Clonch Cameron, Huynh Mark, Goto Bryson, Levin Alexander, Selker John, Udell Chet
Openly Published Environmental Sensing (OPEnS) Lab, Oregon State University, Corvallis, OR, USA.
Department of Horticulture, Oregon State University, Corvallis, OR, USA.
HardwareX. 2021 Nov 12;10:e00248. doi: 10.1016/j.ohx.2021.e00248. eCollection 2021 Oct.
Increasing agricultural demand for freshwater in the face of a changing climate requires improved irrigation management to maximize resource efficiency. Soil water deficits can significantly reduce plant growth and development, directly impacting crop quantity and quality. Dendrometers are a plant-based tool that have shown potential to improve irrigation management in high-value woody perennial crops (e.g., trees and vines). A dendrometer continuously measures small fluctuations in stem diameter; this has been directly correlated to water stress measurements using traditional methods. While plant-based measures of water deficits are considered to be the best measures of water stress, current dendrometer methods are imprecise due to mechanical hysteresis and thermal expansion. The high-precision dendrometer created at the OPEnS Lab alleviates these key failure points using zero-thermal expansion carbon fiber, zero friction via a spring tensioning approach, and a linear magnetic encoder. In-lab tests and field deployments have validated device measurements and the execution of these pivotal qualities. Mass deployment of these automated dendrometers has the potential to provide a continuous record of water stress, providing valuable decision support for irrigation management.
面对气候变化,农业对淡水的需求不断增加,这就需要改进灌溉管理,以最大限度地提高资源利用效率。土壤水分亏缺会显著降低植物的生长和发育,直接影响作物的产量和质量。树木测量仪是一种基于植物的工具,已显示出在高价值多年生木本作物(如树木和藤蔓)中改善灌溉管理的潜力。树木测量仪持续测量茎干直径的微小波动;这已与使用传统方法测量的水分胁迫直接相关。虽然基于植物的水分亏缺测量方法被认为是衡量水分胁迫的最佳方法,但由于机械滞后和热膨胀,目前的树木测量仪方法并不精确。开放系统实验室制造的高精度树木测量仪采用零热膨胀碳纤维、通过弹簧张紧方法实现零摩擦以及线性磁编码器,缓解了这些关键故障点。实验室测试和现场部署验证了设备测量结果以及这些关键特性的实现。大规模部署这些自动树木测量仪有可能提供水分胁迫的连续记录,为灌溉管理提供有价值的决策支持。