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February 19, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Assessing Household Water Availability, Accessibility, and Harnessing Strategies for Sustainable Water Security in Kwahu East Plateau, Ghana

EAEnock AninakwahIAIsaac AninakwahEKEric Koomson

Key Points

  • The research aims to evaluate household water supply and access in Kwahu East, Ghana, focusing on seasonal variations and adaptation strategies.
  • Conducted a quantitative survey with 400 respondents selected via stratified random sampling.
  • Assessed water supply, access methods, and seasonal changes in water availability.
  • Analyzed satellite data for NDWI and LULC to evaluate environmental impacts on water resources.
  • 85% of households lacked water during the dry season, with significant travel time for collection.
  • 70% utilized boreholes or rainwater harvesting, showing seasonal dependency.
  • NDWI showed higher water availability during the wet season compared to the dry season.

Abstract

The study evaluated household water supply, access, and harnessing methods in Abetifi, Kwahu East, Ghana, within a quantitative research framework, involving 400 respondents selected through stratified random sampling. It discussed seasonal changes in water supply, the primary factors affecting household access, and the efficiency of adaptation measures. During the dry season, 85 per cent of households lacked water, 70 per cent had no piped water, and people walking 3.5 km daily spent 4.8 hours a day collecting water. Contrastingly, the wet season had a minimum of 25 per cent scarcity, a 1.2 km travel distance, and an average collection time of 2.5 hours. More than 55 per cent of households spent more than 5 Ghana cedis per day on water, and 60 per cent of households experienced frequent breakdowns of the borehole or standpipe. During the wet season (70%), water was collected from rainwater; during the dry season (70%), came from boreholes, with the help of household storage systems (60%). The results of remote-sensing analysis indicated that the mean value of the NDWI (-0.582) during the wet season was larger than the mean value during the dry season (-0.461), and the results of the LULC analysis (2000-2025) demonstrated that vegetation cover and growth reduced by half and built-up areas expanded, which identified the fact of increased anthropogenic pressure on water resources. The study's originality lies in combining household survey information, NDWI, and LULC analysis within the Sustainable Livelihoods Framework to assess the interaction among seasonality in climatic conditions, human adaptation, and plateau hydrology. The results provide data-driven, practical recommendations for developing climate-resilient community-based water systems in Ghana's highlands.

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Cite This Study

Aninakwah et al. (2025) studied this question.

synapsesocial.com/papers/6996a768ecb39a600b3ed15ahttps://doi.org/10.22077/jwhr.2025.9082.1171
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