A Fresh Approach to Understanding the Genesis and Distribution of Widespread Reservoirs at the Basin Edge: A Case Study of Gas-Bearing Sandstone in the Sangonghe Formation of the Jurassic Period, Qianshao Area, Junggar Basin, China

Ling Wang, Tingbin Sun, Peng Liu, Zichuan Wang, Wen Yin, Tao Xu, Yihe Wei, Qian Gao
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Abstract

A 20m-thick sandstone drilled in the second member of the Sangonghe Formation in the Qianshao area of the Junggar Basin has been identified to be a high-quality gas-bearing reservoir. However, the recent missions reveal an uncertainty on reservoir distribution and bring high risk to the subsequent gas development, although the gas-bearing reservoir has been encountered by several drillings and proved to be widespread. To investigate the accurate distribution and reveal the evolution of the reservoir, we reconstructed the stratigraphic framework and depositional stages by high-revolution sequence stratigraphic method, effectively identified the gas-bearing reservoir by seismic attributes refusion and seismic stratigraphic slices, and finally mapped the distribution strata distribution at different stages. The results show that the landward onlap phenomenon in the seismic data indicates a retrogradational stratigraphic structure during the water level rise rather than the equal-thickness stratigraphic pattern under stable water conditions. According to retrogradational stratigraphic structure, the real driver for the widespread characteristic of gas-bearing reservoir is the backward staggered movement of multi-stage sand-bodies during the transgressive process, rather than single-stage deposition. The fusion of seismic Acoustic Impedance and Main frequency attributes provides an effective survey to identify the accurate distribution of the reservoir, by which interpretation of a stratigraphic slice long the vertical centerline of the reservoir extracted in the multi-attribute fusion survey can present the distribution and evolution of the three stages on only one map. Achieved by the appropriate interpretation on the map, two sandy debris flow bodies were identified to be deposited on the bottom successively during the first two transgressive stages, they were completely staggered in the source direction with a clear boundary between well Qs9 and Qs7.
认识盆地边缘大面积储层成因和分布的新方法--以中国准噶尔盆地前所地区侏罗纪桑公河地层含气砂岩为例
在准噶尔盆地前所地区的桑公河地层第二系中钻探到的 20 米厚砂岩被确定为优质含气储层。然而,尽管多次钻探均发现该含气储层,且储层分布广泛,但近期的勘探任务显示储层分布不确定,给后续天然气开发带来了高风险。为探明储层的准确分布,揭示储层的演化过程,我们采用高演化层序地层学方法重建了地层框架和沉积阶段,利用地震属性折射和地震地层切片有效识别了含气储层,并绘制了不同阶段的分布地层图。结果表明,地震资料中的陆向叠置现象表明水位上升过程中的地层结构为逆冲地层结构,而非稳定水位条件下的等厚地层形态。根据逆冲地层结构,含气储层广泛分布特征的真正驱动因素是横断过程中多级砂体的逆向交错运动,而不是单级沉积。地震声阻抗和主频属性的融合为确定储层的准确分布提供了有效的勘探方法,通过对多属性融合勘探中提取的储层垂直中心线长地层切片的解释,只需一张图就能呈现三个阶段的分布和演化。通过在图上进行适当的解释,确定了两个砂质碎屑流体是在前两个递变阶段先后沉积在底部的,它们在来源方向上完全错开,Qs9 井和 Qs7 井之间有明显的界线。
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