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The flow around a side-view mirror and its noise generation are investigated using large eddy simulation and direct acoustic simulation.
Beam characterisation, both single and in the form of arrays, has been by use of both MCNP simulation and direct Gafchromic EBT film dosimetry.
Both approaches (dynamic simulation and direct CSS prediction) were applied to the prediction of cyclic steady state of SMB unit for 1,1′-bi-2-naphthol enantiomers separation.
The dynamic behavior of piecewise linear and/or non-linear vibratory systems subject to a single harmonic excitation has been recently analyzed by using a one- or multi-term harmonic balance (or Galerkin's) method, piecewise linear techniques, analog simulation and direct numerical integration (digital simulation).
These high-order methods are expected to be more efficient than low-order methods for problems requiring high accuracy, such as wave propagation problems, vortex-dominated flows including high-lift configuration, helicopter blade vortex interaction, as well as large eddy simulation and direct numerical simulation of turbulence.
In order to assess the accuracy of our method, were constructed the impulse responses of a given environment (on an assigned grid of points) through both simulation and direct measurements.
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Computational fluid dynamics (CFD) research is increasingly much focused towards computationally intensive, eddy resolving simulation techniques of turbulent flows such as large-eddy simulation (LES) and direct numerical simulation (DNS).
In this sense, PRNS provides a unified framework for the numerical simulation of turbulent flows, and includes URANS, large-eddy simulation (LES) and direct numerical simulation (DNS) as special cases, depending on the choice of the cut-off frequency of the filter used.
Quantitative comparisons between the multiscale simulations and direct numerical simulations of the master partial differential equations are made.
At Cornell Li's approach includes both high-performance computing (large-eddy simulations and direct numerical simulations) and field data to develop a physical understanding of the transport of momentum, energy, and mass in the built environment.
Her approach includes both high-performance computing (large-eddy simulations and direct numerical simulations) and field experiment data to develop a physical understanding of the transport of momentum, energy and mass in the built environment.
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