Book chapter
Microscale and Multiscale Computational Modelling of Morphological Changes in Plant Cellular Structure during Drying with a coupled Smoothed Particle Hydrodynamics and Coarse-Grained Approach
Advances in computational engineering science (ACES), pp.1-10
Scientech Publisher LLC
2017
Abstract
Mesh free numerical modelling has recently attracted increased attention for modelling the plant cellular structure for various applications. Simulating morphological changes in the food plant cellular structure during dying is one such key application. Due to the higher moisture content, food-plant materials are highly prone to drastic morphological changes during drying process. It has been shown that the microscale models using a coupled SPH-CG approach developed in this paper could facilitate the easy extension up to multiscale levels in 2-D as well as in 3-D. The main attributes targeted by this model includes incorporation of cellular level accuracy and computational efficiency gained by utilizing meshfree-based computational strategy.
Details
- Title
- Microscale and Multiscale Computational Modelling of Morphological Changes in Plant Cellular Structure during Drying with a coupled Smoothed Particle Hydrodynamics and Coarse-Grained Approach
- Authors
- Charith Rathnayaka (Author) - Queensland University of TechnologyW D C C Wijerathne (Author) - Queensland University of TechnologyH Charminda P Karunasena (Author) - University of RuhunaWijitha Senadeera (Author) - University of Southern QueenslandY T Gu (Author) - Queensland University of Technology
- Contributors
- Moubin Liu (Editor) - Peking UniversityXu Han (Editor) - Hebei University of TechnologyYuantong Gu (Editor) - Queensland University of TechnologyLi Zirui (Editor) - Wenzhou University
- Publication details
- Advances in computational engineering science (ACES), pp.1-10
- Publisher
- Scientech Publisher LLC
- ISBN
- 9781946018015
- Organisation Unit
- School of Science, Technology and Engineering; University of the Sunshine Coast, Queensland; School of Science and Engineering - Legacy
- Language
- English
- Record Identifier
- 99513507902621
- Output Type
- Book chapter
Metrics
12 Record Views