Terima kasih atas penjelasannya Mr. Oei, Fuk Jin. Penjelasannya sangat
konprerhensif yang membukakan mata kita terhadap apa sebenarnya yang
terjadi. Sekali lagi terima kasih. (The explanation is very clear and
comprehensive, thank you)
Salam 
Indradjaja Dalel

 -----Original Message-----
From:   Mr. Oei Fuk Jin [mailto:[EMAIL PROTECTED]] 
Sent:   Thursday, September 13, 2001 7:17 PM
To:     [EMAIL PROTECTED]
Subject:        [ PII ] Penjelasan Tambahan WTC-US

 << File: 638881.jpg >> << File: ATT97457.txt >> Why Did the World Trade
Center Towers Collapse?
By Dahlia Lithwick

Why did the World Trade Center towers collapse? Weren't they designed to be
earthquake-proof and impact-proof?

The 110-story twin towers of the World Trade Center, which stood at a height
of 1,353 feet, were designed to withstand earthquakes as well as impacts
like that of a plane. This was evidenced by the fact that the buildings did
not fall over on impact, says Brian Markham, a structural engineer with the
Ove Arup & Partners engineering firm. The more likely cause of the
buildings' collapse was the resulting fire, exacerbated by the huge
quantities of jet fuel present.

When a fire ignites in a large building, its steel core does not melt, but
over time it weakens. As the steel supporting the floors collapses, a
"pancaking" effect will result, with each of the upper floors collapsing
onto the floor below. This is why the disintegration of the towers was not
limited to the top floors. With the accumulated weight of each collapsed
floor, the stacked floors continued to fall. This explains why the building
collapsed vertically, rather than tipping over.

Big buildings are structurally designed to withstand a blaze for between 2
to 3 hours--time enough to put out the fire and evacuate occupants. Both
World Trade Center towers collapsed in about an hour, probably because the
jet fuel caused the fire to burn hotter and faster than any would have
anticipated.

Markham, while unaware of the fire rating for the World Trade Center
buildings, suggests that even with a standard 2- to 3-hour burn time, it
would have been extremely difficult to evacuate the 50,000 people estimated
possibly to have been inside the buildings. He adds that the tragedy would
have been compounded because, while many of the buildings' occupants could
not have been evacuated via the exits, they would have been moved to
ostensibly "safer floors." As it turned out, there were no safer floors.


Penjelasan lainnya:

2 Planes Hit Twin Towers at the Weakest Spot
 Collapse: Structural engineers say the terrorists apparently knew they had
to strike the World Trade Center as low as possible to cause the most
damage.

By USHA LEE McFARLING, Times Staff Writer
 
The terrorists who piloted two planes into the World Trade Center apparently
managed--either by careful calculation or evil luck--to have hit the
buildings at their weakest spot to cause their disastrous collapse,
structural engineers said Tuesday. 

"It's like hitting someone at the back of the knee," said Nabih Youssef, a
structural engineer who heads the Tall Building Council in Los Angeles and
is an expert on the design and strength of skyscrapers. "With enough weight
above you, you take the entire building down." 

Government officials believe the terrorists wrested control of the passenger
jets, then skillfully steered the planes toward the doomed towers. 

"Whoever took over the plane knew what they were doing," said Greg Fenves, a
professor of civil engineering at UC Berkeley. 

Had the buildings been hit higher up the towers, they would have sustained
damage but probably would not have collapsed because the weight on the
damaged portion of the building would not have been enough to overwhelm a
tower's structural supports, engineers said. 

Planes Had to Clear Nearby Buildings

The planes might have done more damage if they had hit the buildings lower,
but they had to fly at a height of about 60 stories to clear nearby
buildings. The first tower was hit at about the 80th story. The second tower
was hit at about the 60th story. 

"They showed some knowledge of physics in the attempt to make the hits as
low as possible," said Ron Hamburger, chief structural engineer for ABS
Consulting in Oakland and a past president of the Structural Engineers Assn.
of California. 

To many who saw the buildings fall on television, the collapse resembled a
planned demolition, especially in the way that the twin towers
imploded--tumbling in on themselves. But engineering experts discounted the
notion that additional explosives had been planted around the base of the
buildings to ensure that they came down. 

Demolition of a building the size of the ones in the World Trade Center
would require "literally hundreds of charges around the building," Hamburger
said. "It's inconceivable to me anyone would be able to place that many
charges--even with years of planning." 

Instead, the impact of the planes themselves, and the tremendous heat
generated by tons of burning jet fuel--upward of 1,000 degrees
Fahrenheit--would suffice to destroy the buildings, said Scott Gustafson,
owner of Demtech Inc. of Blue Springs, Mo., one of the world's leading
demolition experts. 

A Boeing 767 has a fuel capacity of 20,000 gallons. A Boeing 757 has an
11,000-gallon fuel capacity. Because the planes were scheduled for
transcontinental flights, they would have been fully loaded with fuel. 

Plane Was 'a Highly Explosive Bomb'

"The plane probably made its way halfway to the core of the structure,"
Gustafson said. "The fuel went through a couple of floors, loaded them with
fuel, and the impact opened a corridor to the outside for air. Some fuel
probably got into the elevators and spread the fire. One thing led to
another, and it just kept snowballing." 

"It was very well thought out," said Hank Koffman, who directs the
construction engineering department at USC. "These guys were evil geniuses. 

