Propuesta para el diseño de una planta de tratamiento de aguas residuales para el distrito Tambo, Huaytará - Huancavelica, 2023
Fecha
2025
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Universidad Nacional San Luis Gonzaga
Resumen
Proponer el diseño de una planta de tratamiento de aguas residuales para el
distrito Tambo. Metodología: Fue no experimental, de enfoque mixto, nivel
exploratorio - descriptivo, y de diseño transversal. La muestra estuvo conformada por
215 viviendas y 967 habitantes. Muestreo intencional. Se utilizaron como técnica: La
observación, la inmersión en el campo. Los instrumentos que se usaron para la
recolección de información fueron brújula, geo localizador, ficha de recolección, cámara
fotográfica, Google maps. Resultados: La propuesta de ubicación de la planta de
tratamiento de aguas residuales tendrá como entrada principal entre las coordenadas Este
624000.00, Norte 8460000.00, Cota 3100.00 m. Con un Tanque de Sedimentación de caudal
diario de 145.05 m3
/día y picos de 36.63 m³/día, con un volumen del tanque de 45.32 m3
. Su
Reactor Biológico con 36.26 m³. El Área de deshidratación 0.0493 m³/día y un espacio total de
212.37 m². Materiales resistentes como concreto reforzado y acero. El área de deshidratación
procesará ~65.27 /día de lodos, y un espacio total de 212.37 m² para instalaciones y expansión
futura. La propuesta del tanque de sedimentación está dimensionada con un volumen
aproximado de 45.32 m3
. El Reactor biológico con un volumen de aproximadamente 36.26 m³.
Conclusión: Se presentó una propuesta de diseño de la planta de tratamiento de aguas
residuales para el distrito de Tambo con una población de 967 habitantes, integrando rejillas de
desbaste, tanques de sedimentación, y reactores biológicos. La propuesta de una planta está
diseñada para ser operativa y sostenible a largo plazo, con consideraciones para el
mantenimiento y las condiciones locales.
To design a wastewater treatment plant for the Tambo district. Methodology: The study was non-experimental, with a mixed approach, exploratorydescriptive level, and a cross-sectional design. The sample consisted of 215 households and 967 inhabitants. Purposive sampling was used. Techniques included observation and field immersion. Instruments used for data collection included a compass, GPS locator, data collection sheet, camera, and Google Maps. Results: The proposed location for the wastewater treatment plant will have its main entrance at approximately coordinates East 624000.00, North 8460000.00, Elevation 3100.00 m. The sedimentation tank is designed for an average daily flow of 145.05 m³/day and peak flows of 36.63 m³/day, with a tank volume of 45.32 m³. The biological reactor has a volume of 36.26 m³. The dehydration area will handle approximately 0.0493 m³/day and occupies a total area of 212.37 m². Durable materials such as reinforced concrete and steel will be used. The sludge dehydration area is designed to process approximately 65.27 kg/day of sludge, and the total space allocated for the facility and future expansion is 212.37 m². The sedimentation tank is proposed with an approximate volume of 45.32 m³, and the biological reactor with a volume of approximately 36.26 m³. Conclusion: The design of the wastewater treatment plant for the Tambo district, serving a population of 967 inhabitants, has been successfully completed. It incorporates screening units, sedimentation tanks, and biological reactors. The plant is designed to be operational and sustainable in the long term, with considerations for maintenance and local conditions.
To design a wastewater treatment plant for the Tambo district. Methodology: The study was non-experimental, with a mixed approach, exploratorydescriptive level, and a cross-sectional design. The sample consisted of 215 households and 967 inhabitants. Purposive sampling was used. Techniques included observation and field immersion. Instruments used for data collection included a compass, GPS locator, data collection sheet, camera, and Google Maps. Results: The proposed location for the wastewater treatment plant will have its main entrance at approximately coordinates East 624000.00, North 8460000.00, Elevation 3100.00 m. The sedimentation tank is designed for an average daily flow of 145.05 m³/day and peak flows of 36.63 m³/day, with a tank volume of 45.32 m³. The biological reactor has a volume of 36.26 m³. The dehydration area will handle approximately 0.0493 m³/day and occupies a total area of 212.37 m². Durable materials such as reinforced concrete and steel will be used. The sludge dehydration area is designed to process approximately 65.27 kg/day of sludge, and the total space allocated for the facility and future expansion is 212.37 m². The sedimentation tank is proposed with an approximate volume of 45.32 m³, and the biological reactor with a volume of approximately 36.26 m³. Conclusion: The design of the wastewater treatment plant for the Tambo district, serving a population of 967 inhabitants, has been successfully completed. It incorporates screening units, sedimentation tanks, and biological reactors. The plant is designed to be operational and sustainable in the long term, with considerations for maintenance and local conditions.
Descripción
Palabras clave
Planta de tratamiento, Aguas residuales, Design