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《水运工程钢结构设计规范》(英文)
中华人民共和国交通运输部
ISBN:978-7-114-13125-7
出版日期:2016-06-09
版印次:1版1次
开本:16

内容简介

经过几十年的发展,中国的水运工程建设积累了丰富的经验。同时也建立
了一套完整的技术标准体系, 部分现行的中国标准已经被翻译成了英文版。
«水运工程钢结构设计规范»(JTS 152—2012)是技术标准体系中的一部
分,应与其他相关标准配套使用。 同时,使用本规范不意味着自动免除使用
者应负的责任。
本规范的翻译工作由中国交通建设集团有限公司组织,中国港湾工程有
限责任公司承办。 如果中英文版本出现了不同的理解,以中文版为准, 交通
运输部水运局负责对中文版本的解释。
本规范使用者在执行本规范过程中,如有疑问和建议,请向主编单位
提出。

章节目录

1 General ………………………………………………………………… (1)
2 Definitions ……………………………………………………………… (2)
3 Basic rules ……………………………………………………………… (3)
 3. 1 General ……………………………………………………………… (3)
 3. 2 Material …………………………………………………………… (5)
 3. 3 Deformation ……………………………………………………… (12)
 3. 4 Protection ………………………………………………………… (13)
4 Calculation of members ……………………………………………… (14)
 4. 1 General …………………………………………………………… (14)
 4. 2 Effective length and allowable slenderness ratio ………………… (14)
 4. 3 Strength and stability ……………………………………………… (18)
 4. 4 Deformation ……………………………………………………… (35)
5 Calculation of connectors …………………………………………… (36)
 5. 1 General …………………………………………………………… (36)
 5. 2 Welded connection ………………………………………………… (36)
 5. 3 Bolted and riveted connection …………………………………… (40)
 5. 4 Gusset plate ……………………………………………………… (44)
 5. 5 Supports …………………………………………………………… (45)
6 Fatigue calculation …………………………………………………… (49)
7 Detailing requirements ……………………………………………… (51)
 7. 1 General …………………………………………………………… (51)
 7. 2 Welded connection ………………………………………………… (51)
 7. 3 Bolted and riveted connection …………………………………… (53)
 7. 4 Structural members ……………………………………………… (55)
8 Steel approach bridge ………………………………………………… (57)
 8. 1 General …………………………………………………………… (57)
 8. 2 Bridge deck system ……………………………………………… (59)
 8. 3 Bracing system …………………………………………………… (60)
 8. 4 Solid ̄web main girder …………………………………………… (63)
 8. 5 Truss main girder ………………………………………………… (64)

 8. 6 Open ̄Web arch truss main girder ………………………………… (66)
9 Box rail beam ………………………………………………………… (67)
10 Steel pipe pile ………………………………………………………… (69)
11 Steel sheet pile ……………………………………………………… (72)
12 Steel bracing ………………………………………………………… (74)
13 Composite steel ̄concrete beam …………………………………… (76)
 13. 1 General …………………………………………………………… (76)
 13. 2 Calculation ……………………………………………………… (76)
 13. 3 Detailing requirements …………………………………………… (80)
14 Lock gate and valve ………………………………………………… (83)
15 Dock gate …………………………………………………………… (85)
Annex A Classification of sections of axial compression members … (88)
Annex B Strength reduction factor of axial compression member … (91)
Annex C Converted slenderness ratio of axial compression members … (96)
 C. 1 Converted slenderness ratio of mono ̄symmetric sections ………… (96)
 C. 2 Converted slenderness ratio of latticed axial compression members …… (99)
Annex D Strength reduction factor of beams ……………………… (102)
 D. 1 Simply supported beam of uniform welded I ̄section and rolled
H ̄section ………………………………………………………… (102)
 D. 2 Rolled ordinary I ̄Section steel simply supported beam ………… (105)
 D. 3 Rolled channel steel simply supported beam …………………… (105)
 D. 4 Cantilever beam with biaxial symmetrical I ̄shaped uniform
section and H ̄Section steel ……………………………………… (106)
 D. 5 Approximate calculation of strength reduction factor of bending
members ………………………………………………………… (106)
Annex E Classification of members and connections for fatigue
     calculation …………………………………………………… (108)
Annex F Lateral stability checking for compressive chords or
flanges of opening ̄through steel approach bridges ……… (111)
Annex G Explanation of Words and Expressions …………………… (112)
Additional notes ………………………………………………………… (113)
List of Translators and Reviewers …………………………………… (115)