Impacts of irrigation network sectoring as an energy saving measure on olive grove production
In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping an...
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Published in: | Journal of environmental management Vol. 111; pp. 1 - 9 |
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Abstract | In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping and mountainous lands. Thus, the reduction of energy use in these systems has also become a major issue.
Irrigation network sectoring has been proposed as one of the most effective energy saving measures. Typically, however, the potential benefits of this management strategy have been evaluated by means of theoretical approaches in networks that were originally designed to supply water on demand and not after water application in real irrigation districts designed following sectoring strategies.
In this work, this measure is applied to an irrigation district devoted to olive grove production in a mountainous area that was designed according to this management strategy. With this aim, the WEBSO (Water and Energy Based Sectoring Operation) algorithm, which was developed in a previous work, has been modified in order to take into account the specific characteristics of the irrigation district and its actual management, as well as to analyze sensitivity to several irrigation water depths in terms of both energy demand and yields. An economic analysis of the potential benefits of this management strategy is also carried out. The results show that this measure has lead to a nearly 30% reduction in energy consumption, while increasing farmers' profits by 13% compared to traditional on-demand operations.
► Network sectoringwasevaluated within an irrigation district as an energy saving measure. ► The hydraulic network for olive grove irrigation in a mountainous areawasdesigned to operate on a sector by sector basis. ► Sectoring results in nearly a 30% reduction in energy consumption. ► Farmers'profitswereincreased by 13% compared to the traditional ‘on-demand’ system of operation. ► Sectoringhascontributed to the sustainable intensification of irrigated agriculture in the study area. |
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AbstractList | In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping and mountainous lands. Thus, the reduction of energy use in these systems has also become a major issue. Irrigation network sectoring has been proposed as one of the most effective energy saving measures. Typically, however, the potential benefits of this management strategy have been evaluated by means of theoretical approaches in networks that were originally designed to supply water on demand and not after water application in real irrigation districts designed following sectoring strategies. In this work, this measure is applied to an irrigation district devoted to olive grove production in a mountainous area that was designed according to this management strategy. With this aim, the WEBSO (Water and Energy Based Sectoring Operation) algorithm, which was developed in a previous work, has been modified in order to take into account the specific characteristics of the irrigation district and its actual management, as well as to analyze sensitivity to several irrigation water depths in terms of both energy demand and yields. An economic analysis of the potential benefits of this management strategy is also carried out. The results show that this measure has lead to a nearly 30% reduction in energy consumption, while increasing farmers' profits by 13% compared to traditional on-demand operations. [PUBLICATION ABSTRACT] In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping and mountainous lands. Thus, the reduction of energy use in these systems has also become a major issue. Irrigation network sectoring has been proposed as one of the most effective energy saving measures. Typically, however, the potential benefits of this management strategy have been evaluated by means of theoretical approaches in networks that were originally designed to supply water on demand and not after water application in real irrigation districts designed following sectoring strategies. In this work, this measure is applied to an irrigation district devoted to olive grove production in a mountainous area that was designed according to this management strategy. With this aim, the WEBSO (Water and Energy Based Sectoring Operation) algorithm, which was developed in a previous work, has been modified in order to take into account the specific characteristics of the irrigation district and its actual management, as well as to analyze sensitivity to several irrigation water depths in terms of both energy demand and yields. An economic analysis of the potential benefits of this management strategy is also carried out. The results show that this measure has lead to a nearly 30% reduction in energy consumption, while increasing farmers' profits by 13% compared to traditional on-demand operations. In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping and mountainous lands. Thus, the reduction of energy use in these systems has also become a major issue. Irrigation network sectoring has been proposed as one of the most effective energy saving measures. Typically, however, the potential benefits of this management strategy have been evaluated by means of theoretical approaches in networks that were originally designed to supply water on demand and not after water application in real irrigation districts designed