Matlab fig files for the article: Experimental study on binary solids drying in a vibro-fluidized bed
DOI:10.4121/fd7d5772-920d-47d9-919b-905c9122cadb.v1
        
    
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DOI: 10.4121/fd7d5772-920d-47d9-919b-905c9122cadb
    DOI: 10.4121/fd7d5772-920d-47d9-919b-905c9122cadb
Datacite citation style
Peters, Frank; de Munck, Martijn; J.A.M. Kuipers (2024): Matlab fig files for the article: Experimental study on binary solids drying in a vibro-fluidized bed. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/fd7d5772-920d-47d9-919b-905c9122cadb.v1
        Other citation styles (APA, Harvard, MLA, Vancouver, Chicago, IEEE) available at Datacite
    Dataset
This is a set of Matlab .fig files corresponding to the figures in the paper ' Experimental study on binary solids drying in a vibro-fluidized bed' published in AIChE Journal. In this study, experiments in a pseudo-2D vibro-fluidized bed setup are performed in order to better understand the mixing and drying of binary solids mixtures. The effects of the amplitude-frequency ratio and the vibration acceleration are described.
History
- 2024-09-06 first online, published, posted
Publisher
4TU.ResearchDataFormat
*.figAssociated peer-reviewed publication
Experimental study on binary solids drying in a vibro-fluidized bedFunding
- NWO Grant 741.079.202
- ENW-PPS
Organizations
TU Eindhoven, Department of Chemical Engineering and Chemistry, Multiphase Reactors GroupDATA
Files (21)
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- 51,995 bytesMD5:bc69b6d52b023d3d033df211c3112edfFigure_11A.fig
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- 40,645 bytesMD5:95839a944d4b62e06f51f0abc8b86cddFigure_12B.fig
- 196,034 bytesMD5:69c538b677439b6874c8c0a63bf32695Figure_13A.fig
- 195,907 bytesMD5:2784bbe4b9ddbd69576aa546ec3ec52dFigure_13B.fig
- 193,276 bytesMD5:10d31b211f7001203e44b54e4ef7ea56Figure_13C.fig
- 198,366 bytesMD5:5e4c8e74852745ed22204e199136fe4dFigure_14A.fig
- 245,273 bytesMD5:39b6f4f5551501a9b2c72e9894267657Figure_14B.fig
- 196,263 bytesMD5:cf685b6ee2770e18b5645561d9732ce7Figure_14C.fig
- 196,193 bytesMD5:a1f84a6c704e7dcabea0d1c1dc157120Figure_14D.fig
- 37,511 bytesMD5:39a8cf964c184df5f2c60dfa7cbdcd0dFigure_2.fig
- 186,131 bytesMD5:bf984264e4a6ad6aa15268b881d6cbaeFigure_4A.fig
- 196,006 bytesMD5:6f3fa56e9538facc36a7f2dc335e798eFigure_4B.fig
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- 196,250 bytesMD5:fb85519374591f0dce56cb1a66fe6b8aFigure_8A.fig
- 195,799 bytesMD5:c9daa836c17b10f25c42c6b9407c91e7Figure_8B.fig
- 195,875 bytesMD5:cfd10173c7038125fd060ffabbe32949Figure_8C.fig
- 195,039 bytesMD5:5c3a1474c47ac006d5272e26bf65e10eFigure_8D.fig
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