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Feasibility Analysis and Field Application of Waste Oily Sludge Resource Utilization Technology in Oilfield

机译:油田废油性污泥资源利用技术的可行性分析与现场应用

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Oily sludge is one of the main wastes produced during oilfield development. The composition of oily sludge is complex, resulting in difficult separation and high processing cost. The existing technologies such as landfill, microbiological deterioration, heat treatment and solvent extraction are difficult to meet the needs of oily sludge treatment. It is necessary to develop a highly efficient and cheap reutilization technology for oily sludge. For this reason, we have proposed to recycle the oily sludge which can be utilized to profile control in water injection and thermal recovery wells. In the process of research, we have developed five aspects of work: First, three-phase separation of oily sludge was carried out by distillation, and water quality, oil-phase composition and solid particle size were analyzed. The compatibility of oily sludge and oil reservoir was investigated. Second, the mechanism and influence factors of the oily sludge for profile control were studied by long core model test and microscope observation. Third, suspension analysis and mobility analysis were developed on oily sludge, and experimental results were used to research oily sludge profile control agent. Fourth, numerical simulation was used to optimize the engineering design of Oily Sludge Profile Control (OSPC). Fifth, ground process flow of oily sludge for profile control was designed. The following conclusion can be drawn from the study: OSPC is a Reutilization Technology for oily sludge, which could seal up oily sludge in-situ in oil reservoir and be favorable for increasing production of oil wells through profile control. Through the rheology and plugging test, it was clear that OSPC could greatly reduce the pollution risk of oily sludge and the ground treatment cost, and solid phase and oil phase of mud were retained in the formation. It could plug high permeability channels and high permeability area (the plugging rate was more than 90%) to adjust water/steam injection profile of water/thermal recovery wells. Profile control agent, engineering design method and ground process flow for oily sludge were developed. The technology applied 72 wells in the oilfield, 184 thousand tons of oily sludge were used in total, production of crude oil was increased by 84 thousand barrels, and a lot of sludge treatment costs could be saved.
机译:油性污泥是油田开发期间生产的主要废物之一。油性污泥的组成是复杂的,导致困难的分离和高处理成本。垃圾填埋场,微生物劣化,热处理和溶剂萃取等现有技术难以满足油性污泥处理的需求。有必要为油性污泥开发一种高效和廉价的再利用技术。因此,我们提出回收油性污泥,其可用于在注水和热回收井中进行剖面控制。在研究过程中,我们开发了五个方面的工作:首先,通过蒸馏进行三相分离油污泥,分析水质,油相组成和固体粒度。研究了油性污泥和油藏的相容性。其次,通过长核模型试验和显微镜观察研究了型材控制的油性污泥的机制和影响因素。第三,在油性污泥上开发了悬浮液分析和迁移率分析,并使用实验结果研究油性污泥型控制剂。第四,使用数值模拟来优化油性污泥轮廓控制(OSPC)的工程设计。第五,设计了对型材控制的油性污泥的地面流程。以下结论可以从研究中提取:OSPC是一种用于油性污泥的再利用技术,可以通过轮廓储存器中的油性污泥原位密封,并通过轮廓控制增加油井的生产。通过流变和堵塞试验,很明显,OSPC可以大大降低油性污泥的污染风险以及地面处理成本,并且在地层中保留了泥浆的固相和油阶段。它可以插入高渗透通道和高渗透面积(堵漏速率超过90%),以调整水/热回收井的水/蒸汽喷射轮廓。开发了型材控制剂,工程设计方法和油性污泥的研磨流程。该技术在油田中施加了72孔,总共使用18.4万吨油性污泥,生产原油的生产增加了8.4万桶,并且可以节省大量的污泥处理成本。

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