Fluid properties affecting the fluid dynamics (fluid motion in pipes and porous reservoir).
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body | \rho_w^{\LARGE \circ} = \rho_w(P^{\LARGE \circ}, T^{\LARGE \circ}) |
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| density of water phase at standard pressure and temperature |
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body | \rho_o^{\LARGE \circ} = \rho_o(P^{\LARGE \circ}, T^{\LARGE \circ}) |
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| density of oil phase at standardpressure and temperature |
LaTeX Math Inline |
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body | \rho_g^{\LARGE \circ} = \rho_g(P^{\LARGE \circ}, T^{\LARGE \circ}) |
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| density of gas phase at standard pressure and temperature |
LaTeX Math Inline |
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body | \rho_w = \rho_w(P, T) |
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| density of water phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | \rho_o = \rho_o(P, T) |
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| density of oil phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | \rho_g = \rho_g(P, T) |
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| density of gas phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | B_w = B_w(P,T) = \frac{\rho_w^{\LARGE \circ}}{\rho_w} = \frac{V_w}{V_w^{\LARGE \circ}} |
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| FVF of water phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | B_o = B_o(P,T) = \frac{\rho_o^{\LARGE \circ}}{\rho_o} = \frac{V_o}{V_o^{\LARGE \circ}} |
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| FVF of oil phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | B_g = B_g(P,T) = \frac{\rho_g^{\LARGE \circ}}{\rho_g} = \frac{V_g}{V_g^{\LARGE \circ}} |
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| FVF of gas phase at arbitrary pressure and temperature |
| viscosity of water phase at arbitrary pressure and temperature |
| viscosity of oil phase at arbitrary pressure and temperature |
| viscosity of gas phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | R_s = R_s (P,T) = \frac{V_g^{\LARGE \circ}}{V_o} |
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| solution gas in oil phase at arbitrary pressure and temperature |
LaTeX Math Inline |
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body | R_v = R_v (P,T) = \frac{V_o^{\LARGE \circ}}{V_g} |
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| oil vapour in gas phase at arbitrary pressure and temperature |
| boiling pressure at arbitrary temperature |
| dew pressure at arbitrary temperature |
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