TY - GEN
T1 - Diseño de sólidos bidimensionales para la reducción de velocidades y presiones en recursos hídricos utilizando el software CFD e Inventor
AU - Diaz Terrones, Jose Luis
AU - Cornejo Meléndez, Jheremy
AU - Arteaga, Carmona
AU - Abel,
N1 - Publisher Copyright:
© 2024 Latin American and Caribbean Consortium of Engineering Institutions. All rights reserved.
PY - 2024
Y1 - 2024
N2 - Water resources are affected by rainstorms, causing increases in flows and velocities, which in turn generate erosion and overflows in their causes. For the aforementioned reasons, it is urgent to design structures to reduce the velocities and dissipate the energy produced by the increase in flows, unfortunately the study of the kinematics of fluids is complex, since being able to study the behavior of these obeys the solution of very complex differential equations such as those of Navier-Stokes and Saint Venant. Currently, technological progress allows the partial resolution of the aforementioned equations, which prompted the realization of this research in which a model of two-dimensional barriers was designed using Autodesk Inventor software and simulated in Autodesk CFD, using water as a fluid, which was subjected to 5 different speeds and pressures in order to analyze whether or not the heatsink module created achieved the efficient dissipation of energy between its inlet and outlet sections, thus laying the groundwork for future research on sediment settling, hydraulic structures or scours.
AB - Water resources are affected by rainstorms, causing increases in flows and velocities, which in turn generate erosion and overflows in their causes. For the aforementioned reasons, it is urgent to design structures to reduce the velocities and dissipate the energy produced by the increase in flows, unfortunately the study of the kinematics of fluids is complex, since being able to study the behavior of these obeys the solution of very complex differential equations such as those of Navier-Stokes and Saint Venant. Currently, technological progress allows the partial resolution of the aforementioned equations, which prompted the realization of this research in which a model of two-dimensional barriers was designed using Autodesk Inventor software and simulated in Autodesk CFD, using water as a fluid, which was subjected to 5 different speeds and pressures in order to analyze whether or not the heatsink module created achieved the efficient dissipation of energy between its inlet and outlet sections, thus laying the groundwork for future research on sediment settling, hydraulic structures or scours.
KW - CFD
KW - Energy Dissipation
KW - Pressures
KW - Solids or Two-Dimensional Barriers
KW - Velocities
UR - https://www.scopus.com/pages/publications/85203795886
U2 - 10.18687/LACCEI2024.1.1.116
DO - 10.18687/LACCEI2024.1.1.116
M3 - Contribución a la conferencia
AN - SCOPUS:85203795886
T3 - Proceedings of the LACCEI international Multi-conference for Engineering, Education and Technology
BT - Proceedings of the 22nd LACCEI International Multi-Conference for Engineering, Education and Technology
T2 - 22nd LACCEI International Multi-Conference for Engineering, Education and Technology, LACCEI 2024
Y2 - 17 July 2024 through 19 July 2024
ER -