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(1) \mu_w(T, p) = \mu_{w, \, {\rm atm}}(T) \cdot  (0.9994+4.0295\cdot 10^{-5} p + 3.1062 \cdot 10^{-9} p^2)
(2) \mu_{w, \, {\rm atm}}(T) = (109.574-8.40564 \, S+0.313314 \, S^2+8.72213 \cdot 10^{-5} \, S^3) \cdot T^{A}
(3) A=-1.2166 + 2.63951\cdot 10^{-2} \, S - 6.79461 \cdot 10^{-4} \, S^2 - 5.47119 \cdot 10^{-5} \, S^3 + 1.55586 \cdot 10^{-6} \, S^4



\mu_w(T, p) 

Dynamic viscositycp at temperature T and pressure p

\mu_{w, \, {\rm atm}}(T)

T 

Temperature, °F 

p 

Pressure, psi 

S

Water salinity


See Also


Petroleum Industry / Upstream / Petroleum Engineering / Subsurface E&P Disciplines / Reservoir Engineering (RE) / PVT correlations / PVT Water correlations / Water viscosity correlations



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