中国东南沿海地区两种树种根的力学特性及根-土界面摩擦特性研究

Forests Pub Date : 2024-07-23 DOI:10.3390/f15081285
Yunzhao Lin, Wenbin Jian, Zuteng Zhu, Yilong Wu, Hao Wang, Xiufeng Fan
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引用次数: 0

摘要

树种根系的抗拉强度和根系与土壤界面的摩擦特性是了解根系加固土壤机理的重要指标。为了根据主要影响参数计算树根加固土壤的效果,本研究选取了中国东南沿海地区的典型树种,对其根系的拉伸力学性能进行了测试,并对根系与土壤界面和微观界面的摩擦特性进行了研究。结果表明,在直径 1-7 级中,Pinus massoniana 和 Cunninghamia lanceolata 的根抗拉强度与根直径呈幂函数负相关。然而,这两种树木的根抗拉强度与木质素含量呈正相关,但与纤维素和半纤维素含量呈负相关。根-土界面的剪切强度与垂直荷载的构成关系遵循莫尔-库仑准则。随着根直径的增大,根-土界面的内聚力和摩擦系数都逐渐增大,但增长率保持在 15%左右。在土壤含水量为 25% 至 45% 的范围内,两种树木根-土界面的内聚力值随着土壤含水量的增加呈线性下降。在微界面上,C. lanceolata 的根表面呈现凹槽和凸脊,沿根的轴向延伸,其高度差随根径的增大而增大。P. massoniana 根的粗糙表面由多边形网格组成,网格密度随着根直径的增大而增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study on the Mechanical Properties of Roots and Friction Characteristics of the Root–Soil Interface of Two Tree Species in the Coastal Region of Southeastern China
The tensile strength of roots and the friction characteristics of the root–soil interface of tree species are the indicators that play a crucial role in understanding the mechanism of soil reinforcement by roots. To calculate the effectiveness of the reinforcement of soil by tree roots based on essential influencing parameters, typical trees in the coastal region of southeastern China selected for this study were subjected to tests of the tensile mechanical properties of their roots, as well as studies on the friction characteristics of the root–soil interface and the microscopic interfaces. The results indicated that in the 1–7 diameter classes, the root tensile strength of both Pinus massoniana and Cunninghamia lanceolata was negatively correlated with the root diameter in accordance with the power function. The root tensile strength of these two trees, however, was positively correlated with the lignin content but negatively correlated with cellulose and hemicellulose contents. The shear strength at the root–soil interface and the vertical load exhibited a constitutive relationship, which followed the Mohr–Coulomb criterion. As the root diameter increased, both the cohesion and the friction coefficients at the root–soil interface gradually increased, but the growth rate stood at around 15%. The cohesion value of the root–soil interface of the two trees decreased linearly with the increase in soil moisture content within the range of 25 to 45%. At the microinterface, the root surface of C. lanceolata exhibited concave grooves and convex ridges that extended along the axial direction of roots, with their height differences increasing with the enlargement of the root diameter. The rough surface of P. massoniana roots had areas composed of polygonal meshes, with an increase observed in the mesh density with increasing root diameter.
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