flexiblefullpage
billboard
interstitial1
catfish1
Currently Reading

The Unseen Dangers of Earthquakes

The Unseen Dangers of Earthquakes


By By Kit Miyamoto, Ph.D., S.E. | April 13, 2011

When earthquakes occur, it is the older buildings that often collapse first because they are not engineered to resist powerful earthquake forces.  Those newer buildings, however, that look structurally sound often sustain non-structural damage that, despite appearances, can become unusable. This is what happened last week in Christchurch, resulting in many buildings that can no longer be occupied.

Last week our firm sent in an investigative team of structural engineers to assess the damage to Christchurch. As engineers, what we found was quite shocking but not unexpected: 30-50% of buildings constructed of unreinforced masonry (URM) sustained severe damage or collapsed.  By comparison, the total damage in Port-au-Prince, Haiti as a result of last year’s earthquake was less from a percentage standpoint than what was experienced in downtown Christchurch last week. Several older non-ductile concrete buildings (existing structures that fail in a brittle manner under the load of an earthquake) have also been severely damaged or collapsed.

These findings provide proof that countries and cities that do not have mandatory retrofit ordinances for hazardous buildings are exposed to tremendous risk – not only in New Zealand, but everywhere else in the world.

Our team also observed that many, newer buildings experienced significant non-structural damage, which is dangerous for building inhabitants and greatly impacts functionality and business continuity.

People in cities situated in areas of high earthquake risk may have a false sense of security because they do not fully understand the intent of most building codes and equate code compliance to mean earthquake-proof. In fact, even in advanced earthquake engineering countries such as New Zealand, the US and Japan, most building codes are minimum guidelines for “life safety” only and have often proven to be inadequate for building sustainability, and at times, survivability.

Buildings must be better designed for disasters. Mandatory URM and non-ductile concrete structure retrofit ordinances must be put in place to save lives. And high-performance earthquake engineering must be practiced for sustainability of new buildings so they can support continued functionality of cities after a disaster. This must be done worldwide.

Together with my team, I have spent the past 13 months in Haiti working with the Ministry of Public Works, the United Nations and the Pan American Development Foundation assisting Haitian engineers to assess the damage to 400,000 buildings and repair 2,000 damaged houses as a USAID pilot project. The tragedy has to be experienced to be understood. Hiroshima is one of the great disasters of the twentieth century and has a firm place in our historical imaginations. The bomb killed 200,000 people. Yet, in terms of the loss of human life, Haiti’s earthquake caused even greater loss – over 230,000 lives.

The unfortunate truth is that engineers have predicted major earthquakes in Christchurch and Port-au-Prince for years. Of course, we could not say when but we knew there was a high probability of another earthquake. Little was done by the respective governments or the private sector. How distressing to realize that with proper engineering, much of the loss of life, structural damage and financial loss could have been reduced significantly.

Today, we know enough about constructing seismic-resistant buildings that allow them to withstand large earthquakes, protect their inhabitants and allow businesses to continue functioning. That said, today’s earthquake damage  repair technology has also advanced so that in the next 24 months 100,000 homes in Haiti can be repaired with local materials and masons so that they are safer than before and can be reoccupied by their inhabitants, allowing them to leave the terrible conditions in the tent cities.

Preparing for disasters is not difficult. Responsible governments, the private sector and residents must act on the knowledge that these events can be anticipated and preparations must be made for their eventual occurrence, thereby saving lives and minimizing damage.

Dr. Miyamoto is President and CEO of Miyamoto International, a global earthquake and structural engineering firm.

Tags

Related Stories

| Oct 13, 2010

Prefab Trailblazer

The $137 million, 12-story, 500,000-sf Miami Valley Hospital cardiac center, Dayton, Ohio, is the first major hospital project in the U.S. to have made extensive use of prefabricated components in its design and construction.

| Oct 13, 2010

Thought Leader

Sundra L. Ryce, President and CEO of SLR Contracting & Service Company, Buffalo, N.Y., talks about her firm’s success in new construction, renovation, CM, and design-build projects for the Navy, Air Force, and Buffalo Public Schools.

| Oct 13, 2010

Hospital tower gets modern makeover

The Wellmont Holston Valley Medical Center in Kingsport, Tenn., expanded its D unit, a project that includes a 243,443-sf addition with a 12-room operating suite, a 36-bed intensive care unit, and an enlarged emergency department.

| Oct 13, 2010

Modern office design accentuates skyline views

Intercontinental|Exchange, a Chicago-based financial firm, hired design/engineering firm Epstein to create a modern, new 31st-floor headquarters.

| Oct 13, 2010

Hospital and clinic join for better patient care

Designed by HGA Architects and Engineers, the two-story Owatonna (Minn.) Hospital, owned by Allina Hospitals and Clinics, connects to a newly expanded clinic owned by Mayo Health System to create a single facility for inpatient and outpatient care.

| Oct 13, 2010

Biloxi’s convention center bigger, better after Katrina

The Mississippi Coast Coliseum and Convention Center in Biloxi is once again open for business following a renovation and expansion necessitated by Hurricane Katrina.

| Oct 13, 2010

Tower commemorates Lewis & Clark’s historic expedition

The $4.8 million Lewis and Clark Confluence Tower in Hartford, Ill., commemorates explorers Meriwether Lewis and William Clark at the point where their trek to the Pacific Ocean began—the confluence of the Mississippi and Missouri Rivers.

| Oct 13, 2010

Maryland replacement hospital expands care, changes name

The new $120 million Meritus Regional Medical Center in Hagerstown, Md., has 267 beds, 17 operating rooms with high-resolution video screens, a special care level II nursery, and an emergency room with 53 treatment rooms, two trauma rooms, and two cardiac rooms.

| Oct 13, 2010

Campus building gives students a taste of the business world

William R. Hough Hall is the new home of the Warrington College of Business Administration at the University of Florida in Gainesville. The $17.6 million, 70,000-sf building gives students access to the latest technology, including a lab that simulates the stock exchange.

| Oct 13, 2010

Science building supports enrollment increases

The new Kluge-Moses Science Building at Piedmont Virginia Community College, in Charlottesville, is part of a campus update designed and managed by the Lukmire Partnership. The 34,000-sf building is designed to be both a focal point of the college and a recruitment mechanism to get more students enrolling in healthcare programs.

boombox1
boombox2
native1

More In Category




halfpage1

Most Popular Content

  1. 2021 Giants 400 Report
  2. Top 150 Architecture Firms for 2019
  3. 13 projects that represent the future of affordable housing
  4. Sagrada Familia completion date pushed back due to coronavirus
  5. Top 160 Architecture Firms 2021

Â