Experimental corrections of simplified methods for predicting water retention curves in clay-loamy soils from particle-size determination

Angelo Basile , Guido D'Urso
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引用次数: 60

Abstract

The Arya and Paris model for predicting soil water retention curves from particle-size distribution data is a commonly accepted method for rigid soils with medium grain size but limitations to its application for fine textured soils occur, due to the dominant role of internal structure in such soils. Moving from the consideration that simplified models for determining soil hydraulic characteristics may be usefully adopted to reduce laboratory investigation costs, in this study an attempt is made to extend the Arya-Paris formulation to clay-loamy soils by means of an experimental calibration function which takes into account the effective soil water retention behaviour. The methodology is based on an inversion procedure of the Arya-Paris model from observed values of water retention and potential during evaporation processes on undisturbed soil columns. It has been found that the resulting calibration function is typical for each soil and it substantially improves the prediction of the soil water retention curve from textural information.

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从粒度测定预测粘土壤土保水曲线的简化方法的实验修正
利用粒径分布数据预测土壤保水曲线的Arya和Paris模型是一种普遍接受的方法,适用于中等粒度的刚性土壤,但由于内部结构在细质土壤中起主导作用,其应用于细质土壤存在局限性。考虑到用于确定土壤水力特性的简化模型可以有效地降低实验室调查成本,在本研究中,通过考虑有效土壤保水行为的实验校准函数,尝试将Arya-Paris公式扩展到粘土质土壤。该方法基于Arya-Paris模型的反演程序,从未受干扰的土壤柱蒸发过程中观测到的保水和电位值。结果表明,所得到的标定函数对每一种土壤都是典型的,它大大提高了根据纹理信息对土壤保水曲线的预测。
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