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所在平台: Udemy |
课程主页: https://www.udemy.com/course/hazid-fire-explosion-risk-hse-case/
课程评论:没有评论
**课程名称:HAZID、火灾、爆炸、风险与 HSE 案例** **课程概述:** 本在线课程旨在帮助学员掌握以下关键技能: * **合规性:** 满足所有适用的健康、安全和环境法规,以开发 HSE 案例。 * **风险识别与评估:** 识别所有潜在的危险,并评估其后果的严重性和发生的可能性。 * **风险控制与缓解:** 制定预防、控制和缓解措施,以消除或最小化对人员、资产和环境的危害。 * **风险最小化:** 将与工厂运行相关的风险降低到“合理可行范围内最低”(As Low As Reasonably Practicable - ALARP)的水平,并符合项目风险可接受标准。 **课程内容涵盖:** * **HAZID 方法论与参考条款:** 作为风险评估的输入。 * **失效案例定义:** 基于紧急关断阀(ESDVs)和安全泄放阀(SDVs)识别可隔离的工艺流程段。 * **火灾与爆炸后果建模:** 包括泄露位置、方向、物料特性、泄放率及风的特性等因素,利用扩散模拟确定实际的潜在易燃云尺寸,并进行爆炸模拟。 * **初步风险评估 (PRA):** 基于公司风险矩阵。 * **详细风险评估 (DRA):** 基于公司风险矩阵。 * **定量风险评估 (QRA):** 定义独立事故重现期(IRRA)、潜在人员死亡数(PLL)和 F-N 曲线。 * **风险降低研讨会 (RRW):** 讨论并制定风险降低方案。 * **ALARP 演示:** 展示如何将风险降低到合理可行范围内最低。 * **HSE 案例开发:** 学习如何构建完整的 HSE 案例。 * **SIMOP 危险识别:** 识别同时进行的操作(SIMOP)中的危险。 课程将深入讨论扩散模拟,以确定用于后续爆炸模拟的真实潜在易燃云尺寸。需要研究的扩散模拟场景将基于对现有失效案例的审查和火灾与爆炸后果建模中新增的失效案例。
The objective of this E-Course is:· Compliance with all applicable Health, Safety and Environmental for development of HSE case· Identify all potential hazards and assess their consequences and probabilities· Develop prevention, control and mitigation measures to eliminate or minimize hazards to people, asset and environment· Minimize the risk associated with operation of the plant by reducing risk to a level which i s "As Low As Reasonably Practicable" in compliance with project risk acceptance criteriaThe Following subjects will be discussed:· HAZID methodology and Terms of Reference as an input to Risk Assessment· Failure cases definition' which shall identify isolatable process sections based on ESDVs, SDVs.· Fire & Explosion consequence modelling· Preliminary Risk Assessment (PRA) based on COMPANY Risk Matrix· Detailed Risk Assessment (DRA) Based on COMPANY Risk matrix· Quantitative Risk Assessment (QRA) to define IRRA and PLL and FN curves· Risk Reduction Workshop (RRW)· ALARP demonstration· HSE Case development· SIMOP hazard identification Dispersion simulations will be discussed to determine realistic potential flammable cloud sizes for the subsequent explosion simulations considering the leak location and direction, the stream characteristics, the leak rate and the wind characteristics. Scenarios to be studied for dispersion simulation shall be based on the review of the existing failure cases and the new failure cases as part of the Fire & Explosion consequence modelling.