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Fault-tree analysis for system design, development, modification, and verification

机译:故障树分析,用于系统设计,开发,修改和验证

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A methodology that uses fault-tree analysis (FTA) techniques to assess the weaknesses of a new chemical/process design at any time during system development is presented. FTA provides a cost-effective means of improving or verifying the reliability and efficiency of chemical/process design. It evaluates the consequences of conceivable failure to indicate where improvements are justified. FTA techniques were used to model the failure modes of an existing control-room heating, ventilation, and air-conditioning (HVAC) system of a large production facility. The fault-tree reduction revealed 129 single-, 434 double-, and 442 triple-failure combinations, any of which could cause system failure. Single failures and double failures consisting of an equipment malfunction and an operator failure error were targeted for design and/or procedural modifications. These modifications were then incorporated into the operating system design to enhance system availability. In an iterative fashion, FTA techniques were reapplied to the modified design and used to verify the adequacy of the proposed revisions prior to implementation. This resulted in a thorough review of system vulnerabilities and a clear understanding of how to correct them.
机译:提出了一种使用故障树分析(FTA)技术评估系统开发过程中任何时候新化学/工艺设计的弱点的方法。 FTA提供了一种经济有效的方法来改善或验证化学/工艺设计的可靠性和效率。它评估可能发生的失败的后果,以指出改进的合理性。 FTA技术用于对大型生产设施的现有控制室供暖,通风和空调(HVAC)系统的故障模式进行建模。故障树的减少显示出129次单故障,434次双故障和442次三重故障组合,其中任何一种都可能导致系统故障。设计和/或程序修改的目标是由设备故障和操作员故障错误组成的单故障和双故障。然后将这些修改合并到操作系统设计中,以增强系统可用性。 FTA技术以迭代方式重新应用于经过修改的设计,并用于在实施之前验证提议的修订的适当性。这样就对系统漏洞进行了彻底的审查,并对如何纠正这些漏洞有了清晰的了解。

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