首页> 外文期刊>World Journal of Engineering and Technology >Remaining Oil Distribution Law and Potential Tapping Strategy of Horizontal Well Pattern in Narrow Oil Rim Reservoir with Gas Cap and Edge Water
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Remaining Oil Distribution Law and Potential Tapping Strategy of Horizontal Well Pattern in Narrow Oil Rim Reservoir with Gas Cap and Edge Water

机译:气顶加边缘水的窄边油藏水平井网的剩余油分布规律及水平挖潜策略

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For thin oil rim reservoir with gas cap and edge water, it is helpful to improve the development effect to find out the distribution law of remaining oil in this kind of reservoirs. For this reason, taking the narrow oil rim reservoir with gas cap and edge water of Oilfield A in Bohai Sea as a case, the main controlling factors, including reservoir structure, fault, gas cap energy, edge water energy and well pattern, affecting the distribution of residual oil in this kind of reservoir were analyzed by using the data of core, logging, paleogeomor phology and production. Then, the distribution law of remaining oil was summarized. Generally, the remaining oil distribution is mainly potato-shaped or strip-shaped in plane. Vertically, it depends on the energy of gas cap and edge water. For the reservoir with big gas gap and weak edge water, the remaining oil mainly lies in the bottom of oil column. And for the reservoir with small gas gap and strong edge water, the remaining oil mainly locates at the top of oil column. Aiming at different distribution modes of remaining oil, the corresponding potential tapping strategies of horizontal wells are put forward: in the late stage of development, for the reservoir with big gas gap and weak edge water, the remaining oil concentrates at the bottom of the oil column, and the position of horizontal well should be placed at the lower 1/3 to the lower 1/5 of the oil column; for the reservoir with small gas cap and strong edge water, the remaining oil locates at the top of the oil column, and the position of horizontal well should be put at the upper 1/5 to the upper 1/3 of the oil column height, vertically. Based on the study on remaining oil of Oilfield A, a potential tapping strategy of well pattern thickening and vertical position optimization of horizontal well was proposed. This strategy guided the efficient implementation of the comprehensive adjustment plan of the oilfield. Moreover, 18 infill development wells were implemented in Oilfield A, and the average production of the infill wells is 2.1 times that of the surrounding old wells. It is estimated that the ultimate recovery factor of the oilfield will reach 33.9%, which is 2.3% higher than that before infilling wells. This study can be used for reference in the development of similar reservoirs.
机译:对于带气顶加边缘水的薄缘油藏,找出这类油藏中剩余油的分布规律,有利于提高开发效果。因此,以渤海A油田气顶窄边缘油藏和边缘水为例,影响油藏构造,断层,气顶能,边缘水能和井网的主要控制因素。利用岩心,测井,古地貌和生产资料,分析了该类油藏的剩余油分布。然后,总结了剩余油的分布规律。通常,剩余的油分布在平面上主要为马铃薯形或条形。在垂直方向上,它取决于气顶和边缘水的能量。对于气隙大,边水薄弱的油藏,剩余油主要位于油柱底部。对于气隙小,边缘水强的油藏,剩余油主要位于油柱顶部。针对剩余油分布方式的不同,提出了相应的水平井挖潜策略:在开发后期,对于气隙大,边水薄弱的油藏,剩余油集中在油底。将水平井的位置放在油柱的下1/3至下1/5处;对于气顶小,边缘水强的油藏,剩余的油位于油柱的顶部,水平井的位置应在油柱高度的上1/5至上1/3。 , 垂直。在对A油田剩余油进行研究的基础上,提出了井网增厚和水平井垂直位置优化的挖潜策略。该战略指导了油田综合调整计划的有效实施。此外,油田A实施了18口填充开发井,平均产量是周围老井的2.1倍。估计该油田的最终采收率将达到33.9%,比注井前的采收率高2.3%。该研究可为类似油藏的开发提供参考。

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