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A VARIABLE-RATE IRRIGATION DECISION SUPPORT SYSTEM FOR CORN IN THE U.S. EASTERN COASTAL PLAIN

机译:美国东部沿海平原玉米的可变速率灌溉决策支持系统

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摘要

Variable-rate irrigation (VRI) systems are capable of applying different water depths both in the direction of travel and along the length of the irrigation system. VRI systems maybe useful for improving crop water management and efficiency. AlthoughVRI technology is available and has high grower interest, it has had limited adoption. To address this, researchers have developed a decision support system that uses remote sensing of plant, soil, and microclimate to schedule VRI irrigations. In this research, we evaluated the use of the USDA-ARS Irrigation Scheduling and Supervisory Control and Data Acquisition (ISSCADA) system for spatially managing corn irrigation in the U.S. Eastern Coastal Plain. The ISSCADA system consists of center pivot mountedinfrared thermometers (IRT) to measure crop canopy temperatures and in situ soil water sensors. An integrated crop water stress index (iCWSI) was calculated from the canopy temperatures. The ISSCADA system analyzes the iCWSI and soil water measurementsto provide an irrigation recommendation. The ISSCADA system was evaluated using (1) iCWSI values and (2) a hybrid ISSCADA system that incorporated both iCWSI values and soil water depletion criteria. These ISSCADA treatments were compared to traditionalirrigation management using measured soil water potentials. The ISSCADA system was evaluated for four years. In 2016 and 2017, corn yields and water use efficiency were not significantly different between the irrigation treatments due to adequate rainfall during the growing season. In 2018 and 2019, mid-season drought conditions and sporadic rainfall patterns required frequent irrigations. In both years, the irrigation treatment corn yields were not significantly different from each other but were greater than the rainfed yields. In 2018, the irrigation treatments produced corn yields of 10.7, 10.4, and 10.1 Mg ha~(-1) for the hybrid, ISSCADA, and SWP treatments, respectively. Over the four-year study, the water use efficiencies of the irrigation treatments were not significantly different from each other or the rainfed treatment and ranged from 16.6 to 22.7 kg ha~(-1) mm~(-1). In the two years that the hybrid ISSCADA system was used for managing irrigations, it produced higher corn yields and required less irrigation than the standard ISSCADA treatments. Results from this experiment will help to evaluate and refine the ISSCADA system to provide a tool for growers to use in managing spatial irrigation with VRI systems.
机译:可变速率灌溉(VRI)系统能够在行进方向和沿着灌溉系统的长度施加不同的水深。 VRI系统可能有助于改善作物水管理和效率。虽然VRI技术可用并具有高种植者的兴趣,但采用有限。为了解决这个问题,研究人员制定了一个决策支持系统,它使用遥感植物,土壤和小气门来安排VRI灌溉。在本研究中,我们评估了USDA-ARS灌溉调度和监督控制和数据采集(ISSCADA)系统在美国东部沿海平原中的空间管理玉米灌溉的使用。 ISSCADA系统由中心枢轴Mountedinfrared温度计(IRT)组成,以测量作物冠层温度和原位土壤水传感器。从冠层温度计算综合作物水分应激指数(ICWSI)。 ISSCADA系统分析了ICWSI和土壤水测量仪器提供灌溉推荐。使用(1)ICWSI值和(2)一种混合ISSCADA系统来评估ISSCADA系统,该系统纳入ICWSI值和土壤水耗尽标准。将这些ISSCADA治疗与通过测量的土壤水电位进行比较。 ISSCADA系统评估了四年。 2016年和2017年,由于在生长季节的降雨量上,玉米产量和水分利用效率并没有显着差异。 2018年和2019年,季后期干旱条件和零星降雨模式需要频繁的灌溉。在这两年中,灌溉治疗玉米产量与彼此没有显着不同,但大于雨量产量。 2018年,灌溉治疗分别为杂交,ISSCADA和SWP治疗分别产生10.7,10.4和10.1mg HA〜(-1)的玉米产量。在为期四年的研究中,灌溉治疗的水使用效率彼此没有显着差异或雨量处理,范围为16.6至22.7kg ha〜(-1)mm〜(-1)。在两年的两年中,混合动力ISSCADA系统用于管理灌溉,它产生的玉米产量和要求比标准的ISSCADA治疗更少灌溉。该实验的结果将有助于评估和改进ISSCADA系统,为种植者提供用于管理与VRI系统的空间灌溉的工具。

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