【24h】

Learning from Incidents - Oily Water Drainage System

机译:从事故中学习 - 油性排水系统

获取原文

摘要

Among the various drainages in oil and gas plant, oily water drainage system is critical with high risk considering its hydro carbon content and accumulation of explosive vapours due to improper functioning of any components in the system. This paper presents some of the shortcomings in the design/arrangement/ maintenance of the different elements, learnings from an explosion incident and the improvements to avoid accidents. The drainage systems in ADNOC Gas Processing plants are Clean Water Sewer, Sanitary Sewer, Oily Water Sewer (Accidentally Oil Contaminated / Continuously Oil Contaminated) and Chemical Drains. One of the unforeseen hazards has caused an explosion in an existing oily water sump inside the process area. The sump was of concrete construction and the cover slab was blown up resulting in considerable damages to the surrounding pipes/support. There was no injuries to personal. The root cause analysis of the incident was done and a study carried out for a safety review of oily water drainage system at all plants. A study was carried out to identify possible hazards/design deficiencies of the oily water drainage facilities and recommend rectification measures. The study identified that the lines are placed in slope & mainly "run dry" after use, liquid seal not available in some manholes causing HC vapour upstream movement, the manholes/sumps are closed, vent pipes size is small and some are blocked. These lead to accumulation/formation of hydrocarbon mixture inside closed sump, ignition by overheating of the pump installed over the pit and subsequent explosion. Recommendations for existing system include regular flushing of the lines with water to ensure transport of oily effluent & maintain liquid seal, regular removal of the floating hydrocarbon liquid from pits using vacuum truck, open up the manholes and use grating covers, provide self-skimming bucket where feasible, etc. Additionally, for new facilities it is recommended to lay the pipes horizontally to ensure liquid seal, provide turn-up elbows to reduce hydrocarbons accumulation in manholes, provide oil skimming/baffle wall in oil/water sumps, use classified equipment, carryout proper maintenance, etc. The sump was reconstructed with the new design, which is now functioning well and the recommendations are being implemented in existing facilities and in all new projects. The proposed improvements for the existing system as well as adopting the recommendations in future new drainage system can ensure the prevention of possible explosions and thereby reducing the related hazards to plant facilities/operations. Sharing of the related information among others having similar facilities increases the awareness about such unseen sources of incidents in a drainage system and related pro-active mitigating measures.
机译:在石油和天然气植物的各种排水中,由于系统中任何组成部分的不正常运作,油性排水系统对于其水碳含量和爆炸性蒸汽的积累是至高的风险。本文介绍了不同元素的设计/安排/维护中的一些缺点,从爆炸事件的学习以及避免事故的改进。 Adnoc天然气加工厂的排水系统是清洁水下水道,卫生下水道,油性水下水道(意外油污染/连续污染)和化学排水管。其中一个不可预见的危险导致过程区域内存的现有油性水槽中的爆炸。贮槽是混凝土的结构,盖板被吹过,导致周围管道/支撑的相当大的损坏。个人没有伤害。该事件的根本原因分析已完成,并对所有植物进行油性排水系统的安全审查进行了一项研究。进行了一项研究,以确定油性排水设施可能的危险/设计缺陷,并建议改革措施。该研究确定,在使用后,这些线条置于斜坡和主要“运行干燥”,在某些沙井中不可用的液体密封,导致HC蒸汽上游运动,砂孔/块被关闭,排气管尺寸很小,有些被阻挡。这些导致在封闭的贮槽内积聚/形成烃混合物,通过安装在坑上的泵的过热点火和随后的爆炸。现有系统的建议包括用水定期冲洗线,以确保油性流出物和维持液体密封的运输,使用真空卡车定期从坑中取出漂浮的烃液,打开沙井并使用光栅盖,提供自撇渣的桶另外,在可行等的情况下,对于新的设施,建议水平铺设管道以确保液体密封,提供调节肘部,以减少碳泡菜中的碳氢化合物积聚,提供油/水块的油撇渣墙,使用分类设备,携带适当的维护等。用新的设计重建了Sump,它现在正在运作良好,并且在现有设施和所有新项目中正在实施建议。现有系统的提议改进以及在未来的新排水系统中采用建议可以确保防止可能的爆炸,从而减少了植物设施/操作的相关危害。在其他类似设施中分享相关信息,提高了对排水系统和相关的促进活动措施中这种看不见的事件源的认识。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号