Case Study: Successful Huff and Puff Processes in a Thick, Inclined Oil Reservoir with Compositional-Gradient

Xueqing Tang, Chun-xu Yu, Ruifeng Wang, Zhengxue Du, Hui Liu, Hui Lu
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Abstract

This paper presents successful huff and puff process in a thick, inclined oil pool with compositional-gradient. Jake South field in Sudan contains two sets of oil and gas accumulations. The upper major pay includes thick (net pay of 200 ft), under-saturated oil inclined zones (dip angle 15-18 degrees), with compositional variation (23.82-32.6° API) and initial GOR of 62-105 scf/STB. The lower pay covers 12 gas-condensate and light oil (36-39° API) zones. The main technical challenges are attic oil recovery and strong aquifer encroachment. The solution is that high-pressure gas-condensate, high-GOR oil and high-pressure nitrogen areto inject into low-pressure oil zones for huff and puff process and avoid early water breakthrough since start-up of field development. The related technical aspects are below: In-house studies, including solubility and viscosity reduction test, 1D and 2D visible microscopic test, and long-tube physical simulation of huff-n-puff process, confirmed that gas-condensate could dissolve into oil, resulting in foamy oil with formation volume factor of 1.23 and viscosity reduction of 50% of initial value.In-situ huff and puff process. Single tubing string with isolation packer completion is run. To exploit attic oil in high-permeability (horizontal permeability of 2,990 md, and vertical permeability of 80% of horizontal permeability) zones, gas-condensate zones and upper two-thirds of main oil ones are perforated. High-pressure gas-condensate (condensate 60.9° API) travels up the tubing, and injects into oil zones, soaks for 2-3 weeks to allow the gas to migrate up-dip from the well and to displace up-structure oil downward towards the producer, then goes back on production. After gas/condensate zones deplete, high-GOR light zones and the additional main oil zones are opened, high-GOR light-crude and high-pressure nitrogen were co-injected into main-oil zones for huff-n-puff scheme, light oil working as a solvent to dilute the remaining lower-API oil. Injection pressure and injection volume of hydrocarbon gas and nitrogen are optimized to ensure that the well could flow naturally during the puff process.Multi-well huff and puff process. Huff and puff processes were conducted simultaneously at five up-dip producers to contact new oil, the watered-out, low-productivity down-dip wells were shut-in for pressure maintenance via gas injection to mitigate water influx into the oil zones. Field production performance illustrated that initial well production at flowing conditions from five producers ranged from 3,600 to 13,800 BOPD, with well production boosting 7- to 27-fold. The average off-take rate achieved 4.0-6.6% of OOIP per year. No early water breakthrough occurred at the prolific producers. Compositional simulation confirmed that ultimate recovery factor for oil could exceed 50%. The innovative, low-cost strategy that improves oil recovery is constructive and valuable to development of those similar oil fields.
案例研究:具有成分梯度的厚斜油藏中成功的吞吐过程
本文介绍了具有组成梯度的稠油倾斜油藏的成功吞吐过程。苏丹Jake South油田包含两套油气聚集。上部主要产层包括厚层(净产层200英尺)、欠饱和油倾斜带(倾角15-18度)、成分变化(API为23.82-32.6°),初始GOR为62-105 scf/STB。低产层包括12个凝析油和轻质油层(API为36-39°)。主要的技术挑战是低采收率和强烈的含水层侵蚀。解决方案是在油田开发启动后,将高压凝析油、高gor油和高压氮气注入低压油层进行吞吐过程,避免油田早期见水。相关技术方面如下:通过内部研究,包括溶解度和降粘度测试、一维和二维可见显微测试以及吞吐过程长管物理模拟,证实了凝析油可以溶解到油中,形成泡沫油,地层体积系数为1.23,粘度比初始值降低50%。现场吞吐过程。下入带有隔离封隔器的单管柱。利用阁楼油效果(2990年水平渗透率医学博士和垂直渗透率水平渗透率)的80%区域,凝析油区域和上三分之二的主要石油的穿孔。高压凝析油(凝析油API为60.9°)沿着油管向上运移,注入油层,浸泡2-3周,使天然气从井中向上运移,并将上部结构的石油向下置换到生产者,然后重新投入生产。当气/凝析油区耗尽后,高gor轻油区和额外的主油区被打开,高gor轻质原油和高压氮气共同注入主油区进行吞吐方案,轻质油作为溶剂稀释剩余的低api油。优化烃类气体和氮气的注入压力和注入量,保证了喷油过程中油井的自然流动。多井吞吐工艺。同时对5口上倾井进行了吞吐处理,以接触到新的石油,对淹水、低产能的下倾井进行关井,通过注气来维持压力,以减少水流入油层。现场生产表现表明,在流动条件下,5家生产商的初始井产量从3600桶/天到13800桶/天不等,井产量提高了7到27倍。平均采收率达到每年OOIP的4.0-6.6%。高产产层未出现早期见水现象。组分模拟结果表明,最终采收率可达50%以上。这种创新的低成本策略提高了石油采收率,对类似油田的开发具有建设性和价值。
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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