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首页> 外文期刊>Hydrology and Earth System Sciences >Assessment of shallow subsurface characterisation with non-invasive geophysical methods at the intermediate hill-slope scale
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Assessment of shallow subsurface characterisation with non-invasive geophysical methods at the intermediate hill-slope scale

机译:用非侵入性地球物理方法评估中等坡度的浅层地下特征

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摘要

Hill-slopes of several hectares in size represent a difficult scale for subsurface characterisation, as these landscape units are well beyond the scope of traditional point-scale techniques. By means of electromagnetic induction (EMI) and gamma-ray spectroscopy, spatially distributed soil proxy data were collected from a heterogeneous hill-slope site. Results of EMI mapping using the EM38DD showed that soil electrical conductivity (ECa) is highly variable at both temporal and spatial scales. Calibration of the integral ECa signal to a specific target like soil moisture is hampered by the ambiguous response of EMI to the clay-rich hill-slope underground. Gamma-ray results were obtained during a single survey, along with EMI measurements and selected soil sampling. In contrast to ECa, a noticeable correlation between Total Count and K emission data and soil-water content seemed to be present. Relevant proxy variables from both methods were used for k means clustering in order to distinguish between hill-slope areas with different soil conditions. As a result, we obtained a suitable partition of hill-slope that was comparable with a previously obtained zonation model based on ecological factors.
机译:几公顷大小的山坡代表了地下表征的困难规模,因为这些景观单元远远超出了传统点规模技术的范围。借助电磁感应(EMI)和伽马射线光谱,从异质山坡站点收集了空间分布的土壤代理数据。使用EM38DD进行EMI测绘的结果表明,土壤电导率(ECa)在时间和空间尺度上都是高度可变的。电磁干扰对地下富含粘土的山坡的模棱两可的响应阻碍了将整体ECa信号校准到特定目标(例如土壤湿度)的过程。在一次调查中获得了伽马射线结果,同时进行了EMI测量和选定的土壤采样。与ECa相比,总计数和K排放数据与土壤水分之间似乎存在明显的相关性。两种方法的相关代理变量都用于k均值聚类,以区分具有不同土壤条件的山坡地区。结果,我们获得了与以前基于生态因素获得的分区模型相当的合适的山坡分区。

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