Regional assessment of evaporation from agricultural irrigation reservoirs in a semiarid climate
The aim of this study was to assess the magnitude of evaporation loss from the agricultural water reservoirs (AWRs) for irrigation at a regional scale and to analyze its impact on water storage efficiency. To this end, we identified the extant AWRs for irrigation in the Segura River Basin (SRB) in s...
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description | The aim of this study was to assess the magnitude of evaporation loss from the agricultural water reservoirs (AWRs) for irrigation at a regional scale and to analyze its impact on water storage efficiency. To this end, we identified the extant AWRs for irrigation in the Segura River Basin (SRB) in southeastern Spain, and calculated the water loss from each AWR per month and year. In order to accomplish this, we determined the monthly and yearly values of the pan coefficient,
K
p, taking into account the geometric dimensions (area and depth) of the AWRs and local climate conditions through a function of air vapour pressure deficit (VPD). AWR areas were identified by interpreting aerial images, while climate conditions were assessed using daily meteorological data obtained from 74 automated agro-meteorological stations located in irrigated areas. Regional evaporation losses were estimated using aggregation GIS techniques. A total of 14,145 AWRs covering 4901
ha were identified, which represents 0.26 and 1.81% of the total area of SRB and the irrigated land, respectively. Results indicated that annual water loss at a basin scale reaches 58.5
×
10
6
m
3, which corresponds to 1.404
m of water depth over the flooded area and to 8.3% of irrigation water use in the basin. This quantity is higher than the industrial demand and similar to the environmental demand, and is equivalent to 27% of the domestic water use in a region with approximately two million inhabitants. The method used, based on annual
K
p, appears the most straightforward to assess regional evaporative losses from AWRs, and can be extended to other regions and climates, provided that the VPD-dependent function that gives the pan coefficient is available. |
doi_str_mv | 10.1016/j.agwat.2008.04.003 |
format | Article |
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K
p, taking into account the geometric dimensions (area and depth) of the AWRs and local climate conditions through a function of air vapour pressure deficit (VPD). AWR areas were identified by interpreting aerial images, while climate conditions were assessed using daily meteorological data obtained from 74 automated agro-meteorological stations located in irrigated areas. Regional evaporation losses were estimated using aggregation GIS techniques. A total of 14,145 AWRs covering 4901
ha were identified, which represents 0.26 and 1.81% of the total area of SRB and the irrigated land, respectively. Results indicated that annual water loss at a basin scale reaches 58.5
×
10
6
m
3, which corresponds to 1.404
m of water depth over the flooded area and to 8.3% of irrigation water use in the basin. This quantity is higher than the industrial demand and similar to the environmental demand, and is equivalent to 27% of the domestic water use in a region with approximately two million inhabitants. The method used, based on annual
K
p, appears the most straightforward to assess regional evaporative losses from AWRs, and can be extended to other regions and climates, provided that the VPD-dependent function that gives the pan coefficient is available.