ABS 288-2017 GUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES.pdf
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1、 Guide for Use of Supercapacitors in the Marine and Offshore Industries GUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES DECEMBER 2017 American Bureau of Shipping Incorporated by Act of Legislature of the State of New York 1862 2017 American Bureau of Shipping. All rights reser
2、ved. ABS Plaza 16855 Northchase Drive Houston, TX 77060 USA Foreword Foreword Hybrid electric power applications are increasing in the marine and offshore industries. ABS recognizes the application of supercapacitor technology in support of the hybrid initiatives and its benefits for improving energ
3、y efficiency of the onboard power plant. Supercapacitors, as a commercialized energy storage device, exhibit beneficial characteristics such as high power density, a fast charging/discharging process, no thermal runaway characteristics, and wide operating-temperature range. The operating environment
4、 typical in the marine and offshore industries may differ from those considered when a supercapacitor system was originally designed and so necessitates a review of the environmental and operational aspects prior to adoption. ABS has produced this Guide to provide requirements and reference standard
5、s to facilitate effective installation and operation of on-board supercapacitor systems. The purpose of this Guide is to establish safety guidelines for owners, operators, shipyard builders, designers, and manufacturers. The supercapacitors covered by this Guide are also referred as Electrical Doubl
6、e Layer Capacitors (EDLC), Electrochemical Capacitors, or Ultracapacitors. Requirements applicable to conventional electrolytic capacitors used for power factor correction or harmonic filtering are contained in Part 4 of the ABS Rules for Building and Classing Steel Vessels. Supercapacitor technolog
7、y is continuously evolving with respect to materials and design. Alternative arrangements or new supercapacitor technologies may be considered provided it can be shown, through either satisfactory service experience or a systematic analysis based on sound engineering principle, to meet the overall s
8、afety standards of this Guide and the ABS Rules. This Guide becomes effective on the first day of the month of publication. Users are advised to check periodically on the ABS website www.eagle.org to verify that this version of this Guide is the most current. We welcome your feedback. Comments or su
9、ggestions can be sent electronically by email to rsdeagle.org. ii ABSGUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES .2017 Table of Contents GUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES CONTENTS SECTION 1 General 1 1 Introduction . 1 3 Application 1 5
10、 Scope 1 7 Terminology 2 9 Abbreviations and Acronyms 3 11 References 4 11.1 ABS . 4 11.3 IEC Standards . 4 11.5 Other References 5 11.7 Alternative Standards 5 13 Data and Plans to be Submitted . 5 13.1 General 5 13.3 Supercapacitor System Submissions 5 13.5 Supercapacitor Cell/Module Submissions .
11、 6 13.7 Capacitor Management System (CMS) Submissions 6 13.9 Supercapacitor Charger and/or Converter Submissions . 7 15 Onboard Documentation . 7 15.1 General 7 FIGURE 1 Supercapacitor Components (only use for reference) 2 FIGURE 2 Supercapacitor System . 3 SECTION 2 Supercapacitor System Design and
12、 Construction 8 1 Supercapacitor System . 8 1.1 General 8 1.3 System Arrangement . 8 1.5 Supercapacitor System Used as Emergency/Transitional Source of Power 9 1.7 System Protection . 9 1.9 Shore Connection 10 1.11 Control, Monitoring, Alarm and Safety Systems 10 1.13 Emergency Shutdown Arrangement
13、10 ABSGUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES .2017 iii 1.15 Ambient Temperatures 10 1.17 Integration 11 3 Supercapacitor Cells/Modules 11 3.1 General 11 3.3 Enclosure and Casing 11 3.5 Cooling and Prevention of Condensation 11 3.7 Nameplate Data . 11 3.9 Cell Connecti
14、on . 12 3.11 Supercapacitor Cell Life . 12 3.13 Supercapacitor Cell/Module Polarity 12 5 Supercapacitor Chargers/Converters . 12 7 Capacitor Management System 12 7.1 General 12 7.3 Voltage Balancing 13 7.5 Power Management System 14 SECTION 3 Supercapacitor System Testing and Installation . 15 1 Sup
15、ercapacitor System Testing Requirements 15 1.1 Supercapacitor Cell Tests and Measurement 15 1.3 Supercapacitor Module Tests and Measurement 15 1.5 Supercapacitor Charger/Converter and Management System Tests and Measurement 16 3 Supercapacitor Space . 16 3.1 General 16 3.3 Fire Safety . 17 3.5 Venti
16、lation 17 3.7 Environmentally-Controlled Space . 17 3.9 Hazardous Area Requirement . 18 5 Supercapacitor System Risk Assessment 18 7 Supercapacitor System Operation and Maintenance . 19 7.1 Installation and Commissioning . 19 7.3 Operation and Maintenance 19 TABLE 1 Summary of Type and Routine Tests
17、 and Measurement for Supercapacitor Cells . 15 TABLE 2 Summary of Type and Routine Tests and Measurement for Supercapacitor Modules . 16 TABLE 3 Summary of Tests for Supercapacitor Chargers/Converters and CMS . 16 SECTION 4 Supercapacitor System Surveys . 20 1 General . 20 3 Surveys during Construct
18、ion . 20 5 Surveys after Construction 21 5.1 General 21 5.3 Annual Surveys . 21 5.5 Special Periodical Surveys 21 iv ABSGUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES .2017 APPENDIX 1 Commentary on Supercapacitors . 22 1 General . 22 3 Supercapacitor Properties 22 3.1 Constru
19、ction 22 3.3 Supercapacitor Electrical Characteristics 22 3.5 Supercapacitor Connections . 23 5 Supercapacitor Use 23 5.1 Classes 23 5.3 Benefits . 23 ABSGUIDE FOR USE OF SUPERCAPACITORS IN THE MARINE AND OFFSHORE INDUSTRIES .2017 v This Page Intentionally Left Blank Section 1: General SECTION 1 Gen
20、eral 1 Introduction ABS recognizes the application of supercapacitor technology in the marine and offshore industries and its benefits for improving energy efficiency. This Guide has been developed to facilitate the effective installation and operation of supercapacitors. This Guide is to be used in
21、 conjunction with and as a supplement to Part 4 of the ABS Rules for Building and Classing Steel Vessels (Steel Vessel Rules) and the ABS Rules for Building and Classing Mobile Offshore Drilling Units (MODU Rules), or other ABS Rules as applicable. The basic safety principles such as having sufficie
22、nt power generation (storage) capacity, adequate standby and emergency power sources, continuity of supply in the event of a fault, and general electrical safety (such as proper cable sizing, appropriate insulation, appropriate equipment enclosure ratings, etc.) contained in the ABS Rules are to be
23、followed in general. Those specific requirements are not repeated in this Guide. 3 Application This Guide is applicable to marine and offshore assets designed, constructed, or retrofitted with a supercapacitor system used as an additional source of power with a capacity greater than 50 Wh. An option
24、al notation ESS-SC may be granted to those assets once the supercapacitor installation has complied with the requirements of this Guide. When Type Approval for supercapacitor system components is requested, applicants should contact ABS for the approval process. For ABS Type Approval Program require
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