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The mathematical formula describe rising fluid height in a narrow cylindrical vessel due to capillary action.
The parametric study of the coupled system shows the importance of fluid height and material property of the structure.
In the case of the 150 µm sample, the fluid height was 30 mm at about 30 s and 40 mm at about 75 s.
In this paper, we model the influence spread process as the fluid update process in three dimensions: the fluid height difference, the fluid temperature and the temperature difference.
Simulations with these two models gave better results for the highest fluid height investigated, especially close to the interface between the fluid layer and the porous medium.
Finally by considering frequency response function, natural frequency of the plate is extracted in different height of the fluid and effects of some parameters on the natural frequencies such as fluid height and dimensions of the plate are studied.
Similar(43)
In the experiment, the fluid heights were observed from 30 to 600 s.
The fluid heights were observed at about 2 s and 0.5 s after being immersed for the 350 µm and 750 µm macro-pore scaffolds.
Through the mathematical simulation, the maximum fluid heights at equilibrium for scaffold tubes of diameters 50, 150, 350, and 750 µm were 156.6, 52.7, 22.6, and 10.5 mm, respectively.
We executed several simulations in an attempt to match the experimental results of Aussillous et al. (2013) at different flow rates and fluid heights.
Using an integration formula based on the shape of the test sample cup, fluid heights at any volume were automatically tabulated for analysis.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com