[1] American Petroleum Institute. Planning, designing, and constructing fixed offshore platform-working stress design: API recommended practice 2A-WSD-2014 [S]. Washington: API Publishing Service, 2014.
[2] American Petroleum Institute. Petroleum and natural gas industries-Specific requirements for offshore structures, Part 6-Marine operations: ANSI/API recommended practice 2MOP-2010 [S]. Washington: API Publishing Service, 2010.
[3] Det Norske Veritas and Germanscher Lloyd. Technical Standards Committee (Guidelines for marine transportations): GL 0030/ND-2010 [S]. Norway: DNV GL AS, Dec 2015.
[4] 中国船级社. 海上拖航指南: GD 02—2012 [S]. 北京, 中国船级社, 2012.

China Classification Society. Guidelines for towage at sea: GD 02—2012 [S]. Beijing, China Classification Society, 2012.
[5] 中国船级社. 钢制海船入级规范 第2篇船体 [S]. 北京, 中国船级社, 2018.

China Classification Society. Code for classification of steel seagoing vessel Chapter 2 Hull [S]. Beijing, China Classification Society, 2018.
[6]

Det Norske Veritas and Germanscher Lloyd. Structural design of offshore ships: DNVGL-OS-C102 [S]. Norway: DNV GL AS, 2017.
[7] 中国船级社. 船体结构疲劳强度指南: GD 25—2017 [S]. 北京, 中国船级社, 2018.

China Classification Society. Guidelines for fatigue strength of ship structure: GD 25—2017 [S]. Beijing, China Classification Society, 2018.
[8] 陈铁云, 陈伯真. 船舶结构力学 [M]. 上海: 上海交通大学出版社, 1991.

CHENT Y, CHENB Z. Ship structural mechanics [M]. Shanghai: Shanghai Jiao Tong University Press, 1991.
[9] 戚永乐, 史政. 海上升压站钢结构平台不同标准对比研究 [J]. 南方能源建设, 2019, 6(1): 54-64. DOI:  10.16516/j.gedi.issn2095-8676.2019.01.010.

QIY L, SHIZ. Comparative research on different standards of offshore steel structure platform [J]. Southern Energy Construction,2019,6(1): 55-65. DOI:  10.16516/j.gedi.issn2095-8676.2019.01.010.
[10] 张耀, 曹小平, 王春芬, 等. 材料力学 [M]. 北京: 清华大学出版社, 2015.

ZHANGY, CAOX P, WANGC F, et al. Mechanics of materials [M]. Beijing: Tsinghua University Press, 2015.