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Integrated Process Safety and Control in Pigging Operations-A Case Study on Smart Keyless System

机译:集成过程中的综合过程安全性和控制 - 一种智能无钥匙系统的案例研究

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Pigging Operation is high risk activity in-terms of process safety.Pigging can be safely initiated only when safe operating conditions are maintained at both ends of pipeline.Pigging involves human intervention and thus increasing personnel risk.Deploying smart,keyless system solutions on this fully manual operation for control and safety will definitely enhance safety level.NPCC presents their design and implementation experiences of smart keyless system for pigging on a recent offshore project.Pigging involves sequential steps and imposes safety risks due to possibility of manual errors;since,significant number of steps and checks involved.High pressure,flammable/toxic gas release may leads to Catastrophic Personal,Asset and Environmental damages.Traditionally,mechanical key interlocking mechanism or similar mechanical safety interlocks deployed,which has inherent deficiencies like mechanical failures,key loss,minimum intelligence/operator guidance.Ultimate aim is to ensure no pressure/toxic gas inside pig-trap when opened for inserting/removal of pig-tool.Implementing smart keyless system with safety interlocks overcomes the shortfall of existing system with reliability.Safe methodology ensured through Risk based Assessment.Pipeline pigging is required mainly to maintain pipeline efficiency,avoids potential flow-assurance issues and helps in corrosion control/integrity.The key design parameters are:1.MOV configuration:As the operation involves a number of MOVs(around 13 MOVs per Scrapper),a 2-wire digital loop was considered with hardwired permissive signal at suitable steps.2.Control System configuration:Entire operation is guided by Graphics in local field-mounted HMI involving sequential logic check as well as operator acknowledgement before proceeding to next predefined step.The position status of MOVs and Pressure conditions are used in the system logic for authorization to proceed to next step.3.Safety Interlock configuration:Safety critical checks implemented as hardwired permissive signals for MOV operation.Interlock prevents operation of MOVs,both from Local and Remote unless the safety conditions are met.Although Pigging is a safety critical sequential process,this smart,keyless,system based sequential Pigging not only resulted in significantly safer operation,provides operator guidance and eliminates error/negligence.This smart keyless system successfully designed,implemented and tested(FAT,IFAT & SAT)and currently in operation with Client's satisfaction.Automatic logging of pigging operation and reporting are available.Smart keyless system based interlocks is the integral part of this novel solution and allows the high-risk pigging process to be performed safely with added convenience and security of an electronically integrated system.This paper intends to present a case study based on actual project,highlighting design challenges and experience gained during execution as well as providing HSE benefits to all stakeholders in the upstream hydrocarbon industry.
机译:流程操作是过程安全性的高风险活动。只有在管道两端维护安全操作条件时,才能安全启动.pigging涉及人为干预,从而增加人员风险。将智能,无钥匙系统解决方案提高到完全控制和安全的手动操作肯定会增强安全水平.NPCC介绍了智能无钥匙系统的设计和实施经验,用于近期离岸项目的智能无钥匙系统.Pigging涉及顺序步骤,并且由于手动错误的可能性而施加安全风险;因为,从而大量涉及的步骤和检查。高压,易燃/有毒气体释放可能导致灾难性的个人,资产和环境损害。部署的机械钥匙互锁机制或类似的机械安全联锁,具有固有的机械故障,关键损失,密钥损失,最小损失等固有的缺陷智力/运营商指导。渐次目标是确保没有压力在猪陷阱内部进行RE /毒性气体,用于插入/移除猪工具。使用安全联锁的智能无钥匙系统克服了具有可靠性的现有系统的不足。通过基于风险的评估确保了安全性方法。主要需要维护管道效率,避免潜在的流量保证问题,并有助于腐蚀控制/完整性。关键设计参数是:1.Mov配置:由于操作涉及许多MOV(每次刮擦约13°移动),即2线数字循环被考虑在合适的步骤中使用硬连线允许信号.2.control系统配置:整个操作在涉及顺序逻辑检查以及运算符确认之前,通过图形引导到下一个预定义步骤之前。移动的位置状态和系统逻辑中使用压力条件进行授权进行下一步.3.Safety联锁配置:安全关键检查Impliment作为MOV操作的硬连线允许信号。接口阻止MOV的操作,除非符合安全条件,否则除非进行安全条件,否则这是一种安全的临界顺序过程,这种智能,无钥匙,系统的顺序流量不仅显着导致更安全的操作,提供操作员指导并消除错误/疏忽。这是智能无钥匙系统,成功设计,实现和测试(FAT,IFAT&SAT),目前正在使用客户端的满意度。可用的自动记录流动操作和报告.Smart无钥匙系统基于互锁的互锁是本新型解决方案的组成部分,允许安全地进行高危流程,以安全的便利和安全性地进行电子整合系统。本文打算以实际项目为例,突出设计挑战和突出设计挑战在执行期间获得的经验,以及为您的所有利益相关者提供HSE福利Pstream碳氢化合物产业。

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