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首页> 外文期刊>Journal of Petroleum Science & Engineering >Characteristics and formation process of contractional deformation bands in oil-bearing sandstones in the hinge of a fold: A case study of the Youshashan anticline, western Qaidam Basin, China
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Characteristics and formation process of contractional deformation bands in oil-bearing sandstones in the hinge of a fold: A case study of the Youshashan anticline, western Qaidam Basin, China

机译:折叠铰链中含油砂岩合约变形带的特性和形成过程

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摘要

The deformation bands in oil-bearing sandstones in a thrust fault-related fold were studied. The outcrop is exposed in the hinge of the Youshashan anticline. The deformation bands are compactional shear bands (CSBs), which are characterized by low net shear displacement (S) and compaction (C) ratios and by conjugate networks. The kinematics of the deformation bands are the result of the combined effects of shear and compaction, in which shear played a dominant role and was accompanied by additional compaction. CSBs are identified in two sets, including Dl CSBs that were cut by D2 CSBs. The CSBs formed under a contractional regime due to regional shortening and are oriented approximately in the NE-SW direction. The time of formation of the Dl CSBs (NNE-SSW-striking and E-W-striking) is consistent with or slightly later than the formation of the Youshashan anticline. At the beginning of the anticline formation, the Dl CSBs formed under a strike-slip regime due to the deeper burial depths (approximately 2.5 km). With the evolution of the anticline, the burial depths gradually become shallower. The D2 CSBs formed a NW-SE-striking direction under a thrust-fault regime. The porosities of the contractional Dl and D2 CSBs that developed in oil-bearing sandstones are 14-19.7% and 11-18% lower than those of the host rock, respectively. The permeability reduction for the Dl and D2 CSBs are between 1 and 2 orders of magnitude. Our findings suggest that the stress state changed during the formation uplift in the contractional regime, from a strike-slip stress state to a thrust-fault stress state, forming CSBs with low S/C ratios. The CSBs have low porosity and small pore space for hydrocarbon storage, and thus, the oil-bearing properties of the CSBs are less favorable than those of the host rock. Nevertheless, the oil saturations in the CSBs are 15.7-47.9% higher than those in the unformed oil-bearing sandstones.
机译:研究了推力与出的断裂相关折叠砂岩中的变形带。露头是在YouShashan的铰链中暴露。变形条带是尺寸剪切带(CSB),其特征在于低净剪切位移和压实(C)比率和由共轭网络。变形带的运动学是剪切和压实的组合效果的结果,其中剪切起到主导作用,并伴随着额外的压实。 CSB以两组识别,包括D2 CSBS切割的DL CSB。由于区域缩短,在合同制度下形成的CSB,并大约在NE-SW方向上取向。 DL CSB(NNE-SSW引人注目和E-W引读)形成的时间与YouShashan altinline的形成一致或稍晚。在倒数线的开始时,由于埋深深度(约2.5公里),在防撞制度下形成的DL CSB。随着斜线的进化,埋葬深度逐渐变浅。 D2 CSB在推力故障状态下形成了NW-SE引人注目的方向。合同D1和D2 CSB的孔隙率分别开发的砂岩中的合同DL和D2 CSB分别低于主体岩石的14-19.7%和11-18%。 D1和D2 CSB的渗透性降低在1至2的数量级之间。我们的研究结果表明,在合约制度中的形成隆起期间,从击球率调节到推力 - 故障应力状态,形成具有低S / C比率的CSB的压力状态。 CSB具有低孔隙率和用于烃储存的小孔空间,因此,CSB的含油性能不如主体岩石的含油性能。然而,CSB中的油饱和度高于未切换的含油砂岩中的15.7-47.9%。

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