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A Decision Support System for Matching Irrigation Demand and Supply in the Near Real Time Environment

机译:用于近实时环境中灌溉需求和供应的决策支持系统

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This study deals with the application of a novel decision support system (DSS)for precise matching of irrigation demand and supply in a the near real time environment for the Coleambally Irrigation area (CIA),located in the southwest of New South Wales(NSW),Australia.Forecasting of irrigation demand in the real time environment entails a complete understanding of the spatio-temporal variability of meteorological parameters and evapotranspiration (ET).For improved irrigation system management and operation,a holistic approach of integrating remote sensing derived ET from the SEBAL method with forecasted meteorological data and water use efficiency was used to forecast net irrigation demand.In order to capture the spatial variability,the CIA has been divided into 22 nodes based on direction of flow and connectivity.All hydrological data of inflow and outflow was estimated at all nodes of the CIA for the estimation of water use efficiencies.10 Landsat 5 TM satellite images were used for mapping irrigated crops and estimation of actual ET for the summer cropping season of 2008 ~2009.This estimated actual ET and forecasted meteorological data was used for demand forecasting for 7 d.The results were compared with the data obtained for irrigation supplies.The methodology is very robust and cost effective for demand driven irrigation systems that have a good database,and daily demand can be forecast and updated by using remote sensing image analysis with minimum time input.The outcome of irrigation demand forecasting on a daily basis for three summer months (December 2009-February 2010) has been applied within the DSS by linking crop water demand with irrigation system management in the near real time environment.The developed model has been coupled with CICL' s water ordering system and has been tested and refined for implementation across all spatial scales ranging from farm to irrigation system in the CIA.The developed DSS,featuring a web-based interface for near real time inquiry into the irrigation status from farm to system level,will enable irrigators to more closely match water application to crop water consumption within daily operational constraints in the CIA.This user friendly decision support model provides water managers with a deeper and more useful understanding about the irrigation demand and supply in the CIA.
机译:本研究涉及采用新型决策支持系统(DSS)的应用,以精确匹配灌溉需求和供应在北部南威尔士(新南威尔士州新南威尔士州西南部)的北部实时环境中,澳大利亚。实时环境中的灌溉需求的侵略性需要完全了解气象参数的时空变化和蒸散量(et)。为改进的灌溉系统管理和运作,整合遥感衍生等的整体方法具有预测的气象数据和水利用效率的SEBAL方法用于预测净灌溉需求。为了捕获空间变异性,CIA基于流动和连接方向分为22个节点。所有流入和流出的水文数据在CIA的所有节点估计,用于估计用水效率.10 Landsat 5 TM卫星图像用于m应用灌溉作物和2008〜2009年夏季种植季节实际等估计。本估计的实际ET和预测的气象数据用于7 d的需求预测。结果与灌溉用品的数据进行了比较。方法是对于具有良好数据库的需求驱动的灌溉系统以及使用最短时间输入的遥感图像分析可以预测和更新日常需求的非常稳健和成本效益2010年12月 - 2010年2月)通过在近实时环境中将作物水需求与灌溉系统管理联系起来,在DSS中应用。开发的模型与CICL的水订购系统相结合,已经过测试和精致以实现所有空间尺度范围从农场到CIA的灌溉系统。开发的DSS,具有基于Web的Real Ti的界面我询问农场到系统级别的灌溉状态,将使灌溉者能够更紧密地匹配水应用,以在中央情报局日常运作限制内作物耗水量。这位用户友好的决策支持模式为水管理人员提供了更深刻和更有用的理解。中央情报局中的灌溉需求和供应。

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