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Showing posts with label 3m. Show all posts
Showing posts with label 3m. Show all posts
Monday, October 6, 2014
Fire Prevention Week 2014
Tuesday, August 19, 2014
Largest Novec System in the country
Project profile: Installing a large clean agent system in a complex environment
A government data center opted for a clean agent suppression system to protect its mission critical facility.
Corey Wallace
08/07/2014
The immediate challenge facing the design team centered on accommodating the agency’s requirement that the building have continuity of operations. The agency needed to be able to perform system maintenance and upgrades without losing power to the system or any of its functionality. Any kind of system disruption—even one consisting of only a few minutes—was simply not acceptable.
Designing and installing this clean agent system required not only meticulous planning, but also creative thinking that led to a set of innovative and smart solutions for the building owner. It served as a reminder that regardless of any apparent incompatibilities among systems performing different functions, there are ways to design and structure them so they operate as a cohesive whole.
To ensure continuity of operations, project engineers designed a double interlock pre-action system to reduce the chance of accidental water discharge in the event of a fire. This would assure that water would only be discharged as a last resort in the 66,000-sq-ft data center space. As a first line of defense, a clean agent system using 3M NOVEC gas would be used.
Given these constraints, the team determined that the best solution would be to locate the clean agent primary and secondary supply tanks on the ground floor, even though the protected hazard—the servers and mechanical gallery—are located on the second floor, 20 ft above and several hundred pipe lengths away.
This complicated matters even further, requiring the team to ensure the clean agent system’s fire-extinguishing gases could just as efficiently reach the protected areas as they would if they were located closer to them. This meant making sure that the system was equipped with the appropriate amount of gas and was forceful enough to pump that gas into the areas.
None of the clean agent systems certified at that time were right for the job. The project required a newer system that had a higher discharge pressure. After thorough evaluation and analysis of needs, the team eventually settled on the 500 psi NOVEC 1230. The system was so new that it was still going through its final approval process by UL, a third-party listing agency, as it was being installed. A few months before the project was turned over to the owner, the system gained official UL approval.
In addition to the many challenges already identified, the team needed to address the issue of arranging the various fire life safety systems and MEP trades and equipment in a limited amount of space. The fire suppression piping, along with the other trades, required detailed coordination to prevent interference and a lack of constructability. To prevent potential conflicts, the piping was designed, planned, and coordinated in 3D to reduce field changes. This allowed for the inclusion of bracing in the clean agent piping (similar to seismic bracing) to hold the pipes in place against the force of pressure that is exerted when the clean agent gas is discharged. By strategically locating the pipe, any potential interference with the other trades was prevented.
Another focus of concern was the need to prevent pipe corrosion. It was important to make space for a nitrogen system to prevent corrosion of the pipes of the double interlocked pre-action system, which employs schedule 40 black steel pipe. Concern about future corrosion prompted the pre-action system to be supervised by an inert gas such as nitrogen in lieu of standard air. However, space was not made available on the second floor to accommodate the infrastructure needs of the nitrogen system. As a result, the nitrogen generator and storage tank had to be located on the first floor in the clean agent storage tank room. From there, the supervisory nitrogen is piped up from the first floor to the pre-action valves on the second floor. The pre-action valve is required to automatically revert to a non-interlock configuration in the event of a power loss. Upon the return of power, the pre-action valve returns to its standard release method.
Finally, the project also needed to meet the requirements of and be certified to U.S. Green Building Council LEED Gold, version 3.0. It would be registered through the Green Building Certification Institute, with performance goals based on a “high-performance green building” as defined by the Energy Independence and Security Act of 2007.
To reach LEED certification in a building with many servers, the agency employed the containment method using barriers to trap and direct airflow to control cooling. The challenge with this method, however, is that the structure created obstructions that would make it difficult for the clean agent gas to reach it. The hot aisle containment areas are large enough to walk in and therefore require sprinkler protection as well as clean agent protection. The aisle utilized ceiling grids down the center for lights and fire protection devices but had 2-ft-wide open areas along the length of the enclosure. To address this, the project team altered the clean agent nozzle locations so that they entered into each of the containment areas.
Corey Wallace is an associate principal engineer with Southland Industries. He holds a bachelor’s in mechanical engineering from the University of Mississippi and a master’s of engineering management from Christian Brothers University.
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- Click HERE for the original source: http://www.csemag.com/single-article/project-profile-installing-a-large-clean-agent-system-in-a-complex-environment/222568fe33906cd5680ff42a00c85ade.html
Tuesday, August 12, 2014
Retiring from the industry...
DALE KENT RETIRES FROM 3M
He had breakfast with Elvis. Twice!
He shared a room with baseball Hall of Famer Sandy Koufax when both were in the spring training camp of the Los Angeles Dodgers…
But in the long and exciting career of Dale Kent, he is perhaps best known for his influence and leadership in the fire suppression industry…
Although he recently retired from his position at 3M after a mere 51 years, Dale will long be remembered for his active participation in the FSSA during its recent period of significant growth. Dale started his 3M career in 1963 in Decatur, Alabama, his home state. After obtaining his Chemical Engineering degree, Dale moved to Minnesota in 1977 where he continues to reside today. Initially, he was responsible for developing UV resistance coating for 3M’s athletic surfacing, following which Dale took on the responsibility of training installers on a global basis. In 1980, Dale joined the technical service group for 3M’s Light Water AFFF and subsequently served as technical manager and sales manager. With 3M’s invention of 3M™ Novec™ 1230 Fire Protection Fluid and the decision to commercialize that product in 2001, Dale joined the group as sales manager and held that position until his retirement.
On behalf of 3M, Dale joined FSSA in 2002 and immediately volunteered to serve on several different committees. In 2007, Dale was elected to the association’s board of directors. Dale has served as secretary/treasurer, vice president and was ultimately elected as the president of FSSA in 2013.
Dale and his wife Jeannie reside in Fridley, Minnesota, and they have three children and five grandchildren. Together they have attended most of the FSSA Annual Forums where they have established life-long friendships. Quick with a joke, or to work diplomatically to guide the Board through challenging discussions, Dale Kent has demonstrated a positive influence, both on the industry, as well as on those fortunate to serve with him! After 51 years on the job, the FSSA membership recognizes Dale Kent for his successful career, as well as for his numerous contributions to the association.
We would like to wish Dale a long and happy retirement. Congratulations on your amazing career!
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Friday, January 27, 2012
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