首页> 外文会议>Abu Dhabi International Petroleum Exhibition Conference >Bringing the Best to Downhole Fluid Sampling by Evaluating the Focused Sampling Technique with Multiple Packer Types in Exploration and Development Wells-Case Studies from South East Asia
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Bringing the Best to Downhole Fluid Sampling by Evaluating the Focused Sampling Technique with Multiple Packer Types in Exploration and Development Wells-Case Studies from South East Asia

机译:通过评估来自东南亚的勘探开发井中的多包装井类型的聚焦抽样技术,通过评估重点采样技术来实现井下液体取样

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Since the advancement of Focused Sampling techniques, wireline formation fluid sampling has undergone a dramatic change. This has primarily been due to the promise of acquiring representative formation fluid samples with minimal mud filtrate contamination and large sample volumes, thereby adding value to the PVT laboratory studies as well as reducing the fluid sampling time, thus aiding significantly to the cost savings. This paper demonstrates the contribution of focused sampling technology for reservoir fluid mapping in numerous exploration and development wells in South East (SE) Asia, by optimized selection of different packer types based on varying reservoir properties. For the exploration wells, the primary objective was to determine the non-hydrocarbon (non-HC) content (CO2 and H2S in this case) of the single-phase reservoir fluid samples, which were expected to be close to the saturation pressures. Following the 3D near-wellbore simulations, an elongated and an extra-elongated focused packer were selected due to expected low permeabilities, reservoir thickness and wellbore conditions. The wells were drilled in managed pressure drilling (MPD) conditions, with overbalance ranging from 900 to 4,300 psi. The development campaign consisted of five producers with key objectives of determining fluid type and the non-HC (CO2 in this case) content along with assessing the reservoir/ block connectivity. The concentration and uncertainty in CO2 distribution would have a major impact in developing the production strategy of the area. A standard focused packer was selected for the sampling jobs which were carried out on pipe due to high overbalance conditions (~2,400 psi). In the exploration wells, 30+ samples (gas, oil and water) were collected with the time-on-wall ranging between 1.5 and 7 hours. In the development campaign, 50+ samples (gas and oil) were collected with the time-on-wall ranging between 45 minutes and 2.5 hours. Given the depths and low permeabilities of the reservoirs with high overbalance, this resulted in significant time savings. The larger flow area of the elongated and extra-elongated focused packers ensured minimal contamination in the collected samples given the challenging sampling conditions, where restrictions to pressure drawdown existed. The PVT laboratory results showed ‘insignificant’ oil-based mud filtrate contamination in the samples. In addition, the large sample volumes provided flexibility for additional PVT studies and improved resource assessment. The focused sampling technology was successfully applied in both exploration and development campaigns in the SE Asia region. The pre-job simulations ensured optimal packer selection between the three focused packer types. The comparison between the actual sampling results and the 3D near-wellbore simulation would help optimize future sampling operations in the area. In addition, the two campaigns have reiterated a clear value of information in saving cost, reducing contamination in the samples and technology success in the given environments.
机译:由于聚焦采样技术的进步,有线形成流体采样经历了剧烈的变化。这主要是由于获取具有最小泥浆滤液污染和大样本体积的代表性地层液样品的承诺,从而增加了PVT实验室研究的价值,并减少了流体采样时间,从而显着达到成本节约。本文通过基于不同的储层特性,通过优化不同包装机类型的不同包装件类型的优化选择,展示了集中采样技术对水库流体测绘的贡献。对于勘探井,主要目的是确定单相储层流体样品的非烃(非HC)含量(CO 2和H2S),其预期接近饱和压力。在较井眼近井眼近井下模拟之后,由于预期的低渗透率,储层厚度和井筒状况,选择了一个细长和细长的聚焦封隔器。井在托管压力钻孔(MPD)条件下钻孔,长划分为900至4,300 psi。开发活动由五个生产商组成,具有确定流体型和非HC(在这种情况下的CO2)含量的关键目标以及评估储存器/块连接。二氧化碳分配的浓度和不确定性将对开发该地区的生产策略产生重大影响。选择标准聚焦封隔器,用于采样作业,由于高过高条件(〜2,400 psi)而在管道上进行。在勘探井中,收集30+样品(气体,油和水),其中壁的时间范围在1.5至7小时之间。在开发活动中,将50多个样品(气体和油)收集,壁上的壁间距45分钟至2.5小时。鉴于高度过高的水库的深度和低渗透率,这导致了显着的节省时间。鉴于采样条件具有挑战性的采样条件,细长和细长聚焦封装机的较大流动面积确保了收集的样本中的最小污染,其中存在对压力绘制的限制。 PVT实验室结果表明,“微不足道”的油基泥滤液在样品中。此外,大型样本量为额外的PVT研究提供了灵活性和改善的资源评估。重点采样技术已成功应用于SE亚洲地区的勘探和发展活动。预求模拟确保了三种聚焦包装器类型之间的最佳包装器选择。实际采样结果与3D近井眼模拟之间的比较将有助于优化该地区的未来采样操作。此外,两项活动重申了节省成本的明确信息,降低了在给定环境中的样本和技术成功的污染。

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