1. What are the contributions mentioned in the paper "Probability density function approach for modelling multi-phase flow with ganglia in porous media" ?
In this paper, the authors focus on the second source of hysteresis, which is often the main mechanism ( true for consolidated porous media ) and propose an upscaled model for multi-phase flow.
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2. What is the porescale problem that leads to closure?
Ganglia mobilization, trapping, coalescence and breakup are highly nonlinear porescale phenomena, typically leading to closure problems.
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3. How many particles were used to obtain smooth stochastic moments?
To obtain smooth stochastic moments, a huge number of particles was employed, i.e. an average of approximately 50 000 particles per cell.
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4. What is the evolution of the joint probability density function (JPDF) of relevant stochastic?
The evolution of the joint probability density function (JPDF) of relevant stochastic variables is governed by a differential Chapman–Kolmogorov equation (DCKE), which consists of convection, diffusion and source terms in a high-dimensional (physical plus probability) space (Gardiner 2004).
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