</description><identifier>ISSN: 0378-3774</identifier><identifier>EISSN: 1873-2283</identifier><identifier>DOI: 10.1016/j.agwat.2008.04.003</identifier><identifier>CODEN: AWMADF</identifier><language>eng</language><publisher>Amsterdam: Elsevier B.V</publisher><subject>Agricultural and forest climatology and meteorology. Irrigation. Drainage ; Agronomy. Soil science and plant productions ; Applied sciences ; basins ; Biological and medical sciences ; Buildings. Public works ; Class-A pan ; evaporation ; Exact sciences and technology ; Fundamental and applied biological sciences. Psychology ; General agronomy. Plant production ; geographic information systems ; Hydraulic constructions ; hydrologic models ; image analysis ; irrigation ; Irrigation networks ; Irrigation. Drainage ; meteorological data ; Pan coefficient ; reservoirs ; semiarid zones ; Storage efficiency ; Water loss ; Water management ; water use</subject><ispartof>Agricultural water management, 2008-09, Vol.95 (9), p.1056-1066</ispartof><rights>2008 Elsevier B.V.</rights><rights>2008 INIST-CNRS</rights><lds50>peer_reviewed</lds50><woscitedreferencessubscribed>false</woscitedreferencessubscribed><citedby>FETCH-LOGICAL-c488t-af5837340a6ac1d3d81663b4a5b3053d421025737f5c7f722943f7d3a0a6f83e3</citedby><cites>FETCH-LOGICAL-c488t-af5837340a6ac1d3d81663b4a5b3053d421025737f5c7f722943f7d3a0a6f83e3</cites></display><links><openurl>$$Topenurl_article</openurl><openurlfulltext>$$Topenurlfull_article</openurlfulltext><thumbnail>$$Tsyndetics_thumb_exl</thumbnail><linktohtml>$$Uhttps://dx.doi.org/10.1016/j.agwat.2008.04.003$$EHTML$$P50$$Gelsevier$$H</linktohtml><link.rule.ids>314,780,784,3550,4008,27924,27925,45995</link.rule.ids><backlink>$$Uhttp://pascal-francis.inist.fr/vibad/index.php?action=getRecordDetail&idt=20652612$$DView record in Pascal Francis$$Hfree_for_read</backlink><backlink>$$Uhttp://econpapers.repec.org/article/eeeagiwat/v_3a95_3ay_3a2008_3ai_3a9_3ap_3a1056-1066.htm$$DView record in RePEc$$Hfree_for_read</backlink></links><search><creatorcontrib>Martínez Alvarez, V.</creatorcontrib><creatorcontrib>González-Real, M.M.</creatorcontrib><creatorcontrib>Baille, A.</creatorcontrib><creatorcontrib>Maestre Valero, J.F.</creatorcontrib><creatorcontrib>Gallego Elvira, B.</creatorcontrib><title>Regional assessment of evaporation from agricultural irrigation reservoirs in a semiarid climate</title><title>Agricultural water management</title><description>The aim of this study was to assess the magnitude of evaporation loss from the agricultural water reservoirs (AWRs) for irrigation at a regional scale and to analyze its impact on water storage efficiency. To this end, we identified the extant AWRs for irrigation in the Segura River Basin (SRB) in southeastern Spain, and calculated the water loss from each AWR per month and year. In order to accomplish this, we determined the monthly and yearly values of the pan coefficient,
K
p, taking into account the geometric dimensions (area and depth) of the AWRs and local climate conditions through a function of air vapour pressure deficit (VPD). AWR areas were identified by interpreting aerial images, while climate conditions were assessed using daily meteorological data obtained from 74 automated agro-meteorological stations located in irrigated areas. Regional evaporation losses were estimated using aggregation GIS techniques. A total of 14,145 AWRs covering 4901
ha were identified, which represents 0.26 and 1.81% of the total area of SRB and the irrigated land, respectively. Results indicated that annual water loss at a basin scale reaches 58.5
×
10
6
m
3, which corresponds to 1.404
m of water depth over the flooded area and to 8.3% of irrigation water use in the basin. This quantity is higher than the industrial demand and similar to the environmental demand, and is equivalent to 27% of the domestic water use in a region with approximately two million inhabitants. The method used, based on annual
K
p, appears the most straightforward to assess regional evaporative losses from AWRs, and can be extended to other regions and climates, provided that the VPD-dependent function that gives the pan coefficient is available.