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Integrating satellite-based evapotranspiration with simulation models for irrigation management at the scheme level

机译:在计划一级将基于卫星的蒸散量与灌溉管理模拟模型相结合

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摘要

Improvements in irrigation management are urgently needed in regions where water resources for irrigation are being depleted. This paper combines a water balance model with satellite-based remote-sensing estimates of evapotranspiration (ET) to provide accurate irrigation scheduling guidelines for individual fields. The satellite-derived ET was used in the daily soil water balance model to improve accuracy of field-by-field ET demands and subsequent field-scale irrigation schedules. The combination of satellite-based ET with daily soil water balance incorporates the advantages of satellite remote-sensing and daily calculation time steps, namely, high spatial resolution and high temporal resolution. The procedure was applied to Genil-Cabra Irrigation Scheme of Spain, where irrigation water supply is often limited by regional drought. Compared with traditional applications of water balance models (i.e. without the satellite-based ET), the combined procedure provided significant improvements in irrigation schedules for both the average condition and when considering field-to-field variability. A 24% reduction in application of water was estimated for cotton if the improved irrigation schedules were followed. Irrigation efficiency calculated using satellite-based ET and actual applied irrigation water helped to identify specific agricultural fields experiencing problems in water management, as well as to estimate general irrigation efficiencies of the scheme by irrigation and crop type. Estimation of field irrigation efficiency ranged from 0.72 for cotton to 0.90 for sugar beet.
机译:在灌溉水资源枯竭的地区,迫切需要改善灌溉管理。本文将水平衡模型与基于卫星的蒸散量(ET)遥感估算相结合,从而为各个田间提供准确的灌溉调度指南。在日常土壤水平衡模型中使用了卫星衍生的ET,以提高逐场ET需求和随后的田间灌溉时间表的准确性。基于卫星的ET与每日土壤水平衡相结合,具有卫星遥感和每日计算时间步长的优势,即高空间分辨率和高时间分辨率。该程序已应用于西班牙的Genil-Cabra灌溉计划,该地区的灌溉水供应经常受到区域干旱的限制。与传统的水平衡模型应用程序(即不使用基于卫星的ET)相比,该组合程序在平均条件和考虑田间差异的情况下都显着改善了灌溉计划。如果遵循改进的灌溉时间表,则棉花的用水量估计可减少24%。使用基于卫星的ET和实际应用的灌溉水计算出的灌溉效率有助于确定在水管理方面遇到问题的特定农田,并有助于根据灌溉和作物类型估算该计划的总体灌溉效率。田间灌溉效率的估算范围从棉花的0.72到甜菜的0.90不等。

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