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[[Image:Bahrain_World_Trade_Center_454690532.jpg|thumb|left|upright|The BWTC under construction.]]
[[Image:Bahrain_World_Trade_Center_454690532.jpg|thumb|left|upright|The BWTC under construction.]]
[[File:Bahrain world trade center.jpg|thumb|left|''[[Bahrain]] World Trade Center'' under construction]]
[[File:Bahrain world trade center.jpg|thumb|left|''[[Bahrain]] World Trade Center'' under construction]]
The two towers are linked via three [[skybridge]]s, each holding a 225[[kW]] [[wind turbine]], totalling to 675kW of wind power production. Each of these turbines measure {{convert|29|m|ft|0|abbr=on}} in diameter, and is aligned north, which is the direction from which air from the [[Persian Gulf]] blows in. The [[sail]] shaped buildings on either side are designed to [[funnel]] wind through the gap to provide accelerated wind passing through the turbines. This was confirmed by [[wind tunnel]] tests, which showed that the buildings create an S-shaped flow, ensuring that any wind coming within a 45° angle on either side of the central axis will create a wind stream that remains perpendicular to the turbines. This significantly increases their potential to generate electricity.<ref>{{citation| title=Bahrain World Trade Center, Bahrain| url=http://www.designbuild-network.com/projects/bahrain/| newspaper=designbuild-network| year=2007}}</ref>
The two towers are linked via three [[skybridge]]s, each holding a 225[[kW]] [[wind turbine]], totalling to 675kW of wind power production. Each of these turbines measure {{convert|29|m|ft|0|abbr=on}} in diameter, and is aligned north, which is the direction from which air from the [[Persian Gulf]] blows in. The [[sail]]-shaped buildings on either side are designed to [[funnel]] wind through the gap to provide accelerated wind passing through the turbines. This was confirmed by [[wind tunnel]] tests, which showed that the buildings create an S-shaped flow, ensuring that any wind coming within a 45° angle to either side of the central axis will create a wind stream that remains perpendicular to the turbines. This significantly increases their potential to generate electricity.<ref>{{citation| title=Bahrain World Trade Center, Bahrain| url=http://www.designbuild-network.com/projects/bahrain/| newspaper=designbuild-network| year=2007}}</ref>


The wind turbines are expected to provide 11% to 15% of the towers' total power consumption, or approximately 1.1 to 1.3 [[GWh]] a year. This is equivalent to providing the lighting for about 300 homes.<ref>{{citation| url=http://www.reuters.com/article/gc07/idUSL1928644820070319| newspaper=Reuters| title="Bahrain builds first wind powered towers: architect| date=2007-03-19}}</ref> The three turbines were turned on for the first time on the 8th of April, 2008. They are expected to operate 50% of the time on an average day.<ref name=wan>{{citation| title=BWTC turbines spin for first time| url=http://www.worldarchitecturenews.com/index.php?fuseaction=wanappln.projectview&upload_id=2133| newspaper=World Architecture News| date=2008-04-08}}</ref>
The wind turbines are expected to provide 11% to 15% of the towers' total power consumption, or approximately 1.1 to 1.3 [[GWh]] a year. This is equivalent to providing the lighting for about 300 homes.<ref>{{citation| url=http://www.reuters.com/article/gc07/idUSL1928644820070319| newspaper=Reuters| title="Bahrain builds first wind powered towers: architect| date=2007-03-19}}</ref> The three turbines were turned on for the first time on the 8th of April, 2008. They are expected to operate 50% of the time on an average day.<ref name=wan>{{citation| title=BWTC turbines spin for first time| url=http://www.worldarchitecturenews.com/index.php?fuseaction=wanappln.projectview&upload_id=2133| newspaper=World Architecture News| date=2008-04-08}}</ref>
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{{commons cat}}
{{commons cat}}
* [http://www.bahrainwtc.com/ bahrainwtc.com/]
* [http://www.bahrainwtc.com/ bahrainwtc.com/]
* [http://pinoybahrain.blogspot.com/2011/07/bahrain-world-center.html Bahrain World Trade Center]
* [http://www.constructube.com/companies/awards/3231-Bahrain-World-Trade-Center-Captures-Innovation-Award.html ''Bahrain World Trade Center Captures Innovation Award'']
* [http://www.constructube.com/companies/awards/3231-Bahrain-World-Trade-Center-Captures-Innovation-Award.html ''Bahrain World Trade Center Captures Innovation Award'']
* [http://www.worldwatch.org/node/5489 Worldwatch, ''Bahrain Propels Wind Energy to Urban Future'']
* [http://www.worldwatch.org/node/5489 Worldwatch, ''Bahrain Propels Wind Energy to Urban Future'']

