印尼东苏门答腊近海asri盆地widuri地区复兴成功案例

D. Ralanarko, I. Syafri, Abdurrokhim Almabrury, A. Nur
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引用次数: 0

摘要

INTA/B油田是印度尼西亚东南苏门答腊Asri盆地Widuri地区产量最高的成熟油田之一,因此需要对其进行改造以提高油气产量。INTA/B油田与其他油田的区别在于其背斜构造具有东北-西南走向。该构造主要在一条大正断层的上扬南侧有严重断裂。油田内已成功识别出两种不同油水接触的构造形态。大部分的石油储量都保存在盆地西叶,其中有印坦-1砂岩。Talangakar (TAF)砂是该油田最重要的储层之一,在盆地内形成了从西北流向东南的曲流河体系。两个主要储层Gita-34A和Gita-34B在整个油田进行了对比,解释为中新世河道砂。这两条河道自西南向东北呈中等加厚,颗粒细到粗,疏松到易碎,胶结物含量低。INTA/B油田已经生产了25年,目前正处于水淹阶段。因此,需要对成熟油田进行综合研究,以克服这一问题。综合研究包括地质学(例如,沉积环境和相分析)、地球物理学(例如,地震属性的重新访问和再处理)、岩石物理计算和储层工程(例如,水的一致性图和体积计算)。这项综合研究成功地恢复了一个成熟油田的活力,并显著提高了石油产量,平均每口井产量为300桶油当量。据估计,扩展后的项目将产生与前期试点类似的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A SUCCESS CASE OF WIDURI AREA REJUVENATION, ASRI BASIN, OFFSHORE SE SUMATRA BLOCK, INDONESIA
INTA/B Field is one of the most producing mature fields in Widuri Area, Asri Basin, Offshore SE Sumatera, Indonesia, therefore it is subjected to rejuvenation to enhance hydrocarbon production. INTA/B Field is distinguished from other fields from its featured anticlinal structures that have the northeast-southwest trending. This structure is heavily faulted mainly in the up-thrown south side of a major normal fault. Two structural configurations with various oil-water contact have successfully been identified within the field. The most of oil reserves are preserved in the western lobe in which Intan-1 sands. One of the most important reservoirs in this field is Talangakar (TAF) sand deposited as a meandering river system that streamed from the northwest to the southeast within the basin. Two main reservoirs, Gita-34A and Gita-34B are correlated throughout the field and interpreted as Miocene fluvio-channel sands. These two channels are thickened moderately from southwest to northeast which has descriptions as follows: fine- to-coarse grains, unconsolidated to friable, and low cementing materials.INTA/B Field has been produced for 25 years and currently undergoing a watered-out phase. Therefore, an integrated study is subjected to overcome this issue for mature field rejuvenation. The integrated study ranged from geology (e.g., depositional environment and facies analysis), geophysics (e.g., revisiting and reprocessing of seismic attributes), petrophysical calculation, and reservoir engineering (e.g., water conformance plot and volumetric calculation).This integrated study has successfully rejuvenated a mature field resulting and added a significant number in oil production with an average of 300 BPOD/well. The extended project is estimated to have a similar result to the forward pilot.
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