首页> 外文会议>SPE International Symposium and Exhibition on Formation Damage Control >Selectively Shutting Off Gas in Naturally Fractured Carbonate Reservoirs
【24h】

Selectively Shutting Off Gas in Naturally Fractured Carbonate Reservoirs

机译:在天然骨折的碳酸盐储层中选择性地关闭气体

获取原文

摘要

In the Mexico marine region, gas breakthrough is common in naturally fractured carbonate oil reservoirs. Increasing the gas production reduces crude oil production, and eventually the wells become uneconomic and are shut-in in spite of the remaining recoverable reserves. A typical example is the Akal field, a large fractured 300- to 1000-m thick carbonate reservoir whose permeability varies between 0.3 and 5 darcy. The gas-oil contact zone moves by as much as 8 m/month as the natural gas and nitrogen gas from gas injection moves through the natural fractures and invades the oil zone. This condition results in production decline, reservoir pressure decrease, and oil remaining in the matrix. Efforts to selectively shutoff the gas have been unsuccessful due to the low-reservoir pressure and high-permeability contrast. When pumping water-based fluids, the increased hydrostatic pressure causes the treating fluid to travel down the natural fractures and away from the gas cap. This condition led to abandoning the gas-invaded intervals and recompleting lower in the reservoir, leaving some recoverable reserves. To selectively shutoff gas entry in fractured reservoirs, a stable foam-delayed crosslinked fluid was proposed for use by service company. The fluid with a high-foam quality (FQ) and low density rides over the crude and into the natural fractures/fissures, communicating with the gas cap. Once set, the fluid creates an impermeable seal with high-extrusion resistance. The stable foamed fluid has been successfully used to selectively shutoff unwanted gas production in wells that have been, in some cases, shut-in for several years due to excessively high gas/oil ratios (GOR). Following the treatment, the oil production was restored to the same level as prior to the gas breakthrough. The success of the initial campaign demonstrated that it is possible to restore the production levels of shut-in wells and recover otherwise lost reserves. This result has a very significant positive impact on the economics of operating the field. The current plan is to extend the use of the technique to other fields.
机译:在墨西哥海洋地区,天然气突破在天然碎裂的碳酸盐油藏中常见。增加气体产量降低了原油生产,最终井中变得不经济,并且尽管剩余可收回的储备,但仍被关闭。典型的例子是Akal场,一个大的断裂300至1000-m厚的碳酸盐储层,其渗透率在0.3和5达到之间变化。随着来自气体注入的天然气和氮气通过自然骨折,气体油接触区移动多达8米/月的移动,并侵入油区。这种条件导致生产下降,储层压力降低和留在基质中的油。由于低储层压力和高渗透率对比,选择性地关闭气体的努力已经不成功。当泵送水基流体时,增加的静压压力会导致处理流体从天然骨折和远离气体盖行驶。这种情况导致放弃储层中的气体入侵间隔和重新完成,留下一些可恢复的储备。为了在裂缝储存器中选择性地关闭气体进入,提出了一种稳定的泡沫延迟交联流体以供服务公司使用。具有高泡沫质量(FQ)和低密度的流体乘以原油和天然骨折/裂缝,与气体盖连通。一旦设定,流体产生具有高挤压性的不透水密封件。稳定的发泡流体已成功地用于选择性地截止在某些情况下,在某些情况下,由于过高的气/氧化镁(GOR),在某些情况下,在某些情况下关闭了几年的井中的不需要的气体生产。在治疗之后,将石油产量恢复到与煤气突破之前的水平相同。初始运动的成功表明,可以恢复静脉井的生产水平,并恢复丢失的储备。这一结果对操作现场的经济性具有非常显着的积极影响。目前的计划是将该技术的使用扩展到其他领域。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号