Evolution of the Moxizhuang Oil Field, Central Junggar Basin, Northwest China

Zou Huayao, Zhang Yuanchun, Liu Jianzhang, Shi Jiannan
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引用次数: 11

Abstract

Current oil saturation in the Moxizhuang Oil Field in central Junggar basin was evaluated by logging interpretation and measured on core samples, and the paleo-oil saturation in both the pay zones and water zones was investigated by grain-containing-oil inclusion (GOI) analysis. The pay zones in this field have low oil saturation and display low resistivity and small contrast between pay zones and water zones, and are classified as low-porosity, low oil saturation, and low resistivity reservoirs. Both the current low oil-saturation pay zones and the water zones above 4 365 m have high GOI values (up to 38%), suggesting high paleo-oil saturation. The significant difference between current oil saturation from both logging interpretation and core sample measurement and paleo-oil saturation indicated by GOI analysis suggests that this low oil-saturation field evolved from a high oil-saturation pool. Lateral re-migration and spill of formally trapped oil owing to changes in structural configuration since Neogene was the most plausible mechanism for oil loss in the Moxizhuang Oil Field. The combined effects of differential accumulation in the charge phase and the differential re-migration and spill of accumulated oil in Neogene are responsible for the complicated correlation between residual oil saturation and porosity/permeability of the reservoir sandstones and the distribution of low oil-saturation pay zones and paleo-oil zones (current water zones).

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准噶尔盆地中部磨西庄油田的演化
采用测井解释方法对准噶尔盆地中部磨西庄油田的现今含油饱和度进行了评价,并对岩心样品进行了测量,同时采用含颗粒油包体(GOI)分析方法研究了产油层和水层的古含油饱和度。该油田产层含油饱和度低,电阻率低,产水对比度小,分为低孔隙度、低含油饱和度、低电阻率储层。目前的低含油饱和度产层和4以上的水层 365m的GOI值较高(高达38%),表明古油饱和度较高。测井解释和岩心样品测量的当前含油饱和度与GOI分析显示的古含油饱和度之间存在显著差异,表明该低含油饱和度油田是由高含油饱和度油藏演化而来的。新近系以来,由于构造形态的变化,正式捕获的石油横向再运移和泄漏是磨西庄油田最合理的石油损失机制。储层砂岩的剩余油饱和度与孔渗关系复杂,低油饱和度产层和古油带(现水带)分布复杂,是由于上第三系储层电荷相差异聚集和累积油的差异再运移和溢出的共同作用。
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