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- Core Preparation
- Routine Core Analysis
- Special Core Analysis
- Reservoir Stimulation
- EOR
- IFT Measurement
- Fluid Sampling
- PVT
- Pump
- Drilling Laboratory
- Petroleum Laboratory
- Aniline Point Measuring Device
- Cloud Point Measuring Device
- Copper Corrosion Measuring Device
- Distillation Apparatus for Petroleum Fluids
- Ductility of Bituminous Materials Measuring
- Flash Point Measuring Device
- Ostwald’s Viscometer
- Penetration of Bituminous & Lubricating Grease Materials Measuring Device
- Pour Point Measuring Device
- Reid Vapor Pressure Measuring Device
- Saybolt Viscometer
- Smoke Point Measuring Device
- Softening Point of Asphalts & Tar Pitches Measuring Device
- Fluid Laboratory
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Benchtop Core Flooding
The BCF-E10 evaluates and optimizes oil recovery, based on different injection protocols and fluid such as surfactant injection, polymer injection, etc… This device tolerates a maximum pressure of 400 bar for liquids under unsteady state conditions, at confining pressures of up to 400 bar. This device comprises one transfer vessel and a core holder, capable of different injection scenarios. In addition, the transfer vessel can be used for chemical or microbial flooding.
Educational Bench Top Core Flooding BCF-E10 |
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Core Diameter | 1.5 inch |
Maximum Core Length | 3.5 inch |
Maximum Working Pressure | 400 bar |
Maximum Confining Pressure | 400 bar |
Working Temperature | Ambient |
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General Core Flooding
Read moreThe CF evaluates and optimizes oil recovery, based on different injection protocols and fluid, such as miscible and immiscible gas injection, surfactant injection, polymer injection and etc. This device tolerates a maximum pressure and temperature of 400 bar and 100 °C respectively, under unsteady state conditions at confining pressures up to 400 bar. One of the transfer vessels is a miniature type that can be used for rinsing the lines by filling them with toluene or other solvents. (E20: in addition, this miniature transfer vessel can be used for chemical or microbial flooding which the injected slug is small).
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Microbial Core Flooding
Read moreThe core flooding system is designed in a very flexible and contemporary way. Therefore, it can be employed in most of the upstream studies with appropriate modifications with special respect to MEOR core flooding experiments. Different types of experiments can be conducted using this device such as conventional fluid injection, soaking experiment for determining the wettability alteration capability of microbes and bacteria, adsorption test, tertiary oil recovery, and other experiments related to the injection of microorganisms into the core plugs.
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Spinning Drop IFT Measurement
Read moreThe designed Spinning Drop device (SD-ES10) is able to measure ultralow interfacial tension down to 10-5-5 mN/m. Ultra-low interfacial tension is utilized by special types of chemicals results in high oil recovery through IFT reduction and wettability alteration. These results help operators to develop and optimize emulsions and micro-emulsions.
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Pendant Drop Contact Angle and IFT Measurement
Read moreDrop shape analysis (pendant drop method) is a convenient way to measure surface tension. In this method, video images of pendant drops are digitized to determine the interface loci, then measuring the IFT through the solution of the Young-Laplace equation. Wettability of the reservoir rock and interfacial tensions between the reservoir fluids play the most important role in the efficiency of oil recovery.
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