Full description
Modelling of blood cells/ leukocytes moving along an artery wall towards an injury site can be directly modelled as spheres and cylinders (bluff bodies) rolling/translating along a wall as a first approximation to the problem. Understanding of the flow dynamics provides an insight to the transport of these biological cells. Two- and three-dimensional numerical simulations are performed using highly accurate spectral element codes to simulate a wide range of scenarios to understand these wall-particle interactions. Fluids Laboratory for Aeronautical and Industrial Research and Division of Biological Engineering at Monash University have been pioneering fluid dynamics research as applied to biological engineering and have international collaborations.Significance Statement
This data collection contains highly accurate results from the fundamental investigations of flow dynamics of wall-particle interaction over large parametric sweeps and the various mappings of flow transitions that occur. This information will not only be useful in understanding biological cell transport, but can be extended to mineral processing, chemical engineering, etc. These simulations consist of data from an amalgamation of studies run on various HPC clusters such as NCI, VLSCI, IVEC and MCC. The above stated parameter studies are comprehensive and were generated with over 2 M CPU hours of computational resources. While it is possible to recreate this data, the computational time and human effort would be large and intensive. This data set can be used by both experimentalists and numerical experts to validate their studies in the future.
Created: 2014
Data time period: 2014
Spatial Coverage And Location
iso3166: AU
Subjects
Biochemistry and Cell Biology |
Biological Sciences |
Biomedical Engineering |
Engineering |
FLAIR |
Fluids Laboratory for Aeronautical and Industrial Research |
Mechanical Engineering |
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Identifiers
- Handle : 1959.1/1176297
