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Applying Process Safety Time Concepts in Process Plant Applications

机译:应用过程安全时间概念在过程工厂应用中

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In order to be considered effective, a Safety Instrumented Function (SIF) must be able to sense when a failure has occurred, and respond quickly enough to mitigate the hazard in question. Most frequently, this detection involves sensing that a measured process variable has exited the normal control range. The Process Safety Time and the related allowable Response Time are calculated and are used to quantify constraints on the items that comprise safety system’s response. Due to the differences in the process variables measured, the technologies used to measure those variables, and system dynamics associated with different types of unit operations, multiple approaches must be utilized for determination of the Process Safety Times and allowable Response Times for SIFs. This paper examines three types of typical SIF’s, and provides guidance for determining the Process Safety Time and the allowable Response Time for each. The SIF types discussed include vessel liquid overfill protection, high pressure protection due to abnormal heat input or loss of condensing, and high temperature protection. These SIF’s provide the reader with examples using three different types of initiators (level, pressure, and temperature), one of which poses special challenges, as well as a variety of equipment types which results in different constraints on action completion times.
机译:为了被认为有效,安全仪表功能(SIF)必须能够感测到发生故障时,并且迅速响应以减轻有问题的危险。最常见的是,该检测涉及感测测量的过程变量离开了正常控制范围。计算安全时间和相关允许的禁用时间,并用于量化包括安全系统响应的项目​​的约束。由于测量的过程变量的差异,用于测量这些变量的技术,以及与不同类型的单元操作相关联的系统动态,必须用于确定SIFS的过程安全时间和允许响应时间。本文介绍了三种类型的典型SIF,并提供了确定过程安全时间和每个允许响应时间的指导。所讨论的SIF类型包括血管液体溢出保护,由于热输入异常或冷凝的损失以及高温保护而导致的高压保护。这些SIF提供了使用三种不同类型的启动器(水平,压力和温度)的示例的读者,其中一个具有造成特殊挑战,以及各种设备类型,这导致了不同的动作完成时间。

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