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NB/T 10388-2020 English PDF

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NB/T 10388-2020: (Code for geological survey of tidal power generation engineering)
Status: Valid
Standard IDUSDBUY PDFLead-DaysStandard Title (Description)Status
NB/T 10388-20201679 Add to Cart 9 days (Code for geological survey of tidal power generation engineering) Valid

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Basic data

Standard ID: NB/T 10388-2020 (NB/T10388-2020)
Description (Translated English): (Code for geological survey of tidal power generation engineering)
Sector / Industry: Energy Industry Standard (Recommended)
Classification of Chinese Standard: P61
Classification of International Standard: 27.140
Word Count Estimation: 83,886
Date of Issue: 2020-10-23
Date of Implementation: 2021-02-01
Older Standard (superseded by this standard): NY/T 751-2003
Regulation (derived from): National Energy Administration Announcement No. 5 [2020]
Issuing agency(ies): National Energy Administration

NB/T 10388-2020: (Code for geological survey of tidal power generation engineering)

---This is a DRAFT version for illustration, not a final translation. Full copy of true-PDF in English version (including equations, symbols, images, flow-chart, tables, and figures etc.) will be manually/carefully translated upon your order.
Code for Engineering Geological Investigation of Tidal Power Projects Energy Industry Standards of the People's Republic of China Code for geological survey of tidal power generation engineering 2020-10-23 released 2021-02-01 implementation

Foreword

According to the National Energy Administration’s announcement on issuing the first batch of industry standard system (revision) plans in the energy sector in.2014 Knowledge” (Guoneng Technology [2014] No. 298), the specification preparation team has conducted extensive investigations and studies, and carefully summarized the project Practical experience, refer to relevant foreign advanced standards, and on the basis of extensive solicitation of opinions, formulate this specification. The main technical contents of this code are. basic regulations, engineering geological survey at the planning stage, and pre-feasibility study stage Engineering geological survey, engineering geological survey at the feasibility study stage, engineering geological survey at the tender design stage, detailed construction drawings Engineering geological survey at the design stage. This specification is managed by the National Energy Administration, put forward by the General Institute of Hydropower and Water Conservancy Planning and Design, and is responsible for daily management. The General Institute of Water Resources Planning and Design is responsible for the interpretation of specific technical content. If you have any comments or suggestions during the implementation process, please send water, electricity and water Li Planning and Design Institute (Address. No. 2 Kangbei Xiaojie, Liupu, Xicheng District, Beijing, 100120). Editor-in-chief of this code. China Power Construction Group East China Survey, Design and Research Institute Co., Ltd. Participating unit of this specification. Zhejiang Huadong Construction Engineering Co., Ltd. East China Survey and Design Institute (Fujian) Co., Ltd. The main drafters of this code. Shan Zhigang, Jin Zhongliang, Wang Mingyuan, Yi Shenzhou, Li Sunquan, Zhou Chunhong Lu Fei Ye Zhiping Chen Guohai Zhou Huixin Lin Jian Rao Meng Xu Xueyong Sun Miaojun Chen Changhe Main reviewers of this specification. Yang Jian Zhu Jianye Yang Jianhong Chen Weidong Wu Yongfeng Wang Huiming Xu Mo Wang Jinguo Jia Yonggang Hu Guanghai Lu Xiaoming Hu Jisong Zhong Jianping Zhang Guofu Wang Yaqun Liu Zengjie Ao Renjun Zhao Yi Wang Huiming Li Wengang Li Shisheng

Table of contents

1 General...1 2 Terminology...2 3 Basic regulations...3 4 Engineering geological survey in the planning stage...5 4.1 General provisions...5 4.2 Regional Geology and Earthquake...5 4.3 Site...6 4.4 Natural building materials...7 4.5 Survey Report...8 5 Engineering geological survey at the pre-feasibility study stage...8 5.1 General provisions...8 5.2 Regional structural stability and seismic effects...8 5.3 Reservoir...9 5.4 Seawall (dam)...10 5.5 Factory site...12 5.6 Water locks and ship locks...13 5.7 Natural building materials...14 5.8 Survey report...14 6 Engineering geological survey at the feasibility study stage...16 6.1 General regulations...16 6.2 Earthquake effect of site and foundation...17 6.3 Reservoir...17 6.4 Seawall (dam)...19 6.5 Plant...21 6.6 Water locks and ship locks...22 6.7 Substation...23 6.8 Cofferdam...24 6.9 Natural building materials...24 6.10 Survey Report...25 7 Engineering Geological Survey in the Bidding Design Phase...27 7.1 General regulations...27 7.2 Engineering geological review and specialized engineering geological survey...27 7.3 Auxiliary and other temporary buildings...27 7.4 Natural building materials...28 7.5 Survey Report...28 8 Engineering geological survey at the stage of detailed construction drawing design...29 8.1 General regulations...29 8.2 Specialized engineering geological survey...29 8.3 Construction geology...29 8.4 Data organization...30 Appendix A Applicability of Marine Geophysical Methods...31 Appendix B Classification of soil...32 Appendix C Drawings and Attachments of Engineering Geological Survey Report...33 Appendix D Classification of Seismic Sections of Buildings...34 Appendix E Identification of Soft Soil Seismic Settlement...35 Appendix F Classification of Submarine Shallow Gas...36 Appendix G Corrosion Evaluation of Water and Soil...37 Appendix H Blowing Filling Investigation and Suitability Evaluation...39 Explanation of terms used in this specification...42 List of Reference Standards...43 Attachment. Article description...44
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