Vol. 14 Núm. 4 (2025): Revista de Investigaciones
Artí­culos Originales

Consumo doméstico de agua potable en usuarios registrados en la empresa Municipal de Saneamiento Básico de Puno Perú periodo 2015 al 2024

Nestor Sila
Universidad Nacional del Altiplano
Biografía
Roberto Alfaro Alejo
Universidad Nacional del Altiplano, Puno
Javier Mamani Paredes
Universidad Nacional del Altiplano, Puno
volumen 14 numero 4 2025

Publicado 2025-12-30

Palabras clave

  • Agua potable,
  • consumo,
  • doméstico,
  • demanda per cápita,
  • factores climáticos,
  • regresión múltiple
  • ...Más
    Menos

Cómo citar

Fernandez Sila, G. N., Alfaro Alejo , R. ., & Mamani Paredes, J. . . (2025). Consumo doméstico de agua potable en usuarios registrados en la empresa Municipal de Saneamiento Básico de Puno Perú periodo 2015 al 2024. Revista De Investigaciones, 14(4), 213-225. https://doi.org/10.26788/ri.v14i4.6861

Resumen

La conducta de una población con respecto a la oferta y la demanda de agua potable es bastante importante, considerando las categorías de servicio de agua potable en una ciudad estas proporcionan información real sobre los patrones de consumo y la gestión del agua. Este estudio ha considerado abordar estas diferencias mediante el análisis de datos de consumo facturados entre los años 2015 a 2024, examinando el crecimiento del número de usuarios en la categoría doméstica, las tendencias de consumo y el efecto de la temperatura ambiental. La metodología incluye la correlación entre las variaciones de temperatura mensuales y el consumo de agua, junto con la comprobación de la dotación estipulada en las Normas OS del Reglamento Nacional de Edificaciones del Perú y el consumo real mediante prueba de hipótesis estadística. Nuestros resultados evidencian tasas de crecimiento anual significativas en el número de usuarios en la categoría doméstica. La variación de la temperatura estacional indica correlaciones positivas leves, lo que sugiere que no hay cambios de consumo a cambios de temperaturas en la categoría analizada. El estudio subraya un desacuerdo severo discrepando entre el consumo real y los estándares regulatorios, ya que la categoría doméstica consume significativamente menos de lo considerado. Los modelos de regresión pronostican tendencias futuras de consumo constante, revelando aumentos sostenidos en el número de usuarios de la categoría doméstico. Las implicaciones de la investigación sugieren la necesidad de regulaciones específicas que reflejen los comportamientos reales de consumo y se adapten a las influencias climáticas.

