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A diagenetic study of the Woodford Shale in the southeastern Anadarko Basin, Oklahoma, USA: Evidence for hydrothermal alteration in mineralized fractures

机译:俄勒冈州俄克拉荷马州东南部伍德福德页岩的成岩研究:矿化骨折水热改变的证据

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The objective of this study is to test if external fluids (e.g., hydrothermal) altered the Woodford Shale in the southeast Anadarko Basin and how the diagenesis caused by such fluids, particularly in mineralized fractures, has affected the reservoir quality and mechanical behavior of the Woodford Shale. Two Woodford Shale cores from the Anadarko Basin were sampled to identify diagenetic events, interpret their origin, and determine the diagenetic history of the shale. Thin sections for both cores were analyzed using reflected and transmitted light, cathodoluminescence (CL), and scanning electron microscopy to identify minerals and cross-cutting and textural relationships. X-ray computed tomography was conducted to further characterize fracture networks seen on the petrographic scale. Early diagenesis is dominated by events in the matrix and allochems, with later diagenesis dominated by events associated within fracturing and brecciation. The mineralized fractures and brecciated intervals contain complex mineralogies. Multiple minerals, interpreted to be hydrothermal in origin, are present, including magnesite, norsethite, witherite, gorceixite, potassium feldspar, sphalerite, chalcopyrite, and saddle dolomite. CL in minerals within fractures reveals evidence of evolving fluids and multiple fluid-flow events. Although porosity is present within pyrite framboids, between clay sheets, and as dissolution vugs within fractures and allochems, fracture porosity was destroyed by mineralization that filled the fractures and permeated into the matrix. Vitrinite reflectance data from both cores indicate a correlation between thermal maturity and level of hydrothermal alteration, with core A (0.80% VR_o [approximately 125°C]) displaying a lower amount of alteration and core C (approximately 1.5% VR_o [approximately 210°C]) displaying a higher amount of alteration. The extensive faulting present in the southeastern Anadarko Basin likely facilitated the movement of the hydrothe
机译:本研究的目的是测试外部流体(例如,水热)在东南部的外部流体(例如,水热)在东南部盆地中的伍德福德页岩改变,以及如何由这种流体引起的成岩作用,特别是在矿化骨折上,影响了伍德福德的储层质量和力学行为页岩。来自Anadarko盆地的两个伍德福德页岩核心被取样,以识别成岩事件,解释它们的起源,并确定页岩的成岩病史。使用反射和透射光,阴极发光(CL)和扫描电子显微镜进行分析两座核的薄部分,以识别矿物质和横切和纹理关系。进行了X射线计算断层扫描,以进一步表征在岩体规模上看到的裂缝网络。早期成岩作用是由基质和AlloChems中的事件主导的,随后以压裂和布发相关的事件为主。矿化骨折和抗布脆的间隔含有复杂的矿物学。存在多种矿物质,被解释为脱脂,存在,包括菱镁矿,多甲酸酯,耐高采烈,Gorcyixite,钾长石,斯巴尔氏铁,硫酸盐和鞍白云岩。骨折内的矿物质揭示了不断变化的液体和多个流体流动事件的证据。尽管孔隙率存在于粘土片中,并且在粘土片之间,并且作为裂缝和AlloChems内的溶出度,裂缝孔隙率被填充骨折并渗透到基质中。来自两个核的vitriinite反射数据表明热成熟度与水热改变水平之间的相关性,核心A(0.80%VR_O [大约125°C])显示较低的变化和核心C(约1.5%VR_O [约210°) c])显示更高量的更改。东南部的广泛故障存在于Anadarko盆地的广泛故障可能促进了湿度的运动

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