</description><subject>Agricultural and forest climatology and meteorology. Irrigation. Drainage</subject><subject>Agronomy. Soil science and plant productions</subject><subject>Applied sciences</subject><subject>basins</subject><subject>Biological and medical sciences</subject><subject>Buildings. Public works</subject><subject>Class-A pan</subject><subject>evaporation</subject><subject>Exact sciences and technology</subject><subject>Fundamental and applied biological sciences. Psychology</subject><subject>General agronomy. Plant production</subject><subject>geographic information systems</subject><subject>Hydraulic constructions</subject><subject>hydrologic models</subject><subject>image analysis</subject><subject>irrigation</subject><subject>Irrigation networks</subject><subject>Irrigation. Drainage</subject><subject>meteorological data</subject><subject>Pan coefficient</subject><subject>reservoirs</subject><subject>semiarid zones</subject><subject>Storage efficiency</subject><subject>Water loss</subject><subject>Water management</subject><subject>water use</subject><issn>0378-3774</issn><issn>1873-2283</issn><fulltext>true</fulltext><rsrctype>article</rsrctype><creationdate>2008</creationdate><recordtype>article</recordtype><sourceid>X2L</sourceid><recordid>eNqFkU1v1DAQhiMEEkvhF3AgF7jtMvY4tnPggCq-pEpIQM9m6owXr_Kx2NlF_fc4TdUjHMaWPM_7auZ1Vb0UsBMg9NvDjvZ_aN5JALsDtQPAR9VGWINbKS0-rjaAxm7RGPW0epbzAQAUKLOpfn7jfZxG6mvKmXMeeJzrKdR8puOUaC69OqRpqGmfoj_18ykVNqYU92szceZ0nmLKdRxrqjMPkVLsat_HgWZ-Xj0J1Gd-cX9fVNcfP_y4_Ly9-vrpy-X7q61X1s5bCo1FgwpIkxcddlZojTeKmhuEBjslBcjGoAmNN8FI2SoMpkMqgmCR8aJ6s_oe0_T7xHl2Q8ye-55Gnk7ZiVa3jdX4f1DZpkXZFhBX0Kcp58TBHVNZKd06AW6J3R3cXexuid2BciX2orpaVYmP7B8kzEz7uMBnh9Q25bgtdadEistbqWMpAY0u9lq7X_NQ7F7fT0vZUx8SjT7mB1sJupFayMK9WrlAk1v-Krvr7xIEArQIqJbB3q0El184R04u-8ij5y4m9rPrpvjPxf4C0Vi86A</recordid><startdate>20080901</startdate><enddate>20080901</enddate><creator>Martínez Alvarez, V.</creator><creator>González-Real, M.M.</creator><creator>Baille, A.</creator><creator>Maestre Valero, J.F.</creator><creator>Gallego Elvira, B.</creator><general>Elsevier B.V</general><general>Amsterdam; New York: Elsevier</general><general>Elsevier Science</general><general>Elsevier</general><scope>FBQ</scope><scope>IQODW</scope><scope>DKI</scope><scope>X2L</scope><scope>AAYXX</scope><scope>CITATION</scope><scope>7ST</scope><scope>C1K</scope><scope>SOI</scope><scope>7TG</scope><scope>7TV</scope><scope>7UA</scope><scope>F1W</scope><scope>H96</scope><scope>KL.</scope><scope>L.G</scope></search><sort><creationdate>20080901</creationdate><title>Regional assessment of evaporation from agricultural irrigation reservoirs in a semiarid climate</title><author>Martínez Alvarez, V. ; González-Real, M.M. ; Baille, A. ; Maestre Valero, J.F. ; Gallego Elvira, B.</author></sort><facets><frbrtype>5</frbrtype><frbrgroupid>cdi_FETCH-LOGICAL-c488t-af5837340a6ac1d3d81663b4a5b3053d421025737f5c7f722943f7d3a0a6f83e3</frbrgroupid><rsrctype>articles</rsrctype><prefilter>articles</prefilter><language>eng</language><creationdate>2008</creationdate><topic>Agricultural and forest climatology and meteorology. Irrigation. Drainage</topic><topic>Agronomy. Soil science and plant productions</topic><topic>Applied sciences</topic><topic>basins</topic><topic>Biological and medical sciences</topic><topic>Buildings. Public works</topic><topic>Class-A pan</topic><topic>evaporation</topic><topic>Exact sciences and technology</topic><topic>Fundamental and applied biological sciences. Psychology</topic><topic>General agronomy. Plant production</topic><topic>geographic information systems</topic><topic>Hydraulic constructions</topic><topic>hydrologic models</topic><topic>image analysis</topic><topic>irrigation</topic><topic>Irrigation networks</topic><topic>Irrigation. Drainage</topic><topic>meteorological data</topic><topic>Pan coefficient</topic><topic>reservoirs</topic><topic>semiarid zones</topic><topic>Storage efficiency</topic><topic>Water loss</topic><topic>Water management</topic><topic>water use</topic><toplevel>peer_reviewed</toplevel><toplevel>online_resources</toplevel><creatorcontrib>Martínez Alvarez, V.</creatorcontrib><creatorcontrib>González-Real, M.M.</creatorcontrib><creatorcontrib>Baille, A.</creatorcontrib><creatorcontrib>Maestre Valero, J.F.</creatorcontrib><creatorcontrib>Gallego Elvira, B.