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英文版Francisco Joglar-Performance Based Analysis Fire Simulation and Fire Risk Assessment.pdf

上传人: c** 编号:955159 2025-10-27 35页 4.03MB

1、Presented by:FRANCISCO JOGLAR,PE,PhD.2025 Overseas Energy Storage Fire Protection Forum2|Copyright yyyy Jensen Hughes.All rights Jensen Hughes founded in 1939,restructuring began in 2014.Global Reach,Local PresenceJensen Hughes Inc.The largest in the world:1700+employees,200+energy storage safety en

2、gineers and scientists 90+offices,branches,200+NFPA&UL standards editorial board,200+Registered FPE,MEPE,SE from all over the world3|Copyright yyyy Jensen Hughes.All rights Jensen Hughes RE Solution Technical TeamFrancisco Joglar,PEDirectorRE Solution+Risk Assessment+25 years in fire protection engi

3、neering+Internationally recognized risk assessment and uncertainty analysis expert+Over 10 years teaching risk analysis at the University of Maryland and fire protection engineering at Cal Poly.Jens ConzenVice PresidentBusiness Development+18 years of experience in industrial&process safety.+Princip

4、al Technical Committee Member of NFPA 855+Industry Advisory Committee Member for EPRI on BESS Fire Prevention&Mitigation Zhong Liu,PEPrinciple Fire Protection Consultant+30 years in fire protection engineering+Experience in international fire protection codes compliance analysis and fire modeling.+R

5、E fire and explosion solution analyst.KELLY OPERT,PELead EngineerFire Testing and Analysis+17 years in fire protection engineering+Extensive experience in testing and evaluation and applied research+Large scale lithium-ion battery fire test expert.4|Copyright yyyy Jensen Hughes.All rights Two Perfor

6、mance Based Strategies1.Fire simulation2.Fire risk assessmentWhy performance based?1.No testing available 2.Limited testing available3.Code compliance challenges4.Specific request from authority having jurisdictionAbout this Presentation5|Copyright yyyy Jensen Hughes.All rights BESS Hazards A Review

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根据《2025海外储能火灾防护论坛》的资料,以下为全文关键点: 1. Jensen Hughes是全球最大的能源存储安全工程和科学公司,拥有1700多名员工,200多名储能安全工程师和科学家。 2. 储能系统(BESS)存在热失控风险,可能导致火灾或爆炸。 3. 热失控可能释放可燃和有毒气体,需要考虑爆炸控制、通风和疏散。 4. 爆炸预防设计需符合NFPA 69标准,爆炸保护设计需符合NFPA 68标准。 5. 通过计算流体动力学(CFD)分析,可以设计机械通风系统,满足NFPA 69标准。 6. 通过爆炸模拟,可以评估爆炸保护系统的性能,满足NFPA 68标准。 7. 风险评估模型可以帮助识别尾部风险,并指导决策过程。 8. 风险评估过程应考虑频率、后果和缓解策略。 9. 风险评估结果应进行沟通和监测,以确保风险水平在可接受范围内。
风险如何评估?" 模拟揭秘!" 基于性能的策略!"
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