All Stories

  1. Implementation of a digital twin framework for directed energy deposition additive manufacture
  2. Calibration of a novel self adaptive dynamic heat source model using an autoencoder neural network
  3. How transparent is water? Addressing ethical concerns in AI surrogate development for nearshore wave modelling and the natural sciences
  4. Simulating neutronics heating using physics-informed neural networks to resolve the temperature field
  5. A digital twin for manufacturing with direct energy deposition: a stellarator inner vessel case study
  6. The aerodynamics of miniature insect flight
  7. Surrogate Model Development for Digital Experiments in Welding
  8. Harnessing 3D microarchitecture of pterosaur bone using multi-scale X-ray CT for aerospace material design
  9. A Digital Twin for Insect Wing Aerodynamics
  10. Quasi-Steady Aerodynamic Modelling of Hovering Miniature Insects
  11. An Omniverse Connector for FreeCAD
  12. Modelling artificial ground freezing subjected to high velocity seepage
  13. Non-local modelling of freezing and thawing of unsaturated soils
  14. Surrogate model development using simulation data to predict weld residual stress: A case study based on the NeT-TG1 benchmark
  15. Analysis of soil behavior under freezing and thawing conditions
  16. Non-Local Formulation of Heat Transfer with Phase Change in Domains with Spherical and Axial Symmetries
  17. ParaGEMS: Integrating discrete exterior calculus (DEC) into ParaFEM for geometric analysis of solid mechanics
  18. Parallelized discrete exterior calculus for three-dimensional elliptic problems
  19. Status and challenges of electrical stimulation use in chronic wound healing
  20. Analysis of heat transfer and water flow with phase change in saturated porous media by bond-based peridynamics
  21. A geometric formulation of linear elasticity based on discrete exterior calculus
  22. Inspection of Concrete Bridge Structures: Case Study Comparing Conventional Techniques with a Virtual Reality Approach
  23. Statistical modelling of fracture using cellular atomata finite element
  24. How growing tumour impacts intracranial pressure and deformation mechanics of brain
  25. 4D characterisation of damage and fracture mechanisms of ultra high performance fibre reinforced concrete by in-situ micro X-Ray computed tomography tests
  26. A massively parallel multiscale CAFE framework for the modelling of fracture in heterogeneous materials under dynamic loading
  27. OpenFPCI: A parallel fluid–structure interaction framework
  28. Use of gaming technology to bring bridge inspection to the office
  29. Image based in silico characterisation of the effective thermal properties of a graphite foam
  30. Characterisation of the spatial variability of material properties of Gilsocarbon and NBG-18 using random fields
  31. Modelling fracture in heterogeneous materials on HPC systems using a hybrid MPI/Fortran coarray multi-scale CAFE framework
  32. Four-Dimensional Imaging of Soft Tissue and Implanted Biomaterial Mechanics: A Barbed Suture Case Study for Tendon Repair
  33. A study of the progression of damage in an axially loaded Branta leucopsis femur using X-ray computed tomography and digital image correlation
  34. Effect of including damage at the tissue level in the nonlinear homogenisation of trabecular bone
  35. Building a Digital Wind Farm
  36. Effect of using different types of methods for the derivation of elastic modulus of bone - A critical survey
  37. Towards mechanism-based simulation of impact damage using exascale computing
  38. Micro X-ray computed tomography image-based two-scale homogenisation of ultra high performance fibre reinforced concrete
  39. Spatial variability in the mechanical properties of Gilsocarbon
  40. Nonlinear homogenisation of trabecular bone: Effect of solid phase constitutive model
  41. Multi-scale CAFE Framework for Simulating Fracture in Heterogeneous Materials Implemented in Fortran Co-arrays and MPI
  42. Evaluating the macroscopic yield behaviour of trabecular bone using a nonlinear homogenisation approach
  43. THE STOCHASTIC FINITE ELEMENT METHOD FOR NUCLEAR APPLICATIONS
  44. Transient thermal finite element analysis of CFC–Cu ITER monoblock using X-ray tomography data
  45. Spatial variability in the coefficient of thermal expansion induces pre-service stresses in computer models of virgin Gilsocarbon bricks
  46. Programming the Finite Element Method
  47. Fortran 2008 coarrays
  48. Three-dimensional cellular automata modelling of cleavage propagation across crystal boundaries in polycrystalline microstructures
  49. Practical Application of the Stochastic Finite Element Method
  50. Thermal characterisation of ceramic/metal joining techniques for fusion applications using X-ray tomography
  51. Sutured tendon repair; a multi-scale finite element model
  52. March of the Titans: The Locomotor Capabilities of Sauropod Dinosaurs
  53. Exploring Diagonal Gait Using a Forward Dynamic Three-Dimensional Chimpanzee Simulation
  54. Finite element modelling versus classic beam theory: comparing methods for stress estimation in a morphologically diverse sample of vertebrate long bones
  55. Tenocyte contraction induces crimp formation in tendon-like tissue
  56. The 'Goldilocks' effect: preservation bias in vertebrate track assemblages
  57. Simulating sauropod manus-only trackway formation using finite-element analysis
  58. FOSSIL VERTEBRATE TRACKS AS PALEOPENETROMETERS: CONFOUNDING EFFECTS OF FOOT MORPHOLOGY
  59. Sensitivity analysis in evolutionary robotic simulations of bipedal dinosaur running
  60. Biomechanics of Dromaeosaurid Dinosaur Claws: Application of X‐Ray Microtomography, Nanoindentation, and Finite Element Analysis
  61. Reinterpretation of palmate and semi-palmate (webbed) fossil tracks; insights from finite element modelling
  62. Simulation of clinical electrophysiology in 3D human atria: a high‐performance computing and high‐performance visualization application
  63. The convergence variability of parallel iterative solvers
  64. Parallel finite element analysis of coupled problems
  65. Automated Machine Learning Workflows for Fusion Power Plant Design