Referencias

  1. Ahmadi, M. S., Sušnik, J., Veerbeek, W., & Zevenbergen, C. (2020). Towards a global day zero? Assessment of current and future water supply and demand in 12 rapidly developing megacities. Sustainable Cities and Society, 61, 102295. https://doi.org/https://doi.org/10.1016/j.scs.2020.102295
  2. Ahmed, B. Y., Tolera, S. T., Temesgen, L. M., & Geremew, A. (2025). Domestic water consumptions and associated factors in rural household of Harari region, Eastern Ethiopia; A cross sectional study. Frontiers in Public Health, 12. https://doi.org/10.3389/fpubh.2024.1395946
  3. Ang, W. L., & Mansor, N. A. (2021). Understanding the Water Consumption Patterns in Universiti Kebangsaan Malaysia (UKM) for Water Conservation. In N. E. Alias, M. R. M. Haniffah, & S. Harun (Eds.), Water Management and Sustainability in Asia (Vol. 23, pp. 133–139). Emerald Publishing Limited. https://doi.org/10.1108/S2040-726220210000023019
  4. Arellano, A., Benalcázar, N., Arias, G., & Ramírez, I. (2024). Demographic and Geographical Variations in Residential Drinking Water Consumption: A Case Study through Data Disaggregation in Ecuador. Environment and Ecology Research, 12(4), 456–466. https://doi.org/10.13189/eer.2024.120410
  5. Arslan, A., Titiz, İ. E., Gürcan, E. C., & Demir, A. (2024). Water Consumption Dynamics in Izmir: Analyzing Influences of District, Seasonality, and External Events. 2024 Innovations in Intelligent Systems and Applications Conference (ASYU), 1–6. https://doi.org/10.1109/ASYU62119.2024.10757161
  6. Bergel, T., & Młyńska, A. (2021). Analysis of the Impact of the Air Temperature on Water Consumption for Household Purposes in Rural Households. Journal of Ecological Engineering, 22(3), 289–302. https://doi.org/10.12911/22998993/132742
  7. Bernabé-Crespo, M. B., Serrano, M. L. T., & Gómez-Espín, J. M. (2021). Gestión del abastecimiento de agua en una región semiárida: análisis del consumo de agua potable en el Campo de Cartagena–Mar Menor, sureste de España (2010–2019). Boletín de La Asociación de Geógrafos Españoles, 88.
  8. Bich-Ngoc, N., Prevedello, C., Cools, M., & Teller, J. (2022). Factors influencing residential water consumption in Wallonia, Belgium. Utilities Policy, 74, 101281. https://doi.org/10.1016/j.jup.2021.101281
  9. Borah, G. (2025). Urban Water Stress: Climate Change Implications for Water Supply in Cities. Water Conservation Science and Engineering, 10(1), 20. https://doi.org/10.1007/s41101-025-00344-5
  10. Calianno, M. (2020). The Analogues Method: Reproducing the Seasonality of Drinking Water Distribution in Mountain Tourist Resorts. Revue de Géographie Alpine, 108–1. https://doi.org/10.4000/rga.6717
  11. Dang, X., Li, L., & Fan, L. (2022). Spatiotemporal variation of household water consumption and coping strategies in water-stressed city of arid and semiarid Northwest China. Frontiers in Environmental Science, 10. https://doi.org/10.3389/fenvs.2022.922144
  12. Davis, M. L. (2020). Water and wastewater engineering: design principles and practice. McGraw-Hill.
  13. Di Mauro, A., Cominola, A., Castelletti, A., & Di Nardo, A. (2020). Urban Water Consumption at Multiple Spatial and Temporal Scales. A Review of Existing Datasets. Water, 13(1), 36. https://doi.org/10.3390/w13010036
  14. Dias, T. F., & Ghisi, E. (2024). Urban Water Consumption: A Systematic Literature Review. Water, 16(6), 838. https://doi.org/10.3390/w16060838
  15. Dimkić, D. (2020). Temperature Impact on Drinking Water Consumption. The 4th EWaS International Conference: Valuing the Water, Carbon, Ecological Footprints of Human Activities, 31. https://doi.org/10.3390/environsciproc2020002031
  16. Eslamian, S. A., Li, S. S., & Haghighat, F. (2016). A new multiple regression model for predictions of urban water use. Sustainable Cities and Society, 27, 419–429. https://doi.org/https://doi.org/10.1016/j.scs.2016.08.003
  17. Fullerton, T. M., White, K. C., Doyle Smith, W., & Walke, A. G. (2013). An empirical analysis of Halifax municipal water consumption. Canadian Water Resources Journal, 38(2), 148–158. https://doi.org/10.1080/07011784.2013.792451
  18. Grespan, A., Garcia, J., Brikalski, M. P., Henning, E., & Kalbusch, A. (2022). Assessment of water consumption in households using statistical analysis and regression trees. Sustainable Cities and Society, 87, 104186. https://doi.org/10.1016/j.scs.2022.104186
  19. Haziq, M. A., & Panezai, S. (2017). An empirical analysis of domestic water sources, consumption and associated factors in Kandahar city, Afghanistan.
  20. He, F., & Tao, T. (2014). An Improved Coupling Model of Grey-System and Multivariate Linear Regression for Water Consumption Forecasting. Polish Journal of Environmental Studies, 23(4).
  21. Huaquisto Cáceres, S., & Chambilla Flores, I. G. (2019). Análisis Del Consumo De Agua Potable En El Centro Poblado De Salcedo, Puno. Investigacion & Desarrollo, 19(1), 133–144. https://doi.org/10.23881/idupbo.019.1-9i
  22. Hussien, W. A., Memon, F. A., & Savic, D. A. (2016). Assessing and Modelling the Influence of Household Characteristics on Per Capita Water Consumption. Water Resources Management, 30(9), 2931–2955. https://doi.org/10.1007/s11269-016-1314-x
  23. Ismail, A., Shalaby, A., & Khedr, A. A. (2024). Residential Water Consumption Patterns: A Theoretical Review. Environmental Research, Engineering and Management, 80(3), 8–31. https://doi.org/10.5755/j01.erem.80.3.36870
  24. Kaushalya, G. N., Wijeratne, V. P. I. S., & Manawadu, L. (2020). Spatiotemporal Characteristics of the Domestic Water Consumption Patterns and Related Issues in Sri Lanka. International Journal of Scientific and Research Publications (IJSRP), 10(8), 718–721. https://doi.org/10.29322/IJSRP.10.08.2020.p10492
