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CINEMAX: 3D modelling and imaging of material microstructure - PhD summer school


Technical University of Denmark


General course objectives:
CINEMAX is a summer school where you get the chance to get teaching and hands-on experience with the complete workflow of high-resolution tomography analysis. Over 5 days, you will get introduced to data acquisition, 3D reconstruction, segmentation and meshing and, finally, 3D modelling of data to extract physical parameters describing mechanical and flow properties. The teaching and the exercises will take place in close interaction with top experts in the field. Exercises will require some basic programming skills, and will be carried out in a common python environment, introduced through an e-learning program that the students are required to follow before the school (Introduction to Advanced Tomography on Coursera https://www.coursera.org/learn/cinemaxe).

Learning objectives:
A student who has met the objectives of the course will be able to:
  • Explain the basics of X-ray tomography and imaging contrast modalities and length scales
  • Attain an overview of tomography applications and 4D correlative tomography
  • Understand and apply tomographic reconstruction by classical and algebraic methods
  • Understand and apply segmentation techniques to 3D data
  • Understand and apply approaches such as meshing to allow physical modelling of material properties
  • Understand and apply modelling of either flow or mechanical properties to the material investigated during the lab work sessions
  • Present his or her own PhD project and engage in an expert discussion on the science and application of tomography in the project
  • Apply, summarize and present the imaging and analysis methods learned to the practical examples of the labwork sessions

Contents:
CINEMAX includes lectures and exercises covering the full pipeline from data acquisition through reconstruction and segmentation to modelling of real 3D imaging data Basics of X-ray tomography and imaging contrast modalities and length scales Tomography applications and 4D correlative tomography Introduction to tomographic reconstruction Algebraic iterative methods and regularization Segmentation and meshing Introduction to continuum mechanics and the finite element method Introduction to flow modelling Automatization tools Visualization tools

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Course organizer
Jens Wenzel , Anders Bjorholm , Lars Pilgaard , Vedrana Andersen , Jakob Sauer
Place/Venue
Anker Engelunds Vej 1
City
2800 Kgs. Lyngby
Country
Denmark
Workload
5
Link
http://kurser.dtu.dk/course/47511