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Abstract
To understand the typically heterogeneous flowing behavior of granular materials, it is important to combine flow tests with three-dimensional imaging. To probe the flow behavior of granular materials over a wide range of flow rates, it is imperative to be able to impose such flow rates in a well controlled manner while performing imaging tests that are compatible with all imposed flow rates. Achieving both flow control and bulk imaging capacity is challenging for a number of reasons. Here, we describe the design of a setup in which we are able to do imaging while imposing a constant overall shear rate on a granular material. We characterize the setup in which flow tests will be performed, which consists of a bottom-driven cone-plate or double-cone design. We show that the setup can be integrated in x-ray microtomography devices to aid particle tracking based flow measurements. The design is also compatible with typical rheometer setups. We also perform high speed imaging of a granular flow in an ultra-fast x-ray scanner, for which we provide proof-of-principle data in a simplified shear setup. The designed flow geometry is also compatible with said high speed imaging facility, where particle image velocimetry can be employed to extract quantitative flow field data.
Original language | English |
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Title of host publication | Powders & Grains 2021 – 9th International Conference on Micromechanics on Granular Media |
Publisher | EDP Sciences |
DOIs | |
Publication status | Published - 7 Jun 2021 |
Event | 9th International Conference on Micromechanics on Granular Media, Powders and Grains 2021 - Virtual, Online, Argentina Duration: 5 Jul 2021 → 6 Aug 2021 |
Publication series
Name | EPJ Web of Conferences |
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Volume | 249 |
ISSN (Electronic) | 2100-014X |
Conference
Conference | 9th International Conference on Micromechanics on Granular Media, Powders and Grains 2021 |
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Country/Territory | Argentina |
City | Virtual, Online |
Period | 5/07/21 → 6/08/21 |
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Dive into the research topics of 'Improved evaluation of granular media flows using an X-ray scanning compatible cone-plate setup'. Together they form a unique fingerprint.Projects
- 1 Finished
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CALIPER: Creating Granular Materials Experts by Developing Experimental Calibrations for Computational Methods
1/09/19 → 29/02/24
Project: EU research project