This numerical study aims to investigate the influence of I and T-shaped empty channels' geometry on the filling time of resin in a rectangular porous enclosed mold, mimicking the main operating principle of a liquid resin infusion (LRI) process. Geometrical optimization was conducted with the constructal design (CD) and exhaustive search (ES) methods. The problem was subjected to two constraints (areas of porous mold and empty channels). In addition, the I and T-shaped channels were subjected to one and three degrees of freedom (DOF), respectively. Conservation equations of mass and momentum for modeling of resin/air mixture flow were numerically solved with the finite volume method (FVM). Interaction between the phases was considered with the volume of fluid method (VOF), and the eect of porous medium resistance in the resin flow was calculated with Darcy's law. For the studied conditions, the best T-shaped configuration resulted in a filling time nearly three times lower than that for optimal I-shaped geometry, showing that the complexity of the channels benefited the performance. Moreover, the best T-shaped configurations were achieved for long single and bifurcated branches, except for configurations with skinny channels, which saw the generation of permanent voids.

Numerical analysis of the influence of empty channels design on performance of resin flow in a porous plate / Magalhaes G.M.C.; Fragassa C.; Lemos R.D.L.; Isoldi L.A.; Amico S.C.; Rocha L.A.O.; Souza J.A.; dos Santos E.D.. - In: APPLIED SCIENCES. - ISSN 2076-3417. - ELETTRONICO. - 10:11(2020), pp. 4054.1-4054.14. [10.3390/app10114054]

Numerical analysis of the influence of empty channels design on performance of resin flow in a porous plate

Fragassa C.;
2020

Abstract

This numerical study aims to investigate the influence of I and T-shaped empty channels' geometry on the filling time of resin in a rectangular porous enclosed mold, mimicking the main operating principle of a liquid resin infusion (LRI) process. Geometrical optimization was conducted with the constructal design (CD) and exhaustive search (ES) methods. The problem was subjected to two constraints (areas of porous mold and empty channels). In addition, the I and T-shaped channels were subjected to one and three degrees of freedom (DOF), respectively. Conservation equations of mass and momentum for modeling of resin/air mixture flow were numerically solved with the finite volume method (FVM). Interaction between the phases was considered with the volume of fluid method (VOF), and the eect of porous medium resistance in the resin flow was calculated with Darcy's law. For the studied conditions, the best T-shaped configuration resulted in a filling time nearly three times lower than that for optimal I-shaped geometry, showing that the complexity of the channels benefited the performance. Moreover, the best T-shaped configurations were achieved for long single and bifurcated branches, except for configurations with skinny channels, which saw the generation of permanent voids.
2020
Numerical analysis of the influence of empty channels design on performance of resin flow in a porous plate / Magalhaes G.M.C.; Fragassa C.; Lemos R.D.L.; Isoldi L.A.; Amico S.C.; Rocha L.A.O.; Souza J.A.; dos Santos E.D.. - In: APPLIED SCIENCES. - ISSN 2076-3417. - ELETTRONICO. - 10:11(2020), pp. 4054.1-4054.14. [10.3390/app10114054]
Magalhaes G.M.C.; Fragassa C.; Lemos R.D.L.; Isoldi L.A.; Amico S.C.; Rocha L.A.O.; Souza J.A.; dos Santos E.D.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/774690
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