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Each simulation typically simulated 1,000 s of real time and averaged over ten times to obtain the mean value as the final performance metric.
The physical simulation typically used a single material to simulate the rock, constructing through artificial means the pores and fractures to perform the measurement of the acoustic wave velocity, quality factor and other physical quantities with different fracture parameters (He et al. 2001; Li et al. 2016; Amalokwu et al. 2014; Wang et al. 2013).
To overcome the well-known limitations associated with the relatively short time interval used in our MD simulation (typically <10−8 s), our simulations are performed at elevated temperatures where the distinct effects of GB diffusion are clearly identifiable.
A large gravitational (or classical atomic) N-body simulation typically includes fast binary stars, planet-moon systems, or other tightly bound objects, demanding a small timestep and effectively limiting the time interval over which simulation can take place.
A POPCO simulation typically begins with the following steps (Figure 1), labeled in this section by top-level source code function names.
Unfortunately, if the constrained model is then to be applied to a cosmological N-body simulation, typically with lower resolution, the resulting galaxy properties may shift away from their constraints.
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The early nucleation of clathrate hydrates, as demonstrated by molecular simulations, typically involves densification and high local concentration of guest molecules to form individual cages31,32,33.
Simulations typically include evaluations under a base-case scenario, and instantaneous parallel rate shocks, and may include alternate interest-rate scenarios.
As a result, optimization based on repeated simulations typically fails, and a simultaneous, equation-based approach must be applied.
In very large simulations (typically N≥107), due to network contention and the formation of clusters of galaxies, an uneven load easily verifies.
Unfortunately, electromagnetic simulations typically take from some tens of seconds to a few hours, hampering their coupling to evolutionary computation algorithms.
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