High-pressure nuclear magnetic resonance CO2 geological storage model test system

A technology of nuclear magnetic resonance and geological storage, which is applied in the direction of using nuclear magnetic resonance for analysis, etc.

Active Publication Date: 2014-09-10
INST OF ROCK & SOIL MECHANICS CHINESE ACAD OF SCI
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  • Abstract
  • Description
  • Claims
  • Application Information

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Problems solved by technology

NMR technology in CO 2 The research on geological storage mainly focuses on the core-scale two-phase fluid displacement test, and there are few tests considering the mechanical influence, while there are no tests that simultaneously simulate the deformation, failure and seepage change of the reservoir and cap rock system.

Method used

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  • High-pressure nuclear magnetic resonance CO2 geological storage model test system
  • High-pressure nuclear magnetic resonance CO2 geological storage model test system
  • High-pressure nuclear magnetic resonance CO2 geological storage model test system

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Embodiment 1

[0039] A high-pressure NMR CO 2 The geological storage model test system is composed of a sample visual observation system 1000, a load control system 2000, a fluid control system 3000 and a data acquisition and processing system 4000. The connection relationship is: the load control system 2000 is connected to the sample visual observation system 1000 through pipelines , provide the core holder 1200 in the visualization observation system 1000 with the axial pressure and confining pressure that need to be applied on the sample 1100 through the pipeline. The fluid control system 3000 communicates with the sample downstream water injection hole 1203, the sample downstream water injection hole 1205 and the CO 2 The injection hole 1220 is connected, and the salt water and CO required for the test are injected into the sample 1100 through the core holder 1200 2 . The axial pressure sensor 4100 and the confining pressure sensor 4200 in the data acquisition and processing system 4...

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Abstract

The invention discloses a high-pressure nuclear magnetic resonance CO2 geological storage model test system. A load control system is connected with a sample visualization observation system through a pipeline. A fluid control system is connected with a core holding unit in the sample visualization observation system through a fluid injection pipeline. An axial pressure sensor and a confining pressure sensor in a data collecting and processing system are installed on a pipeline connecting an axial pressure pump in the load control system with the core holding unit and a pipeline connecting a confining pressure pump in the load control system with the core holding unit respectively. A left water pressure sensor and a right water pressure sensor in the data collecting and processing system are installed on a pipeline connecting a left salt water injection pump in the fluid control system with the core holding unit and a pipeline connecting a right salt water injection pump in the fluid control system with the core holding unit respectively. An injection air pressure sensor and a flow meter in the data collecting and processing system are installed on a pipeline connecting a CO2 injection pump in the fluid control system with the core holding unit. By means of the high-pressure nuclear magnetic resonance CO2 geological storage model test system, the transport law of CO2 in reservoirs and cap rock on the conditions of different temperatures, different vertical stresses and different horizontal stresses and the deformation and fracture law of the reservoirs and the cap rock are researched.

Description

technical field [0001] The invention relates to a model test system, in particular to a high-voltage nuclear magnetic resonance CO 2 Geological storage model test system, which is suitable for simulating CO in the real environment 2 The geological storage process is also used to study CO under different temperature and different initial stress conditions. 2 The migration law in the reservoir and the caprock and the deformation and failure law of the reservoir and the caprock. Background technique [0002] CO 2 Geological storage technology is currently a very effective means of greenhouse gas control. A lot of CO 2 The injection into the formation will cause the increase of pore pressure, which will lead to the decrease of the effective stress of the rock mass. At the same time, the change of the effective stress will affect the porosity, permeability and capillary pressure of the rock mass in turn, and then affect the CO 2 impact on migration. In the process of seepag...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): G01N24/08
Inventor 李小春袁维方志明
Owner INST OF ROCK & SOIL MECHANICS CHINESE ACAD OF SCI
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