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pdftotext {} -
    
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1 Efficient·​C++·​finite·​element1 Efficient·​C++·​finite·​element
2 computing·​with·​Rheolef2 computing·​with·​Rheolef
3 Pierre·​Saramito3 Pierre·​Saramito
4 version·​7.​0·​update·​20·​February·​20184 version·​7.​0·​update·​21·​February·​2018
  
5 Re·​=·​10·​0005 Re·​=·​10·​000
  
6 Bi·​=·​0.​56 Bi·​=·​0.​5
  
7 W·​e·​=·​0.​77 W·​e·​=·​0.​7
  
Offset 80, 15 lines modifiedOffset 80, 15 lines modified
80 General·​high·​order·​piecewise·​polynomial·​finite·​element·​approximations·​are·​implemented,​·​together80 General·​high·​order·​piecewise·​polynomial·​finite·​element·​approximations·​are·​implemented,​·​together
81 with·​some·​mixed·​combinations·​for·​Stokes·​and·​incompressible·​elasticity.​·​The·​characteristic·​method81 with·​some·​mixed·​combinations·​for·​Stokes·​and·​incompressible·​elasticity.​·​The·​characteristic·​method
82 can·​be·​used·​for·​diffusion-​convection·​problems·​while·​hyperbolic·​systems·​can·​be·​discretized·​by·​the82 can·​be·​used·​for·​diffusion-​convection·​problems·​while·​hyperbolic·​systems·​can·​be·​discretized·​by·​the
83 discontinuous·​Galerkin·​method.​83 discontinuous·​Galerkin·​method.​
  
84 \xc484 \xc4
  
85 Rheolef·​version·​7.​0·​update·​20·​February·​201885 Rheolef·​version·​7.​0·​update·​21·​February·​2018
86 Contacts86 Contacts
87 email87 email
  
88 Pierre.​Saramito@imag.​fr88 Pierre.​Saramito@imag.​fr
  
89 home·​page89 home·​page
  
Offset 350, 15 lines modifiedOffset 350, 15 lines modified
350 .​350 .​
351 .​351 .​
352 .​352 .​
353 .​353 .​
  
354 \xc6354 \xc6
  
355 Rheolef·​version·​7.​0·​update·​20·​February·​2018355 Rheolef·​version·​7.​0·​update·​21·​February·​2018
  
356 2.​4356 2.​4
  
357 2.​3.​1·​The·​heat·​equation·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​357 2.​3.​1·​The·​heat·​equation·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​
358 2.​3.​2·​The·​convection-​diffusion·​problem·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​358 2.​3.​2·​The·​convection-​diffusion·​problem·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​
359 The·​Navier-​Stokes·​equations·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​359 The·​Navier-​Stokes·​equations·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​·​.​
  
Offset 1500, 15 lines modifiedOffset 1500, 15 lines modified
  
1500 Index1500 Index
  
1501 2561501 256
  
1502 \xc81502 \xc8
  
1503 Rheolef·​version·​7.​0·​update·​20·​February·​20181503 Rheolef·​version·​7.​0·​update·​21·​February·​2018
  
1504 Notations1504 Notations
1505 Rheolef1505 Rheolef
1506 d1506 d
1507 dot(u,​v)​1507 dot(u,​v)​
1508 ddot(sigma,​tau)​1508 ddot(sigma,​tau)​
1509 tr(sigma)​1509 tr(sigma)​
Offset 1814, 15 lines modifiedOffset 1814, 15 lines modified
1814 min(phi,​psi)​1814 min(phi,​psi)​
  
1815 largest·​integral·​not·​greater·​than·​φ1815 largest·​integral·​not·​greater·​than·​φ
1816 smallest·​integral·​not·​less·​than·​φ1816 smallest·​integral·​not·​less·​than·​φ
  
1817 \xc101817 \xc10
  
1818 Rheolef·​version·​7.​0·​update·​20·​February·​20181818 Rheolef·​version·​7.​0·​update·​21·​February·​2018
1819 Rheolef1819 Rheolef
1820 max(phi,​psi)​1820 max(phi,​psi)​
1821 pow(phi,​psi)​1821 pow(phi,​psi)​
1822 atan2(phi,​psi)​1822 atan2(phi,​psi)​
1823 fmod(phi,​psi)​1823 fmod(phi,​psi)​
  
1824 mathematics1824 mathematics
Offset 1887, 15 lines modifiedOffset 1887, 15 lines modified
1887 cd·​examples1887 cd·​examples
1888 111888 11
  
1889 \xc121889 \xc12
  
1890 1.​1.​11890 1.​1.​1
  
1891 Rheolef·​version·​7.​0·​update·​20·​February·​20181891 Rheolef·​version·​7.​0·​update·​21·​February·​2018
  
1892 Problem·​statement1892 Problem·​statement
  
1893 Let·​us·​consider·​the·​classical·​Poisson·​problem·​with·​homogeneous·​Dirichlet·​boundary·​conditions·​in1893 Let·​us·​consider·​the·​classical·​Poisson·​problem·​with·​homogeneous·​Dirichlet·​boundary·​conditions·​in
1894 a·​domain·​bounded·​Ω·​⊂·​Rd·​,​·​d·​=·​1,​·​2,​·​3:​1894 a·​domain·​bounded·​Ω·​⊂·​Rd·​,​·​d·​=·​1,​·​2,​·​3:​
1895 (P)​:​·​find·​u,​·​defined·​in·​Ω,​·​such·​that:​1895 (P)​:​·​find·​u,​·​defined·​in·​Ω,​·​such·​that:​
1896 −∆u·​=1896 −∆u·​=
Offset 2037, 15 lines modifiedOffset 2037, 15 lines modified
2037 field·​uh·​(·​Xh·​)​;​2037 field·​uh·​(·​Xh·​)​;​
  
