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The work of adhesion (WA) by the probing media was calculated by use of advancing contact angle data.
Effective thermal conductivity for porous media was calculated by means of the finite volume method.
The electric field criterion of LN2 as insulation media was calculated from correlation between the experimental results and the field utilization factor.
The ratio of average proppant settling velocity and the settling velocity for single particle in infinite media was calculated to follow the previously proposed theory (Eq. 8).
Shear rate in porous media was calculated using Chauveteau and Zaitoun (1981), and a shear rate range of 70 90 s−1 was found in different rock samples used.
The free nickel concentration in the liquid media was calculated by equilibrium speciation modeling (MINTEQA2).
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The dynamical viscosity in such media is calculated.
The effective thermal conductivity of nanofluid in porous media is calculated using copper powder as porous media.
The effective bulk and transport parameters for isotropic porous media are calculated solving the corresponding closure problems.
The recoil surface areas of the porous media are calculated through the fractal quantification of the synthetic porous media.
Pressure drop and aerosol collection efficiency characteristics of such media are calculated and compared with available studies from the literature.
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