NGL列车乙烷回收与排放的程序自动化

Subhendu Sengupta, Vincent Goveas
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引用次数: 0

摘要

本文基于使用横河Exapilot软件成功实施乙烷(C2)回收-拒绝模式改变的程序自动化,其中ADNONC气体处理Habshan 5和硫磺管理部门基于硫磺回收装置启动/关闭程序自动化的类似成功和公司对数字化的推动批准了实施。范围是使用M/s Yokogawa Exapilot软件开发NGL装置中自动化C2恢复/拒绝转换程序的模块。这些自动化程序旨在通过将操作知识和经验丰富的熟练操作员的专业知识整合到Exapilot系统中,作为一套标准操作程序(sop),以正确的操作顺序执行,以提高操作效率,从而使上述操作模式的变化标准化。使用Exapilot设计、设计和构建了两个主要程序和相关模块,可以实现NGL装置的一键切换自动化。通过操作验证,部署在Exapilot服务器上,并与操作员控制台(HIS)集成,以进行访问,并辅以操作员培训。除了标准化和减少随时间的变化外,通过提倡系统操作,该方法还提高了NGL分段设备的关键资产完整性和使用寿命。本项目的主要收获如下:(一)规范模式转换流程,将纸质文档流程数字化为电子工作流程,最大限度地减少人为错误。像Exapilot这样的程序自动化是批量/离散操作(如单元/设备启动/关闭或等级/模式转换)数字化转换的强大工具。减少手动切换造成的固有延迟。因此,最大限度地减少了损失机会和运营成本。此外,该工具还可以作为培训工具(在离线模式下使用时),有助于操作人员的继任计划和有效的知识传递。因此,使用Exapilot的程序自动化可以提高操作效率、资产完整性、设备或材料寿命。本文介绍了批量操作程序自动化的成功案例,延续了SRU启动和关闭自动化的类似成功。该工具以及与DCS的适当集成工作,不仅在ADNOC天然气处理和其他ADNOC集团公司的其他站点,而且在其他行业,帮助公司提高效率并实现数字化之旅,为连续过程中的批量操作自动化/数字化打开了大门。虽然Exapilot软件属于横河M/s,但其他DCS系统也有类似的软件,如霍尼韦尔DCS EPKS有E-procedure程序自动化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Procedural Automation of Ethane Recovery to Rejection in NGL Trains
This paper is based on successful implementation of procedural automation of Ethane (C2) recovery - rejection mode change using Yokogawa's Exapilot software, wherein ADNONC Gas Processing Habshan 5 & Sulphur management approved the implementation based on similar success of the Sulphur Recover Unit start-up/shutdown procedural automation & company's drive for digitalisation. Scope was to develop modules for automating C2 Recovery /Rejection change over procedure in NGL unit using M/s Yokogawa Exapilot software. These automated procedures aimed to standardize said mode change over operations by incorporating the operating know how and the expertise of skilled-experienced operators into the Exapilot system as a set of Standard Operating Procedures (SOPs) that are executed in right operating sequence for enhanced operating efficiency. Two main procedures & associated modules were designed, engineered and built using Exapilot to enable single-click change over automation for NGL units. Those were validated with operation and deployed in the Exapilot Server and were integrated with the Operator Consoles (HIS) for access, and was supplemented with operator training. Ethane Recovery to Rejection Mode Change Ethane Rejection to Recovery Mode Change Besides standardization and reduced change over time, this improved the critical asset integrity and lifespan of NGL section equipment by advocating systematic operations. Following benefits including major take away from this project: ➢ Standardized the mode change-over procedures & minimized human error by the digitalization of paper documentation procedures into electronic workflow process. Procedural Automation like Exapilot is powerful tool for digital transformation of batch/discrete operation like unit/equipment start-up/shutdown or grade/mode change over. ➢ Reduced inherent delay due to manual change over. Hence, minimizing the loss-opportunities & operating cost. Besides this tool can be used as training tool (when used in offline mode) which help operator succession plan & effective knowledge transfer ➢ Automated critical operation such as temperature/flow ramping, improved equipment integrity and prolonged equipment life. Procedural Automation using Exapilot thus can improve operation efficiency, asset integrity, equipment or material life span This paper presents a success story of procedural automation of batch operation in continuation of similar success in SRU start-up & shutdown automation. This tool along with proper integration work with DCS, has opened door for automation/digitalization in batch operation in continuous process not only in other sites of ADNOC Gas Processing and other ADNOC Group Companies but also in other industries that helps companies to enhance efficiency and fulfil their digitalization journey. Though Exapilot software belongs to M/s Yokogawa, however other DCS systems have similar software such as Honeywell DCS EPKS has E-procedure for procedural automation.
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