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\mu_w(T, p) = \mu_{w0}(T, p) \cdot \mu_r(T, m)
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\ln \mu_{w0}(T, p) = \sum_{n = 1}^5 \, d_n \cdot T^{n-3} + \rho_w(T, p) \cdot \sum_{n = 6}^{10} \, d_n \, T^{n-8}
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\ln \mu_r(T, m) = A \cdot m + B \cdot m^2 + C \cdot m^3
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 m = \frac{1,000 \cdot S}{M_{\mbox{NaCl}} \cdot (1-S)}
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 A = a_0 + a_1 \, T + a_2 \, T^2


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 B = b_0 + b_1 \, T + b_2 \, T^2
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 C = c_0 + c_1 \, T 
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 m = \frac{1,000 \cdot S}{M_{\mbox{NaCl}} \cdot (1-S)}


where

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body\mu_w
 

Dynamic viscositycp at temperature

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and pressure
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bodyp

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body--uriencoded--\mu_%7Bw1%7D

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Temperature, °F 

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Pressure, psi 

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bodyS

Water salinity

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