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In the 3D human atrium simulations of this study, 256 processors yielded the 40 s of simulated electrical activity within 38 hours.
The following values were used in the baseline simulations of this study: pPredatedLow = 0.1, pPredatedHigh = 0.995.
The simulations of this study included stochasticity in mortality and ingrowth.
Accordingly, in the simulations of this study, ingrowth was predicted once the mean tree diameter exceeded 10 cm.
Because of its relatively low computational cost, the unsteady RANS method was used in the simulations of this study.
Compared to the measured temperatures shown in the GeotIS maps (StMWIT 2010), the simulations of this study predict temperatures 10 K lower in average for this depth.
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The Box-Behnken experiment design was used to minimize the number of simulations for this study.
The reservoir simulation of this study focuses on the oil water two-phase flow, and the fluid PVT data are obtained through the analysis of high-pressure physical properties (Table 2).
The results of these simulations ensure that the simulation core of this study could be applied to the performance analyses of naval ships considering their specifications.
Moreover, the basic simulation parameters of this study are included in this table.
In the simulation environment of this study, different samples of observation data correspond to totally independent fading conditions.
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