2038 The·​field·​uh·​contains·​the·​the·​degrees·​of·​freedom.​2038 The·​field·​uh·​contains·​the·​the·​degrees·​of·​freedom.​
2039 uh·​[·​"·​boundary·​"·​]·​=·​0;​2039 uh·​[·​"·​boundary·​"·​]·​=·​0;​
  
2040 \xc142040 \xc14
  
2041 Rheolef·​version·​7.​0·​update·​20·​February·​20182041 Rheolef·​version·​7.​0·​update·​21·​February·​2018
  
2042 Some·​degrees·​of·​freedom·​are·​prescribed·​as·​zero·​on·​the·​boundary.​2042 Some·​degrees·​of·​freedom·​are·​prescribed·​as·​zero·​on·​the·​boundary.​
2043 Let·​(ϕi·​)​06i<dim(Xh·​)​·​be·​the·​basis·​of·​Xh·​associated·​to·​the·​Lagrange·​nodes,​·​e.​g.​·​the·​vertices·​of2043 Let·​(ϕi·​)​06i<dim(Xh·​)​·​be·​the·​basis·​of·​Xh·​associated·​to·​the·​Lagrange·​nodes,​·​e.​g.​·​the·​vertices·​of
2044 the·​mesh·​for·​the·​P1·​approximation·​and·​the·​vertices·​and·​the·​middle·​of·​the·​edges·​for·​the·​P22044 the·​mesh·​for·​the·​P1·​approximation·​and·​the·​vertices·​and·​the·​middle·​of·​the·​edges·​for·​the·​P2
2045 approximation.​·​The·​approximate·​solution·​uh·​expresses·​as·​a·​linear·​combination·​of·​the·​continuous2045 approximation.​·​The·​approximate·​solution·​uh·​expresses·​as·​a·​linear·​combination·​of·​the·​continuous
2046 piecewise·​polynomial·​functions·​(ϕi·​)​:​2046 piecewise·​polynomial·​functions·​(ϕi·​)​:​
2047 X2047 X
Offset 2181, 15 lines modifiedOffset 2181, 15 lines modified
2181 logo·​in·​the2181 logo·​in·​the
2182 right·​margin.​·​See·​http:​/​/​en.​wikipedia.​org/​wiki/​Anaglyph_image·​for·​more·​and·​http:​/​/​www.​2182 right·​margin.​·​See·​http:​/​/​en.​wikipedia.​org/​wiki/​Anaglyph_image·​for·​more·​and·​http:​/​/​www.​
2183 alpes-​stereo.​com/​lunettes.​html·​for·​how·​to·​find·​anaglyph·​red-​cyan·​glasses.​·​For·​simplicity,​·​it2183 alpes-​stereo.​com/​lunettes.​html·​for·​how·​to·​find·​anaglyph·​red-​cyan·​glasses.​·​For·​simplicity,​·​it
2184 would·​perhaps·​prefer·​to·​switch·​to·​the·​gnuplot·​render:​2184 would·​perhaps·​prefer·​to·​switch·​to·​the·​gnuplot·​render:​
  
2185 \xc162185 \xc16
  
2186 Rheolef·​version·​7.​0·​update·​20·​February·​20182186 Rheolef·​version·​7.​0·​update·​21·​February·​2018
  
2187 Figure·​1.​2:​·​Alternative·​representations·​of·​the·​solution·​of·​the·​model·​problem·​(d·​=·​2·​and·​the·​P12187 Figure·​1.​2:​·​Alternative·​representations·​of·​the·​solution·​of·​the·​model·​problem·​(d·​=·​2·​and·​the·​P1
2188 element)​:​·​(left)​·​in·​black-​and-​white;​·​(right)​·​in·​elevation·​and·​stereoscopic·​anaglyph·​mode.​2188 element)​:​·​(left)​·​in·​black-​and-​white;​·​(right)​·​in·​elevation·​and·​stereoscopic·​anaglyph·​mode.​
  
2189 Figure·​1.​3:​·​Red-​cyan·​anaglyph·​glasses·​for·​the·​stereoscopic·​visualization.​2189 Figure·​1.​3:​·​Red-​cyan·​anaglyph·​glasses·​for·​the·​stereoscopic·​visualization.​
2190 field·​square.​field·​-​gnuplot2190 field·​square.​field·​-​gnuplot
2191 field·​square.​field·​-​gnuplot·​-​bw2191 field·​square.​field·​-​gnuplot·​-​bw
Offset 2239, 15 lines modifiedOffset 2239, 15 lines modified
  
2239 Figure·​1.​4:​·​Solution·​of·​the·​model·​problem·​for·​d·​=·​3·​and·​the·​P1·​element·​:​·​(left)​·​mesh;​·​(right)​2239 Figure·​1.​4:​·​Solution·​of·​the·​model·​problem·​for·​d·​=·​3·​and·​the·​P1·​element·​:​·​(left)​·​mesh;​·​(right)​
2240 isovalue,​·​cut·​planes·​and·​stereo·​anaglyph·​renderings.​2240 isovalue,​·​cut·​planes·​and·​stereo·​anaglyph·​renderings.​
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