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According to the measured porosity and permeability parameters under different stratigraphic overburden pressures, the instrument can convert gas permeability residual coefficient, average gas permeability stress coefficient, pore residual coefficient, pore volume compression coefficient, etc. The instrument can also be used to calculate the pore volume compression coefficient, which can be converted to gas permeability residual coefficient.
Automatic Gas Permeameter Porosimeter Gas Permeameter Steady state gas permeameter and porosimeter Lab Core Logging Analysis for all kinds of rock samples in the simulation of effective overburden pressure conditions to determine the rock gas permeability and effective porosity. Overburden pressure effective permeability and overburden pressure effective porosity determination principle and conventional pore penetration measurement is basically the same, but around the rock samples need to be a high perimeter pressure can be applied to the measurement device. The pressure can be controlled and adjusted, and uniformly distributed in all phases of the sample. With the increase of overburden pressure, the pore penetration decreases with the increase of overburden pressure, so the measurement accuracy of the instrument is required to be high, and the data of some rock samples change a lot, so the measurement range of the instrument is required to be wide, and the overburden pressure affects the dense rock samples obviously, so it is required to pay special attention to the determination of the rock samples with low pore penetration. Through the measurement of pore penetration under the overburden pressure of different formations, we can get the data and change curves of pore penetration change under the overburden pressure of different formations.