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某客滚船大容量三元锂电池通风系统设计研究

蔡睿眸 王希炜 徐正春 李成阳

船电技术2025,Vol.45Issue(5):47-51,5.
船电技术2025,Vol.45Issue(5):47-51,5.

某客滚船大容量三元锂电池通风系统设计研究

Ventilation system design for large-capacity ternary lithium battery on a ropax

蔡睿眸 1王希炜 2徐正春 2李成阳3

作者信息

  • 1. 广船国际有限公司,广东 广州 510380
  • 2. 上海ABB工程有限公司船舶与港口事业部,上海 201319
  • 3. 武汉船用电力推进装置研究所,武汉 430064
  • 折叠

摘要

Abstract

The paper proposes solutions for the potential of thermal runaway in large-capacity ternary lithium-ion batteries,with the 8816kWh large-capacity ternary lithium-ion battery on the 1600-passenger,3658-meter lane luxury Ro-Ro passenger vessel of P&O Ferries UK as a case study.In compliance with relevant classification society rules,gas chromatography is utilized to provide information on potential exhaust gases generated during thermal runaway occurrence.By utilizing Le Chatelier's principle,the minimum required volume flow rate within exhaust ducts is calculated.Subsequently,design study on large-capacity ternary lithium-ion batteries of ventilation systems for luxury Ro-Ro passenger ships.The result of the calculations meets the requirements to prevent thermal runaway incidents.The research findings can serve as a reference for the calculation of air volume in ventilation systems for large-capacity ternary lithium-ion batteries aboard ships.

关键词

三元锂电池/热失控事件/通风系统/船级社规范

Key words

ternary lithium battery/thermal runaway occurrence/ventilation system/classification society rule

分类

交通工程

引用本文复制引用

蔡睿眸,王希炜,徐正春,李成阳..某客滚船大容量三元锂电池通风系统设计研究[J].船电技术,2025,45(5):47-51,5.

船电技术

1003-4862

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