Water Storage in Dry Riverbeds of Arid and Semi-Arid Regions: Overview, Challenges, and Prospects of Sand Dam Technology

Author:

Yifru Bisrat AyalewORCID,Kim Min-Gyu,Lee Jeong-WooORCID,Kim Il-HwanORCID,Chang Sun-WooORCID,Chung Il-MoonORCID

Abstract

Augmenting water availability using water-harvesting structures is of importance in arid and semi-arid regions (ASARs). This paper provides an overview and examines challenges and prospects of the sand dam application in dry riverbeds of ASARs. The technology filters and protects water from contamination and evaporation with low to no maintenance cost. Sand dams improve the socio-economy of the community and help to cope with drought and climate change. However, success depends on the site selection, design, and construction. The ideal site for a sand dam is at a transition between mountains and plains, with no bend, intermediate slope, and impermeable riverbed in a catchment with a slope greater than 2°. The spillway dimensioning considers the flow velocity, sediment properties, and storage target, and the construction is in multi-stages. Recently, the failure of several sand dams because of incorrect siting, evaporation loss, and one-stage construction were reported. Revision of practitioners’ manuals by considering catchment scale hydrological and hydrogeological characteristics, spillway height, and sediment transport are recommended. Research shows that protected wells have better water quality than open wells and scoop holes. Therefore, the community should avoid open defecation, pit latrines, tethering of animals, and applying pesticides near the sand dam.

Funder

Ministry of Environment, Korea

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference91 articles.

1. Run-off storage in sand reservoirs as an alternative source of water supply for rural and semi-arid areas of South Africa;Olufayo;Int. J. Geol. Environ. Eng.,2009

2. Preface: Groundwater in Sub-Saharan Africa

3. Modeling impacts of climate change on freshwater availability in Africa

4. Climate change impact and runoff harvesting in arid regions

5. Water problems in Africa—how can the sciences help?

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