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首页> 外文期刊>Journal of Hydrology >Monitoring soil volume wetness in heterogeneous soils by electrical resistivity. A field-based pedotransfer function
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Monitoring soil volume wetness in heterogeneous soils by electrical resistivity. A field-based pedotransfer function

机译:通过电阻率监测异质土壤中的土壤体积湿度。基于字段的pedotransfer函数

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Modern irrigation techniques require accurate, rapid, cost-effective, spatial measurement of soil moisture. Electrical Resistivity Tomography (ERT) meets most of these requirements, but needs to be calibrated for each use because it is very sensitive to differences in soil characteristics. In this study, a pedotransfer function approach is used to remove the need for site-specific calibration, allowing ERT to be used directly to measure soil moisture. The study site was a hillslope vineyard, where eight calcaric-cambisol soil profiles were identified. From 2012 to 2013, 23 000 soil volume wetness measurements were acquired by Time Domain Reflectometry, and over 100 000 electrical resistivity data were collected in 160 ERT acquisitions. To better understand the ERT signal, soil texture, gravel content, cation exchange capacity, CaCO_3, pH, organic carbon and total nitrogen were analysed in 64 soil samples from the study site. The sensitivity of ERT to differences in soil characteristics makes it difficult to establish a unique model linking electrical resistivity and soil moisture in heterogeneous soils. This study presents two possible solutions to overcome this problem, which are differentiated by the availability of data on soil characteristics. When these data are not available, it is possible to fit a number of different models for each homogeneous soil layer, but a site-specific calibration is necessary at least once. Conversely, when soil characteristics are available, they can be integrated into the model to build a pedotransfer function. A unique, accurate model is obtained in this way for all samples. In soils with similar characteristics to those observed, the function can be used directly to measure soil moisture by ERT. Developing pedotransfer functions such the one presented here could greatly improve, simplify and develop the use of electrical resistivity to measure soil moisture.
机译:现代灌溉技术要求对土壤水分进行准确,快速,经济高效的空间测量。电阻层析成像(ERT)满足了这些要求中的大多数要求,但由于每次使用对土壤特性的差异非常敏感,因此需要对其进行校准。在这项研究中,使用了pedotransfer函数方法来消除对特定地点校准的需要,从而可以将ERT直接用于测量土壤湿度。研究地点是一个山坡葡萄园,在那里确定了八种钙-坎比索土壤剖面。从2012年到2013年,通过时域反射法获得了23 000个土壤体积湿度测量值,并且在160个ERT采集中收集了超过100 000电阻率数据。为了更好地理解ERT信号,对来自研究地点的64个土壤样品的土壤质地,砾石含量,阳离子交换能力,CaCO_3,pH,有机碳和总氮进行了分析。 ERT对土壤特性差异的敏感性使得难以建立将异质土壤中的电阻率和土壤水分联系起来的独特模型。这项研究提出了解决这一问题的两种可能的解决方案,它们的区别在于土壤特性数据的可用性。当这些数据不可用时,可以为每个均质土壤层拟合许多不同的模型,但是特定于现场的校准至少需要一次。相反,当土壤特性可用时,可以将其集成到模型中以建立pedotransfer函数。以这种方式为所有样本获得了唯一,准确的模型。在与观察到的特性相似的土壤中,该功能可直接用于ERT测量土壤湿度。开发pedotransfer函数(如此处介绍的函数)可以极大地改善,简化和发展使用电阻率测量土壤湿度的功能。

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