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Electrical Properties Apparatus
The electrical properties device is an instrument for ambient electrical resistivity measurement using core plug samples. The manual version of the device includes an ambient electrical properties cell for 1.5-inch cores up to 4 inches in length, a resistivity meter, and a brine resistance measurement dip cell. In addition, properties such as Formation Factor, Resistivity Index, Saturation Exponent n, and Cementation Factor m can be determined.
Educational Electrical Properties Apparatus EP-S10 |
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Core Diameter | 1.5 inch |
Maximum Core Length | 4 inch |
Maximum Confining Pressure | 5 bar |
Working Temperature | Ambient |
Resistivity Measurement | 2 Electrodes |
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Gas Permeameter
Read moreThe gas permeability device is designed in a way that measures the permeability of plug-sized core samples with gas (air, nitrogen, …) at room temperature conditions while applying an overburden pressure of up to 20 bar using the steady-state method. This device is designed to determine the slip factor and Klingenberg permeability of the core plug samples.
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Liquid Permeability
Read moreThe liquid permeability device determines the absolute permeability of the plug-sized cores at ambient temperature using liquid (commonly used: water). In addition, this apparatus tolerates a confining pressure of up to 400 bar and is able to take into account the effect of upper layers on the permeability. This device is specifically designed to teach students the principles of liquid permeability efficiently.
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Saturator and Gravimetric Porosimeter
Read moreSeveral methods have been developed to measure the porosity and pore volume of a sample. One method is called the fluid renaturation method. In this method, a clean and dried sample is weighted, saturated with a liquid of known density in a desiccator, and then reweighed. The weight change divided by the density of the fluid result in the pore volume.
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Helium Porosimeter at Confining Pressure
Read moreNormally, the porosity of the cores is measured without applying confining pressure on the samples. Although the confining pressure is not able to significantly affect the porosity value, it may lead to a huge deviation on the estimated value of the original oil in place. This device measures the porosity of the core samples while under confining pressure. This equipment can be used for grain density measurement at net confining stress. Moreover, Porosity is usually expressed as a percentage of the core plugs’ total volume.
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