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土木工程专业英语 [吴秩 主编]

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  • 大小:34.28 MB
  • 语言:中文版
  • 格式: PDF文档
  • 阅读软件: Adobe Reader
资源简介
土木工程专业英语
出版时间: 2015年版
内容简介
本书选材涉及土木工程概况、土木工程类别、土木工程材料、工程荷载以及作用、结构构件类别、地下工程、桥梁工程、道路工程、工程抗震设计、隔震技术、建筑加固技术等方面, 分为13章, 每章均由课文、生词和短语组成。
目录
contentschapter 1overview of civil engineering (1)1.1introduction of civil engineering(1)section athe origin of civil engineering(1)section bwhat is a civil engineer(3)1.2the importance of civil engineering(5)section athe role of civil engineering in society(5)section bhistoric civil engineering landmarks(6)references(9) chapter 2types of civil engineering(11)2.1structural engineering(11)section aintroduction of structural engineering(11)section bbasic types of structures (13)2.2bridge engineering(15)2.3underground engineering(17)section aintroduction of metropolitan railway(17)section bintroduction of tunnel engineering(18)2.4road engineering(20)section aintroduction of road engineering(20)section bmaintenance of road engineering(22)references(24) chapter 3materials of civil engineering(26)3.1concrete(26)section aintroduction of concrete(26)section bproperties of concrete(27)3.2steel (29)3.3masonry(30)references(31) chapter 4loads and actions in civil engineering(32)4.1dead load and live load(32)4.2wind load and wind damage(33)section aintroduction of wind load(33)section bclassification of wind load(34)section chorizontal wind loads and roof wind loads on structural frames(35)section dwind for components and wind damage(36)4.3earthquake action and damage(38)section aearthquake action(38)section bearthquake damage(39)4.4tsunami damage to the structure of civil engineering(41)section atsunami damage(41)section btsunami damage to buildings(43)section cresistance of tsunamis for structures(44)references(45) chapter 5members of civil engineering (46)5.1horizontal forced structural members(46)section aintroduction of beam(46)section bforces within a beam(48)section cshear strength and parameters(50)section dcoupling beams(52)section eflat plates(54)section fbehavior of concrete slabs(56)section gfloor framing systems(57)5.2vertical forced structural members (59)section aintroduction of column(59)section bincreasing compressive strength(60)section chighstrength steel in concrete columns(62)section dconfinement in reinforced concrete columns(63)section eintroduction of concrete structural wall(65)section fbehavior of structural wall(67)section gsteel plate shear walls(69)5.3arch(70)section aintroduction of arches(70)section bdevelopment of arch bridges(71)5.4truss(74)section aintroduction of truss(74)section banalysis of internal force(75)section cproduction and installation of a truss(77)references(78) chapter 6basic types of engineering structure(82)6.1reinforced concrete structures(82)section aapplication of reinforced concrete structures(82)section bperformance of reinforced concrete structures(83)6.2steel structure(85)section aintroduction of steel structures(85)section bincheon international airport(87)6.3classification of steel concrete composite structure(88)section asteel concrete composite structure (88)section bconcretefilled steel tube column(89)6.4the modern complex highrise building structure(90)section aperformancebased seismic design(90)section bperformance objectives of pbsd(92)references(93) chapter 7bridge engineering(95)7.1introduction of bridge engineering(95)section ahistory of bridge(95)section blondon millennium footbridge(96)7.2classification of bridge(98)section arigid beam and cantilever(98)section bsuspension and arch(99)7.3design of bridge(100)section adesign of bridge structure(100)section bnumerical analysis of bridge structures(101)references(102) chapter 8underground engineering(104)8.1introduction of underground engineering(104)section aexploitation of underground space(104)section bthe underground strategy (105)8.2underground tunnel engineering(106)section atunneling risk (106)section ba new requirement of tunneling(107)8.3development of underground space structure(108)section awebbased shield tunnel construction information system(108)section burban underground space planning (110)references(111)chapter 9road engineering(114)9.1urban road(114)section aintroduction of urban road(114)section bdevelopment of road engineering(115)9.2freeway engineering(117)section adesign of freeway(117)section bdevelopment of freeway(118)references(119) chapter 10foundation engineering(122)10.1introduction of foundation(122)section aa shallow foundation(122)section btypes of pile foundation(124)10.2the principles of foundation design(126)section awhat is foundation design(126)section bcauses of settlement(127)references(128) chapter 11performancebased seismic design(129)11.1introduction of performancebased seismic design(129)section athe origin of performancebased seismic design(129)section bdevelopment of performancebased seismic design(130)11.2structural seismic demand and seismic capacity(132)section astructural seismic demand(132)section bstructural seismic capacity(133)11.3loss evaluation in earthquake events(135)section amethodologies of earthquake economic loss estimate (135)section bearthquake disaster(136)references(137)chapter 12isolation and energy dissipation damper technology(141)12.1seismic isolation technology(141)section aintroduction of seismic isolation technology(141)section bfunctions of seismic isolation technology(143)12.2energy dissipation system(144)section aintroduction of energy dissipation system(144)section bclassification of dampers(146)references(148) chapter 13retrofitting techniques for seismic strengthening(150)13.1outline of retrofitting techniques for seismic strengthening(150)section aorigin of retrofitting techniques for seismic strengthening(150)section bthe importance of retrofitting techniques for seismic strengthening(151)section cproblems of retrofitting techniques for seismic strengthening(153)13.2types of retrofitting techniques for seismic strengthening(155)section aclassification of retrofitting techniques for seismic strengthening(155)section bintroduction of fibre reinforced polymer(157)13.3applications of materials in seismic strengthening(159)section
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