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首页> 外文期刊>Geoderma: An International Journal of Soil Science >Variation in penetrometer resistance with soil properties: the contribution of effective stress and implications for pedotransfer functions.
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Variation in penetrometer resistance with soil properties: the contribution of effective stress and implications for pedotransfer functions.

机译:渗透计阻力随土壤性质的变化:有效应力的贡献以及对传脚功能的影响。

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摘要

Soil mechanical resistance to penetration by roots can potentially contribute to the spatial and temporal variability in root and shoot growth. Functions that accurately relate penetrometer resistance to soil properties are important tools for assessing the contribution of soil mechanical resistance (SMR) when the temporal and spatial variability in SMR cannot be readily measured. Although effective stress can make a significant contribution to SMR, the role of texture and compaction on the contribution of effective stress to SMR has not been explored and functions that are currently used to describe the relation between SMR, water content/potential and other soil properties do not contain terms explicitly linked to effective stress. The objectives of this study were to assess functions that included terms that would be compatible with effective stress and to subsequently develop a pedotransfer function to quantify the dependence of SMR on soil properties. Soil resistance was measured on disturbed and undisturbed soils with a range of textures, organic carbon (OC) contents and bulk density after equilibrating the soils at different water potentials ( psi ). The SMR decreased with decreasing psi at the lowest psi in coarser-textured soils and the effects persisted into medium-textured soils at the higher level of compaction. These effects were attributed to a decrease in effective stress. The function found to be most successful in describing SMR in both disturbed and undisturbed soils was of the form: SMR=a*( psi b)-c* psi where a, b and c were functions of texture, OC content and bulk density. The dependence on soil properties was different in the disturbed and undisturbed soils. Sensitivity analyses indicated that the variation in the second term with soil properties was compatible with expectations regarding increasing discontinuity in water films or the development of microcracks with decreasing psi . The study suggested that pedotransfer functions for SMR should be adjusted to account for the possible reduction in SMR at low water contents or psi due to decreasing values of effective stress.
机译:土壤对根部渗透的机械抵抗力可能会导致根部和枝条生长的时空变异。当无法轻易测量SMR的时空变化时,将渗透仪的阻力与土壤特性精确相关的功能是评估土壤机械阻力(SMR)贡献的重要工具。尽管有效应力可以对SMR产生重大影响,但尚未探讨质地和压实对有效应力对SMR的贡献,并且目前用于描述SMR,水含量/势能与其他土壤性质之间关系的函数不包含与有效压力明显相关的术语。这项研究的目的是评估包括与有效应力兼容的术语的功能,并随后开发一种pedotransfer函数来量化SMR对土壤特性的依赖性。在不同水势(psi)下平衡土壤后,在具有一定质地,有机碳(OC)含量和堆积密度范围的受干扰和未受干扰的土壤上测量土壤阻力。在粗糙结构的土壤中,SMR在最低psi时随着psi的降低而降低,并且在较高的压实度下,这种影响持续存在于中等结构的土壤中。这些作用归因于有效压力的降低。发现在扰动和未扰动土壤中描述SMR的最成功函数为:SMR = a *(psi b)-c * psi,其中a,b和c是质地,OC含量和堆积密度的函数。在受干扰和未受干扰的土壤中,土壤对土壤性质的依赖性不同。敏感性分析表明,第二项随土壤性质的变化与有关水膜不连续性增加或psi降低产生微裂纹的预期相符。研究表明,应调整SMR的脚踏板传递函数,以解决由于水分含量降低或有效应力降低而导致在低水含量或psi下SMR降低的可能性。

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