非常规储层测试实验装置:地质力学对多相流特性的影响

Angel Sanchez barra, N. Deisman, F. Guerrero, J. Brandl, R. Chalaturnyk
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引用次数: 0

摘要

油气开采导致储层衰竭,改变地应力状态。这一过程改变了有效应力,使储层岩石变形,改变了多相流性质。为了研究三轴应力对多相流体流动控制机制的影响,建立了综合实验室测试装置。介绍了非常规储层测试实验设备及系统性能。多相三轴系统由高压三轴池、轴向加载系统、多相孔压回路、流体相分离系统和测井系统组成。该装置安装在烤箱内以保持等温条件。本文介绍了砂堆和Berea砂岩试样试验的初步结果。实验程序和测试设备设计可以应用于许多需要两相流评估的学科,直到改变有效应力条件,包括:地热过程、放射性废物储存库、碳捕获和储存操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Facility for Testing Unconventional Reservoirs: Effect of Geomechanics on Multiphase Flow Properties
Hydrocarbon production induces reservoir depletion changing the in-situ stress state. This process alters the effective stress and deforms the reservoir rock, changing the multiphase flow properties. An integrated laboratory testing facility was developed to investigate the effects of triaxial stress on the governing mechanisms of multiphase fluid flow. The paper describes the experimental facility for testing unconventional reservoirs and the system performance. The multiphase triaxial system is composed of a high-pressure triaxial cell, an axial loading system, a multiphase pore pressure circuit, a fluid phase separation system, and a logging system. The setup is installed inside an oven to maintain isothermal conditions. This study presents the initial results of testing on sandpack and Berea sandstone specimens. The experimental procedures and testing facility design can be applied across many disciplines which require two phase flow assessment until changing effective stress conditions including: geothermal processes, radioactive waste repositories, and carbon capture and storage operations.
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