Roque, B.A.C.; Brasileiro, P.P.F.; Brandão, Y.B.; de Lima Filho, H.J.B.; Converti, A.; Aliakbarian, B.; Benachour, M.; Sarubbo, L.A.
Simulation Study of Hydrodynamic Conditions in Reaction Cell for Cement Biomineralization Using Factorial Design and Computational Fluid Dynamics: Prospects for Increased Useful Life of Concrete Structures and Energetic/Environmental Benefits. Energies 2023, 16, 3597.
https://doi.org/10.3390/en16083597
AMA Style
Roque BAC, Brasileiro PPF, Brandão YB, de Lima Filho HJB, Converti A, Aliakbarian B, Benachour M, Sarubbo LA.
Simulation Study of Hydrodynamic Conditions in Reaction Cell for Cement Biomineralization Using Factorial Design and Computational Fluid Dynamics: Prospects for Increased Useful Life of Concrete Structures and Energetic/Environmental Benefits. Energies. 2023; 16(8):3597.
https://doi.org/10.3390/en16083597
Chicago/Turabian Style
Roque, Bruno Augusto Cabral, Pedro Pinto Ferreira Brasileiro, Yana Batista Brandão, Hilario Jorge Bezerra de Lima Filho, Attilio Converti, Bahar Aliakbarian, Mohand Benachour, and Leonie Asfora Sarubbo.
2023. "Simulation Study of Hydrodynamic Conditions in Reaction Cell for Cement Biomineralization Using Factorial Design and Computational Fluid Dynamics: Prospects for Increased Useful Life of Concrete Structures and Energetic/Environmental Benefits" Energies 16, no. 8: 3597.
https://doi.org/10.3390/en16083597
APA Style
Roque, B. A. C., Brasileiro, P. P. F., Brandão, Y. B., de Lima Filho, H. J. B., Converti, A., Aliakbarian, B., Benachour, M., & Sarubbo, L. A.
(2023). Simulation Study of Hydrodynamic Conditions in Reaction Cell for Cement Biomineralization Using Factorial Design and Computational Fluid Dynamics: Prospects for Increased Useful Life of Concrete Structures and Energetic/Environmental Benefits. Energies, 16(8), 3597.
https://doi.org/10.3390/en16083597