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How to Obtain Quality PVT Samples for Heavy Oils

机译:如何获得高油脂的质量PVT样品

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Exploration activity is always associated with many challenges such as uncertain pore pressure, and uncertain formation depths and characteristics. Unconsolidated formation could cause more serious troubles for drilling, formation evaluation, and production such as borehole washout, wellbore collapse, and sanding if proper planning is not in place. In addition, a viscous oil can add another complication for fluid sampling operations. An unsuccessful logging program could have a major impact on the field development plan (FDP) and further field investment decision (FID). In the Gulf of Thailand (GoT), high temperature Pattani basin discovery wells, reservoir fluids are mainly gas and condensate. There are numbers of waxy oil reservoirs1–5 in certain area in the GoT, notably in the cooler peripheral Tertiary basins. However, the subject field is the first one that was identified as having productive heavy oil reservoirs. The viscosity variation ranges between 1 and 100 cp2–6. It was observed that there was a depth related variation with deeper reservoirs having higher viscosities, and therefore, reservoir fluid information is crucial for the FDP and FID resulting from a field extension drilling campaign in early 2018. This paper will discuss step by step (1) reservoir characterization challenges (2) proposed methods to obtain reservoir and fluid information, as well as the interval pressure transient test, (3) the actual field results, (4) recommendations and way forward for similar reservoirs. Different proposed options are also discussed with field examples to obtain high quality PVT samples. Pumping to clean up high viscous oil contaminated tends to attract finer particulates towards the probe and into the flowline, causing plugging issues in other probe types even though a modified sand filter was added. In the end, the 3D Radial probe was proven in making this exploration campaign a success story for acquiring the heaviest oil samples to date in the GoT. The 3D Radial probe equipped with mesh filter plays an important role to restrict ingress of small sand particles, thereby allowing both sustainable pumping speed and flowing pressure. The single packer design also helps to support the formation preventing drawdown collapse. Coupled with larger flow area of the probe itself, the 3D Radial Probe has ability to control flowing pressure to stay above the sand break-away pressure even as more viscous formation oil enters. However, job objectives were achieved, which were formation pressure acquisition, high-quality fluid sampling, and Interval Pressure Transient Testing (IPTT) as well as Vertical Interference Testing (VIT). This paper also discusses the comparison between Downhole Fluid Analysis results and PVT lab analyses. Limitation and challenges for downhole measurements for this heavy oil environment. Advantages and disadvantages for different testing methods for this heavy oil reservoir will also be discussed.
机译:勘探活动总是与许多挑战相关的孔隙压力,并且不确定的形成深度和特征有关。如果未到位,未溶解的形成可能导致钻孔,形成评估和生产,如钻孔冲洗,井眼坍塌和打磨等更严重的麻烦。此外,粘性油可以为流体采样操作添加另一个并发症。一个不成功的伐木计划可能对现场开发计划(FDP)和进一步的实地投资决策(FID)产生重大影响。在泰国湾(GOT),高温Pattani盆地发现井,储层流体主要是燃气和冷凝水。在特定区域中有数量的蜡状油储存器1-5,特别是在冷却器周边盆地中。然而,主题领域是第一个被识别为具有生产重油储层的第一个。粘度变化在1至100cp2-6之间。被观察到有一个深度相关变化,具有更深的储存器,具有更高的粘度,因此,储层流体信息对于2018年初的场延长钻探运动产生的FDP和FID是至关重要的。本文将逐步讨论(1 )储层特征挑战(2)提出的方法获得水库和流体信息,以及间隔压力瞬态测试,(3)实际的现场结果,(4)建议和类似水库的建议书。还与现场实施例讨论了不同的提出选择,以获得高质量的PVT样本。泵送清洁高粘度油污染往往会吸引较好的颗粒朝向探针和流动线,即使加入改性的砂滤器,也导致其他探针类型中的堵塞问题。最后,证明了3D辐射探针在使这个探索活动中是一个成功的故事,以便在GOT中获取最重的石油样品。配备滤网过滤器的3D径向探针在限制小砂颗粒的入口中起着重要作用,从而允许可持续的泵送速度和流动的压力。单个包装器设计还有助于支持形成防止绘图崩溃。与探头本身的较大流量面积相结合,3D径向探针具有控制流动压力的能力,即使随着更多粘性的形成油进入,也能够控制砂断开压力的压力。然而,实现了工作目标,该工作目标是形成压力采集,高质量的流体采样和间隔压力瞬态测试(IPTT)以及垂直干扰测试(VIT)。本文还讨论了井下流体分析结果和PVT实验室分析之间的比较。这种重油环境下井下测量的限制和挑战。还将讨论这种重油储层的不同测试方法的优点和缺点。

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