准噶尔盆地中二叠统咸化湖相混合沉积单元的岩性成岩变化

Yuming Liu , Wenze Yang , Jiagen Hou , Luxing Dou , Ke Ma , Xixin Wang
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引用次数: 0

摘要

准噶尔盆地广泛分布着混合沉积储层。这些储层岩性复杂、超低渗透、孔隙结构极不均匀,显著影响油田开发效率。通过对准噶尔盆地吉木萨尔凹陷中二叠统芦草沟组的薄片、扫描电镜(SEM)、氦孔隙度和渗透率测量、压控压汞(PMI)、控压压汞(RMI)、x射线计算机断层扫描(CT)等资料的研究,揭示了单个砂坝内岩性组合的分布规律,揭示了成岩作用对单个砂坝储层质量的控制作用。收集并发布数据。结果表明,单个沙洲内微观孔隙结构的非均质性受不同岩性组合的分布和不同程度的成岩蚀变控制。结果表明,单沙洲主要发育3种岩性。白云质粉砂岩储层的储层质量最好,粉质白云岩次之。白云岩储层的储层质量最差。在单个沙洲中可以识别出三种主要的岩性组合。受气候、湖位波动和物源控制,岩性组合A主要发育在单沙坝中部,以白云质粉砂岩、粉质白云岩和白云岩混合混合为特征。以层间白云质粉砂岩与白云质白云岩跃变混合为特征的岩性组合B和以浅湖附近沙坝一侧为特征的岩性组合A,物源区一侧为层间白云质粉砂岩与粉质白云岩混合混合的岩性组合C。强压实作用是导致砂坝储层储层质量下降的主要因素。碳酸盐岩胶结作用促进储层致密化。不规则片状粘土矿物导致渗透率呈指数级下降,溶蚀作用是提高储层质量的主要成岩作用。单沙坝中部的白云质粉砂岩储层由于上覆白云岩层抗压实作用,储层质量最好,保留了一定数量的原生孔隙。此外,白云质粉砂岩储层远离砂泥岩界面,碳酸盐胶结物含量较低。此外,白云质粉砂岩储层中大量的溶蚀孔隙提高了储层的质量。这些研究成果对类似混合沉积致密储层的储层评价和开发具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Lithological and diagenetic variation of mixed depositional units in the middle permian saline lacustrine deposition, Junggar Basin, NW China

Mixed depositional reservoirs are widely distributed in Junggar Basin, NW China. These reservoirs are featured by complex lithology, ultra-low permeability and extremely heterogeneous pore structures that markedly impact field development efficiency. This study illustrated the distribution of lithological combinations within a single sand bar in the Middle Permian Lucaogou Formation, Jimsar Sag, Junggar Basin and revealed the diagenetic control on the reservoir quality of a single sand bar based on thin sections, scanning electron microscopy (SEM), helium porosity and air permeability measurement, pressure-controlled mercury injection (PMI), rate-controlled mercury injection (RMI), X-ray computed tomography (CT), and collected and published data. The results show that the heterogeneity of microscopic pore structures within a single sandbar is controlled by the distribution of various lithological combinations and different levels of diagenetic alteration. The results show that there are mainly three types of lithology developed in a single sand bar. The reservoir quality of dolomitic siltstone reservoirs is the best, followed by silty dolomite reservoirs. The reservoirs quality of dolomicrite reservoirs is the worst. Three main lithological combinations can be identified within a single sand bar. Controlled by climate, lake level fluctuation and provenance, lithological combination A, characterized by blended mixing of dolomitic siltstone, silty dolomite and dolomicrite, is mainly developed in the middle of single sand bar. Lithological combination B, characterized by saltatory mixing of interbedded dolomitic siltstone and dolomicrite, and lithological combination A developed on the side of the sand bar near the shallow lake, while lithological combination C with blended mixing of interbedded dolomitic siltstone and silty dolomite developed on the side near provenance. Strong compaction is the main factor of the decrease of reservoir quality of sand bar reservoirs. Carbonate cementation promotes the densification of reservoirs. The irregular flaky clay minerals lead to the exponential decline of permeability, and dissolution is the main kind of diagenesis to improve reservoir quality. The dolomitic siltstone reservoirs in the middle of a single sand bar have the best reservoir quality because the overlying dolomicrite layers resist compaction, resulted in a certain amount of primary pores remained. Besides, the dolomitic siltstone reservoirs are far from the sand-mudstone interfaces, which leads to the low carbonate cement content. Furthermore, abundant dissolution pores in dolomitic siltstone reservoirs improve the reservoir quality. These research results are crucial to reservoir evaluation and development in similar mixed depositional tight reservoirs.

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