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Monitoring Soil Moisture Dynamics Using Electrical Resistivity Tomography under Homogeneous Field Conditions

机译:在均质现场条件下使用电阻率断层扫描监测土壤湿度动力学

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摘要

There is a gap between lab experiments where resistivity–soil moisture relations are generally very good and field studies in complex environmental settings where relations are always less good and complicated by many factors. An experiment was designed where environmental settings are more controlled, the best outside laboratory, to assess the transferability from lab to outdoor. A field experiment was carried out to evaluate the use of electric resistivity tomography (ERT) for monitoring soil moisture dynamics over a period of 67 days. A homogeneous site in the central part of The Netherlands was selected consisting of grass pasture on an aeolian sand soil profile. ERT values were correlated to gravimetric soil moisture samples for five depths at three different dates. Correlations ranged from 0.43 to 0.73 and were best for a soil depth of 90 cm. Resistivity patterns over time (time-lapse ERT) were analyzed and related to rainfall events where rainfall infiltration patterns could be identified. Duplicate ERT measurements showed that the noise level of the instrument and measurements is low and generally below 3% for the soil profile below the mixed layer but above the groundwater. Although the majority of the measured resistivity patterns could be well explained, some artefacts and dynamics were more difficult to clarify, even so in this homogeneous field situation. The presence of an oak tree with its root structure and a ditch with surface water with higher conductivity may have an impact on the resistivity pattern in the soil profile and over time. We conclude that ERT allows for detailed spatial measurement of local soil moisture dynamics resulting from precipitation although field experiments do not yield accuracies similar to laboratory experiments. ERT approaches are suitable for detailed spatial analyses where probe or sample-based methods are limited in reach or repeatability.
机译:实验室实验之间存在差距,其中电阻率 - 土壤水分关系通常在复杂的环境环境中的良好和现场研究,在这种因素中的关系总是不那么好的和复杂。实验设计,其中环境设置更具控制,最佳实验室,评估从实验室到户外的可转移。进行了现场实验,以评估电阻率断层扫描(ERT)在67天内监测土壤水分动力学的使用。荷兰中央部分的一个同质遗址被选为天气砂土剖面的草牧场。 ERT值与重量土壤湿度样本相关,在三个不同的日期的五个深度。相关性范围为0.43至0.73,最适合土壤深度为90厘米。分析电阻率模式(时间流逝ert)与降雨渗透模式的降雨事件进行分析和相关。重复的ERT测量结果表明,在地下水下方的土壤轮廓但下方的土壤轮廓低于且通常低于3%的噪声水平,但是在地下水之上。尽管大部分测量的电阻率模式都可以很好地解释,但是一些人工制品和动态更难以澄清,即使在这种均匀的现场情况下也是如此。具有其根结构的橡树和具有较高导电性的地表水的沟渠的存在可能对土壤轮廓和随时间的电阻率模式产生影响。我们得出结论,虽然现场实验不屈服于类似于实验室实验,但允许偏离沉淀的局部土壤湿度动力学的详细空间测量。 ERT方法适用于详细的空间分析,其中探测或基于样品的方法受到覆盖或可重复性的限制。

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