dc.contributor | Pérez Cuervo, Juan Ricardo | |
dc.contributor | Soler Gómez, David Gerónimo | |
dc.contributor | Universidad Santo Tomas | |
dc.creator | Montañas Rojas, Andrés Felipe | |
dc.date.accessioned | 2023-07-19T20:43:14Z | |
dc.date.accessioned | 2023-09-06T14:07:56Z | |
dc.date.available | 2023-07-19T20:43:14Z | |
dc.date.available | 2023-09-06T14:07:56Z | |
dc.date.created | 2023-07-19T20:43:14Z | |
dc.date.issued | 2023-07-18 | |
dc.identifier | Montaña Rojas, A. F. (2023). Análisis y modelado de fibras naturales mediante el método de elementos finitos (FEM) con desarrollo de aplicativo web (Tesis de pregrado, Universidad Santo Tomás, Tunja). | |
dc.identifier | http://hdl.handle.net/11634/51383 | |
dc.identifier | reponame:Repositorio Institucional Universidad Santo Tomás | |
dc.identifier | instname:Universidad Santo Tomás | |
dc.identifier | repourl:https://repository.usta.edu.co | |
dc.identifier.uri | https://repositorioslatinoamericanos.uchile.cl/handle/2250/8680256 | |
dc.description.abstract | The thesis project titled "Characterization, Modeling, and Mathematical Flow Design of Fique Mesh through the Finite Element Method and Weighted Residuals, with the Design of a Web Application" aims to develop a web application that enables the analysis of fique mesh using the finite element method and weighted residuals.
A thorough characterization and modeling of fique mesh were conducted, which included obtaining data on its rupture strength, tensile deformation, and rupture time, both in dry and wet conditions. Subsequently, the collected data were used to develop a mathematical formulation of weighted residuals for fique mesh.
The Geofem web application, based on the MUI library and designed with TypeScript and React, enables the processing of these data and the visualization of the analysis results. Users can input fique mesh data and receive a detailed analysis, including displacements, maximum loads, and deformations, among others.
The results obtained demonstrate that the Geofem web application is an effective tool for the detailed analysis of fique mesh using the finite element method and weighted residuals. The platform offers the possibility of saving time and resources in comparison with manual analysis.
Therefore, it is concluded that Geofem is a valuable tool for the evaluation of fique mesh and can be of great utility to civil engineers and professionals in the field of natural materials and materials engineering. | |
dc.language | spa | |
dc.publisher | Universidad Santo Tomás | |
dc.publisher | Pregrado Ingeniería Civil | |
dc.publisher | Facultad de Ingeniería Civil | |
dc.relation | AnalyticalIndicator \textbar MOOSE. (s. f.). Recuperado 10 de septiembre de 2022, de https://mooseframework.inl.gov/source/indicators/AnalyticalIndicator.html | |
dc.relation | Austrell, P.-E. (2004). CALFEM: A finite element toolbox: version 3.4. Structural Mechanics, LTH. | |
dc.relation | Baquero, L. H. (2013). EVALUACIÓN DE LA INTERACCIÓN DINAMICA SUELO-ESTRUCTURA DE EDIFICACIONES CONSTRUIDAS EN LADERA. 1, 1(1), 214. | |
dc.relation | CALCULIX: A Three-Dimensional Structural Finite Elemente Program. (2023, septiembre 9). http://www.calculix.de/ | |
dc.relation | Camacho Orozco, S., & Ramos-Cañón, A. M. (2016). Failure potential index for slopes conditioned by landforms. Bol. Cienc. Tierra, 40, 39-45. https://doi.org/10.15446/rbct.n40.53658 | |
dc.relation | CASTM, C. (2019, octubre 9). Cast3M - Mathematical software—SwMATH [CAS3M]. https://swmath.org/software/12114 | |
dc.relation | Chen, H., Liu, B., Zhou, W., Wang, D., & He, C. (2015). Mechanical behavior of a slope reinforced with sisal fiber inclusions. 2015, 93(1066), 1076. | |
dc.relation | Code_Aster. (2010, octubre 10). [Code_Aster]. https://www.code-aster.org/spip.php?rubrique1 | |
dc.relation | DUNE, D. (2013, septiembre 5). DUNE - DUNE Numerics [DUNE]. https://www.dune-project.org/ | |
