Suspension bridge


A suspension bridge is a bridge that consists of two multiple column pillars (or pylons), one on either end of the central span, with two or more cables slung between them. The bridge deck is suspended from vertical cables or rods attached to the main cables. The main cables continue beyond the pillars to deck–level supports, and further continue to connections with anchors in the ground. The bridge will usually have two smaller spans, running between either pair of pillars and the land, which may be supported by suspender cables or not, — in the latter case there will be very little arc in the outboard main cables. The design was developed in the early 19th century (early examples include the Menai and Conwy Suspension Bridges (both opened in 1826) in north Wales and the first Hammersmith Bridge (1827) in west London), and has become widely used since.
The slender lines of the [[Severn Bridge, near Bristol, England]]

Advantages over other bridge types

Disadvantages over other bridge types

[[Clifton Suspension Bridge over the River Avon in Bristol, England. The bridge was designed by the great Victorian engineer Isambard Kingdom Brunel. Although not visible here, the Clifton Gorge below is about 240 feet deep (73 metres)]]

Structural analysis

The main forces in a suspension bridge are tension in the main cables and compression in the pillars. Since almost all the force on the pillars is vertically downwards and they are also stabilized by the main cables, they can be made quite slender.
Assuming a fairly negligible cable weight compared to the deck and vehicles being supported, a suspension bridge's main cables will form a parabola (very similar to a catenary, the form the unloaded cables take before the deck is added). This can be seen from the constant gradient increase with linear (deck) distance, this increase in gradient at each connection with the deck providing a net upward support force.
Combined with the relatively simple constraints placed upon the actual deck, this makes the suspension bridge much simpler to design and analyse than a cable stayed design, where the deck is in compression.

Cable types

Cables in older bridges may be made from chain or linked bars, but modern bridge cables are made from multiple strands of wire.

Construction sequence

New [[Little Belt suspension bridge, 1970 Denmark]]

The largest suspension bridges in the world

(by length of centre span) #Akashi-Kaikyo Bridge (Japan) 1,990 metres - 1998 #Great Belt Bridge (Denmark) 1,624 metres - 1998 #Humber Bridge (England) 1,410 metres - 1981 (The largest from 1981 until 1998.) #Jangyn Bridge (China, Yangtse River) 1,385 metres - 1997 #Tsing Ma Bridge (Hong Kong) 1,377 metres - 1997 (with road and metro) #Verrazano Narrows Bridge (USA) 1,298 metres - 1964 (The largest from 1964 until 1981.) #Golden Gate Bridge (USA) 1,280 metres - 1937 (The largest from 1937 until 1964.) #Höga Kusten Bridge (Sweden) - 1,210 metres - 1997 #Mackinac Bridge (USA) 1,158 metres - 1958 #Minami Bisan-Seto Bridge (Japan) 1,118 metres - 1988 #Second Bosporus Bridge (Turkey) 1,090 metres - 1988 #First Bosporus Bridge (Turkey) 1,074 metres - 1973 #George Washington Bridge (USA) 1,067 metres - 1931 (The largest from 1931 until 1937.) #Third Kurushima-Kaikyo Bridge (Japan) 1,030 metres - 1999 #Second Kurushima-Kaikyo Bridge (Japan) 1,020 metres - 1999 #Tagus Bridge (Portugal) 1,013 metres - 1966 #Forth Road Bridge (Scotland) 1,006 metres - 1964) A bridge with a center span of 3,290 m (10,800 feet) is proposed to connect Italy and Sicily across the Strait of Messina but construction has not yet begun. Bridges have also been suggested for the Strait of Gibraltar and the Sunda Strait with longest spans of several kilometres. The suspension cables for these longest bridges are suspended from the ends of cable-stayed struts extending diagonally from tall pylons.

Other famous suspension bridges

See also

da:Hængebro de:Hängebrücke fr:Pont suspendu nl:Hangbrug sv:Hängbro zh:悬索桥 Category:Bridges *Suspension bridges
uspension bridge Sspension bridge Supension bridge Susension bridge Suspnsion bridge Suspesion bridge Suspenion bridge Suspenson bridge Suspensin bridge Suspensio bridge Suspensionbridge Suspension ridge Suspension bidge Suspension brdge Suspension brige Suspension bride Suspension bridg uSspension bridge Ssupension bridge Supsension bridge Susepnsion bridge Suspnesion bridge Suspesnion bridge Suspenison bridge Suspensoin bridge Suspensino bridge Suspensio nbridge Suspensionb ridge Suspension rbidge Suspension birdge Suspension brdige Suspension brigde Suspension brideg Suspension bridg SSuspension bridge Suuspension bridge Susspension bridge Susppension bridge Suspeension bridge Suspennsion bridge Suspenssion bridge Suspensiion bridge Suspensioon bridge Suspensionn bridge Suspension bridge Suspension bbridge Suspension brridge Suspension briidge Suspension briddge Suspension bridgge Suspension bridgee uspension bridge sspension bridge supension bridge susension bridge suspnsion bridge suspesion bridge suspenion bridge suspenson bridge suspensin bridge suspensio bridge suspensionbridge suspension ridge suspension bidge suspension brdge suspension brige suspension bride suspension bridg usspension bridge ssupension bridge supsension bridge susepnsion bridge suspnesion bridge suspesnion bridge suspenison bridge suspensoin bridge suspensino bridge suspensio nbridge suspensionb ridge suspension rbidge suspension birdge suspension brdige suspension brigde suspension brideg suspension bridg ssuspension bridge suuspension bridge susspension bridge susppension bridge suspeension bridge suspennsion bridge suspenssion bridge suspensiion bridge suspensioon bridge suspensionn bridge suspension bridge suspension bbridge suspension brridge suspension briidge suspension briddge suspension bridgge suspension bridgee