二氧化碳泡沫压裂的成功应用实现了北科威特侏罗纪枯竭储层激励战略的范式转变

Mohamed Abdel, Slb Kholoud Al-Mefleh, Danah Al-Muhanna, E. Fidan, Z. Abdul-Samad, Y. Al-salali, Ayo Ajayi
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引用次数: 0

摘要

科威特石油公司(KOC)历史上首次采用二氧化碳泡沫压裂新技术,并于 2021 年底完美实施。共进行了三次处理。事实证明,二氧化碳泡沫压裂技术在提高深层枯竭致密碳酸盐岩侏罗系储层的生产率、增强回流、减少水消耗和碳排放、实现早期生产以及提高作业效率和节约成本方面具有显著的附加值。初步结果显示,与抵消井相比,产量提高了 50-70% 以上。在枯竭储层中进行酸性压裂增产的主要挑战是,需要通过延长氮气举升时间对地层进行清理,使注入的流体回流,从而增加了运营成本和干预操作。因此,必须使用高能泡沫效率压裂液来帮助回流,并从储层中回收泵出的压裂液。为了应对这些挑战,二氧化碳与普通压裂液一起作为高能液相泵送。由于二氧化碳呈液态,因此泡沫效率高(40-50%),摩擦损耗低得多。因此,它可以实现高泵送压裂速度和高泡沫效率。二氧化碳泡沫压裂法的主要优点是:由于液态二氧化碳中储存的压缩气体膨胀,压裂清理效果更好;泡沫可控制流体损失;压裂传导性损害最小;泵送时静水压力增加,从而降低注入时的地表压力。选定的试验井位于北科威特侏罗纪气田的枯竭深层致密碳酸盐岩储层区。执行酸压裂作业需要从 2021 年第一季度开始进行严密规划。由于受 COVID-19 大流行病的限制,多方面作业面临着后勤问题、基础设施和二氧化碳资源缺乏等诸多挑战。通过整合技术和运营团队,弥合知识差距,安全执行作业,提前应对了这些挑战。据估计,与偏置井相比,试验井的净增产率为 50-70%,在减少油井干预的情况下,提高了回流和地层清理效果。由此节省的时间和成本,以及增产的油井和更高的作业效率,都证实了泡沫酸压裂方法具有很高的前景。另外两口二氧化碳泡沫酸压裂井也取得了良好的效果。本文将展示二氧化碳泡沫压裂在枯竭储层中的价值,以及科威特石油公司首次应用后的经验和在科威特石油公司不同油田推广应用二氧化碳泡沫压裂的计划。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Successful Application of Co2 Foam Fracturing Enables Paradigm Shift in Stimulation Strategy of North Kuwait Jurassic Depleted Reservoirs
The first ever CO2 foam fracturing new technology in Kuwait Oil Company (KOC) history was executed flawlessly in late 2021. Three treatments were executed. Co2 Foam Fracturing proved its significant added value of improving productivity in deep depleted tight carbonate Jurassic reservoirs, enhance flow back, reduce water consumption and carbon emission, and enable early production plus improving operation efficiency and cost saving. The stimulation operation has proven to be a huge success for all multidisciplinary teams involved as preliminary results showed over 50-70% production increase compared to offset wells. The main challenges of acid fracturing stimulation in depleted reservoirs are the need for extended formation cleanup to flow back the injected fluids via prolonging Nitrogen lift that add higher operational costs and intervention operations. Therefore, energetic high foam efficiency frac fluid becomes essential to assist flowback and retrieve pumped frac fluids from reservoir. To tackle these challenges, Carbon Dioxide CO2 is pumped in liquid phase as energetic fluid together with normal frac fluids. Due to CO2 liquid nature, high foam efficiency can be reached (40 – 50%) at much lower friction losses. So, it enables achieving pumping frac at high rates and high foam efficiency. The main benefits of CO2 Foam frac are better fracture cleanup due to expansion of the stored compressed gas in the liquid CO2, fluid loss control that is provided by foam, minimized fracture conductivity damage, and the increase in hydrostatic pressure while pumping that translates to lower surface pressures during injection. The selected pilot well is in depleted deep tight carbonate reservoir area of North Kuwait Jurassic gas fields. The executed acid fracturing operation required close planning starting from Q1-2021. Many challenges faced from logistical issues, lack of infrastructure and CO2 resources for the multi-faceted operation due to COVID-19 pandemic limitations. These challenges were tackled ahead with the integration of technical and operations teams to bridge the knowledge gap and to enable executing the operation safely. The pilot well’s net incremental production gain is estimated at 50-70% compared to offset wells, with improved flowback and formation cleanup with less well intervention. The resulting time and cost savings as well as the incremental well productivity and better operation efficiency confirmed high perspectives for the implemented foam acid fracturing approach. Another two CO2 Foam acid fracturing wells were executed with good results too. This paper will demonstrate the value of CO2 foam fracturing in depleted reservoir and KOC experience post first application and its plans to expand CO2 Foam Fracturing application across KOC different fields.
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