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Mapping subsurface tile drainage systems with thermal images

机译:使用热图像映射地下瓦片排水系统

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In Midwestern agricultural fields, subsurface tile drainage has been widely used to remove excess water from the soil through perforated tubes installed beneath the ground surface. While it plays an important role in enabling agricultural activities in wet but productive areas, this system is a major driving factor affecting water and nutrient dynamics, and water quality in this region. However, despite its critical role, the specific locations of subsurface tile drainage structures are not generally available nor well captured by conventional optical image processing due to soil surface features, such as topographic depressions and tillage. To overcome these challenges, in this study, we have explored the potential of using thermal images to identify the location of a subsurface drainage pipe. The hypothesis is that the unique spatial distribution of soil moisture set up by tile drains can result in the difference in surface soil temperature between areas near and away from drainage pipes. Toward this objective, we designed and developed an experimental device based on a dimensionless analysis at a scale of 1;20, which was deployed in the open air for 4.5 months. The experimental results demonstrate that (1) there is an ideal time for thermal image acquisition that maximizes the contrast between the regions close to and distant from subsurface drainage systems, and (2) the thermal image processing approach proposed in this study is a promising tool that has advantages of higher accuracy and stability in localizing subsurface drainage pipes over optical image-based approaches
机译:在中西部农业领域,地下瓦片排水已广泛用于通过安装在地面下方的穿孔管从土壤中除去多余的水。虽然它在使农业活动中在湿但生产区实现农业活动方面发挥着重要作用,但该系统是影响水和营养动态的主要驱动因素,并在该地区的水质。然而,尽管其关键作用,因此由于土壤表面特征,例如地形凹陷和耕作,因此,由于土壤表面特征,但地下瓦片排水结构的特定位置通常不可用也不是通过传统光学图像处理的良好捕获。为了克服这些挑战,在这项研究中,我们探讨了使用热图像来识别地下排水管的位置的潜力。假设是瓷砖排水沟设定的土壤水分的独特空间分布可能导致表面土壤温度之间的差异,靠近排水管。对此目的,我们设计和开发了一种基于1; 20的无量纲分析的实验装置,该实验装置是在露天中部署4.5个月。实验结果表明(1)存在理想的热图像采集时间,以最大化与地下排水系统接近和遥远的区域之间的对比度,并且(2)本研究中提出的热图像处理方法是一个有前途的工具通过光学图像的方法定位地下排水管的准确性和稳定性具有更高的准确性和稳定性

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