首页> 外文会议>SPE Reservoir Characterisation and Simulation Conference >Improving the Estimation of Porosity and Permeability Distribution by Linking Basin Modelling to Diagenetic Evolution of Carbonate Reservoirs
【24h】

Improving the Estimation of Porosity and Permeability Distribution by Linking Basin Modelling to Diagenetic Evolution of Carbonate Reservoirs

机译:通过将盆地模拟与碳酸盐储层成岩型展开造型改善孔隙率和渗透性分布的估计

获取原文

摘要

Carbonate reservoirs have petrophysical property distributions largely controlled by a combination of the depositional, diagenetic, and structural (burial/uplift) histories of the reservoir itself and also of the basins that contain them. Carbonates are very prone to diagenetic alteration; porosity and permeability can be strongly affected by the thermal state, fluid-pressure and pore fluid chemistry through their geological history. We use a novel workflow, adapted from basin modelling, to investigate how the burial/uplift history of an offshore carbonate reservoir and its basin, taken as a system, can have controlled the fluid and heat movement within, into and out of the reservoir. The reservoir rock properties and diagenetic history are assessed, as is the local and regional geological evolution for potential contributory factors to the diagenesis. A model of the potential basin system is developed, observed reservoir diagenetic history being added to the normal basin modelling constraints. This model provides good estimates of geometry and property evolution, and of fluid transport, through geological time. Since fluid and heat fluxes are important in the diagenetic evolution of the carbonate pore system, these results are complemented by simulating the movement of heat and brine in the reservoir using finite element-finite volume simulations. These simulations capture the complex geological structures, especially fault-fracture systems, and better represent the flow physics and chemistry that control reservoir diagenesis. Results from these simulations will later be returned to the basin model to improve the calibration of the timing, depth, and rates of diagenetic events. This new workflow is applied to a Lower Eocene offshore carbonate reservoir with a complex diagenetic history which seems to have a strong basin evolution influence. Importantly this workflow is generic and can be applied to any carbonate reservoir to enhance the link between geological models at the basin scale and reservoir scale models.
机译:碳酸盐储层具有岩石物理分布,主要由储存器本身的沉积,成岩和结构(埋地/隆起)历史的组合和含有它们的盆地的组合来控制。碳酸盐非常容易发生成岩改变;孔隙率和渗透率可以通过其地质历史受到热状态,流体压力和孔隙流体化学的强烈影响。我们使用新的工作流程,改编自盆地建模,调查船上碳酸盐储层及其盆地的埋地/隆起历史如何控制流体和热运动在储存器中。评估储层岩石性质和成岩性历史,以及潜在的作用对成岩作用的潜在缴费因素的地质演变。开发了一种潜在盆地系统的模型,观察到储层成岩历史被添加到正常的盆地建模约束中。该模型通过地质时间提供几何和物业演化和流体运输的良好估计。由于流体和热通量在碳酸盐孔系统的成岩演化中是重要的,因此使用有限元有限体积模拟模拟储层中的热量和盐水的运动来补充这些结果。这些模拟捕获复杂的地质结构,尤其是故障骨折系统,更好地代表控制储层成岩作用的流量物理和化学。这些模拟的结果将稍后将返回盆地模型,以改善成绩事件的定时,深度和速率的校准。这种新的工作流程适用于较低的近年碳酸盐储层,具有复杂的成岩历史,似乎具有强大的盆地演化影响。重要的是,这种工作流程是通用的,可以应用于任何碳酸盐储层,以增强盆地秤和储层规模模型的地质模型之间的联系。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号