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Development of a smart monolayer application system for reducing evaporation from farm dams: Introductory paper

机译:开发用于减少农场大坝蒸发的智能单层应用系统:介绍性论文

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Chemical monolayer films are potentially an economical low-impact means of reducing evaporative loss from farm water storages. However, their performance can he highly variable as they are affected by climatic and environmental factors: principally wind, wave action and bio-degradation. Some of this observed variability is associated with the monolayer materials themselves and their interaction with the water-surface physics and biology, but the fact that they are only a few nanometres thick means that a very small amount of material has to be distributed over a very large area. Therefore, appropriate and timely autonomous application of monolayer, with regard to prevailing (and changing) wind conditions on-site, is required. Although a number of autonomous application systems for monolayer already exist, none has proved overly successful. It is argued that while this is in pari due to sub-optimal performance of monolayer materials, it is also due in large measure to inaccuracies and/or inappropriate design in both application systems and particularly application strategies, which are not adaptive to the prevailing environmental conditions. Therefore a control system is being developed to adaptively and spatially vary monolayer application rates according to changing conditions monitored on-site. This will form part of an autonomous electromechanical system for the optimal application and spreading of any given chemical monolayer. This paper reports progress towards this objective; firstly by evaluation of the design requirements for automated systems at a range of spatial scales; and secondly via the construction of a first pre-prototype to act as an evaluation platform and concept demonstrator.
机译:化学单层膜可能是减少农场水库蒸发损失的经济,低影响的手段。但是,由于它们受气候和环境因素(主要是风,波浪作用和生物降解)的影响,它们的性能可能会发生很大变化。这种观察到的变异性中的一些与单层材料本身以及它们与水表面物理学和生物学的相互作用有关,但是它们只有几纳米厚的事实意味着必须将非常少量的材料分布在较大的区域。因此,需要针对现场的主要(和不断变化的)风况,适当,及时地自主应用单层。尽管已经存在许多用于单层的自治应用程序系统,但没有一个被证明是非常成功的。有人认为虽然这是由于单层材料的次优性能造成的,但同时也很大程度上是由于应用系统,特别是应用策略中的不准确和/或不适当的设计,它们不适应当前的环境。条件。因此,正在开发一种控制系统,以根据现场监测到的变化条件来适应性地和空间地改变单层施用率。这将形成自主机电系统的一部分,以最佳地应用和扩展任何给定的化学单层。本文报告了实现这一目标的进展;首先,通过评估一系列空间尺度上的自动化系统的设计要求;其次是通过构建第一个原型来充当评估平台和概念验证者。

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