为低收入国家高效用水设计被动灌溉控制器

Anna Jiang, A. Bilton
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引用次数: 1

摘要

有效的灌溉用水对于低收入国家跟上预计的人口和收入增长至关重要。目前基于天气和土壤湿度的智能灌溉控制器不容易转移到低收入国家和小型偏远农场的经济和技术背景下。本文介绍了一种被动自动灌溉控制器的设计,该控制器使用尼加拉瓜社区合作伙伴当地可获得的标准PVC配件。控制器中阀门的驱动是由非饱和土的水张力驱动的。控制器的关键部件是连接水管的陶瓷尖端,橡胶膜和一个像灌溉塞一样的活塞。活塞长度设计与膜的初始偏转,使其向后推到进口,以关闭灌溉。利用Green-Ampt土水动力学方程、土壤湿度与控制器压力关系的经验数据和膜的有限元模型组成的系统模型,设计了控制器。初始系统由2″直径的橡胶膜和1″直径的活塞组成。初始挠度为1.6cm,以产生足够的力来停止灌溉,直到SWT达到- 35kPa。控制器的成本约为130加元,其中PVC部件在加拿大以零售价格购买。当零售价格实现折扣后,预计成本会下降。这种设计有可能大大减少滴灌系统的用水量。
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Design of a passive irrigation controller for efficient water use in low-income countries
Efficient irrigation water usage is vital for low-income countries to keep up with projected population and income growth. Current weather- and soil-moisture-based smart irrigation controllers are not easily transferable to the economic and technological context of low-income countries and small remote farms. This paper presents the design of a passive automated irrigation controller that uses standard PVC fittings locally available to our community partner in Nicaragua. The actuation of the valve in the controller is driven by the soil water tension (SWT) from unsaturated soil. The key components of the controller are a ceramic tip connected to a tube of water, a rubber membrane, and a piston that acts like a stopper for the irrigation. The piston length is designed with an initial deflection in the membrane, causing it to push back against the inlet to shut off irrigation. A model of the system composed of the Green-Ampt equation for soil-water dynamics, empirical data for the relationship between soil moisture and controller pressure, and finite element model of the membrane is used to design a controller. The initial system consists of a 2″ diameter rubber membrane and a 1″ diameter piston. The initial deflection is 1.6cm to create enough force to stop the irrigation until the SWT reaches −35kPa. The controller costs approximately $CDN130 with PVC parts purchased in Canada with retail prices. The cost is expected to drop when discounts from retail prices are actualized. The design has the potential to greatly reduce water usage in drip irrigation systems.
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