following sectoring strategies. In this work, this measure is applied to an irrigation district devoted to olive grove production in a mountainous area that was designed according to this management strategy. With this aim, the WEBSO (Water and Energy Based Sectoring Operation) algorithm, which was developed in a previous work, has been modified in order to take into account the specific characteristics of the irrigation district and its actual management, as well as to analyze sensitivity to several irrigation water depths in terms of both energy demand and yields. An economic analysis of the potential benefits of this management strategy is also carried out. The results show that this measure has lead to a nearly 30% reduction in energy consumption, while increasing farmers' profits by 13% compared to traditional on-demand operations. ► Network sectoringwasevaluated within an irrigation district as an energy saving measure. ► The hydraulic network for olive grove irrigation in a mountainous areawasdesigned to operate on a sector by sector basis. ► Sectoring results in nearly a 30% reduction in energy consumption. ► Farmers'profitswereincreased by 13% compared to the traditional ‘on-demand’ system of operation. ► Sectoringhascontributed to the sustainable intensification of irrigated agriculture in the study area. In recent years, improving water use efficiency has been one of the most important challenges for the agricultural sector. However, such improvements have led to the installation of pressurized irrigation systems which generally require more energy to operate, especially in plantations on sloping and mountainous lands. Thus, the reduction of energy use in these systems has also become a major issue. Irrigation network sectoring has been proposed as one of the most effective energy saving measures. Typically, however, the potential benefits of this management strategy have been evaluated by means of theoretical approaches in networks that were originally designed to supply water on demand and not after water application in real irrigation districts designed following sectoring strategies. In this work, this measure is applied to an irrigation district devoted to olive grove production in a mountainous area that was designed according to this management strategy. With this aim, the WEBSO (Water and Energy Based Sectoring Operation) algorithm, which was developed in a previous work, has been modified in order to take into account the specific characteristics of the irrigation district and its actual management, as well as to analyze sensitivity to several irrigation water depths in terms of both energy demand and yields. An economic analysis of the potential benefits of this management strategy is also carried out. The results show that this measure has lead to a nearly 30% reduction in energy consumption, while increasing farmers' profits by 13% compared to traditional on-demand operations. All rights reserved, Elsevier |
Author | Navarro Navajas, J.M. Rodríguez Díaz, J.A. Poyato, E. Camacho Montesinos, P. |
Author_xml | – sequence: 1 givenname: J.M. surname: Navarro Navajas fullname: Navarro Navajas, J.M. email: j.m.navarronavajas@cranfield.ac.uk organization: Centre for Water Science, Cranfield University, Bedfordshire MK43 0AL, UK – sequence: 2 givenname: P. surname: Montesinos fullname: Montesinos, P. email: pmontesinos@uco.es organization: Department of Agronomy, University of Cordoba, International Campus of Excellence ceiA3, 14071 Córdoba, Spain – sequence: 3 givenname: E. Camacho surname: Poyato fullname: Poyato, E. Camacho email: ecamacho@uco.es organization: Department of Agronomy, University of Cordoba, International Campus of Excellence ceiA3, 14071 Córdoba, Spain – sequence: 4 givenname: J.A. surname: Rodríguez Díaz fullname: Rodríguez Díaz, J.A. email: jarodriguez@uco.es, ma2rodij@uco.es organization: Department of Agronomy, University of Cordoba, International Campus of Excellence ceiA3, 14071 Córdoba, Spain |
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Keywords | Irrigation Network modeling Water distribution systems Sustainability Spain Oleaceae Olea europaea Energy economy Water distribution Environmental management Modeling Orchard Dicotyledones Angiospermae Spermatophyta Irrigation network Oil plant (vegetal) |
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SubjectTerms | Agricultural and forest climatology and meteorology. Irrigation. Drainage agricultural industry Agricultural sector Agriculture Agriculture - economics Agriculture - methods Agronomy. Soil science and plant productions Algorithms Animal, plant and microbial ecology Applied ecology Biological and medical sciences Conservation of Energy Resources - economics Conservation of Energy Resources - methods Conservation, protection and management of environment and wildlife Crops, Agricultural Economic analysis energy Energy conservation Energy consumption Energy management farmers Fundamental and applied biological sciences. Psychology General agronomy. Plant production General aspects Irrigation irrigation systems irrigation water Irrigation. Drainage Management Marketing Models, Theoretical Network modeling Networks Olea Olives plantations profits and margins Reduction Spain Strategy Supply & demand Sustainability Water distribution systems Water supply Water Supply - analysis Water Supply - economics water use efficiency |
Title | Impacts of irrigation network sectoring as an energy saving measure on olive grove production |
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