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首页> 外文期刊>Hydrology and Earth System Sciences >Small-scale characterization of vine plant root water uptake via 3-D electrical resistivity tomography and mise-à-la-masse method
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Small-scale characterization of vine plant root water uptake via 3-D electrical resistivity tomography and mise-à-la-masse method

机译:通过3-D电阻层析成像和Mis-à-la-Masse方法对藤本植物根系吸水量进行小规模表征

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摘要

The investigation of plant roots is inherently difficult and often neglected. Being out of sight, roots are often out of mind. Nevertheless, roots play a key role in the exchange of mass and energy between soil and the atmosphere, in addition to the many practical applications in agriculture. In this paper, we propose a method for roots imaging based on the joint use of two electrical noninvasive methods: electrical resistivity tomography (ERT) and mise-à-la-masse (MALM). The approach is based on the key assumption that the plant root system acts as an electrically conductive body, so that injecting electrical current into the plant stem will ultimately result in the injection of current into the subsoil through the root system, and particularly through the root terminations via hair roots. Evidence from field data, showing that voltage distribution is very different whether current is injected into the tree stem or in the ground, strongly supports this hypothesis. The proposed procedure involves a stepwise inversion of both ERT and MALM data that ultimately leads to the identification of electrical resistivity (ER) distribution and of the current injection root distribution in the three-dimensional soil space. This, in turn, is a proxy to the active (hair) root density in the ground. We tested the proposed procedure on synthetic data and, more importantly, on field data collected in a vineyard, where the estimated depth of the root zone proved to be in agreement with literature on similar crops. The proposed noninvasive approach is a step forward towards a better quantification of root structure and functioning.
机译:对植物根的研究固有地是困难的,并且常常被忽视。在看不见的地方,根源常常不在意。然而,除了在农业中的许多实际应用之外,根在土壤与大气之间的质量和能量交换中起着关键作用。在本文中,我们提出了一种基于两种非侵入性电子方法(电阻率层析成像(ERT)和mise-à-la-masse(MALM))联合使用的根部成像方法。该方法基于以下关键假设:植物根系充当导电体,因此向植物茎中注入电流最终将导致电流通过根系(尤其是通过根系)注入地下土壤。通过发根终止。来自现场数据的证据表明,无论是将电流注入到树的茎部还是向地面注入电流,电压分布都非常不同,这有力地支持了这一假设。拟议的程序涉及ERT和MALM数据的逐步反演,最终导致识别三维土壤空间中的电阻率(ER)分布和电流注入根分布。反过来,这是地面中活动(毛发)根部密度的代理。我们在合成数据上,更重要的是在葡萄园中收集的田间数据上对建议的程序进行了测试,在该数据中,根部区域的估计深度与相似农作物的文献证明是一致的。拟议的非侵入性方法是朝着更好地量化根部结构和功能迈出的一步。

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