Designing Low-Cost Irrigation Systems for Drought-Prone Mali: An Engineering Perspective

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Main Authors: Cissoko, Ibrahim, Dembele, Oumar, Traoré, Alassane, Dicko, Mohammed
Format: Recurso digital
Language:English
Published: Zenodo 2004
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author Cissoko, Ibrahim
Dembele, Oumar
Traoré, Alassane
Dicko, Mohammed
author_facet Cissoko, Ibrahim
Dembele, Oumar
Traoré, Alassane
Dicko, Mohammed
contents <p>Irrigation systems are crucial for agricultural productivity in Mali's arid regions where droughts significantly impact crop yields. A mixed-method approach combining hydrological modelling with empirical site assessments was employed to identify optimal system components and configurations. The preliminary results indicate a potential reduction of water use by 15-20%, which aligns with the objectives set for efficiency improvements. The designed systems show promise in enhancing agricultural resilience against drought, though further testing is required to confirm these findings. Further field trials and cost-benefit analyses are recommended before widespread implementation of the proposed irrigation solutions. Irrigation design, low-cost, hydrological modelling, climate-resilient agriculture The maintenance outcome was modelled as $Y_{it}=\beta_0+\beta_1X_{it}+u_i+\varepsilon_{it}$, with robustness checked using heteroskedasticity-consistent errors.</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_18794778
institution Zenodo
language eng
publishDate 2004
publisher Zenodo
record_format zenodo
spellingShingle Designing Low-Cost Irrigation Systems for Drought-Prone Mali: An Engineering Perspective
Cissoko, Ibrahim
Dembele, Oumar
Traoré, Alassane
Dicko, Mohammed
Sub-Saharan
AgriculturalEngineering
DroughtMitigation
SpatialHydrology
LowCostTechnologies
WaterManagement
SystemsAnalysis
<p>Irrigation systems are crucial for agricultural productivity in Mali's arid regions where droughts significantly impact crop yields. A mixed-method approach combining hydrological modelling with empirical site assessments was employed to identify optimal system components and configurations. The preliminary results indicate a potential reduction of water use by 15-20%, which aligns with the objectives set for efficiency improvements. The designed systems show promise in enhancing agricultural resilience against drought, though further testing is required to confirm these findings. Further field trials and cost-benefit analyses are recommended before widespread implementation of the proposed irrigation solutions. Irrigation design, low-cost, hydrological modelling, climate-resilient agriculture The maintenance outcome was modelled as $Y_{it}=\beta_0+\beta_1X_{it}+u_i+\varepsilon_{it}$, with robustness checked using heteroskedasticity-consistent errors.</p>
title Designing Low-Cost Irrigation Systems for Drought-Prone Mali: An Engineering Perspective
topic Sub-Saharan
AgriculturalEngineering
DroughtMitigation
SpatialHydrology
LowCostTechnologies
WaterManagement
SystemsAnalysis
url https://doi.org/10.5281/zenodo.18794778