Maximizing Stimulation Efficiencies in Offshore Multistage Completions, Black Sea, Romania

G. Grubac, J. Conrad, P. Janiczek, Dragomir Alexandru, Sean Mcgarvey
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Abstract

This paper presents an analysis of the stimulation treatment design and operational efficiencies in the Black Sea. In greater detail, the paper focuses on how the stimulation design and each operational step has been optimized to save time, money and ensure an HSE driven completion methodology. An analysis was performed on the stimulation design and implementation approach looking at its evolution through a knowledge building and lesson learning process. The principal goal was to determine the most economical way to stimulate an offshore well without making any concessions to the reservoirs’ production or ultimate recovery. From the basics of well and frac design to completion optimization, effort was applied in analyzing ball launching procedures, frac spacing, logistical arrangements on the stimulation vessel and all other areas where there was potential to make improvements. Ultimately, an analysis of fluid displacements during flush was performed and deductions inferred. Past stimulation treatments were analyzed in an effort of better understanding the advantages and disadvantages in terms of production output of the wells. Similarly, an analysis of the completion approach and operational efficiencies showed the ability of pumping three stimulation stages a day. Considering that horizontal wells in the area are usually completed in six stages, a stimulation campaign would effectively be completed in 2 pumping days, 4 days total if no weather or operational delays are faced. Further improvements of this approach have been implemented in 2021 when six stimulation stages have been pumped in a single vessel ride. Applying the ball drop procedure offshore showed optimal results, as it is efficient in reducing downtime in between fracturing stages and in achieving proper isolation between stimulation zones. Likewise, with over flush being a concern throughout most of the stimulation population, certain cases in the Black Sea showed that over flushing did not adversely affect production of the wells with the production exhibiting ~15% above expected production rates post stimulation. In conclusion, the authors believe that the operational efficiencies achieved in the Black Sea are transposable in other offshore environments and successful cost cutting can be achieved by sound engineering and logistical decisions. The approach and results are beneficial in understanding where the economics are positively impacted in multistage stimulation treatments in the offshore environments, hence ultimately improving the rate of return.
罗马尼亚黑海海上多级完井增产效率最大化
本文分析了黑海地区的增产处理设计和作业效率。详细介绍了如何优化增产设计和每个操作步骤,以节省时间和金钱,并确保以HSE为导向的完井方法。通过知识积累和经验学习过程,对增产设计和实施方法进行了分析。其主要目标是在不影响储层产量或最终采收率的前提下,确定最经济的增产方式。从基本的井和压裂设计到完井优化,研究人员分析了投球程序、压裂间距、增产船的后勤安排以及所有其他有可能改进的地方。最后,对冲洗过程中的流体位移进行了分析,并进行了推断。对过去的增产措施进行了分析,以便更好地了解这些增产措施在油井产量方面的优缺点。同样,对完井方法和作业效率的分析表明,每天可以泵送三段增产作业。考虑到该地区的水平井通常分六个阶段完成,如果没有天气或操作延迟,一次增产作业将在2天内完成,总共4天。2021年,该方法得到了进一步的改进,一次作业就完成了6个增产阶段。在海上应用投球技术取得了最佳效果,因为它有效地减少了压裂段之间的停机时间,并在增产层之间实现了适当的隔离。同样,在大多数增产作业中,过度冲洗都是一个问题,但黑海的某些案例表明,过度冲洗并未对油井的生产产生不利影响,增产后的产量比预期高出15%左右。总之,作者认为,在黑海取得的作业效率可以在其他海上环境中进行转换,并且通过合理的工程和后勤决策可以成功地降低成本。该方法和结果有助于了解海上环境中多级增产措施在哪些方面会对经济产生积极影响,从而最终提高回报率。
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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