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Pore characteristic responses to categories of depositional microfacies of delta-lacustrine tight reservoirs in the Upper Triassic Yanchang Formation, Ordos Basin, NW China

机译:鄂尔多斯盆地,鄂尔多斯盆地,鄂尔多斯盆地,鄂尔多斯盆地,鄂尔多斯盆地地区综合沉积微电影院

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摘要

Primary depositional variations interact with diagenetic modifications to exert strong control on pore networks in tight hydrocarbon reservoirs. However, the linkage between pore characteristics and depositional microfacies remains enigmatic, which restricts the prediction of high-quality reservoir distributions. The continental tight reservoirs of the Yanchang Formation in the Ordos Basin are targeted to clarify and estimate the sensitivity of pore characteristics to depositional microfacies. A mull-methodical approach utilizing petrographic assessments, logging evaluations, digital imaging analyses and high-pressure mercury intrusion experiments enables us to reveal the high microheterogeneity of pore types, pore-size distribution and pore fractal features. The results identified the microfacies including distributary channels (DCs), mouth bars (MBs), interdistributary bays (IBs), sheet sands (SSs), turbidite fans (TFs), shallow lacustrine mudstones (SLMs) and semi-deep lacustrine mudstones (SDLMs) from the Chang 8 to Chang 6 members. Dominated by residual intergranular pores and microfractures, the main storage spaces of the DC and MB microfacies are within mesopores, which provide 62%-92% and 81% of the total pore volume, respectively. However, the micropores that are mainly composed of clay intercrystalline pores and feldspar dissolved pores provide 55%-70%, 52%-62% and 53%-80% of the total pore volume for the IB, SLM and SDLM microfacies, respectively. In addition, the pore fractal dimension results indicate that the mesoporous structure of the argillaceous microfacies (IB, SLM and SDLM) is more heterogeneous than that of the arenaceous microfacies (DC, MB and TF). Therefore, the dominant reservoir spaces of the different depositional microfacies are distributed over diverse pore-radius ranges, and the varying degrees of mesoporous development are a crucial factor affecting the reservoir capacity. Moreover, the fractal dimensions have a significant negative correlation with pore volume in the meso-micropore range. Characterized by lower pore sorting coefficients, broader skewness and more abundant rigid siliceous grains, the arenaceous microfacies with lower fractal dimensions and higher pore volume have better reservoir capacity than argillaceous microfacies that are rich in ductile minerals. Microscopic observations show that the muddier reservoirs of interdistributary bays and lacustrine mudstones are more susceptible to pore-filling chlorite and illite, which can deteriorate the reservoir quality. These results indicate that the controlling effect of depositional microfacies on pore characteristics is fundamentally caused by differences in mineralogical composition and depositional texture, and these results could provide new insights into the mechanisms of microfacies controls on reservoir quality.
机译:初级沉积变型与成岩性修饰相互作用,在紧密碳氢化合物储层中对孔网络发挥强有力的控制。然而,孔隙特性和沉积微腐蚀之间的连锁仍然是神秘的,这限制了高质量的储层分布的预测。鄂尔多斯盆地延长地层的大陆紧身藏在鄂尔多斯盆地中的旨在阐明和估算孔隙特征对沉积微腐灾的敏感性。利用岩体评估,测井评估,数字成像分析和高压汞入侵实验的仔细方法方法使我们能够揭示孔隙类型,孔径分布和孔分形特征的高微均性。结果确定了包括分配通道(DCS),口棒(MBS),闭嘴桶(MBS),薄片(SSS),浊度风扇(TFS),浅湖泥岩(SLMS)和半深漆泥岩(SDLMS )从Chang 8到Chang 6成员。由残留的晶体孔和微裂缝支配,DC和MB微缩放的主储存空间在中孔中,分别提供62%-92%和81%的总孔体积。然而,主要由粘土介质孔和长石溶解孔组成的微孔,分别为IB,SLM和SDLM微缩放的总孔体积提供55%-70%,52%-62%和53%-80%。另外,孔分形尺寸结果表明骨质微缩放(IB,SLM和SDLM)的介孔结构比植物微缩放(DC,MB和TF)更加异质。因此,不同沉积微缩醛的主要储层空间分布在不同的孔径范围内,并且不同程度的介孔发育是影响储层能力的关键因素。此外,分形尺寸具有与Meso-Micropore范围内的孔体积具有显着的负相关性。孔隙分选系数的特征在于,更广泛的偏斜和更丰富的刚性硅粒,具有较低分形尺寸和更高孔体积的植物微缩醛具有比富含韧性矿物质的富含骨质微法的储层能力更好。微观观察表明,跨越的跨国抵抗和湖泊泥岩的混浊水库更容易受到孔隙氯酸盐和伊利石的影响,这会使储层质量恶化。这些结果表明,沉积微缩醛对孔隙特性的控制效果基本上是由矿物学组成和沉积质地的差异引起的,这些结果可以为微缩醛控制机制提供新的洞察力对储层质量的机制。

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