Application of Hazard and Operability Analysis (HAZOP) Method for Risk Analysis in CGS Station

R. Hokmabadi, A. Karimi
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Abstract

Background: The hazard and operability study (HAZOP) method is a risk assessment method based on engineering systems used for qualitative analysis or quantitative evaluation. It is mainly used to discover potential hazards and operational difficulties in the design and qualitative stages of chemical systems. The study aims to apply the HAZOP method in process and safety operations at gas depressurization station. Methods: This descriptive study was performed at CGS station. The station was divided into four principal nodes including: filter, heater, regulator, and odorize part. Required information for HAZOP worksheets were gathered by operational procedures, daily reports and interviews with engineers and operators working at the station. To determine the severity of consequences and probability of occurrence of scenarios that were predicted based on the risk matrix, the amount of risk was specified and the necessary suggestions were made in this regard. Results: According to this study, the operational indicators in the pressure reducing station process included pressure, flow, level and temperature. 22 main deviations and 50 causes of failures were identified. 5 deviations (23%) were in the low risk range (green area) and 17 (77%) were in the medium risk range (yellow area). Conclusions:  Causes and effects of deviations in operational parameters at four nodes in gas depressurization station were identified by HAZOP. Preventive actions were emphasized, such as consistent inspection of pipelines, preventive and timely maintenance and preparing a well-scheduled plan for inspecting the equipment in terms of corrosion, inspection, and design revision.
危险与可操作性分析(HAZOP)方法在CGS站风险分析中的应用
背景:危害与可操作性研究(HAZOP)方法是一种基于工程系统的风险评价方法,用于定性分析或定量评价。它主要用于发现化学系统在设计和定性阶段的潜在危险和操作困难。本研究旨在将HAZOP方法应用于减压站的过程和安全操作。方法:本描述性研究在CGS站进行。该站分为四个主要节点,包括:过滤器、加热器、调节器和除臭部分。通过操作程序、日常报告和对在该站工作的工程师和操作员的采访,收集了HAZOP工作表所需的信息。为了确定基于风险矩阵预测的情景的后果严重程度和发生概率,明确了风险的大小,并就此提出了必要的建议。结果:根据本研究,减压站过程中的运行指标包括压力、流量、液位和温度。确定了22个主要偏差和50个失效原因。5例(23%)处于低风险范围(绿色区域),17例(77%)处于中风险范围(黄色区域)。结论:通过HAZOP识别了减压站4个节点运行参数偏差的原因及影响。强调预防措施,如定期检查管道,预防和及时维修,制定良好的腐蚀检查计划,检查和设计修改等设备。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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