dc.relation | ELMER, F. (2014). Elmer FEM – open source multiphysical simulation software [ELMER FEM]. http://www.elmerfem.org/blog/ | |
dc.relation | FEAP - Mathematical software—SwMATH. (2012, febrero 17). [FEAP]. https://swmath.org/software/4963 | |
dc.relation | FEniCSx \textbar FEniCS Project. (2011, mayo 15). [FENICSX]. https://fenicsproject.org/ | |
dc.relation | FTS, A. (2022, febrero 10). FTS Andina S.A.C. \textbar Tapa Tool-Less® [ANDINA]. https://www.fts-andina.com/producto/tapa-tool-less/ | |
dc.relation | GET, F. (2019). GetFEM Homepage—GetFEM [GET FEM]. https://getfem.org/ | |
dc.relation | Jackson Andrés, G. H. (2018). ESTUDIO COMPARATIVO DEL COMPORTAMIENTO MECÁNICO, ENTRE LOS SISTEMAS DE APOYO INDIVIDUAL Y TIPO PANTALLA, PARA EL REFORZAMIENTO DE UN TALUD CON ANCLAJES. UNAL. | |
dc.relation | Kratos multiphysics—Buscar con Google. (2019). [KRATOS]. https://www.google.com/search?q=Kratos+multiphysics&oq=Kratos+multiphysics&aqs=chrome..69i57j0i19l3j0i19i22i30l5.314j0j4&sourceid=chrome&ie=UTF-8 | |
dc.relation | Laura Ángela, G. O. (2017). Estudio del efecto de la morfología sobre la estabilidad de taludes sometidos a lluvia. UNAL. | |
dc.relation | MAITFEM, M. (2018). MATFEM - Home [MAITFEM]. https://www.matfem.de/en/ | |
dc.relation | MARTIN, E. M. (2016). Modelo numérico micromecánico del proceso de fractura de estructuras fabricadas con bambú Guadua angustifolia. UNAL. | |
dc.relation | Noy Hilarión, F. L. (2013). Programa didáctico a código abierto de análisis dinámico de estructuras UNDIN 1.0. https://repositorio.unal.edu.co/handle/unal/50830 | |
dc.relation | Open System for Earthquake Engineering Simulation—Home Page. (2018). [SIMULATION]. https://opensees.berkeley.edu/ | |
dc.relation | OpenFOAM. (2019). [FOAM]. https://www.openfoam.com/ | |
dc.relation | Prasad, B., Muni Reddy, G., Prasad, B., Muni Reddy, G., Murali Krishna, B., & Varghese, S. (2017). Analysis of slope stability with natural fibre reinforcement using finite element method. 2017, 12(3), 433-446. | |
dc.relation | Segrera, D. L. L., & Garzón-Alvarado, D. A. (2012). Enseñanza del método de los elementos finitos en ingeniería civil y mecánica utilizando el programa de computador a código abierto PEFiCA. Revista Educación en Ingeniería, 7(14), 35-46. | |
dc.relation | The deal. II Library: Tutorial programs. (2018). https://www.dealii.org/current/doxygen/deal.II/Tutorial.html | |
dc.relation | Ramírez, C. A., Ramírez, J. H., & Mina, J. H. (2014). Fibras de fique: alternativa para mitigar el cambio climático. Ciencia e Investigación Agraria, 41(2), 241-251. | |
dc.relation | Zienkiewicz, O. C., & Taylor, R. L. (2000). The finite element method: Its basis and fundamentals. Butterworth-Heinemann. | |
dc.relation | Gaviria, A. C., & Gómez, J. A. (2014). Caracterización mecánica de fibras de fique para refuerzo de concreto. Ingeniería y Ciencia, 10(20), 9-31. | |
dc.relation | Buitrago, F., González, J., & Cortés, F. (2018). Caracterización mecánica de fibras de fique y su influencia en el comportamiento de materiales compuestos. Revista de Ciencias, 22(2), 123-135. | |
dc.relation | Sánchez, L., Martínez, R., & Torres, G. (2019). Caracterización mecánica de fibras de fique para aplicaciones en la industria textil. Revista de Materiales, 15(2), 45-58. | |
dc.relation | Pérez, M., Gutiérrez, J., & Rodríguez, L. (2011). Caracterización mecánica de fibras de fique para su uso en materiales compuestos. Revista de Ingeniería y Tecnología, 9(2), 34-48. | |
dc.relation | https://youtu.be/9ESQjEe-m6U | |
dc.rights | http://creativecommons.org/publicdomain/zero/1.0/ | |
dc.rights | Abierto (Texto Completo) | |
dc.rights | info:eu-repo/semantics/openAccess | |
dc.rights | http://purl.org/coar/access_right/c_abf2 | |
dc.rights | CC0 1.0 Universal | |
dc.title | Análisis y modelado de fibras naturales mediante el método de elementos finitos (fem) con desarrollo de aplicativo web. | |