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《水运工程混凝土结构设计规范》(英文)
中华人民共和国交通运输部
ISBN:978-7-114-13124-0
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。
«水运工程混凝土结构设计规范»(JTS 151—2011)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 Terms and definitions ………………………………………………… (2)
3 Basis of design ………………………………………………………… (4)
 3. 1 General ……………………………………………………………… (4)
 3. 2 Requirements for calculation in ultimate limit states ……………… (5)
 3. 3 Requirements for checking of serviceability limit states …………… (8)
 3. 4 Requirements for durability ……………………………………… (11)
4 Materials ……………………………………………………………… (16)
 4. 1 Concrete …………………………………………………………… (16)
 4. 2 Reinforcement …………………………………………………… (17)
5 Ultimate limit states ………………………………………………… (23)
 5. 1 General requirements for bearing capacity at normal section …… (23)
 5. 2 Moment resistance at normal section ……………………………… (27)
 5. 3 Compression resistance at normal section ………………………… (33)
 5. 4 Tension resistance at normal section ……………………………… (51)
 5. 5 Shear resistance …………………………………………………… (55)
 5. 6 Torsional resistance ……………………………………………… (66)
 5. 7 Punching shear resistance ………………………………………… (79)
 5. 8 Local compression resistance ……………………………………… (85)
6 Serviceability limit states …………………………………………… (89)
 6. 1 General …………………………………………………………… (89)
 6. 2 Prestress losses of prestressing tendons …………………………… (96)
 6. 3 Cracking resistance ……………………………………………… (102)
 6. 4 Crack width ……………………………………………………… (109)
 6. 5 Deflection of flexural members ………………………………… (114)
7 Structural detailing ………………………………………………… (117)
 7. 1 Expansion joints ………………………………………………… (117)
 7. 2 Concrete cover …………………………………………………… (117)
 7. 3 Anchorage of reinforcement ……………………………………… (119)
 7. 4 Splices of reinforcement ………………………………………… (122)
 7. 5 Minimum reinforcement ratio of main longitudinal reinforcement … (125)
 7. 6 Structural detailing of prestressed concrete members …………… (126)

8 Members ……………………………………………………………… (131)
 8. 1 Slabs ……………………………………………………………… (131)
 8. 2 Beams …………………………………………………………… (142)
 8. 3 Columns ………………………………………………………… (150)
 8. 4 Composite flexural members …………………………………… (151)
 8. 5 Deep flexural members ………………………………………… (157)
 8. 6 Trusses …………………………………………………………… (166)
 8. 7 Caissons ………………………………………………………… (167)
 8. 8 Buttresses ………………………………………………………… (170)
 8. 9 Diaphragm walls ………………………………………………… (171)
 8. 10 Cylinders ……………………………………………………… (173)
 8. 11 Semi ̄circular members ………………………………………… (173)
 8. 12 Docks …………………………………………………………… (174)
 8. 13 Connections of precast members ……………………………… (176)
 8. 14 Hoisting holes? hangers and embedded components …………… (178)
Annex A Calculation of members in plain concrete structures …… (186)
 A. 1 General ………………………………………………………… (186)
 A. 2 Compression members …………………………………………… (186)
 A. 3 Flexural members ……………………………………………… (190)
 A. 4 Local compression ……………………………………………… (190)
 A. 5 Local constructional reinforcement ……………………………… (191)
Annex B Nominal cross sectional area? calculation cross sectional
area and nominal mass of reinforcement ………………… (192)
Annex C Bearing capacity at normal section of members with
any type of section ………………………………………… (195)
Annex D Prestress losses of post ̄tensioned prestressing tendons
in common profiles ………………………………………… (199)
Annex E Time ̄dependent prestress loss …………………………… (202)
Annex F Explanation of words and expressions …………………… (205)
Additional notes ………………………………………………………… (206)
List of Translators and Reviewers …………………………………… (208)