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  • bugfix/fix_rigidbodymotion_difference
  • decasteljau
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Created with Raphaël 2.2.027Jan26242322201917109431Dec292827261996327Nov20151418Oct16743219Jun13May415Apr9531Mar28262524232120191816151412Feb865128Jan2725161427Dec2621829Nov2522141312105428Oct27252423161411105130Sep29191273131Aug29282622211825Jul181716111093127Jun2518171310828May27262523221614131223Apr9824Mar2221191022Jan913Dec12109865328Nov151331Oct30Sep16643Set dim to 1, we want to do curve-shortening firstNew program for gradient flows in spaces of manifold-valued functionsAdd configuration file for the new CI systemImplement general surface normal fields for shells with nonplanar reference geometryRemove four obsolete testsFully implement measuring against an reference function given in closed formDon't include the omp.h headerStore the local energy in a pointer to the base class, rather than by valueFix one issue that prevented the code to compile with dimworld!=3Use more range-based for loopsTry to read grid file as VTK file if it has the .vtu or .vtp suffixNew program to measure discretization errorsUse the NonplanarCosseratShellEnergy if dim<dimworldAdapt to dune-functions basis interfaceUse a shared_ptr for the Neumann data functionImplement support for volume loadsUse FoamGrid if dim < dimworldCompletely remove the ***_ORDER preprocessor macrosWrite the simulation result in raw binary formatUse Higham's method instead of the SVD to compute the polar decompositionPort to the new dune-functions function space basis interfaceHide the adouble specializations behind #ifdefsIntroduce new evaluation methods that return their results by-valueIntroduce preprocessor variable PROJECTED_INTERPOLATION to switch between geodesic FE and projection-based FERewrite writing or P3 functions without the use of GeometryGridDo not use the preprocessor to control the approximation order of the VTK gridPort the CosseratVTKWriter class to the dune-functions basesMore range-based for and autoCompile again after recent changes to the assembler frameworkIntroduce a dedicated class LocalQuickAndDirtyFEFunction to produce initial iterates for the GFE minimization problemsMerge the MixedCosseratEnergy class into the CosseratEnergyLocalStiffness classHand over a localView, rather than an element plus a localFiniteElementA shell energy for a geometrically exact Cosserat shell with a nonplanar reference configurationAdd more matrix operations, with an eye on adouble typesGive the DR tensor variable the correct dimensionsUse MultiTypeBlockMatrix in the MixedGFEAssembler classUse a composite dune-functions basis, instead of two separate basis objectsMake the DR variable smallerConstruct a SkewMatrix from a FieldMatrixUse 'auto' a bit more
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