Revision as of 21:40, 20 February 2012

Bahrain World Trade Center
The three wind turbines at the centre of the two skyscrapers.
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General information
StatusCompleted
TypeCommercial
LocationManama, Bahrain
Construction started2004
Opening2008
CostUSD $ 150 million
ManagementAtkins
Height
Antenna spire240 m (787 ft)
Technical details
Floor count50
Lifts/elevators4
Design and construction
Architect(s)Atkins
Main contractorRamboll,
Norwin A/S,[1]
Elsam Engineering

The Bahrain World Trade Center (also called Bahrain WTC or BWTC) is a 240 m (787 ft) high twin tower complex located in Manama, Bahrain. The towers were built in 2008 by the multi-national architectural firm Atkins. It is the first skyscraper in the world to integrate wind turbines into its design.

This 50-floor structure is constructed in close proximity to the King Faisal Highway, near popular landmarks such as the towers of BFH, NBB, Abraj Al Lulu and the scenic Pearl Roundabout. It currently ranks as the second tallest building in Bahrain, after the twin towers of the Bahrain Financial Harbour. The project has received several awards for sustainability, including;

  1. The 2006 LEAF Award for Best Use of Technology within a Large Scheme.
  2. The Arab Construction World for Sustainable Design Award.[2]

Structural details

File:Bahrain World Trade Center 454690532.jpg
The BWTC under construction.
File:Bahrain world trade center.jpg
Bahrain World Trade Center under construction

The two towers are linked via three skybridges, each holding a 225kW wind turbine, totalling to 675kW of wind power production. Each of these turbines measure 29 m (95 ft) in diameter, and is aligned north, which is the direction from which air from the Persian Gulf blows in. The sail-shaped buildings on either side are designed to funnel wind through the gap to provide accelerated wind passing through the turbines. This was confirmed by wind tunnel tests, which showed that the buildings create an S-shaped flow, ensuring that any wind coming within a 45° angle to either side of the central axis will create a wind stream that remains perpendicular to the turbines. This significantly increases their potential to generate electricity.[3]

The wind turbines are expected to provide 11% to 15% of the towers' total power consumption, or approximately 1.1 to 1.3 GWh a year. This is equivalent to providing the lighting for about 300 homes.[4] The three turbines were turned on for the first time on the 8th of April, 2008. They are expected to operate 50% of the time on an average day.[2]

The Bahrain WTC was featured prominently in the 2009 science fiction SyFy channel made-for-television movie Annihilation Earth. In the movie, an incident involving a subatomic collider in the year 2020 creates cataclysmic effects on planet Earth. CGI is used in the movie to show the WTC collapsing as a result of an earthquake, though the reason for the earthquake is not fully explained in the movie.

See also

References

  1. ^ http://www.norwin.dk/
  2. ^ a b "BWTC turbines spin for first time", World Architecture News, 2008-04-08
  3. ^ "Bahrain World Trade Center, Bahrain", designbuild-network, 2007
  4. ^ ""Bahrain builds first wind powered towers: architect", Reuters, 2007-03-19