首页> 外文期刊>Geoderma: An International Journal of Soil Science >A novel approach to estimate soil penetrometer resistance from water content, bulk density, and shear wave velocity: A laboratory study on a loamy sand soil
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A novel approach to estimate soil penetrometer resistance from water content, bulk density, and shear wave velocity: A laboratory study on a loamy sand soil

机译:一种新的估计水含量,堆积密度和剪力波速度土壤渗滤液抗性的新方法:壤土土壤的实验室研究

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摘要

Continuous estimates of penetrometer resistance (Q) would be useful in root elongation and in soil management studies. However, penetrometers produce estimates of penetration resistance at discrete time points. In this paper, a method with the potential to provide continuous estimates of penetrometer resistance is developed. We use measurements of soil water content, shear wave velocity (V-s) determined from piezo electric devices, and bulk density (rho(b)) determined with the heat pulse (HP) method, to estimate penetrometer resistance. Soil samples of a loamy sand were packed into cylinders with axial pressures of 50, 100, and 200 kPa, and allowed to equilibrate at matric potentials of - 2, - 6, -10, - 30, -100, - 300, and - 500 kPa. Thermal conductivity (lambda), V-s and Q were measured after equilibration. A lambda-based approach was applied to estimate rho(b), and small strain shear modulus (G) was calculated from rho(b) and V-s. Our results confirmed a linear relationship between Q and G (where G = V-s(2)rho(b)), which provides a basis to estimate penetrometer data in the field using buried sensors and a physically based model.
机译:连续估计渗透性计阻力(Q)可用于根伸长和土壤管理研究。然而,穿透镜在离散时间点处产生穿透性阻力的估计。在本文中,开发了一种具有提供连续估计的渗透性计电阻的方法。我们使用测量土壤含水量,从压电装置确定的剪切波速度(V-S),并用热脉冲(HP)方法测定的堆积密度(rho(b))来估计渗透性计电阻。将壤土的土壤样品填充到圆柱体中,轴向压力为50,100和200kPa,并在2,6,0-10,30,-100,-300的Matric电位下平衡 - 500 KPA。在平衡后测量导热系数(Lambda),V-S和Q.施用基于λ的方法来估计rhO(b),并且通过rho(b)和V-s计算小的应变剪切模量(g)。我们的结果证实了Q和G之间的线性关系(其中G = V-S(2)RHO(B)),它为使用掩埋的传感器和物理基于模型提供了估计场中的PEVETTOM数据的基础。

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