首页> 外文会议>ASME international conference on ocean, offshore and arctic engineering >TEST FIRST RESULTS OF AN EOR WETTABILITY ALTERATION FOAM INJECTION TEST IN A NATURALLY FRACTURED RESERVOIR
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TEST FIRST RESULTS OF AN EOR WETTABILITY ALTERATION FOAM INJECTION TEST IN A NATURALLY FRACTURED RESERVOIR

机译:天然裂缝性储层中的可润湿性泡沫发泡注水试验及初步结果

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In mature fields, low oil production, increased gas production and water fractional flow of low pressure reservoir combined with the mobility ratio between the gas and oil feed contacts the w/o induced by the oil extraction process are accentuated in naturally fractured reservoirs (NFR) -. It is common N_2 injection for pressure maintenance and decline of oil production; however N_2 causes channeling towards producing wells. In various fields - NFR, closure of oil production by this mechanism loss value make unprofitable oil production and surface facilities for handling demanding high volume gas and / or water or gas production out of specification. In volumes estimated residual oil trapped in areas invaded by the gas cap and in areas of lower conductivity can be recovered if it has clearly identified enhanced recovery processes. Previous efforts to this work results showed potential benefits in terms of increased oil production and the significant reduction of Gas-Oil Ratio (GOR) and the technical and economic feasibility of using this type of process with surfactants developed specifically for the conditions of this area The technology tested and evaluated under methodological process is based on new supramolecular complexes wettability modifier, corrosion inhibitor and able to generate stable foams under high pressure, temperature and salinity, which penetrate and invade the channels of high conductivity formation cause decreased flow of gas by reducing gas mobility. The product in the liquid phase diffuses into the channels of lower conductivity which cannot penetrate the foam, and by spontaneous imbibition mechanism resulting from the change of wettability of the rock surface and reducing interfacial tension and favors an increase the oil recovery factor in naturally fractured reservoirs. The application of a methodological process allowed the parameters measurement and evaluation of test results, visualizing future opportunities for the new chemicals. This project was approved after evaluation from a process of allocation of federal funds. With the purpose of defining the further steps in the search for the chemicals stability and risk mitigation stages of industrial upgrading for the complexity the NFR, the following discussion is presented. In order to accelerate the knowledge of new technologies and its deployment on the field, PEMEX has diversified the efforts, to achieve the principal goals regarding new technologies. This will provide greater ability to assess best practices and technologies. To evaluate the efforts of companies a performance assessment model was designed and apply from 2008, which takes into account the integral complexity of each technology to attend the specific challenges from an Asset and to be fair in comparing the results obtained for the particular design of the test. The aim of this paper is to describe the results and the methodology used for developing the performance evaluation and identifying the new opportunities in the state of the art of these tests.
机译:在成熟油田中,天然裂缝性油藏(NFR)加剧了低产油量,低压储层的产气量增加和水分流增加以及天然气和原油进料接触之间的油分流率与采油过程引起的w / o的关系。 - N_2注入通常用于维持压力和降低产油量。但是,N_2会引导向生产井。在NFR的各个领域中,通过这种机制损失的价值来停止石油生产会使无利可图的石油生产和地表设施无法处理要求苛刻的大量天然气和/或水或天然气生产。如果能够清楚地确定提高采收率的方法,则可以回收被捕集在气帽侵入区域和电导率较低的区域中的残留油的估计数量。这项工作成果的先前努力表明,在增加石油产量和显着降低气油比(GOR)方面,以及将这种类型的工艺与专门针对该地区条件开发的表面活性剂一起使用的技术和经济可行性方面,都有潜在的好处。在方法学方法下进行测试和评估的技术基于新的超分子配合物润湿性改性剂,缓蚀剂,并能够在高压,高温和盐度下生成稳定的泡沫,这些泡沫会渗透并侵入高电导率形成的通道,从而通过减少气体而减少气体流量流动性。液相中的产物扩散到电导率较低的通道中,该通道无法穿透泡沫,并且由于岩石表面的润湿性变化和界面张力降低而通过自发吸收机制,有利于增加天然裂缝性油藏的采油率。方法学过程的应用允许对参数进行测量和测试结果评估,从而可视化了新化学品的未来机会。经过对联邦资金分配过程的评估后,该项目获得批准。为了确定在寻求针对NFR复杂性的工业升级的化学品稳定性和降低风险阶段中的进一步步骤,提出了以下讨论。为了增强对新技术的知识及其在现场的部署,PEMEX进行了各种努力,以实现有关新技术的主要目标。这将提供更大的能力来评估最佳实践和技术。为了评估公司的工作,从2008年开始设计并应用一种绩效评估模型,该模型考虑了每种技术的整体复杂性,以应对资产面临的特定挑战,并且公平地比较为特定设计而获得的结果。测试。本文的目的是描述结果和用于进行性能评估的方法,并确定这些测试的最新状态中的新机会。

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