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Evaluation of Giant New and Mature Oil Fields Developments - History and Prediction Study for Applying Horizontal Wells Using Simulation and Field Practices

机译:巨大的新油田和成熟油田的开发评估-应用模拟和现场实践进行水平井应用的历史和预测研究

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Developing giant new and mature oil fields by horizontal drilling is one of the most valuable technologies employed nowadays since it can maximize mature field''s benefits. Horizontal wells are offering multiple advantages including, higher production rates, better drainage, lower drawdown and delay water production. In addition, especially in offshore fields, horizontal wells compromise the ability to drill more multi-lateral wells from a single platform enhancing ultimate recovery because of reaching the bypassed oil buckets away from the offshore jackets reducing the number of vertical wells and minimizing offshore infrastructures reducing costs and time. These technologies have been, and will become an attractive topic for more studies and investigations. Development of mature fields, could be included into three major categories (a) well engineering (b) surface facilities and (c) reservoir engineering. This paper focuses on the reservoir engineering aspects and mainly on applying horizontal wells in giant mature fields to maximize their oil recovery. Field maturity in both well engineering and surface facilities will be the subject of next papers. The results have shown that, applying horizontal well drilling in giant mature fields is very crucial because of the horizontal well production improving factor (PIF), which represents the improvement of horizontal well production compared with vertical well production at the same locations, has been significantly increased. Horizontal well production improving factor (PIF) has increased with time along the reservoir life from pre-mature (virgin) to mature phases. In this study, it has increased from 1.23 to 1.28 during the last 9 years (2004-2012). However, simulation prediction results for next 9 years (2013-2021) have shown that, PIF has reached almost 5. That is because the oil column thickness become more thinner due to water movement through moving up toward the water oil contact and through high permeability streaks. As field practice, using pilot holes during drilling new infill and/or re-entry horizontal wells in mature oil fields is essential for successful high potential horizontal wells.
机译:通过水平钻井开发巨大的新油田和成熟油田是当今使用的最有价值的技术之一,因为它可以最大限度地利用成熟油田的利益。水平井具有多种优势,包括更高的生产率,更好的排水,更低的压降和延迟的产水量。此外,尤其是在海上油田,水平井损害了从单一平台钻取更多多边井的能力,从而提高了最终采收率,这是因为从离岸夹套到达旁路油桶减少了垂直井的数量,并使海上基础设施最小化,从而减少了成本和时间。这些技术已经并且将成为吸引更多研究和调查的主题。成熟油田的开发可分为三大类:(a)井工程(b)地面设施和(c)油藏工程。本文侧重于油藏工程方面,主要是在巨型成熟油田中应用水平井以最大程度地提高采油率。钻井工程和地面设施的现场成熟度将成为下一篇论文的主题。结果表明,由于水平井产量提高因子(PIF)(与相同位置的垂直井产量相比,水平井产量有所提高),在巨大的成熟油田中进行水平井钻探至关重要。增加。从早(原始)到成熟阶段,水平井产量改善因子(PIF)随着储层寿命的增加而增加。在本研究中,过去9年(2004-2012年)中,该数字从1.23增加到1.28。但是,未来9年(2013-2021年)的模拟预测结果表明,PIF已接近5。这是因为由于水向上运动到水油接触面并通过高渗透率而运动,因此油柱厚度变得更薄条纹。作为现场实践,在成熟油田中钻探新的填充井和/或再入水平井的过程中使用导向孔对于成功开发高潜力水平井至关重要。

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