</creatorcontrib><collection>AGRIS</collection><collection>Pascal-Francis</collection><collection>RePEc IDEAS</collection><collection>RePEc</collection><collection>CrossRef</collection><collection>Environment Abstracts</collection><collection>Environmental Sciences and Pollution Management</collection><collection>Environment Abstracts</collection><collection>Meteorological & Geoastrophysical Abstracts</collection><collection>Pollution Abstracts</collection><collection>Water Resources Abstracts</collection><collection>ASFA: Aquatic Sciences and Fisheries Abstracts</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) 2: Ocean Technology, Policy & Non-Living Resources</collection><collection>Meteorological & Geoastrophysical Abstracts - Academic</collection><collection>Aquatic Science & Fisheries Abstracts (ASFA) Professional</collection><jtitle>Agricultural water management</jtitle></facets><delivery><delcategory>Remote Search Resource</delcategory><fulltext>fulltext</fulltext></delivery><addata><au>Martínez Alvarez, V.</au><au>González-Real, M.M.</au><au>Baille, A.</au><au>Maestre Valero, J.F.</au><au>Gallego Elvira, B.</au><format>journal</format><genre>article</genre><ristype>JOUR</ristype><atitle>Regional assessment of evaporation from agricultural irrigation reservoirs in a semiarid climate</atitle><jtitle>Agricultural water management</jtitle><date>2008-09-01</date><risdate>2008</risdate><volume>95</volume><issue>9</issue><spage>1056</spage><epage>1066</epage><pages>1056-1066</pages><issn>0378-3774</issn><eissn>1873-2283</eissn><coden>AWMADF</coden><abstract>The aim of this study was to assess the magnitude of evaporation loss from the agricultural water reservoirs (AWRs) for irrigation at a regional scale and to analyze its impact on water storage efficiency. To this end, we identified the extant AWRs for irrigation in the Segura River Basin (SRB) in southeastern Spain, and calculated the water loss from each AWR per month and year. In order to accomplish this, we determined the monthly and yearly values of the pan coefficient,
K
p, taking into account the geometric dimensions (area and depth) of the AWRs and local climate conditions through a function of air vapour pressure deficit (VPD). AWR areas were identified by interpreting aerial images, while climate conditions were assessed using daily meteorological data obtained from 74 automated agro-meteorological stations located in irrigated areas. Regional evaporation losses were estimated using aggregation GIS techniques. A total of 14,145 AWRs covering 4901
ha were identified, which represents 0.26 and 1.81% of the total area of SRB and the irrigated land, respectively. Results indicated that annual water loss at a basin scale reaches 58.5
×
10
6
m
3, which corresponds to 1.404
m of water depth over the flooded area and to 8.3% of irrigation water use in the basin. This quantity is higher than the industrial demand and similar to the environmental demand, and is equivalent to 27% of the domestic water use in a region with approximately two million inhabitants. The method used, based on annual
K
p, appears the most straightforward to assess regional evaporative losses from AWRs, and can be extended to other regions and climates, provided that the VPD-dependent function that gives the pan coefficient is available.</abstract><cop>Amsterdam</cop><pub>Elsevier B.V</pub><doi>10.1016/j.agwat.2008.04.003</doi><tpages>11</tpages></addata></record> |
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subjects | Agricultural and forest climatology and meteorology. Irrigation. Drainage Agronomy. Soil science and plant productions Applied sciences basins Biological and medical sciences Buildings. Public works Class-A pan evaporation Exact sciences and technology Fundamental and applied biological sciences. Psychology General agronomy. Plant production geographic information systems Hydraulic constructions hydrologic models image analysis irrigation Irrigation networks Irrigation. Drainage meteorological data Pan coefficient reservoirs semiarid zones Storage efficiency Water loss Water management water use |
title | Regional assessment of evaporation from agricultural irrigation reservoirs in a semiarid climate |
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