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February 19, 2026SHILAP Revista de lepidopterología0 citationsOpen Access

Climate Variability and Industrial Groundwater Abstraction in a Water-Stressed Petroleum Basin: Water Demand Dynamics in Lokichar Oil Production Wells, Kenya

MMMary MakokhaMKMartin Kalibbala

Key Points

  • The aim is to evaluate groundwater sustainability amid increasing industrial and domestic water demands in Lokichar.
  • Analyzed long-term rainfall trends and groundwater levels from 1981 to 2024.
  • Conducted pumping tests on 23 boreholes to assess aquifer transmissivity and specific yield.
  • Utilized rainfall indices and statistical tests to evaluate rainfall variability.
  • Simulated groundwater drawdowns during full-scale oil production.
  • Significant increases in annual rainfall and non-stationarity noted in seasonal precipitation.
  • Pumping tests indicated diverse aquifer characteristics with high-yield zones identified.
  • Daily groundwater fluctuations were linked to domestic abstraction patterns.
  • Estimated recharge is insufficient to meet the projected 2022 industrial demand, highlighting a recharge–demand deficit.

Abstract

The Lokichar Basin in Turkana, northern Kenya, is a semi-arid environment marked by pronounced rainfall variability and intense competition for water resources among domestic, livestock, and oil-driven industrial demands. This study assesses long-term rainfall trends (1981–2024), aquifer characteristics, groundwater levels, and demand dynamics to evaluate resource sustainability under oilfield development. Rainfall analyses using the Rainfall Anomaly Index, Standardized Precipitation Index, and Mann-Kendall tests show marked interannual variability, with significant increases in annual and October–December rainfall and evidence of non-stationarity in seasonal precipitation. Pumping tests from 23 boreholes reveal heterogeneous transmissivity (4.17 × 10⁻⁶–6.00 × 10⁻³ m²/s) and specific yield (0.036–0.500), with high-yield zones concentrated in Nakukulas. Continuous monitoring indicates daily groundwater fluctuations linked to domestic abstraction, while simulations project extreme midday drawdowns exceeding 60 m under full-scale oil production. Estimated natural recharge (21.8–43.6 Mm³ yr⁻¹) falls short of 2022 industrial demand (~53.0 Mm³ yr⁻¹), exposing a recharge–demand deficit. These findings highlight the vulnerability of Lokichar aquifer to over-abstraction and emphasize the need for integrated management, regulated abstraction, enhanced monitoring, and climate-responsive planning to secure water resources and support sustainable petroleum development in this fragile semi-arid basin.

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Cite This Study

Makokha et al. (2025) studied this question.

synapsesocial.com/papers/6996a7e3ecb39a600b3edf79https://doi.org/10.22077/jwhr.2025.10366.1190
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