"The plane was really a highly explosive bomb," he said. Terrorism experts
were calling the attack "low-tech and high-concept." 

Even though structural steel used in buildings is coated with a fireproof
material, extreme amounts of heat cause the steel to soften and lose its
strength. The weight of the floors above then causes them to crash. 

"The technical term is progressive collapse--the slang term is pancaking,"
said Ron Klemencic, president of Skilling Ward Magnusson Barkshire, the
Seattle firm that engineered the World Trade Center. "What basically happens
is that one floor falls on top of the floor below it, and with one floor
falling on top of another there's no way to stop it." 

The steel is protected to certain temperatures and for certain periods of
time, but "an explosion of this magnitude would have exceeded all those
limits," said James C. Anderson, a professor of civil engineering at USC.
"Buildings are not designed for this. Not in their wildest dreams." 

"Buildings are designed thinking of internally generated heat," added Jon
Magnusson, the chairman and chief executive of the Skilling firm. "Nobody
anticipates putting jet fuel in a building. If you had to build buildings to
withstand this sort of event, you wouldn't be able to build any buildings." 

In 1945, a B-25 bomber smashed into the 79th floor of the Empire State
Building. It caused an explosion and fire and killed 14 people but did not
destroy the building. That plane was not loaded with the huge amount of fuel
that Tuesday's jetliners carried. 

Engineers suggested that the south tower of the World Trade Center collapsed
first, even though it was hit by the second plane, because the fireball
caused by the crash was larger and because the plane hit the corner of the
building, rather than the center, where there is more structural support. 

The World Trade Center towers have always been a familiar icon to those
visiting New York. They were New York's most frequently purchased postcard
image. 

To structural engineers, however, they are famous for something else: their
strength. 

"I was personally very surprised to see the entire building collapse,"
Hamburger said. 

'Tubular Skyscraper' Construction Hailed

The towers were so tall--1,362 and 1,368 feet--that they swayed by up to 11
inches in a strong wind. Building towers of such height posed challenges for
engineers, requiring development of a new system of construction that placed
major supporting elements in the outer portions of the building to increase
stability. Traditionally, such elements had been placed in the building's
core around elevators and restrooms. 

At the time of the towers' construction, this "tubular skyscraper" scheme
was hailed as the key that would push the world's buildings to elevations
undreamed-of by previous generations. 

In most buildings, structural steel supports are 20 to 25 feet apart. In the
World Trade Center, the supports are only 39 inches apart, said John Hooper,
a structural engineer with the Skilling Ward Magnusson firm. 

"Watching something come down without our say-so is just a nightmare,"
Hooper said. 

Because the tubular steel supports are so close to each other, they act as a
rigid box, encircling the building and giving it strength. 

"It's quite a famous structural system," said Fenves. "It's very
well-designed." 

Steel buildings in general are known for their strength. Even less
well-designed steel buildings survived the 1906 earthquake in San Francisco
and the 1933 Long Beach quake, Youssef said. 

When they were built in 1970, the World Trade Center towers were the world's
tallest buildings. But the strength designed to withstand wind was no match
for the fireball of an exploding plane. "We didn't have any terrorism in
mind when the buildings originally went up," Hooper said. 

While engineers are exploring ways to "bomb-proof" buildings to protect
occupants from flying glass and crumbling walls, it is considered too costly
and not socially desirable to attempt to protect buildings from the type of
attack that occurred Tuesday. 


"We'd be living in bunkers," Youssef said. "We cannot turn the country into
bunkers." 

The towers were the focus of one previous terrorist attack--a deadly 1993
car bomb blast in the 16-acre subbasement that tore a 60-by-100-foot hole.
That explosion, however, did not compromise the buildings' structural
integrity, and experts said there was no indication that the damage then,
which was repaired years ago, had any connection with Tuesday's collapse.
Six men ultimately were convicted for the 1993 bombing, which killed six and
injured more than 1,000. 

The buildings housed about 55,000 workers employed by more than 700 firms,
including the executive offices of the New York Stock Exchange and leading
investment, law and accounting firms. Counting those passing through the
buildings to transact business, their population during working hours
routinely exceeded 100,000 people. 

The towers were the centerpiece of an urban renewal project intended to
revitalize lower Manhattan. Construction began in 1966, and the first tower
formally opened four years later. The architect was the late Minoru
Yamasaki, who also designed the Century Plaza Towers in Los Angeles. The
twin 110-story towers cost their owners, the Port Authority of New York and
New Jersey, $700 million. Last July, they were leased to a New York real
estate firm for $3.25 billion, one of the largest such deals in history. 


At the time of their opening, the towers were praised as technologically
marvelous but aesthetically soulless. 

Architect Said Towers Would 'Soothe' Spirit

Stung by that reaction, Yamasaki insisted to one architecture critic that
his buildings would "soothe" the human spirit. "Above all, with political
turmoil, traffic problems and vast increases in populations and the
tremendous impact of the machine, we must have serenity. Man needs a serene
architecture to save his sanity in today's world." 

Tuesday, those humane sentiments were reduced to rubble and ash. 





--
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Mr. Oei, Fuk-Jin
Asian Institute of Technology
P.O. Box 4   Khlong Luang
Pathumthani 12120 - Thailand
(Mail box no.26)
Tel. : 524 - 7145 (home)
Tel.:  524 - 5531 (office)
URL: http://www.geocities.com/ofukj30/My_page.html
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