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A novel wavelet-domain diffusion scheme is proposed for image denoising.
A new second-order accurate, explicit diffusion scheme is presented and discussed.
Accuracy and iterative performance can be controlled by parameters inherited from the generating hyperbolic diffusion scheme.
We propose a new cell-centered diffusion scheme on unstructured meshes.
The core spreading method and particle strength exchange were selected as the viscous diffusion scheme.
In this study, geometric algebra (GA) is introduced to develop a dynamic evacuation simulation framework for a hazardous gas diffusion scheme.
Similar(23)
A new reconstruction algorithm is proposed for constructing cell-centered diffusion schemes on distorted meshes.
In particular we develop Adjacent-Cell Preconditioners (AP) that have the same coupling stencil as cell-centered diffusion schemes.
Naturally then, we develop upwind schemes for this entire system; there is thus no need to develop two different schemes, i.e., advection and diffusion schemes.
We present numerical results to demonstrate the tremendous gains offered by the new diffusion schemes, driving the rise of explicit schemes in the steady state computation for diffusion problems.
Numerical results confirm that the proposed scaling is critically important for rendering hyperbolic diffusion schemes independent of the grid unit and for achieving optimal performance of a hyperbolic diffusion solver.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com