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Experimental Determination of TDR Calibration Relationship for Pyroclastic Ashes of Campania (Italy)

机译:坎帕尼亚(意大利)的火山碎屑灰分TDR校准关系的实验确定

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摘要

Time domain reflectometry (TDR) is one of the most widely used techniques for indirect determination of soil volumetric water content (θ). TDR measures the relative dielectric constant (εr) which, in a three-phase system like the soil, depends on water, air, and solid matrix dielectric constants. Since dielectric constant of water is much larger than the other two, εr of bulk soil mainly depends on water content. In many cases, the application of TDR requires a specific calibration of the relationship θ(εr) to get quantitatively accurate estimates of soil water content. In fact, the relationship θ(εr) is influenced by various soil properties, such as clay content, organic matter content, bulk density, and aggregation. Numerous studies have shown that pyroclastic soils often exhibit a peculiar dielectric behavior. In Campania (Southern Italy) wide mountainous areas are covered by layered pyroclastic deposits of ashes (loamy sands) and pumices (sandy gravels), often involved in the triggering of landslides induced by rainwater infiltration. Reliable field measurements of water content of such soils are therefore important for the assessment of landslide risk. Hence, in this paper, the θ(εr) relationship has been experimentally determined on samples of typical pyroclastic soil of Campania, collected around Sarno, reconstituted with different porosities. The aim of the study is to identify specific calibration relationships for such soils based not only on empirical approaches. In this respect, a three-phase dielectric mixing model with a variable exponent is introduced, and the variable value of the exponent is related to the different dielectric properties of bond and free water within the soil pores.
机译:时域反射法(TDR)是间接确定土壤体积水含量(θ)的最广泛使用的技术之一。 TDR测量相对介电常数(εr),在土壤等三相系统中,它取决于水,空气和固体基质的介电常数。由于水的介电常数远大于其他两个,介电常数εr主要取决于水含量。在许多情况下,TDR的应用要求对关系θ(εr)进行特定的校准,以定量准确地估算土壤含水量。实际上,关系θ(εr)受各种土壤特性的影响,例如粘土含量,有机质含量,堆积密度和聚集度。大量研究表明,火山碎屑土通常表现出特殊的介电行为。在坎帕尼亚(意大利南部),广阔的山区覆盖着灰烬(壤土)和浮石(沙砾)的层状火山碎屑沉积物,通常与雨水渗透引起的滑坡触发有关。因此,对此类土壤中的水分进行可靠的现场测量对于评估滑坡风险非常重要。因此,在本文中,已通过实验确定了坎帕尼亚典型火山碎屑土壤样品上的θ(εr)关系,该样品在萨尔诺附近收集,并用不同的孔隙度重建。该研究的目的是不仅基于经验方法来确定此类土壤的特定校准关系。在这方面,引入了具有可变指数的三相电介质混合模型,该指数的可变值与土壤孔隙中键和自由水的不同介电特性有关。

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