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We suggest our results demonstrate stick-slip motion, because they have a distinct pattern of water pressure, velocity, till deformation and icequake behaviour.
The evaluation of the Photo-CREC-Air is done using pressure, velocity, and UV intensity measurements.
The pressure, velocity, oxygen mass fraction and local current density distribution are presented.
The pressure, velocity, temperature distributions and averaged Nusselt number are presented.
Dropping pressure, velocity and heat transfer of the cell is simulated by a 3D modeling in fluent software.
The analyses results are compared with each other in terms of normalized pressure, velocity magnitude, and temperature distributions.
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The SIMPLER (Semi-Implicit Method for Pressure-Linked Equation Revised) algorithm (Patankar 1980) is employed to handle the coupling of pressure-velocity.
Steady state simulations were conducted using both Coupled and SIMPLE pressure-velocity solvers.
Finite volume method (FVM) is used to discretize the governing equations and SIMPLE algorithm is used for pressure-velocity coupling.
This technique decouples the pressure-velocity degrees of freedom and, as a consequence, the computational cost.
The IDEAL algorithm is an efficient and robust pressure-velocity coupling algorithm, which has been applied in a variety of fluid flow and heat transfer problems.
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