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view src/SbpOperators/boundaryops/normal_derivative.jl @ 1345:c2012db881cb refactor/grids
Clean notes.md
author | Jonatan Werpers <jonatan@werpers.com> |
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date | Mon, 15 May 2023 22:54:32 +0200 |
parents | e94ddef5e72f |
children | 08f06bfacd5c |
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""" normal_derivative(g, stencil_set::StencilSet, boundary) normal_derivative(g::TensorGrid, stencil_set::StencilSet, boundary::TensorGridBoundary) normal_derivative(g::EquidistantGrid, stencil_set::StencilSet, boundary) Creates the normal derivative boundary operator `d` as a `LazyTensor` `d` computes the normal derivative of a grid function on `boundary` using the 'd1' stencil in the given stencil_set. `d'` is the prolongation of the normal derivative of a grid function to the whole grid using the same stencil. On a one-dimensional `grid`, `d` is a `BoundaryOperator`. On a multi-dimensional `grid`, `d` is the inflation of a `BoundaryOperator`. See also: [`BoundaryOperator`](@ref), [`LazyTensors.inflate`](@ref). """ function normal_derivative end function normal_derivative(g::TensorGrid, stencil_set::StencilSet, boundary::TensorGridBoundary) op = normal_derivative(g.grids[grid_id(boundary)], stencil_set, boundary_id(boundary)) return LazyTensors.inflate(op, size(g), grid_id(boundary)) end function normal_derivative(g::EquidistantGrid, stencil_set::StencilSet, boundary) closure_stencil = parse_stencil(stencil_set["d1"]["closure"]) h_inv = inverse_spacing(g) scaled_stencil = scale(closure_stencil,h_inv) return BoundaryOperator(g, scaled_stencil, boundary) end