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eISSN: 2581-9615 || CODEN: WJARAI || Impact Factor 8.2 ||  CrossRef DOI

Research and review articles are invited for publication in September 2026 (Volume 31, Issue 3) Submit manuscript

TECHNO-ECONOMIC ANALYSIS OF A STAND-ALONE PHOTOVOLTAIC WATER PUMPING SYSTEM FOR RURAL WATER SUPPLY IN THE DEMOCRATIC REPUBLIC OF THE CONGO

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  • TECHNO-ECONOMIC ANALYSIS OF A STAND-ALONE PHOTOVOLTAIC WATER PUMPING SYSTEM FOR RURAL WATER SUPPLY IN THE DEMOCRATIC REPUBLIC OF THE CONGO

KASINGA MWANALWEM Arsene 1, * and TANGENYI OKITO Marcien 2

1 Department of Physics and Applied Sciences, Pedagogical National University, Kinshasa, Democratic Republic of the Congo.
2 Electricity Specialization, Higher Institute of Applied Techniques of Gombe-Matadi, Democratic Republic of the Congo.
* Corresponding Author

Research Article

 

World Journal of Advanced Research and Reviews, 2026, 31(03), 874–880

Article DOI: 10.30574/wjarr.2026.31.3.2386

DOI url: https://doi.org/10.30574/wjarr.2026.31.3.2386

Received on 03 August 2026; revised on 10 September 2026; accepted on 13 September 2026

Access to potable water remains a critical challenge in rural areas of the Democratic Republic of the Congo (DRC). The lack of reliable electricity prevents the use of conventional pumping systems, forcing populations to rely on unsafe water sources. This study focuses on the village of INSTHWEM Mukongo in the Kwilu province, which suffers from a severe lack of clean water.
This research presents the techno-economic analysis of a photovoltaic water pumping system designed to meet the community's needs. The methodology is based on field surveys and empirical data collection. Key parameters including population (5,636), water demand (129 m³/day), well characteristics (static level: 30 m, drawdown: 15 m), and solar potential (4.7 kWh/m²/day) were used to dimension a stand-alone system. Hydraulic calculations determined the Total Dynamic Head (HMT), followed by photovoltaic (PV) system sizing, pump selection, and storage tank dimensioning. The economic viability was assessed over a 20-year project life using a discounted cash flow analysis.
The analysis resulted in a PV system with a peak power of 9.9 kWc, a Grundfos SP 95-3 pump, and a 285 m³ storage tank. The total investment cost is estimated at 70,400 USD, with annual operation and maintenance costs of 650 USD/year. The Levelized Cost of Water (LCOW) is 0.083 USD/m³, demonstrating that solar pumping is 5.6 times more economical than a generator-based system over its lifespan. The system provides a 10.3% safety margin even during the least favorable month.
The study demonstrates that a well-designed photovoltaic pumping system is a technically and economically viable solution for providing reliable access to water in rural DRC. The system offers a sustainable and cost-effective alternative to conventional methods, significantly improving the living conditions of the population. The methodology presented can serve as a reference for similar rural electrification projects in Sub-Saharan Africa.

Photovoltaic Pumping; Rural Electrification; Water Supply; Techno-Economic Analysis; Levelized Cost of Water; Renewable Energy; DRC

https://wjarr.com/sites/default/files/fulltext_pdf/WJARR-2026-2386.pdf

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KASINGA MWANALWEM and TANGENYI OKITO Marcien. TECHNO-ECONOMIC ANALYSIS OF A STAND-ALONE PHOTOVOLTAIC WATER PUMPING SYSTEM FOR RURAL WATER SUPPLY IN THE DEMOCRATIC REPUBLIC OF THE CONGO. World Journal of Advanced Research and Reviews, 2026, 31(03), 874–880. Article DOI: https://doi.org/10.30574/wjarr.2026.31.3.2386
 

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