Unconventional Natural Gas Reservoir-Gas Multi-Process Coupling Integrated Experimental Platform
This system can conduct coupled experiments on coal shale to study the multi-field coupling process of shale permeability evolution under stress loading and temperature loading, providing scientific experimental support for the extremely complex deep resource extraction. It investigates the coupling mechanisms between unconventional natural gas reservoir matrix and fractures/gas, fractures and gas, and rock self-heating during gas migration. Further improvement of reservoir conduction performance models under multi-process coupling (permeability model, self-heating model, heat transfer model, gas diffusion model, reservoir matrix shrinkage model) is achieved, providing important experimental research methods for conventional natural gas extraction. Identifying the relationship between permeability and effective stress in coalbed methane reservoirs during development can reasonably determine the development methods, operational regimes, and extraction rates, thereby improving the final recovery rate.
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High temperature resistance
Maximum operating temperature 150℃
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Convenient and easy to use
Graphical user interface Easy and understandable operation |
Reliable and stable
High accuracy, high stability
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Personalized customization
Can be customized according to needs Enhance equipment configuration |
Application Fields
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Application Functions
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Parameter Indicators
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