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Commit 866df765 authored by Lars Bilke's avatar Lars Bilke
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[web] Fixed (or removed) prj file references.

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with 14 additions and 24 deletions
......@@ -2,7 +2,7 @@
date = "2017-02-16T14:59:01+01:00"
title = "Linear"
weight = 151
project = "HydroMechanics/Linear/Confined_Compression/square_1e2.prj"
project = ["HydroMechanics/Linear/Confined_Compression/square_1e2.prj"]
author = "Dmitri Naumov"
[menu]
......
+++
project = "HydroMechanics/Linear/Unconfined_Compression_early/square_1e2_UC_early.prj"
project = ["HydroMechanics/Linear/Unconfined_Compression_early/square_1e2_UC_early.prj"]
author = "Tianyuan Zheng"
date = "2017-02-16T15:10:33+01:00"
title = "Unconfined compression"
......
......@@ -2,7 +2,7 @@
date = "2017-02-16T15:03:28+01:00"
title = "Linear, single fracture"
weight = 152
project = "LIE/HydroMechanics/single_fracture.prj"
project = ["LIE/HydroMechanics/single_fracture.prj"]
author = "Norihiro Watanabe"
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......
......@@ -2,7 +2,7 @@
title = "A test with nodal source term"
date = 2021-04-14T15:31:38+02:00
weight = 151
project = "HydroMechanics/NodalSourceTerm/nodal_source_test.prj"
project = ["HydroMechanics/NodalSourceTerm/nodal_source_test.prj"]
author = "Wenqing Wang"
[menu]
......
+++
project = "Parabolic/HT/ClassicalTransportExample/classical_transport_example_full_upwind.prj"
project = ["Parabolic/HT/ClassicalTransportExample/classical_transport_example_full_upwind.prj"]
author = "Wenqing Wang"
date = "2022-06-27T11:28:24+02:00"
title = "Classical transport example: using the full upwind stabilization"
......
+++
project = "Parabolic/HT/ClassicalTransportExample/classical_transport_example.prj"
project = ["Parabolic/HT/ClassicalTransportExample/classical_transport_example.prj"]
author = "Wenqing Wang"
date = "2022-06-07T14:55:48+02:00"
title = "Classical transport example: using the isotropic diffusion stabilization"
......
+++
project = "Parabolic/HT/HeatTransportInStationaryFlow/HeatTransportInStationaryFlow.prj"
project = ["Parabolic/HT/HeatTransportInStationaryFlow/HeatTransportInStationaryFlow.prj"]
author = "Wenqing Wang"
title = "One dimensional heat transport in stationary flow"
date = 2020-12-14T08:00:32+01:00
......
+++
project = "Parabolic/HT/ConstViscosity/square_5500x5500.prj"
project = ["Parabolic/HT/ConstViscosity/square_5500x5500.prj"]
author = "Thomas Fischer"
date = "2017-02-16T15:17:53+01:00"
title = "Constant viscosity"
......
+++
project = "Parabolic/HT/StaggeredCoupling/ADecovalexTHMCBasedHTExample/th_decovalex.prj"
project = ["Parabolic/HT/StaggeredCoupling/ADecovalexTHMCBasedHTExample/th_decovalex.prj"]
author = "Wenqing Wang"
date = "2018-02-13T12:42:53+01:00"
title = "An example of the coupled thermal hydraulic processes in the FEBEX type repository"
......
......@@ -3,7 +3,7 @@ author = "Boyan Meng and Haibing Shao"
date = "2018-02-27T16:44:00+01:00"
title = "Buildup Test"
weight = 172
project = "/Parabolic/LiquidFlow/BuildupTest/buildup_test.prj"
project = ["/Parabolic/LiquidFlow/BuildupTest/buildup_test.prj"]
[menu]
[menu.benchmarks]
......
