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An irrigation controller mechanically actuated by soil-water tension: I - Design, development and laboratory evaluations

机译:由土壤水张力机械驱动的灌溉控制器:I-设计,开发和实验室评估

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The objective of this study was to develop and evaluate an irrigation controller that was mechanically actuated by soil-water tension within laboratory conditions. The controller was designed and constructed using readily available hydraulic fittings and other componentry. The main components of the controller were a tensiometer; a rubber diaphragm that moves according to the variation in tension inside of the tensiometer; an activation rod that transfers the movement from diaphragm to the switch valve; and a steel spring that regulates the activation of soil water tension. Six irrigation controller samples were tested in the laboratory to evaluate the mechanical performance and component forces required to activate the controllers. The relationship between spring adjustment and soil water tension required to open the irrigation valve was linear with a gradient ranging from 1.10 to 1.41 kPa mm-1 and a coefficient of variation of 9.2%. However, differences observed in the activation of the soil water tension could also be reduced by individual controller calibration. The calibration of the soil water tension required to initiate irrigation was easily set by adjusting the spring. The proposed controller is functional, simple to use, can be easily adjusted, and does not require electricity to operate.
机译:这项研究的目的是开发和评估一种灌溉控制器,该控制器在实验室条件下由土壤水张力机械驱动。使用容易获得的液压配件和其他组件来设计和构造控制器。控制器的主要组件是张力计。根据张力计内部张力的变化而移动的橡胶膜片;激活杆,将运动从隔膜传递到切换阀;和一个弹簧,调节土壤水分张力的激活。在实验室测试了六个灌溉控制器样品,以评估激活控制器所需的机械性能和分力。弹簧调节和打开灌溉阀所需的土壤水分张力之间的关系呈线性关系,其梯度范围为1.10至1.41 kPa mm-1,变异系数为9.2%。但是,通过单独的控制器校准也可以减小土壤水张力激活中观察到的差异。通过调节弹簧很容易设定开始灌溉所需的土壤水分张力的校准。所提出的控制器功能齐全,易于使用,易于调节并且不需要电力即可运行。

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