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Comparison of Tank and Battery Storages for Photovoltaic Water Pumping

Camille Soenen, Vincent Reinbold, Simon Meunier, Judith A. Cherni, Arouna Darga, Philippe Dessante, Loïc Quéval

2021Energies33 citationsDOIOpen Access PDF

Abstract

Photovoltaic water pumping systems (PVWPS) are a promising solution to improve domestic water access in low-income rural areas. It is challenging, however, to make them more affordable for the local communities. We develop here a comparative methodology to assess relevant features of both widely employed PVWPS architecture with water tank storage, and hardly used PVWPS architecture with a battery bank instead of tank storage. The quantitative comparison is carried out through techno-economic optimization, with the goal of minimizing the life cycle cost of PVWPS with constraints on the satisfaction of the water demand of local inhabitants and on the groundwater resource sustainability. It is aimed to support decision-makers in selecting most appropriate storage for domestic water supply projects. We applied the methodology in the rural village of Gogma, Burkina Faso. Results indicate that the life-cycle cost of an optimized PVWPS with batteries is $24.1k while it is $31.1k if a tank is used instead. Moreover, reduced impact on groundwater resources and greater modularity to adapt to evolving water demand is noted if using batteries. However, as batteries must be replaced regularly and recycled adequately, PVWPS’ financial accessibility could increase only if sustainable and efficient operation, maintenance, and recycling facilities for batteries were present or developed locally.

Topics & Concepts

Photovoltaic systemSustainabilityEnvironmental economicsBattery (electricity)ReuseGroundwaterResource (disambiguation)Life-cycle cost analysisTotal cost of ownershipEnvironmental scienceBusinessEngineeringWaste managementComputer scienceRisk analysis (engineering)Electrical engineeringPhysicsQuantum mechanicsAccountingGeotechnical engineeringPower (physics)EcologyComputer networkEconomicsBiologyEnergy and Environment ImpactsPhotovoltaic System Optimization TechniquesSmart Grid Energy Management