增强恢复

EOR 作业-2024

有关环境可持续性的国际协议和国家政策正在改变全球提高石油采收率的前景。全球石油公司在资金和智力方面的投入凸显了这些变化。

JPT_2024-11_EORFocus.jpg

有关环境可持续性的国际协议和国家政策正在改变全球提高石油采收率 (EOR) 的前景。全球石油公司在资金和智力方面的投入凸显了这些变化。

沙特阿美已承诺向可持续技术投入 15 亿美元。实际上,沙特阿美 EXPEC 高级研究中心的成员与法赫德国王石油和矿产大学合作开发可持续表面活性剂,用于高温、高压和高盐度碳酸盐储层。他们不使用或仅使用绿色溶剂来生产具有生物降解潜力的可溶、稳定表面活性剂。

在哥伦比亚,哥伦比亚国家石油公司致力于到 2030 年将二氧化碳排放量减少 25%。作为其努力的一部分,该公司一直在优化 Chichimene 重油田的聚合物注入。通过估算生命周期温室气体排放量和能源消耗,该公司能够证明聚合物注入及其相关的碳强度降低可以防止 3,200 吨二氧化碳当量的排放

为了遵守英国的《北海过渡协议》,该协议要求到 2030 年将海上石油和天然气排放量减少 50%,伊萨卡能源和挪威能源研究公司正在使用生命周期评估来指导更高效的重油开采。通过使用低剂量聚合物注入,而不是热能 EOR 等替代方案,它能够增加能量,同时将二氧化碳排放量减少35 %。

在这些研究中,我们已经看到了能源转型的影响,因为公司放弃了传统上有效但对环境负担较大的 EOR 方法,例如蒸汽注入和新型聚合物,这些聚合物表现出同等甚至更高的效率,同时降低了环境成本。随着我们进一步推进监管和创新,值得关注的是,聚合物、纳米流体甚至人工智能等新兴技术的发展如何帮助生产商满足经济和环境标准,以维持盈利油田。

本月的技术论文

本地生产的可持续且有弹性的表面活性剂可提高石油采收率

哥伦比亚油田聚合物注入试验表明碳足迹减少

聚合物驱减少北海的排放和能源消耗

推荐阅读

SPE 218653 共注 EOR 技术可提高采收率并减少温室气体排放, 作者:G. Wasylchuk,GERI

SPE 218690 利用可再生能源产生蒸汽——提高石油采收率应用的综合方法, 作者:Mustafa Al Ajmi,阿曼石油开发公司等。

SPE 218962 通过关注运营效率实现阿布扎比油田产量达百万桶, 作者:阿布扎比国家石油公司的 Masud J. Akhtar 等人

Elizabeth Barsotti, SPE,是医学研究委员会分子生物学实验室神经生物学部门的职业发展研究员;剑桥大学生理学、发育和神经科学系的客座科学家;剑桥大学克莱尔霍尔学院的附属博士后。她拥有怀俄明大学石油工程博士学位,在校期间研究了超致密油藏中的流体相行为和界面现象。Barsotti 的专业知识包括非常规油藏、提高采收率以及碳捕获和储存。她担任SPE 油藏评估与工程副主编和JPT编辑评审委员会成员。

原文链接/JPT
Enhanced recovery

EOR Operations-2024

International agreements and national policies on environmental sustainability are changing the outlook for enhanced oil recovery globally. These changes are highlighted by both monetary and intellectual commitments by oil companies around the world.

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International agreements and national policies on environmental sustainability are changing the outlook for enhanced oil recovery (EOR) globally. These changes are highlighted by both monetary and intellectual commitments by oil companies around the world.

Saudi Aramco has pledged $1.5 billion toward sustainable technology. In practice, members of Aramco’s EXPEC Advanced Research Center have collaborated with King Fahd University of Petroleum and Minerals to develop sustainable surfactants for use in high-temperature, high-pressure, and high-salinity carbonate reservoirs. They used no or only green solvents to produce soluble, stable surfactants with the potential for biodegradability.

In Colombia, Ecopetrol is committed to reducing CO2 emission by 25% by 2030. As part of its efforts, it has been optimizing polymer injection in Chichimene, a heavy-oil field. By estimating life cycle greenhouse-gas emissions and energy consumption, it was able to show that polymer injection and its associated carbon intensity reduction could prevent the emission of 3,200 tons CO2 equivalent.

To comply with the UK’s North Sea Transition Deal, which mandates a 50% reduction in offshore oil and gas emissions by 2030, Ithaca Energy and Energy Research Norway is using life-cycle assessment to guide more efficient heavy-oil recovery. By using low-dose polymer injection, instead of alternatives such as thermal EOR, it was able to increase exergy while also reducing CO2 emissions by 35%.

In these studies, we already see the effect of the energy transition as companies turn away from traditionally effective but environmentally burdensome EOR methods such as steam injection and new polymers that show equal, if not greater, effectiveness with a reduced environmental cost. As we move forward with further regulation and innovation, it will be interesting to see how emerging technological developments in polymers, nanofluids, and even artificial intelligence can help producers meet both the economic and environmental criteria to maintain profitable fields.

This Month’s Technical Papers

Locally Produced Sustainable and Resilient Surfactants for Enhanced Oil Recovery

Polymer-Injection Pilot in Colombian Field Indicates Reduced Carbon Footprint

Polymer Flooding Reduces Emissions and Energy Consumption in the North Sea

Recommended Additional Reading

SPE 218653 Coinjection EOR Technology Increases Recovery and Reduces Greenhouse-Gas Emissions by G. Wasylchuk, GERI

SPE 218690 Steam Generation Using Renewables Energy—An Integrated Approach for Enhanced Oil Recovery Applications by Mustafa Al Ajmi, Petroleum Development Oman, et al.

SPE 218962 Reaching a Million Barrels in an Abu Dhabi Field by Focusing on Operations Efficiency by Masud J. Akhtar, Abu Dhabi National Oil Company, et al.

Elizabeth Barsotti, SPE, is a career development fellow in the Neurobiology Division at the Medical Research Council Laboratory of Molecular Biology; a visiting scientist in the Department of Physiology, Development, and Neuroscience at the University of Cambridge; and an affiliated postdoc at Clare Hall College at the University of Cambridge. She holds a PhD degree in petroleum engineering from the University of Wyoming, where she investigated fluid phase behavior and interfacial phenomena in ultratight reservoirs. Barsotti’s expertise includes unconventionals, enhanced oil recovery, and carbon capture and storage. She serves as an associate editor for SPE Reservoir Evaluation & Engineering and on the JPT Editorial Review Board.