Turn up the dial : system dynamics modeling of resource allocations toward rural water supply maintenance in East Africa

English
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Turn up the dial
Strapline
System dynamics modeling of resource allocations toward rural water supply maintenance in East Africa
Publication DOI
https://dx.doi.org/10.1061/%28ASCE%29EE.1943-7870.0001982
Node read time
2 minutes
Resource type
Listing introduction text
System dynamics modeling of resource allocations toward rural water supply maintenance in East Africa
Page introduction
System dynamics modeling of resource allocations toward rural water supply maintenance in East Africa
Member
Location
Theme
External authors
Author role
Primary Author
External author

Anna Libey

External author/speaker first name
Anna
External author/speaker surname
Libey
External organisation name
Water For People
Job description
Manager of Evaluating and Learning
Author role
Secondary Author
External author

Pranav Chintalapati

External author/speaker first name
Pranav
External author/speaker surname
Chintalapati
Job description
Academic researcher
Author role
Tertiary Author
External author

Styvers Kathuni

External author/speaker first name
Styvers
External author/speaker surname
Kathuni
Author role
Subsidiary Author
External author

Bernard Amadei

External author/speaker first name
Bernard
External author/speaker surname
Amadei
Job description
Professor
Author role
Subsidiary Author
External author

Evan Thomas

External author/speaker first name
Evan
External author/speaker surname
Thomas
External organisation name
University of Colorado Boulder
Job description
Professor
Publisher
Journal of environmental engineering
Page sections
content
Water stress is increasingly affecting hundreds of millions of people around the world. In East Africa, severe and persistent drought periods negatively impact health and livelihoods. Drought increases reliance on mechanized boreholes to extract groundwater. However, without adequate resource allocations, effective monitoring of borehole functionality, and reliable maintenance service, breakdown rates increase and downtimes last many months. Our study applies system dynamics modeling to investigate the effects of allocating resources to borehole maintenance and repair in the Afar Region in Ethiopia and Turkana County in Kenya. We inform model calibration with runtime and functionality estimates derived from sensors installed on 245 boreholes and apply sensitivity analyses varying budget allocations to optimize for functionality. We conclude that increasing the borehole repair and maintenance budgets in Turkana from the current 30% to 85% of available budgets could result in an additional 83 working boreholes and 95% functionality in 2030. In Afar, increasing maintenance budgets from 38% to 79% could result in functionality levels of 75% by 2030, well above currently projected levels of 54%. [author abstract]
Year
2022