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Table of Contents
The TILDA Project
Objectives, Project and Activities
Implicit methods
Multi-level approach
Space Adaptive Methods/Meshing
Wall-modelled LES
Quality Measures for Curvilinear Finite Elements
Parallelisation to Several Tens-of-thousands of cores
I/O post- and Co-processing for High-order Methods
Implementation of High Order Discontinuous Galerkin Method and its Verification using Taylor-Green Vortex and Periodic Hills Test Cases
Large Eddy Simulation of single stream jet using High-order methods
Boeing Rudimentary Landing Gear Configurations
Generic Falcon Business Jet in Landing Configuration
Detached-Eddy Simulation of Dual Stream Nozzle Jet Using High Order Discontinuous Galerkin Method.
Objectives, Project and Activities
Implicit methods
Multi-level approach
Space Adaptive Methods/Meshing
Wall-modelled LES
Quality Measures for Curvilinear Finite Elements
Parallelisation to Several Tens-of-thousands of cores
I/O post- and Co-processing for High-order Methods
Implementation of High Order Discontinuous Galerkin Method and its Verification using Taylor-Green Vortex and Periodic Hills Test Cases
Large Eddy Simulation of single stream jet using High-order methods
Boeing Rudimentary Landing Gear Configurations
Generic Falcon Business Jet in Landing Configuration
Detached-Eddy Simulation of Dual Stream Nozzle Jet Using High Order Discontinuous Galerkin Method.