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The proposed design is simulated through an efficient full-vector modal solver based on the finite difference method with anisotropic perfectly matched layers absorbing boundary condition.
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The influence of the parameters, i.e., the thickness of the layers, is determined using a mode solver based on the Fourier Modal Method [16 18].
A solver based solution is then proposed.
A multi-dimensional Riemann solver based on the HLLC method (denoted by HLLC-2D solver) is established.
This surface representation is used both for membrane solver based on finite element method (FEM) and for the fluid solver based on the boundary element method (BEM).
"ode15s" function is a variable order solver based on the numerical differentiation formulas (NDFs) and is a multistep solver.
In addition there are two other solvers available in STEPS 1.3: 'Wmdirect', which is a well-mixed stochastic solver based on Gillespie's SSA [ 17], and 'Wmrk4', which is a deterministic solver based on the Runge Kutta method [ 24].
The Bulirsch-Stoer method is an accurate ODE solver based on Richardson extrapolation [ 25, 26].
Differential equations were integrated using the function ode15s, which is a variable-order solver based on the numerical differentiation formulas.
Alph Bingham, one of InnoCentive's founders, told McKinsey that "you wouldn't hire" a significant percentage of successful solvers based on their credentials.
The best positions are obtained using eigenvectors overlapping requiring only a modal solver leading to a very short computation time as no propagation is required.
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