,” respectively. “Fatal residential fires” is used throughout the body of this report; the findings, tables, charts, headings, and footnotes reflect the full category, “fatal residential building fires.”

    The report, Fatal Fires in Residential Buildings,HERE