Back to testing Ampere. It works. The previous definition with the average was wrong

This commit is contained in:
Jorge Gonzalez 2026-05-06 12:00:46 +02:00
commit 26d22049a8

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@ -413,20 +413,23 @@ submodule(moduleMesh) boundaryEM
! Minus sign as we look at the values exiting the surface (opposite to the normal)
! Density and momentum are reescaled as 'den' has no data about the node volume
mom_nodes(n) = - dot_product(node%output(s)%mom, edge%normal)/(node%v*Vol_ref*n_ref)
den_nodes(n) = node%output(s)%den/(node%v*Vol_ref*n_ref)
! den_nodes(n) = node%output(s)%den/(node%v*Vol_ref*n_ref)
end do
mom_center = mom_center + edge%gatherF(edge%centerXi(), edge%nNodes, mom_nodes)
den_center = den_center + edge%gatherF(edge%centerXi(), edge%nNodes, den_nodes)
charge_center = charge_center + qSpecies(s)*edge%gatherF(edge%centerXi(), edge%nNodes, den_nodes)
! mom_center = mom_center + edge%gatherF(edge%centerXi(), edge%nNodes, mom_nodes)
! den_center = den_center + edge%gatherF(edge%centerXi(), edge%nNodes, den_nodes)
! charge_center = charge_center + qSpecies(s)*edge%gatherF(edge%centerXi(), edge%nNodes, den_nodes)
mom_center = mom_center + qSpecies(s)*edge%gatherF(edge%centerXi(), edge%nNodes, mom_nodes)
end do
if (den_center > 1.0e-12) then
self%deltaElectricField(e) = self%deltaElectricField(e) + mom_center/den_center * charge_center * tauMin
! if (den_center > 1.0e-12) then
! self%deltaElectricField(e) = self%deltaElectricField(e) + mom_center/den_center * charge_center * tauMin
end if
! end if
self%deltaElectricField(e) = self%deltaElectricField(e) + mom_center * tauMin
deallocate(nodes, mom_nodes, den_nodes)