07/04/2007

High-Rise Safety, International Codes, and Tall Buildings: Rising to Meet the Challenge

 

Around the world, from New York and Chicago to Seoul, Dubai, Hong Kong, and Moscow, new super-tall buildings are (or will soon be) scraping the sky at unprecedented heights and speed of completion. Real estate developers are engaged in a high-stakes, high-rise global competition of who can build the tallest building fastest and claim the coveted title. The Burj Dubai, soon to be completed in Dubai, a major city within the Middle Eastern nation of the United Arab Emirates (UAE), will soon become the world's tallest building, but perhaps not for long. Dubai is expected to have six supertowers of over 100 floors each by 2015.

Meanwhile, based on the events of Sept. 11, 2001, in New York, architects, engineers, government officials, and building code experts worldwide are concerned about the impact a terrorist attack, fire, earthquake, or other disaster will have on public safety, building occupant evacuation, emergency response, and related professional liability issues for high- and mid-rise buildings in urban centers.

Model Code Changes Adopted
Safer buildings, especially tall buildings that are more resistant to fire and more easily evacuated in emergencies, are the goal of the first comprehensive set of building code changes recently approved by the Intl. Code Council (ICC) based on recommendations from the findings of the National Institute of Standards and Technology (NIST). The recommendations were based on NIST's 3-year investigation of the collapse of the World Trade Center (WTC) on Sept. 11, 2001.

The changes will be incorporated into the 2007 supplement to the ICC's Intl. Building Code (IBC), a model code used as the basis for building regulations and enforced by U.S. state and local jurisdictions, which have the option of incorporating some or all of the code's provisions. Typically, most provisions are adopted. The proposed changes were developed and refined by a group of building code experts convened by the National Institute of Building Sciences (NIBS) with NIST support.

The proposals address areas such as increased resistance to building collapse from fire and other incidents, use of spray-on fireproofing, performance and redundancy of fire protection systems (automatic sprinklers), fuel oil storage, elevators for use by first responders and evacuating occupants, the number and location of stairwells, and exit path markings. The full roster of recommendations may be found at http://wtc.nist.gov/. Among the recommendations are the following:

  • An additional exit stairway for buildings more than 420-feet high.
  • A minimum of one fire service access elevator for buildings more than 120-feet high.
  • Luminous markings showing the exit path in buildings more than 75-feet high to facilitate rapid egress and full building evacuation.

Additionally, two more model code changes will be considered as proposals to be submitted by the August 2007 deadline for the next code revision cycle and for the IBC. If adopted, one of the key provisions would recommend that structures be designed to mitigate progressive collapse and ensure minimal structural integrity and robustness requirements for structures as complete systems.

Interviews in June 2007 with two key officials – Dr. S. Shyam Sunder, acting director, building and fire research laboratory at NIST and the lead WTC investigator, and William M. Connolly, RA, director of codes and standards for the New Jersey Department of Community Affairs in Trenton, NJ – provided background on how NIST approached these proposals. Several prominent U.S. architects and engineers who were contacted declined to be interviewed, presumably because of the sensitivity of some of these proposed code changes.

Impact of the NIST Recommendations
According to Dr. Sunder, "The collection of changes includes a specific discussion of the third stair in high-rises. The recommendations are intentionally performance focused, not prescriptive. Official code change proposals may be more prescriptive."

Full evacuation capability from high-rises, and how best to accomplish that, is an industry-wide issue. Additional stairs, and wider stairs, to allow more occupants to descend at once, as well as occupant evacuation elevators, serve specific purposes. This may include a dedicated elevator bank or a designated fraction of elevators for occupant, fire service, and emergency responder access.

Proposals relating to progressive collapse, which concerns structural loads and design, are in the next review cycle. The basis of the NIST recommendations and the codes is in design of structural components, such as floors, columns, girder beams, and the reliability of methods used to design components, not assessing structural systems. Two buildings may have two different structural systems, but there are no metrics to measure the safety factors. With cars, for example, the crash-worthiness of the entire car can be analyzed, but this is not so for buildings.

Providing minimum safety levels in buildings is one of the NIST goals. "We shouldn't stop at one set of elements, but look at system-wide building safety as a whole, which has not been consistently and thoroughly done in codes. We need to ensure safety and system robustness, regardless of the threat," observes Dr. Sunder. This includes minimum robustness and structural integrity in all structures for various threats, hazards, and events that may occur in the normal course of the 100-year life of a building rather than designing against a specific threat, such as blast.

Risk assessments should address specific threats and explicitly account for them, Dr. Sunder adds. Codes apply to all buildings and provide minimum thresholds for robustness and structural integrity. Industry groups are considering whether codes should mention risk assessments in addition to robust requirements as recommended specialized undertakings.

Adding a third stair or multiple stairs appears to be among the most controversial provisions of the recommendations, which were voted on by building code officials. Occupant evacuation elevator standards will be available in the future. When considered together, additional stairs and elevators should allow complete occupant evacuation from high-rises in a coordinated fashion.

Not everyone in the building industry is pleased with these recommendations, nor will they openly discuss them. For example, before the City of New York adopted Local Law 26, revisions to the New York Building Code in 2004, an industry-wide task force of more than 400 representatives in design, construction, real estate, emergency services, and other trade groups was formed to review various proposals based on lessons learned from the collapse of the World Trade Center. Some of the most powerful New York real estate and construction groups participated and, despite concerns about additional costs and lost rentable space, consensus was achieved regarding wider stairs and other provisions.


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Visit our website today to learn about the design flexibility of a Morton building and the endless possibilities of partnering with our designBUILD team.


Wood construction is both cost and energy efficient. Check out Morton Buildings and our designBUILD team online today to discover all the benefits of post-frame construction.


When choosing a metal-clad building for your next construction project, consider Morton Buildings, Inc., and their designBUILD team, we’ll make your dream a reality.

We Can Help You Reduce Energy by 30%

Our mission is to help our customers manage their buildings' energy costs, improve reliability, and enhance performance while having a positive impact on the environment.
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Add highly responsive multi-zone comfort to any building project, in any climate. Our CITY MULTI H2i R2- and Y-Series VRF systems give you flexibility to fit the needs of any building. Enjoy 100% heating capacity at 0°F outdoor ambient, and 85% heating capacity at -13°F outdoor ambient.  For more information, log on to www.mitsubishipro.com

 


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