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DIAGENESIS AND BURIAL HISTORY OF THE LOWER CRETACEOUS TRAVIS PEAK FORMATION, EAST TEXAS.

机译:东德克萨斯州下白垩统特拉维斯峰形成的Diagenesis和水文历史。

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摘要

Sandstone in the Travis Peak (Hosston) Formation has been extensively modified by burial diagenesis. Permeability in much of the formation has been reduced to less than 0.1 md as a result of compaction, extensive precipitation of authigenic minerals, and minor pressure solution. Thin zones of higher porosity and permeability occur mainly near the top of the formation; porosity and permeability decrease with depth below the top. The Travis Peak Formation in East Texas is approximately 2,000 ft (600 m) thick; depth to the top of the formation ranges from 5,800 ft (1,770 m) to 9,400 ft (2,870 m).;The first authigenic cement to precipitate was illite, which coated detrital grains with tangentially oriented crystals. Next, extensive quartz cement, averaging 17% of the rock volume in well-sorted sandstone, occluded much of the primary porosity. Quartz cement is most abundant in the lower Travis Peak, in well-connected sandstone beds that were deposited in braided streams. Oxygen-isotopic composition of quartz overgrowths indicates that they precipitated from meteoric fluids at temperatures of 130(DEGREES) to 165(DEGREES)F (55(DEGREES) to 75(DEGREES)C). These temperatures equate to depths of 3,000 to 5,000 ft (900 to 1,500 m).;Dissolution of orthoclase and albitization of plagioclase followed quartz cementation and occurred prior to mid-Cretaceous movement of the Sabine Uplift. An abrupt loss of orthoclase occurs at 1,200 ft (365 m) below the top of the Travis Peak, and albitization is more extensive deeper in the formation. Illite (a second generation), chlorite, and ankerite precipitated after feldspar diagenesis; these late authigenic phases incorporate ferrous iron released by thermal reduction of iron compounds. Ankerite was derived primarily from early dolomite cement, but it incorporated some light carbon from maturation of organic matter and radiogenic strontium from feldspar dissolution. The oxygen-isotopic composition of pore fluids evolved during ankerite precipitation from -4('o)/oo to +3('o)/oo (SMOW); +3('o)/oo is the present composition of Travis Peak water.;Oil migrated into Travis Peak reservoirs about 65 mya from shale in the Bossier Formation. Later deasphalting of the oil filled much of the remaining porosity in some zones near the top of the formation with reservoir bitumen.;Travis Peak sandstone is fine- to very fine-grained quartzarenite and subarkose having an average composition of Q(,95)F(,4)R(,1). Plagioclase feldspar is more abundant than orthoclase, and chert and low-rank metamorphic rock fragments are the most common lithic components.
机译:Travis Peak(Hosston)组的砂岩已通过埋藏成岩作用进行了广泛修饰。由于压实,自生矿物的大量沉淀和较小的压力溶液,许多地层的渗透率已降低至小于0.1 md。孔隙率和渗透率较高的薄层区域主要发生在地层顶部附近。孔隙率和渗透率随深度低于顶部而降低。东德克萨斯州的特拉维斯山峰地层厚约2,000英尺(600 m)。地层顶部的深度范围为5,800英尺(1,770 m)至9,400英尺(2,870 m)。;第一个自生的胶结物是伊利石,它用切向取向的晶体覆盖了碎屑颗粒。接下来,大量的石英水泥(平均占分类良好的砂岩中岩石体积的17%)掩盖了大部分的初级孔隙度。石英水泥在特拉维斯峰的下部最丰富,处于连接良好的砂岩层中,这些层沉积在辫状流中。石英过度生长的氧同位素组成表明,它们是在温度为130(度)至165(度)F(55(度)至75(度)C)的温度下从陨石中沉淀出来的。这些温度等于3,000至5,000英尺(900至1,500 m)的深度。石英胶结之后,原石酶的溶解和斜长石的母化发生在白垩纪隆起的白垩纪中期运动之前。在特拉维斯峰顶的下方1,200英尺(365 m)处发生了正统石的突然损失,并且在地层的更深处进行了阿尔比特化。长石成岩后析出了伊利石(第二代),绿泥石和铁矿石。这些晚期的自生相包含通过铁化合物的热还原而释放的亚铁。角铁矿主要来源于早期的白云石胶结物,但它吸收了一些有机物成熟产生的轻碳和长石溶解产生的放射性锶。孔流体的氧同位素组成是在铁素体沉淀过程中从-4('o)/ oo到+3('o)/ oo(SMOW)演变而来的; +3('o)/ oo是特拉维斯峰水的当前组成。;油从Bossier组中的页岩中迁移到特拉维斯峰储层中,约65玛雅。后来对石油进行脱沥青处理,在地层顶部附近的某些区域中用储层沥青填充了大部分剩余的孔隙度;特拉维斯峰砂岩是细粒至极细粒的石英亚砷酸盐和次黑砂,平均组成为Q(,95)F (,4)R(,1)。斜长石长石比原长石丰富,而石和低阶变质岩碎屑是最常见的岩性成分。

著录项

  • 作者

    DUTTON, SHIRLEY PETERSON.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Geology.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 183 p.
  • 总页数 183
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:51:08

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