首页> 外文会议>Society of Petroleum Engineers Enhaneed Oil Recovery Conference >Time Lapse Seismic (4D) Application for EOR Immiscible Water Alternating Gas (IWAG) Programme in Dulang Oil Field, Peninsular Malaysia of the Malay Basin
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Time Lapse Seismic (4D) Application for EOR Immiscible Water Alternating Gas (IWAG) Programme in Dulang Oil Field, Peninsular Malaysia of the Malay Basin

机译:时间流逝地震(4D)在杜兰油田中EOR不混溶的水交替气体(IWAG)计划,马来盆地的半岛马来西亚

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Dulang oil field, an anticline classtic reservoirs with areal extended about 330sq.km in offshore Peninsular Malaysia Basin was discovered in 1981 with water depth of 76m and total STOIIP around 1BSTB (Figure 1). The field was on production since 1991 with cumulative production (as at Jan 2010) around 21% of STOIIP. Immiscible Water-Alternating Gas (IWAG) EOR injection has been identified to be implemented which can enhance the oil recovery further. A Pilot injection project was carried out in sub-block area of the main reservoirs for a period of four (4) years. Full field injection plan has been formulated and has moved-up to execution phase. Monitoring the flood front movement by IWAG injection becomes a major challenge in this project especially with wide well spacing and high reservoir heterogeneity where “fingering” effect is prone to occur. This paper will describe the application of time-lapse (4D) seismic in the full field IWAG to monitor the flood front movement through times. A feasibility study was carried out to investigate the detectability and repeatability between two seismic vintages in order to understand the uncertainty. Factors contribute to the chances of success (COS) of the project also being identified. The result shows that through simulation prediction, a cumulative acoustic impedance of 6% to 8% can be observed after two years IWAG injection cycles. Also being described in this paper are the planning of the full field project right from technology identification, screening study, feasibility study and finally the full field implementation. This information’s are valuable to the industry especially to enhance oil recovery projects where full scope of formulizing the 4D seismic application being evaluated in order to enhance the surveillance and monitoring programme hence ensure the success of the EOR projects.
机译:杜兰油田,在1981年在海上半岛盆地延长了大约330平方英尺的抗癌夹层储层,水深在76米的水深和围绕1BSTB的总散热(图1)。自1991年以来,该领域正在生产,累计生产(截至2010年1月)占STOIIP的21%。已经确定了不混溶的水交交易(IWAG)EOR注射物,可以实施,其可以进一步增强溢油。试点注射项目在主储层的子块区域进行,为期四(4)年。已经制定了全场喷射计划并已升至执行阶段。监测IWAG注射的洪水前运动成为该项目中的主要挑战,尤其具有宽井间距和高储层异质性,其中易于发生“指法”效应。本文将描述延时(4D)地震在全场IWAG中的应用,通过时间监测洪水前运动。进行了可行性研究,以研究两个地震葡萄园之间的可检测性和可重复性,以了解不确定性。因素也有助于该项目的成功机会(COS)也在被确定。结果表明,通过仿真预测,在两年的IWAG注射循环后,可以观察到6%至8%的累积声阻抗。本文还描述了从技术识别,筛选研究,可行性研究以及最终实现全场实施的全场项目的规划。该信息对业界有价值,特别是加强石油恢复项目,该项目在评估4D地震申请的全部范围内进行评估,以便加强监测和监测计划,以确保EOR项目的成功。

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