首页> 外文会议>International Petroleum Technology Conference >Reactive Pore Network Modeling Technology to Evaluate the Impact of Diagenesis on the Petrophysical Properties of a Rock
【24h】

Reactive Pore Network Modeling Technology to Evaluate the Impact of Diagenesis on the Petrophysical Properties of a Rock

机译:无功孔网络建模技术评估成岩作用对岩石岩石物理特性的影响

获取原文

摘要

Sedimentary reservoir rocks often present heterogeneous pore structures that are inherently related to the original rock texture and subsequent diagenetic alterations. Such alterations are governed by the original rock texture, the involved fluids, the flow history, and the physico-chemical conditions. Throughout the paragenesis, alternating dissolution and precipitation caused by changes in chemical and thermodynamic conditions may lead to heterogeneous rock properties at both local and reservoir scale. In the absence of cored plugs to measure the petrophysical properties and multiphase flow properties, a numerical tool that simulates these data by predicting the pore structure evolution of the original grain deposit is of great interest for the petroleum industry and the reservoir characterization studies. A Pore Network Model, which is an efficient tool to account for phenomena occurring at the pore scale, is used to mimic the diagenetic cycle. The approach is based on three steps. The first step consists in replacing the original complex pore structure of real porous media by a conceptual network. The second step consists in solving the governing equations of the precipitation/dissolution phenomena in the conceptual 3D pore network, and deducing the local reactive fluxes and the motion of the fluid-solid interface. The third step consists in updating the pore structure and calculating the petrophysical properties of the altered porous media. Those steps are repeated in order to mimic a given diagenetic scenario. Finally, the petrophysical properties and multiphase flow properties of the current porous media are calculated. The impact of the diagenetic scenario on the current pore structure heterogeneity and consequently on the petrophysical properties and multiphase flow properties have been investigated. The permeability and porosity evolution during a given diagenetic scenario are calculated and analyzed as a function of the relevant dimensionless numbers (Peclet and DamkOhler numbers). The correlation between these numbers and the dissolved/precipitated layer thickness distribution is shown. Consequently, for a same original grain deposit, the permeability-porosity relationship of a sedimentary reservoir rock depends on the diagenetic and flow history. Current rocks with a same porosity may have drastically different permeabilities and multiphase flow properties.
机译:沉积储层岩石通常存在与原始岩石纹理和随后的成岩改变固有的异质孔结构。这种改变由原始岩石纹理,涉及的流体,流动历史和物理化学条件管辖。在整个寄生中,由化学和热力学条件的变化引起的交替溶解和沉淀可能导致局部和储层规模的异质岩石性能。在没有芯片的情况下测量岩石物理和多相流动性能,通过预测原始谷物沉积物的孔结构演变来模拟这些数据的数值工具对于石油工业和储层表征研究具有很大兴趣。孔网络模型是一种有效的工具,用于考虑在孔隙秤上发生的现象,用于模拟成岩循环。该方法基于三个步骤。第一步包括通过概念网络替换真实多孔介质的原始复杂孔隙结构。第二步包括求解概念3D孔网中的沉淀/溶解现象的控制方程,并推导出局部反应助熔剂和流体固体界面的运动。第三步包括更新孔结构并计算改变的多孔介质的岩石物理性质。重复这些步骤以模仿给定的成岩情景。最后,计算电流多孔介质的岩石物理性质和多相流动性质。研究了成岩情景对目前孔隙结构异质性的影响,因此研究了岩石物理性质和多相流动性质。计算给定的成岩情景期间的渗透率和孔隙率展现,并作为相关的无量纲数(PECLED和DAMKOHLER NUMBER)的函数分析。示出了这些数字与溶解/沉淀层厚度分布之间的相关性。因此,对于相同的原始谷物沉积物,沉积储层岩石的渗透性 - 孔隙率关系取决于成岩性和流动历史。具有相同孔隙率的电流岩石可能具有急剧不同的渗透率和多相流动性质。

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