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Petrogenesis of the Tikorangi Formation fracture reservoir, Waihapa-Ngaere Field, Taranaki Basin

机译:塔拉纳基盆地怀怀帕-恩盖尔油田提科朗吉组裂缝储层成岩作用

摘要

The subsurface mid-Tertiary Tikorangi Formation is the sole limestone and the only fracture-producing hydrocarbon reservoir within Taranaki Basin. This study, based on core material from seven wells in the onshore Waihapa/Ngaere Field, uses a range of petrographic (standard, CL, UV, SEM) and geochemical techniques (stable isotope, trace element data, XRD) to unravel a complex diagenetic history for the Tikorangi Formation. A series of eight major geological-diagenetic events for the host rock and fracture systems have been established, ranging from burial cementation through to hydrocarbon emplacement within mineralized fractures. For each diagenetic event a probable temperature field has been identified which, combined with a geohistory plot, has enabled the timing of events to be determined.This study has shown that the Tikorangi Formation comprises a complex mixed siliciclastic-carbonate-rich sequence of rocks that exhibit generally tight, pressure-dissolved, and well cemented fabrics with negligible porosity and permeability other than in fractures. Burial cementation of the host rocks occurred at temperatures of 27-37°C from about 0.5-1.0 km burial depths. Partial replacement dolomitisation occurred during late burial diagenesis at temperatures of 36-50°C and at burial depths of about 1.0 km, without any secondary porosity development. Fracturing occurred after dolomitisation and was associated with compression and thrusting on the Taranaki Fault. The location of more carbonate/dolomite-rich units may have implications for the location of better-developed fracture network systems and for hydrocarbon prospectivity and production. Hydrocarbon productivity has been ultimately determined by original depositional facies, diagenesis, and deformation.Within the fracture systems, a complex suite of vein calcite, dolomite, quartzine, and celestite minerals has been precipitated prior to hydrocarbon emplacement, which have substantially healed and reduced fracture porosities and permeabilities. The occurrence of multiple vein mineral phases, collectively forming a calcite/dolomite-celestite-quartzine mineral assemblage, points to fluid compositions varying both spatially and temporally. The fluids responsible for vein mineralisation in the Tikorangi Formation probably involved waters of diverse origins and compositions. Vein mineralisation records a history of changing pore fluid chemistry and heating during burial, punctuated by changes in the relative input and mixing of downward circulating meteoric and upwelling basinal fluids. A sequence of mineralisation events and their probable burial depth/temperature fields have been defined, ranging from temperatures of 50-80°C and burial depths of 1.0-2.3 km. Hydrocarbon emplacement has occurred over the last 6 m.y. following the vein mineralization events. The Tikorangi Formation must continue to be viewed as a potential fracture reservoir play within Taranaki Basin.
机译:塔拉纳基盆地中的第三系中层Tikorangi地下是唯一的石灰岩,也是唯一的产生裂缝的油气藏。这项研究基于怀阿帕(Waihapa)/奈加尔(Ngaere)陆上油田的7口井的核心材料,利用一系列岩相学(标准,CL,UV,SEM)和地球化学技术(稳定同位素,微量元素数据,X射线衍射)揭示了复杂的成岩作用。提科朗吉组的历史。已经建立了宿主岩石和裂缝系统的一系列八个主要地质成岩事件,范围从埋葬胶结一直到矿化裂缝中的碳氢化合物沉积。对于每个成岩事件,已经确定了可能的温度场,结合地理历史图可以确定事件发生的时间。这项研究表明,提科朗吉组包含一个复杂的硅碳-碳酸盐混合富集的岩石序列,表现出通常紧密的,压力溶解的和粘合良好的织物,除了裂缝以外,其孔隙率和渗透率可忽略不计。在大约0.5-1.0 km的埋深处,主岩的埋藏胶结发生在27-37°C的温度下。部分埋藏白云岩化作用发生在埋藏后期成岩过程中,温度为36-50°C,埋藏深度约为1.0 km,没有任何二次孔隙发育。白云岩化之后发生了压裂,并伴有塔拉纳基断裂的挤压和冲断作用。碳酸盐/白云石含量较高的单元的位置可能对较完善的裂缝网络系统的位置以及油气的前景和生产有影响。碳氢化合物的生产力最终取决于原始的沉积相,成岩作用和变形。在压裂系统中,在碳氢化合物驱替之前,已沉淀出一系列复杂的方解石,白云石,石英和天青石矿物,这些矿物已基本愈合并减少了裂缝。孔隙率和渗透率。共同形成方解石/白云石-天青石-石英矿物组合的多脉矿物相的出现,表明流体成分在空间和时间上都在变化。提科朗伊组中负责静脉矿化的流体可能涉及各种来源和成分的水。静脉矿化记录了埋藏过程中孔隙流体化学性质和加热变化的历史,其特征是相对输入量的变化以及向下循环的陨石和上升流盆地流体的混合所造成的。已经定义了一系列矿化事件及其可能的埋藏深度/温度场,范围从温度50-80°C和埋藏深度1.0-2.3 km。在最近6个月内发生了碳氢化合物的侵袭。继静脉矿化事件之后。提科朗伊组必须继续被视为塔拉纳基盆地内潜在的裂缝储集层。

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