Modules

12 results

Applications in Computational Science and Engineering - Elective Modules12

Computational AcousticsNo ratings for this module yet.Computational Fluid MechanicsIn this module you will learn numerical methods for solving acoustic problems, in particular the Finite Element Method (FEM) and the Boundary Element Method (BEM). In the end you will be able to explain the fundamental methodology, assess typical problems in outdoor space and fluid-structure interactions, and implement a simple FEM- or BEM-program in MATLAB.5 ECTSruns this semesterMW2323Computational Thermo-Fluid DynamicsNo ratings for this module yet.Computational Fluid MechanicsYou gain an overview of numerical methods for solving heat and thermofluid dynamics problems and learn good programming practices in Matlab. By the end of the course you will be able to analyze physical and mathematical properties of the relevant partial differential equations and to implement appropriate numerical algorithms to solve typical heat transfer problems.4 ECTSruns this semesterMW2134Numerische Methoden für ErhaltungsgleichungenNo ratings for this module yet.Computational Fluid MechanicsYou will learn the derivation and numerical solution of conservation equations for conservative quantities. In the module you will treat scalar and coupled systems, handling discontinuities as well as Riemann problems, and you will apply conservative numerical methods such as the Godunov method as well as higher-order, stable methods.3 ECTSruns this semesterMW2337Particle-Simulation Methods for Fluid DynamicsNo ratings for this module yet.Computational Fluid MechanicsYou will learn particle-based simulation methods for flow problems – from atomistic methods through kinetic models to macroscopic particle solvers. In the end you will understand the fundamentals of the respective models, their algorithms, and know when which method is applicable.3 ECTSruns this semesterMW0696Advanced Fluid MechanicsNo ratings for this module yet.Computational Fluid MechanicsYou receive an in-depth introduction to the continuum description of fluids, the derivation and application of balance and momentum equations, as well as analytical solutions of the Navier–Stokes equations. In the end you will be able to explain boundary layer phenomena (laminar and turbulent), flow instabilities, as well as fundamental aspects of turbulent flows and transport processes (advection/diffusion) and apply them to simple technical problems.6 ECTSno date this semesterBGU41021
7 more in Applications in Computational Science and Engineering - Elective ModulesAn Introduction to Microfluidic SimulationsNo ratings for this module yet.Computational Fluid MechanicsYou get a compact overview of microfluidic systems, their special properties and the differences to classical flow problems. Based on various numerical models at macro-, meso- and micro-scale you will learn suitable simulation methods and will be able to explain selected procedures and their application areas at the end.3 ECTSno date this semesterMW0642Biofluid MechanicsNo ratings for this module yet.Computational Fluid MechanicsYou learn how fluid mechanics is applied to biological systems, in particular blood flow in vessels and flow in the lungs. By the end you will be able to use fluid-mechanical principles and mathematical as well as numerical methods to describe and simulate biological processes.5 ECTSno date this semesterMW0376Computational AerodynamicsNo ratings for this module yet.Computational Fluid MechanicsIn this module you will learn the fundamentals and practical application of computational aerodynamics (CFD). You will receive introductions to the Navier-Stokes equations, numerical solution methods (including finite-volume methods), turbulence modeling, boundary conditions, mesh generation as well as analysis and visualization of simulations. By the end you will be able to set up, execute, and critically evaluate flow simulations.5 ECTSno date this semesterLRG0110Lattice Boltzmann methodsNo ratings for this module yet.Computational Fluid MechanicsYou will learn the Lattice-Boltzmann Method (LBM) as an alternative to classical CFD methods: how the method is derived from kinetic models, how streaming and collision steps work, and which advantages LBM offers for complex geometries, microscopic interactions, and parallelization. In the end you will be able to theoretically classify, implement, and apply the method to selected model problems from science and engineering.9 ECTSno date this semesterCIT4130009Numerische Methoden in der Fluidmechanik (CFD)No ratings for this module yet.Computational Fluid MechanicsYou learn numerical methods for solving flow problems (in particular incompressible Navier–Stokes and convection–diffusion equations). By the end of the module you can implement numerical methods (finite differences, finite volumes, weighted residuals), time integration schemes and solvers, assess their error and stability, and interpret simulation results professionally.6 ECTSno date this semesterBGU41028Praktikum Numerische BiomechanikNo ratings for this module yet.Computational Fluid MechanicsYou learn how biological systems can be modeled and simulated realistically with the Finite Element Method (FEM). In the end you can reconstruct patient-specific geometries from medical image data, generate meshes, perform FE simulations, and evaluate the results for the assessment of, e.g., rupture risks.4 ECTSno date this semesterMW2247Turbulent Flow Simulation on HPC-SystemsNo ratings for this module yet.Computational Fluid MechanicsYou will learn the fundamentals and numerical treatment of turbulent, incompressible flows, from RANS equations through turbulence modeling to validation. You will also implement the algorithms in C++, parallelize them for distributed HPC systems, and run simulations including visualization.5 ECTSno date this semesterIN2311
2 more modules match, but they are taught in German. Show themFinite Elemente in der FluidmechanikNo ratings for this module yet.Computational Fluid MechanicsIn diesem Modul lernst Du, Finite-Elemente-Methoden für stationäre und zeitabhängige Konvektions‑Diffusions‑Probleme sowie für inkompressible Strömungen zu entwickeln und anzuwenden. Am Ende kannst Du die grundlegenden numerischen Herausforderungen solcher fluidmechanischen Probleme erkennen und geeignete FE‑Strategien zur Lösung einsetzen.3 ECTSno date this semesterMW2452Simulation turbulenter Strömungen auf HPC-Systemen (IN2311, MW2048)No ratings for this module yet.Computational Fluid MechanicsYou learn how to numerically model and simulate turbulent, incompressible flows on high-performance computers (HPC). This includes fundamentals of the RANS equations, turbulence modeling, numerical discretization and solution methods, as well as parallelization and visualization of simulation data. In the end you can analyze corresponding algorithms, implement them in C++ and run on distributed systems, and present results to a technical audience.5 ECTSno date this semesterMW2048