Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Validation of farmers’ on-farm irrigation scheduling for optimal water utilization in Tigray Region, Ethiopia

View through CrossRef
AbstractUnwise use of irrigation water in water-scarce areas exacerbates water scarcity, diminishes crop yield, and leads to resource wastage. In the Tigray region of Ethiopia, where water is scarce and a determinant resource, no regional-level validation of on-farm irrigation scheduling had been conducted until now. The objectives of this study were to (i) validate farmers’ irrigation scheduling practices and (ii) optimize water consumption for increased irrigated area and number of farmers. Eight different irrigation schemes were purposively selected from the Tigray region. Primary data, acquired through field measurements, observations, and discussions, were supplemented with secondary data. Farmers' irrigation scheduling practices were predominantly of the "Fixed" type, characterized by constant irrigation intervals and amounts. Unfortunately, these practices were non-optimal, with 55% over-irrigation and 45% under-irrigation. Over-irrigation instances ranged from 1350 m3in a garlic plot within the Mesima scheme to a maximum of 1,327,067 m3in a maize plot within the Serenta scheme. The excess water could potentially be utilized to irrigate an additional area of 2 to 148 hectares, thereby benefiting 7 to 296 more farmers, respectively. Conversely, instances of under-irrigation in the Fre Lekatit scheme resulted in yield reductions of 10,445 kg for potatoes and 138,499 kg for maize. In the Tigray region, most of the schemes are semi-arid, emphasizing the imperative need for water conservation. Renovating regional-level irrigation scheduling by integrating performance assessment and enhancing water productivity at the field level, and establishing a remote-sensing-based 'Real-Time Irrigation Scheduling System' is deemed necessary to sustain dryland irrigated agriculture.
Springer Science and Business Media LLC
Title: Validation of farmers’ on-farm irrigation scheduling for optimal water utilization in Tigray Region, Ethiopia
Description:
AbstractUnwise use of irrigation water in water-scarce areas exacerbates water scarcity, diminishes crop yield, and leads to resource wastage.
In the Tigray region of Ethiopia, where water is scarce and a determinant resource, no regional-level validation of on-farm irrigation scheduling had been conducted until now.
The objectives of this study were to (i) validate farmers’ irrigation scheduling practices and (ii) optimize water consumption for increased irrigated area and number of farmers.
Eight different irrigation schemes were purposively selected from the Tigray region.
Primary data, acquired through field measurements, observations, and discussions, were supplemented with secondary data.
Farmers' irrigation scheduling practices were predominantly of the "Fixed" type, characterized by constant irrigation intervals and amounts.
Unfortunately, these practices were non-optimal, with 55% over-irrigation and 45% under-irrigation.
Over-irrigation instances ranged from 1350 m3in a garlic plot within the Mesima scheme to a maximum of 1,327,067 m3in a maize plot within the Serenta scheme.
The excess water could potentially be utilized to irrigate an additional area of 2 to 148 hectares, thereby benefiting 7 to 296 more farmers, respectively.
Conversely, instances of under-irrigation in the Fre Lekatit scheme resulted in yield reductions of 10,445 kg for potatoes and 138,499 kg for maize.
In the Tigray region, most of the schemes are semi-arid, emphasizing the imperative need for water conservation.
Renovating regional-level irrigation scheduling by integrating performance assessment and enhancing water productivity at the field level, and establishing a remote-sensing-based 'Real-Time Irrigation Scheduling System' is deemed necessary to sustain dryland irrigated agriculture.

Related Results

Optimal irrigation scheduling combining water content sensors and remote sensing data
Optimal irrigation scheduling combining water content sensors and remote sensing data
By 2025, the Food and Agriculture Organization of the United Nations predicts that two-thirds of the world population will experience water stress conditions. In addition, it is ex...
Determination of Optimal Irrigation Scheduling for Potato Crop Under Furrow Irrigation Method in Eastern Hararghe Zone of Oromia
Determination of Optimal Irrigation Scheduling for Potato Crop Under Furrow Irrigation Method in Eastern Hararghe Zone of Oromia
Applying water using appropriate irrigation scheduling is crucial for enhancing of irrigation water use efficiency. This activity was done with the objectives of developing optimum...
Modeling Agricultural Water Use Efficiency in Tibet's Pengbo Irrigation District: An Application of the SWAT Hydrological Model
Modeling Agricultural Water Use Efficiency in Tibet's Pengbo Irrigation District: An Application of the SWAT Hydrological Model
Abstract This study investigated the hydrological cycle dynamics under water management measures in the Pengbo irrigation area of Tibet, analyzing and evaluating the water ...
Current status of global rice water use efficiency and water‐saving irrigation technology recommendations
Current status of global rice water use efficiency and water‐saving irrigation technology recommendations
AbstractRice has a high water requirement, but water use efficiency (WUE) in rice has always been low, and the status of rice WUE and the factors influencing it in various countrie...
Integrated digital solutions for sustainable farm-scale water allocation in Mediterranean environments
Integrated digital solutions for sustainable farm-scale water allocation in Mediterranean environments
Agriculture represents the most water-demanding sector in the Mediterranean, constituting 72% of total water demand, but exceeding 80% in most Southern Mediterranean countries. Mor...

Back to Top