Data supporting: Wet particle collisions simulated using the Local Front Reconstruction Method, a DNS approach
DOI: 10.4121/61d23b22-7cde-43a4-ba56-8015f47833c3
Datacite citation style
Dataset
This dataset contains the data supporting the publication "Wet particle collisions simulated using the Local Front Reconstruction Method, a DNS approach" published in Chemical Engineering Science. In this work, the collision of a wet and dry particle is simulated using Direct Numerical Simulations. In this framework, the Local Front Reconstruction Method, a Front Tracking approach, is used in combination with the Immersed Boundary Method. The data supporting the figures is included as follows:
4_StokesFlow.zip: raw data and postprocessing for Stokes Flow and Rotating tests in Figure 1 and Figure 2
5_DragOnSphere.zip: raw data and postprocessing for simulation of the flow around a sphere at different Re compared to literature in Figure 3
5_Ten Cate.zip: raw data and postprocessing for the test case where a sphere is settling in a viscous liquid in Figure 4
6_LFRMGridstudy.zip: raw data and postprocessing for grid sensitivity analysis in Figure 6 and 7
7_SettlingParticle.zip : raw data and postprocessing for the settling of a wet particle during first step of the collision in Figure 9 and 10a
7_Results.zip: raw data and postprocessing for the comparison with the experiments in Figure 12, 14, 16, 18, and 19 and the collision parameters in Figure 20 and Table 6
Affiliation of authors
Eindhoven University of Technology, Department of Chemical Engineering: A.H. Huijgen, T.J.A. Janssen, J.A.M. Kuipers, M.W. Baltussen
Hamburg University of Technology, Institute of Solids Process Engineering and Particle Technology: F. Bunke, S. Pietsch-Braune, S. Heinrich
History
- 2025-07-25 first online, published, posted
Publisher
4TU.ResearchDataFormat
.zip images/.png script/.py rawdata/.txt .csv .datOrganizations
Eindhoven University of Technology, Department of Chemical Engineering;Hamburg University of Technology, Institute of Solids Process Engineering and Particle Technology
DATA
Files (7)
- 6,222 bytesMD5:
9ed9faf1899873bb40f803540d11f084
README.txt - 1,173,071 bytesMD5:
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4_StokesFlow.zip - 519,488 bytesMD5:
4d0ca13f98f60933e5b15082a4f6a057
5_DragOnSphere.zip - 2,938,113 bytesMD5:
e5178d512664689643fe21db7d69c202
5_TenCate.zip - 4,565,426 bytesMD5:
bbeb782b3198d9271ee94c09affa7e83
6_LFRMGridstudy.zip - 14,594,455 bytesMD5:
8cada13fac14aac0de9a06a04675c1fa
7_Results.zip - 2,535,737 bytesMD5:
0ce9977923177c098f1befe846184903
7_SettlingParticle.zip -
download all files (zip)
26,332,512 bytes unzipped