Pump Model for Drip Irrigation with Saline Water, Powered by a Photovoltaic Solar Panel with Direct and Intermittent Application

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Abstract

Irrigation is crucial for agricultural production in dry regions. However, water salinity is a risk for the soil–plant combination and the longevity of the materials that make up the irrigation system. Drip irrigation using direct and intermittent photovoltaic pumping can be key for optimizing irrigation with saline water. This article compares two pump models to understand which has the greatest capacity to reduce the risks of salinity in irrigated agriculture, aiming to make the system more sustainable through more efficient irrigation, without the need for highly expensive corrective cleaning measures. The ideal pump was evaluated using the motor pump’s electrical and hydraulic parameters and the water’s quality parameters applied by irrigation. The results indicate that the diaphragm pump is more sensitive to disturbances in irrigation management when compared to the centrifugal pump; however, it stands out in the following areas: it is more efficient, that is, it operates for more hours of the day with a direct connection with the photovoltaic panels; delivers better distribution uniformity in both continuous and pulsed application; and it makes the drip irrigation system with saline water more resistant to clogging.

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APA

Cossich, V., Vilas Boas, M. A., Alves Pereira, A. A., Guardini, R., Lopes, A. R., Kepp, N. C., … Bertonha, A. (2025). Pump Model for Drip Irrigation with Saline Water, Powered by a Photovoltaic Solar Panel with Direct and Intermittent Application. Sustainability (Switzerland), 17(9). https://doi.org/10.3390/su17093981

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