  25. Medina-Rivas, C. M., Morales-Novelo, J. A., Rodríguez-Tapia, L., & Revollo-Fernández, D. A. (2025). Mexico city’s decline in per capita domestic water use: a comprehensive spatial-temporal study. Urban Water Journal, 22(1), 1–15. https://doi.org/10.1080/1573062X.2024.2423400
  26. Morote, Á.-F., Olcina, J., Rico, A.-M., & Hernández, M. (2019). Water Management in Urban Sprawl Typologies in the City of Alicante (Southern Spain): New Trends and Perception after the Economic Crisis? In Urban Science (Vol. 3, Issue 1). https://doi.org/10.3390/urbansci3010007
  27. Mousi, P., & Bhuvaneswari, V. (2021). Urban Water Consumption and its Influencing Factor Identification using Water Decision Support System. IOP Conference Series: Earth and Environmental Science, 822(1), 12050. https://doi.org/10.1088/1755-1315/822/1/012050
  28. Muloiwa, M., Dinka, M. O., & Nyende-Byakika, S. (2022). Analysis of domestic water consumption in peri-urban South Africa: The case study of Thohoyandou in Limpopo province, South Africa. African Journal of Science, Technology, Innovation and Development, 14(6), 1546–1559. https://doi.org/10.1080/20421338.2021.1972504
  29. MVCS. (2021). Reglamento nacional de edificaciones. Ministerio de vivienda, construcción y saneamiento.
  30. Niazmardi, S., Sadrykia, M., & Rezazadeh, M. (2023). Analysis of spatiotemporal household water consumption patterns and their relationship with meteorological variables. Urban Climate, 52, 101707. https://doi.org/10.1016/j.uclim.2023.101707
  31. Obringer, R., Nateghi, R., Ma, Z., & Kumar, R. (2022). Improving the Interpretation of Data-Driven Water Consumption Models via the Use of Social Norms. Journal of Water Resources Planning and Management, 148(12). https://doi.org/10.1061/(ASCE)WR.1943-5452.0001611
  32. Ong, C., Tortajada, C., & Arora, O. (2023). Urban Water Demand Management. Springer Nature Singapore. https://doi.org/10.1007/978-981-19-8677-2
  33. Raja Ahmad, R. A., Samsudin, S., Azmi, N. A., & Md Yatim, N. H. (2024). Assessing and Modelling Domestic Water Consumption Behavior. Information Management and Business Review, 16(2(I)), 151–162. https://doi.org/10.22610/imbr.v16i2(I).3776
  34. Reis, R. P. A., Rocha, D. G., de Rezende, G. P., Campos, M. A. S., Basso, R. E., & Fioramonte, B. (2023). Influence of the number of residents and climatic factors on residential water consumption. Water Supply, 23(4), 1626–1640. https://doi.org/10.2166/ws.2023.067
  35. Roshan, A., & Kumar, M. (2020). Water end-use estimation can support the urban water crisis management: A critical review. Journal of Environmental Management, 268, 110663. https://doi.org/10.1016/j.jenvman.2020.110663
  36. Sarpong, K. A., & Amankwaa, G. (2022). Household behavioral intention, environmental habit and attitude related to efficient water management: an empirical analysis on pro-environmental behavior among urban residents. H2Open Journal, 5(3), 438–455. https://doi.org/10.2166/h2oj.2022.014
  37. Sborz, J., Cominato, C., Kalbusch, A., & Henning, E. (2024). Individualized metering and the influence of other endogenous and exogenous factors on water consumption in social housing. AQUA — Water Infrastructure, Ecosystems and Society, 73(12), 2259–2272. https://doi.org/10.2166/aqua.2024.086
  38. SENAMHI. (2022). Datos Historicos de Clima del Peru. Servicio Nacional de Meteorología e Hidrología del Perú.
  39. Shammas, N. K., & Wang, L. K. (2015). Water Engineering: Hydraulics, Distribution and Treatment. Wiley.
  40. Shimmi, O. (1980). Analysis of residential water demand in the Ashida river basin, Japan. Geographical Review of Japan, 53(6), 375–388. https://doi.org/10.4157/grj.53.375
  41. Stavenhagen, M., Buurman, J., & Tortajada, C. (2018). Saving water in cities: Assessing policies for residential water demand management in four cities in Europe. Cities, 79, 187–195. https://doi.org/10.1016/j.cities.2018.03.008
  42. Tesfay Abraha, A., Assefa Woldeamanuel, T., & Gebremariam Beyene, E. (2024). Tracking and tracing water consumption for informed water sensitive intervention through machine learning approach. Npj Clean Water, 7(1), 28. https://doi.org/10.1038/s41545-024-00309-6
  43. Tirumala, R. D., & Tiwari, P. (2022). Household expenditure and accessibility of water in urban India. Environment and Planning B: Urban Analytics and City Science, 49(8), 2072–2090. https://doi.org/10.1177/23998083221080178
  44. Zeroual, M., Hani, A., & Boustila, A. (2021). Assessing domestic factors determining water consumption in a semi-arid area (Sedrata City) using artificial neural networks and principal component analysis. Journal of Water and Land Development, 219–228.
  45. Zevi, Y., Fatimah, W. M., Ramdani, Y., Habibbullah, M. Y., & Mursyida, N. (2022). Estimating household water consumptions in the Bandung Metropolitan area. IOP Conference Series: Earth and Environmental Science, 1065(1), 012037. https://doi.org/10.1088/1755-1315/1065/1/012037
  46. Zhang, M., Li, Z., Chen, G., & Li, F. (2024). Land Use Changes and Spatiotemporal Distribution of Domestic Water Consumption in the Northern Slope of Tianshan Mountains. Water, 16(21), 3037. https://doi.org/10.3390/w16213037
  47. Zúñiga, M. G., Avilés, M., Lamiña, A., & Izurieta, C. (2024). Estudio del comportamiento del consumo horario residencial de agua potable en el cantón Guano parroquia el Rosario. Revista Digital Novasinergia, 7(2), 18–35. https://doi.org/10.37135/ns.01.14.02