Matlab fig files for 'Experimental investigation of monodisperse solids drying in a gas-fluidized bed'
DOI:10.4121/20065832.v1
        
    
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DOI: 10.4121/20065832
    DOI: 10.4121/20065832
Datacite citation style
Munck, de, Martijn; Peters, Frank; Kuipers, Hans (2022): Matlab fig files for 'Experimental investigation of monodisperse solids drying in a gas-fluidized bed'. Version 1. 4TU.ResearchData. dataset. https://doi.org/10.4121/20065832.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 investigation of monodisperse solids drying in a gas-fluidized bed' published in Chemical Engineering Science.
In this study, experiments in a pseudo-2D fluidized bed setup were performed to obtain insight in the complex and changing bed hydrodynamics and its interplay with mass and heat transfer.
The data was obtained by using a combined Particle Image Velocimetry (PIV), Digital Image Analysis (DIA) and Infrared (IR) technique.
History
- 2022-06-15 first online, published, posted
Publisher
4TU.ResearchDataFormat
Matlab .figAssociated peer-reviewed publication
Experimental investigation of monodisperse solids drying in a gas-fluidized bedFunding
- NWO Grant 741.079.202
- ENW-PPS
Organizations
TU Eindhoven, Department of Chemical Engineering and ChemistryDATA
Files (21)
- 1,673 bytesMD5:1fdf2454096a0e5226ada5dedfd387e3README.txt
- 37,309 bytesMD5:5e71f3891246b54e66b1864b15925271Figure_10_A.fig
- 38,447 bytesMD5:b2d814eff3a4345ad9bf43405eed55c6Figure_10_B.fig
- 724,338 bytesMD5:bba4b3bd66463a0bec6f20bfd9beaa41Figure_11_A.fig
- 755,762 bytesMD5:49317a74f0c9c73ac55a5261788c54edFigure_11_B.fig
- 50,999 bytesMD5:575be40acba4bc35af48d37637a244c4Figure_12_A.fig
- 46,904 bytesMD5:7dfbbf7c7569033d496f86000f4f2e15Figure_12_B.fig
- 48,070 bytesMD5:ef1e8bb0381cf3204da512b60a27a8f5Figure_12_C.fig
- 56,817 bytesMD5:48da73f6a5d7bfcd298f8c91311e2293Figure_13.fig
- 38,086 bytesMD5:fd1077291a00e5093ba69ed1b9224b61Figure_2.fig
- 37,977 bytesMD5:57667e65d97aa31ff07421fc4fa85ab9Figure_3.fig
- 156,944 bytesMD5:066695b46f4e6628cadcd8c1ad0707e5Figure_7_A.fig
- 163,473 bytesMD5:ffe99039f1bfec04fb049826eef58f69Figure_7_B.fig
- 165,585 bytesMD5:a657383f5e5bf9fedf83d2bc53867505Figure_8_A.fig
- 172,118 bytesMD5:d5084f411fd4079da9079847a9db8b17Figure_8_B.fig
- 184,430 bytesMD5:77ad1bb8d6797a2a021c4430b1caa06cFigure_8_C.fig
- 190,094 bytesMD5:d07c164c0268298f56799cc53a477b1cFigure_8_D.fig
- 189,572 bytesMD5:43c10bc16681a022ce46863532b08ef1Figure_9_A.fig
- 198,940 bytesMD5:eb4c496d2bceebd97b9c1a6fb8642db6Figure_9_B.fig
- 208,209 bytesMD5:3dee1db1af0389fb1733584c4394dfd2Figure_9_C.fig
- 217,038 bytesMD5:36cb74e7c7d875beee04c740cf93a20dFigure_9_D.fig
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