Large Core Three-Dimensional Displacement Reservoir Physical Simulation Experimental Device

Large Core Three-Dimensional Displacement Reservoir Physical Simulation Experimental Device


This device is mainly used for studying displacement mechanisms, fluid flow states, and residual oil distribution; it can conduct research on the impact of different reservoir geological parameters (including reservoir permeability, oil saturation, porosity, oil viscosity, reservoir heterogeneity, etc.) on oil recovery efficiency; it can also carry out optimization studies on production and injection process parameters under different development methods (including injection temperature, injection rate, injection timing, injection-production well arrangement, injection-production well types, etc.); it supports various phase CO2 displacement experiments, gas drive, CO2 huff-and-puff experiments, and multicomponent thermal fluid displacement experiments to study their effects on reservoir recovery under the same formation parameters.
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High Precision

 

Temperature Control Accuracy ±1℃

Controllable Heating Speed

 


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Convenient and Easy to Use

 

Graphical User Interface

Easy and Understandable Operation


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Reliable and Stable

 

High Accuracy, High Stability

 

 


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Personalized Customization

 

Can Be Customized According to Needs

Upgrade Equipment Configuration

     

Application Fields

 

 

Application Functions

Product Parameters

Parameter Indicators

Sample Size Maximum 300mm×300mm×200mm
Temperature Loading Maximum 150℃, Temperature Control Accuracy: ±1℃, Controllable Heating Rate
Pressure Loading Overall Chamber Confining Pressure, Maximum Confining Pressure 50MPa, Control Accuracy: ≤±1%
Injection Medium Carbon Dioxide (Gaseous, Liquid, Supercritical States), Nitrogen, Oil, Water, Chemical Reagents and Other Non-Corrosive Fluids
Real-time Temperature Monitoring Points Two-layer Arrangement, Accuracy: ±0.1℃
Real-time Pore Pressure Monitoring Points Optional Two-layer Arrangement, Accuracy: 0.25%
Real-time Saturation Monitoring Points Two-layer Arrangement, Accuracy: 1%

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