土木工程专业英语——桥梁课件.pptx
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1、Symbols of the Conquest of SpaceBridges,Name:He ZheStudent ID:201260101013Guidance:Lang Yuhua,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,1,Contents,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1 Bridges,4 Girder Bridges,5 Ar
2、ch Bridges,6 Cantilever Bridges,2 Categories,3 Suspension Bridges,1/18/2023,2,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,Symbols of the Conquest of SpaceBridges,1/18/2023,3,Bridges,Bridges are great symbols of mankinds conquest of space.It is a structure that spans
3、obstacles,such as rivers,lakes,or gorges,to provide a roadway for traffic.By far the majority of bridges are designed to carry automobile or railroad traffic,but some are intended for pedestrians only.Bridges also support pipes,troughs,or other conduits that transport materials,such as an oil pipeli
4、ne or a water aqueduct.,1,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,4,Bridges,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,Water Aqueduct Bridge1988.7,Jun Dushan,China,1/18/2023,5,Material,Humans have been constructing brid
5、ges since ancient times.For a few thousand years the classical form in bridge design has been the vault or arch.This structure,because of its inherent contour,utilized masonry as its material.The use of concrete as a building material,however,was not considered until late in the nineteen century.The
6、 first application of reinforced concrete to bridge structures was pioneered by Hennebique.,2-1,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,6,Material,In the same period prestressed concrete concepts were being formulated by Jackson and Doehring.There appli
7、cation was not successful because of the high losses in prestress caused by shrinkage and creep of the concrete.It was not until 1926-1928 when Freyssinet was able to control these losses with high-strength steel that prestressing was considered feasible.,2-2,Civil Engineering English(CTGU)Chapter 8
8、 Bridge EngineeringSection A Bridges,1/18/2023,7,Material,Prestressed concrete was widely used for bridges after about 1950.Steel became more useful for bridges with the development of stronger and more corrosion-resistant alloys.Aluminum alloys,which were used in bridges as early as 1933,greatly re
9、duce the dead weight of the bridge,but they are not widely used because they are relatively expensive.,2-3,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,8,Division,The principal portions of a bridge may be said to be the“superstructure”and“substructure.This d
10、ivision is used here simply for convenience,sine in many bridges there is no clear dividing line between the two.Bridges may also be classed as“deck”or“through”types.In the deck type of bridge,the roadway is above the supporting structure,that is,the load carrying elements of the superstructure are
11、below the roadway.,3-1,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,9,Division,In the through type of bridge,the roadway passes between the elements of the superstructure.Deck structures predominate:they have a clean appearance,provide the motorist with a be
12、tter view of the surrounding area,and are easier to widen if future traffic requires it.,3-2,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,10,Loads,The forces that act on bridge structural members are produced by three kinds of loads:the dead load,the live lo
13、ad,and the occasional load.Dead load refers to the weight of the bridge itself-is usually the greatest load.Live load refers to traffic that moves across the bridges as well as normal environmental factors such as changes in temperature,precipitation,and winds.,4-1,Civil Engineering English(CTGU)Cha
14、pter 8 Bridge EngineeringSection A Bridges,1/18/2023,11,Loads,All three factors must be taken into consideration in the design of a bridge.The design of bridges requires the collection of extensive data and from this the selection of possible options.From such a review the choice is narrowed down to
15、 a shortlist of potential bridge designs.A sensible work plan should be devised for the marshalling and deployment of information throughout the project from conception to completion.,4-2,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,12,Loads,It has been grea
16、tly improved by the use of advanced mathematics,electronic computers,and test model,with these techniques,designers can obtain precise calculations of stresses and strains under both static and dynamic conditions.The designer of each medium and long-span bridge tries to devise a structure that is be
17、st suited to the conditions encountered at that particular location.The result is an almost bewildering variety of structures that differ either in basic design principle or in design details.,4-3,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,13,Categories,Ge
18、neral categories of bridges are briefly described in the following paragraphs:,5,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/2023,14,Girder bridges,Girder bridges A girder bridge is perhaps the most common and most basic bridge.A log or a piece of other material
19、 across a creek is an example of a girder bridge in its simplest form.That piece of material called a girder or beam rests directly on the ground on each side or is supported on heavy foundations known as piers.,6-1,Civil Engineering English(CTGU)Chapter 8 Bridge EngineeringSection A Bridges,1/18/20
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