Métodos numéricos aplicados al cálculo hidráulico en canales de regadío de Bagua

Descripción del Articulo

This article evidences the research carried out, considering the importance of hydraulics in the academic training of the future civil engineer, also taking into account the scarce irrigation infrastructure in the province of Bagua, which is eminently agricultural. The objective was the review of th...

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Detalles Bibliográficos
Autores: Estela Urbina, Ronald Omar, Danducho Paati, Jhon Jairo, Chiclote Alcalde, Segundo Marcial, Incio Flores, Fernando Alain, Santamaría Baldera, Nemesio, Fernández Villarroel, Roger Álvaro, Carcausto Quispe, Carlos, Guzmán Cáceres, Giovanna, Cárdenas León, María Elena, Castro Vargas, Daniel Jesús
Formato: artículo
Fecha de Publicación:2022
Institución:Universidad Nacional Intercultural Fabiola Salazar Leguía de Bagua
Repositorio:Revistas - Universidad Nacional Intercultural Fabiola Salazar Leguía de Bagua
Lenguaje:español
OAI Identifier:oai:revista.unibagua.edu.pe:article/70
Enlace del recurso:https://revista.unibagua.edu.pe/index.php/dekamuagropec/article/view/70
Nivel de acceso:acceso abierto
Materia:Método numérico
canal hidráulico
Manning
Python
Numerical method
hydraulic channel
Descripción
Sumario:This article evidences the research carried out, considering the importance of hydraulics in the academic training of the future civil engineer, also taking into account the scarce irrigation infrastructure in the province of Bagua, which is eminently agricultural. The objective was the review of the hydraulic factors of the different existing open conduits, whether natural or artificial, as well as the elaboration of mathematical models that allow numerically simulating the hydraulic behavior. This research was carried out in the Numerical Methods course of the Civil Engineering career of the National Intercultural University "Fabiola Salazar Leguía" of Bagua -UNIFSLB during the year 2020 and 2021. The methodology consisted of three phases: The first phase consisted of field data collection, in the second phase computer calculations were performed using the Python programming language, and in the last methodological phase we proceeded to develop and implement models or mathematical methods. The results obtained for flow and velocity differ by approximately 3% from the theoretical value with respect to the value measured in the field, and programs for hydraulic calculation were also implemented. Finally, the numerical methods for numerical and graphical simulation were codified
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