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Evaluating Remote Sensing-based Crop Water Use Monitoring Methods Using Soil Moisture Sensors

机译:使用土壤湿度传感器评估遥感的作物用水监测方法

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Competition for limited water supplies continues to exert pressure on agriculture. In addition, climate change, urban growth, and drought influence how farmers manage their water supplies. Water transfers from agriculture to other uses are on the rise. To avoid drying farms one alternative water management strategy is to deficit irrigate. However, to perform a successful managing irrigation under a deficit irrigation regime an accurate crop water consumption monitoring method is required. The objective of this study was to evaluate a crop water stress model that is based on the difference between canopy radiometric temperature and air temperature. Three irrigation treatments were imposed on corn plots grown in northeastern Colorado in 2011. The treatments were: TrT 1 full irrigation (six irrigations), TrT 2 deficit irrigation (two irrigations), and TrT 3 reduced irrigation (six irrigation but half the amount of TrT 1). A local weather station located on a grass field was used to compute reference evapotranspiration. Derived crop water stress indices and water use amounts were evaluated with ET values derived from a Neutron probe-based soil water balance and with a surface energy balance model considering inputs from a remote sensing system. Results indicated that relatively low errors in ET estimation are possible if surface radiometric temperature is acquired earlier in the day.
机译:有限用水的竞争继续对农业产生压力。此外,气候变化,城市成长和干旱影响农民如何管理水供应。从农业到其他用途的水转移正在上升。为避免干燥农场,一种替代的水管理策略是缺勤灌溉。但是,为了在赤字灌溉制度下进行成功的管理灌溉,需要准确的作物耗水监测方法。本研究的目的是评估基于顶层辐射温度和空气温度之间的差异的作物水力解答。在2011年在科罗拉多州东北部种植的玉米地块上施加了三种灌溉治疗。该治疗方法是:TRT 1全灌(六次灌溉),TRT 2缺陷灌溉(两种灌溉),TRT 3减少灌溉(六次灌溉) trt 1)。位于草地上的当地气象站用于计算参考蒸发。通过从基于中子探针的土壤水平和考虑来自遥感系统的输入的表面能平衡模型评价衍生的作物水分应激指数和用水量。结果表明,如果在白天早期获得表面辐射温度,则ET估计中的误差相对较低。

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