......@@ -2,7 +2,7 @@
author = "Reza Taherdangkoo, Thomas Nagel, Christoph Butscher"
date = "2020.11.01T14:39:39+01:00"
title = "Drainage Liquid Flow"
project = "/Parabolic/LiquidFlow/DrainageExcavation/drainage_LiquidFlow.prj"
project = ["/Parabolic/LiquidFlow/DrainageExcavation/drainage_LiquidFlow.prj"]
[menu]
[menu.benchmarks]
......
......@@ -2,7 +2,6 @@
title = "Simulate saturated single phase flow in fractured porous media: tests for inclined elements"
date = "2021-08-02T11:13:53+02:00"
weight = 50
project = "Parabolic/LiquidFlow/InclinedMeshElements"
author = "Wenqing Wang"
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......@@ -10,8 +9,6 @@ author = "Wenqing Wang"
parent = "liquid-flow"
+++
{{< data-link >}}
There are four tests for the finite element analyses with inclined elements,
which are the benchmarks to simulate the saturated single phase flow in fractured
porous media. The correctness of the implementation of the
......
......@@ -2,7 +2,7 @@
date = "2017-02-17T14:33:45+01:00"
title = "Theis' problem"
weight = 171
project = "Parabolic/LiquidFlow/AxiSymTheis/axisym_theis.prj"
project = ["Parabolic/LiquidFlow/AxiSymTheis/axisym_theis.prj"]
author = "Wenqing Wang"
[menu]
......
......@@ -2,7 +2,7 @@
date = "2020-06-18T11:33:45+01:00"
title = "Primary variable constraint Dirichlet-type boundary condition"
weight = 171
project = "Parabolic/LiquidFlow/SimpleSynthetics/PrimaryVariableConstraintDirichletBC/cuboid_1x1x1_hex_1000_Dirichlet_Dirichlet_1.prj"
project = ["Parabolic/LiquidFlow/SimpleSynthetics/PrimaryVariableConstraintDirichletBC/cuboid_1x1x1_hex_1000_Dirichlet_Dirichlet_1.prj"]
author = "Thomas Fischer"
[menu]
......
......@@ -2,7 +2,7 @@
date = "2019-08-02T11:33:45+01:00"
title = "Liquid flow with time dependent boundary conditions and source term"
weight = 171
project = "Parabolic/LiquidFlow/TimeDependentHeterogeneousSourceTerm/TimeDependentHeterogeneousSourceTerm.prj"
project = ["Parabolic/LiquidFlow/TimeDependentHeterogeneousSourceTerm/TimeDependentHeterogeneousSourceTerm.prj"]
author = "Thomas Fischer"
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......
......@@ -2,7 +2,6 @@
date = "2017-02-17T14:33:45+01:00"
title = "Unconfined Aquifer"
weight = 171
project = "Parabolic/LiquidFlow/Unconfined_Aquifer"
author = "Thomas Kalbacher"
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......@@ -11,8 +10,6 @@ author = "Thomas Kalbacher"
+++
{{< data-link >}}
## Problem description
An aquifer is called an unconfined or phreatic aquifer if its upper surface (water level) is accessible to the atmosphere through permeable material. In contrast to a confined aquifer, the groundwater level in an unconfined aquifer does not have a superimposed impermeable rock layer to separate it from the atmosphere.
......
+++
project = "PhaseField/me2_pf_case1.prj"
author = "Keita Yoshioka"
date = "2020-07-27"
title = "Fluid driven percolation"
......
+++
project = "PhaseField/tpb_rgranite.prj"
author = "Keita Yoshioka"
date = "2020-07-27"
title = "Three point bending test"
......
+++
project = "PhaseField/ME01_ext_2D_orth.prj"
author = "Keita Yoshioka"
date = "2020-07-27"
title = "Three point bending test on anisotropic rock"
......
+++
project = "PhaseField/beam3d.prj"
author = "Xing-Yuan Miao"
date = "2017-05-19T09:10:33+01:00"
title = "Crack beam under tension"
......
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