Exact(3)
The Computational Fluid Dynamics (CFD) technology is used to investigate the effect of emergency escape devices on the hydrodynamic load acting on SFT in uniform and oscillatory flows and water waves by numerical test.
Our theoretical results are validated and illustrated by numerical test cases for the Stokes and Navier-Stokes equations, using implicit-explicit (IMEX) backwards differences and Runge-Kutta time-integration solvers.
Our theoretical error estimates are confirmed by numerical test calculations of the ground state energy and wavefunction of the harmonic oscillator in one dimension with and without adaptive resolution.
Similar(57)
By numerical tests we observed the expected high spectral accuracy.
The second order accuracy of the scheme is verified by numerical tests.
Error estimates are provided and confirmed by numerical tests in multi-dimensions.
The insensitivity to the compressional instability of the adopted method is confirmed by numerical tests.
The proposed numerical model is validated by numerical tests in comparison with other methods reported in the literature.
Our criticism is illustrated by numerical tests on a set of problems from electronic structure calculations and acoustics.
The capability of the proposed filter to significantly reduce data noise is demonstrated by numerical tests including the application to experimental data.
A brief presentation of the model is followed by numerical tests that assess the model's performance by comparison with a priori DNS results.
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