GB/T 39571-2020Wave energy resource assessment and characterization (English PDF)
Also coversGBT39571-2020
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Issued by
State Administration for Market Regulation, China National Standardization Administration
Level / Type
National · Recommended
Issue date
December 14, 2020
Implementation date
July 1, 2021
Scope
GB/T 39571-2020 (Wave energy resource assessment and characterization) is available as an English-translated PDF.
GB/T 39571-2020 — This standard specifies the assessment level and process of wave energy resources, data collection, numerical simulation, measurement-correlation-prediction method, data analysis and Preparation of resource assessment technical report: This standard is applicable to the assessment of wave energy resources in the three stages of site selection, feasibility study and design and development: This standard does not apply to the assessment of wave energy resources under extreme sea conditions:
Document preview — GB/T 39571-2020
National Standard of the People's Republic of China
- ICS
- 27.140
- Classification
- F 14
Issued by: State Administration for Market Regulation, China National Standardization Administration
Contents
- 1 Scope1
- 2 Normative references1
- 3 Terms and definitions1
- 4 Symbols, codes and abbreviations2
- 5 Resource assessment level and process3
- 6 Data collection5
- 7 Numerical simulation8
- 8 Measurement-Correlation-Prediction14
- 9 Data Analysis14
- 10 Resource Assessment Technical Report18
- Appendix A (informative appendix) The structural changes of this standard compared with IEC TS62600-101:201522
- Appendix B (informative appendix) Technical differences between this standard and IEC TS62600-101:2015 and the reasons23
- Appendix C (Informative Appendix) Sensitivity Analysis Method27
- Appendix D (Informative Appendix) Wave Model29
- Appendix E (informative appendix) Nearshore wave energy resources31
- Appendix F (informative appendix) Example of wave energy resource chart33
- Appendix G (Normative Appendix) Evaluation of Measurement Uncertainty35
- Appendix H (Informative Appendix) Examples of Long-term Uncertainty36
- Reference39
Foreword
This standard was drafted in accordance with the rules given in GB/T 1:1-2009:
This standard uses the redrafting method to modify and adopt IEC TS62600-101:2015 "Ocean Energy Wave Energy, Tidal Current Energy and Other Water Flow Energy"
Conversion Device Part 101: Wave Energy Resource Evaluation and Characterization:"
Compared with IEC TS62600-101:2015, this standard has many adjustments in structure: Appendix A lists this standard and IEC
TS62600-1:2015 chapter number comparison list:
Compared with IEC TS62600-101:2015, this standard has technical differences, and the clauses related to these differences have been passed on its outer page:
The vertical single line (|) of the margin position is marked, and a list of the corresponding technical differences and their reasons is given in Appendix B:
This standard has made the following editorial changes:
---Change the standard name to "Wave Energy Resource Assessment and Characterization";
---Added Appendix D "Sea Wave Model";
---Modified A:2, A:4 and Table A:1 in Appendix A of IEC TS62600-101:2015;
---Modified Appendix C "Long-term Uncertainty Calculation Example" in IEC TS62600-101:2015;
---Added Appendix F "Sample Wave Energy Resource Chart";
---Revised references:
This standard was proposed and managed by the National Ocean Energy Conversion Equipment Standardization Technical Committee (SAC/TC546):
Drafting organizations of this standard: National Ocean Technology Center, Hohai University, Guangzhou Institute of Energy Research, Chinese Academy of Sciences, China Power Engineering Corporation East China
Design and Research Institute Co:, Ltd:, National Ocean Standard Metrology Center, China Three Gorges Group Co:, Ltd:, Jimei University:
1 Scope
This standard specifies the assessment level and process of wave energy resources, data collection, numerical simulation, measurement-correlation-prediction method, data analysis and
Preparation of resource assessment technical report:
This standard is applicable to the assessment of wave energy resources in the three stages of site selection, feasibility study and design and development:
This standard does not apply to the assessment of wave energy resources under extreme sea conditions:
2 Normative references
The following documents are indispensable for the application of this document: For dated reference documents, only the dated version applies to this article
Pieces: For undated references, the latest version (including all amendments) applies to this document:
GB/T 4883 Statistical processing and interpretation of data Judgment and processing of outliers in normal samples
GB 12327 Hydrographic Survey Specification
GB/T 27418 Measurement Uncertainty Evaluation and Expression (GB/T 27417-2017, ISO /IEC Guide98-3:2008, MOD)
JTS145 Port and Waterway Hydrological Code
ASMEV
tionincomputationalfluiddynamicsandheattransfer)
3 Terms and definitions
The following terms and definitions apply to this document:
3:1
Planning site selection reconnaissance
Investigation and evaluation of the quantity, quality, distribution and development and utilization of wave energy resources in the study area,
Preliminary comparison of points and their economics:
Note: Resource assessment for planning site selection is applicable to resource assessments in a wide range of sea areas, usually the first resource assessment in a certain area:
3:2
Feasibility study
To further investigate, survey, analyze, and compare the construction conditions of the proposed project, and study the technical feasibility, economic rationality, and construction necessity:
Note: The feasibility study resource evaluation is suitable for improving the accuracy of the resource evaluation for planning and site selection before the design and development resource evaluation:
3:3
Designanddevelopment
According to the total installed capacity of the project, a detailed engineering design plan is formulated:
Note: The design and development resource assessment is applicable to a small area of sea, usually the final and most detailed resource assessment of a specific project, usually including wave energy
Installation layout, building design, construction method and investment optimization work:
3:4
Measure-Correlate-Predict method; MCP
A method of establishing an association model between the short-term data of the measurement location and the data of the reference location to predict the long-term data of the measurement location:
Note: The measured location refers to the target location for resource assessment; the reference location refers to the location with long-term measured data:
......
This preview omits tables, figures, formulas and parts of the technical clauses. The complete document — all pages — is available in the English PDF.
Referenced standards
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Related Standards
GB 12327-2022 — Specifications for hydrographic survey
GB/T 27417-2017 — Conformity assessment—Guidance on validation and verification of chemical analytical methods
GB/T 4883-2008 — Statistical interpretation of data - Detection and treatment of outliers in the normal sample
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