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Reservoir engineering course.

Reservoir engineering course.

Problem 1. Use Darcy’s law to find the flow rate through a cylindrical sample of rock. The cylinder has a diameter of 2 inches. The length of the sample is 1 foot. Pressure drop is 5 psi. Viscosity is 0.8 cp. Permeability is 0.15 D (for darcies). Please convert these values to the darcy set of units and then use Darcy’s law.

Problem 2. Estimate the flow rate for a well in the Covenant Field. Average formation pressure=2500 psi; well bore pressure adjacent to the formation=1500 psi; rw=0.33 ft and re=745 ft; formation thickness h=100 ft; permeability=8 md; oil viscosity=1.5 cp; formation volume factor Bo=1.05 rb/stb; skin=2.5. Use the following version of Darcy’s law that includes the conversion factor for field units:p_{ave}-p_w=frac{141.2qmu B_o}{kh}left[lnfrac{r_e}{r_w}-frac{1}{2}+sright]

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Reservoir engineering course.

Reservoir engineering course.

Problem 1. Use Darcy’s law to find the flow rate through a cylindrical sample of rock. The cylinder has a diameter of 2 inches. The length of the sample is 1 foot. Pressure drop is 5 psi. Viscosity is 0.8 cp. Permeability is 0.15 D (for darcies). Please convert these values to the darcy set of units and then use Darcy’s law.

Problem 2. Estimate the flow rate for a well in the Covenant Field. Average formation pressure=2500 psi; well bore pressure adjacent to the formation=1500 psi; rw=0.33 ft and re=745 ft; formation thickness h=100 ft; permeability=8 md; oil viscosity=1.5 cp; formation volume factor Bo=1.05 rb/stb; skin=2.5. Use the following version of Darcy’s law that includes the conversion factor for field units:p_{ave}-p_w=frac{141.2qmu B_o}{kh}left[lnfrac{r_e}{r_w}-frac{1}{2}+sright]

Responses are currently closed, but you can trackback from your own site.

Comments are closed.

Reservoir engineering course.

Reservoir engineering course.

Problem 1. Use Darcy’s law to find the flow rate through a cylindrical sample of rock. The cylinder has a diameter of 2 inches. The length of the sample is 1 foot. Pressure drop is 5 psi. Viscosity is 0.8 cp. Permeability is 0.15 D (for darcies). Please convert these values to the darcy set of units and then use Darcy’s law.

Problem 2. Estimate the flow rate for a well in the Covenant Field. Average formation pressure=2500 psi; well bore pressure adjacent to the formation=1500 psi; rw=0.33 ft and re=745 ft; formation thickness h=100 ft; permeability=8 md; oil viscosity=1.5 cp; formation volume factor Bo=1.05 rb/stb; skin=2.5. Use the following version of Darcy’s law that includes the conversion factor for field units:p_{ave}-p_w=frac{141.2qmu B_o}{kh}left[lnfrac{r_e}{r_w}-frac{1}{2}+sright]

Responses are currently closed, but you can trackback from your own site.

Comments are closed.

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