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首页> 外文期刊>Ecological engineering: The Journal of Ecotechnology >Methods to measure the mechanical behaviour of tree roots: A review
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Methods to measure the mechanical behaviour of tree roots: A review

机译:测量树根机械行为的方法:综述

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摘要

The presence of forests on hillslopes significantly reduces the slopes susceptibility to rainfall triggered shallow landslides. This is due largely to the reinforcement of the hillslope soil by tree roots which increase the shear strength of the soil, and in some instances, anchor the soil mantle to the underlying bedrock by deeply penetrating roots. Quantifying the reinforcing effects of tree roots within soils and the evaluation of hillslope stability using geomechanical and numerical models relies on a realistic representation of the characteristics of tree roots distribution within the hillslope and the mechanical strength of those roots. The variety of experimental methods that have been developed since the 1960s and are used to generate these root strength and rooted-soil shear-strength data are reviewed. The majority of these studies have focused on determining the tensile strength of individual roots by loading the root in a pulling device until it breaks and/or determining the shear-strength of rooted soil in comparison to non-rooted soil in a Coulomb-type shear-box test. These studies have also generally either examined mature root systems in the field or relatively young plants grown in special containers specifically designed for tensile tests or laboratory shear-box tests. A particular difficulty that most studies have encountered is fixing or securing the ends of roots in the attachment device of the testing apparatus (so called root-pullers or tensile testing machines) as the various styles of clamping employed can easily damage the root which reduces the measured strength or otherwise results in an unrealistic test result. Laboratory shear-box tests encounter a similar difficulty in that the roots are not generally fixed or constrained at the base of the shear-box; field shear-box tests tend to avoid this problem as the roots are present in their natural anchoring characteristics in the soil and rock substrate. A result universally reported in rooted soil shear-box test studies is that the peak shear-strength of rooted soil significantly exceeds the peak shear-strength of that soil in a non-rooted condition and that the rooted-soil peak strength is typically recorded at a shear-displacement distance several times that of the non-rooted soil. This result fundamentally explains the reduced susceptibility of forested hillslopes to shallow landslides. A variety of solutions developed to deal with the difficulties that root and rooted-soil tests present are outlined. A set of suggested protocols for conducting root tensile tests and field pullout tests are also presented. It is intended that the adoption of these protocols will enable more effective and direct comparisons of test results and more confident interpretation with respect to the similarities and differences between test results generated from different species and field sites.
机译:Hillslopes上的森林的存在显着降低了降雨的斜坡敏感性触发浅层滑坡。这主要是由于树根加强了山坡土壤,这增加了土壤的剪切强度,在某些情况下,通过深入渗透根来将土壤壁龛锚定到底层基岩上。量化土壤中的树根的增强效果以及利用地质力学和数值模型评价山坡稳定性依赖于山坡内树根分布特性的现实表现及那些根系的机械强度。综述了自20世纪60年代以来发展的各种实验方法,并用于产生这些根强度和生根剪切强度数据。这些研究中的大多数都集中于通过在拉伸装置中加载根部来确定各个根茎的拉伸强度,直到它在库仑型剪切中的非生根土壤中脱落和/或确定生根土壤的剪切强度 - 盒测试。这些研究通常还在在专门为拉伸试验或实验室剪切盒测试专门设计的特殊容器中培养的现场或相对幼株的成熟根系。大多数研究遇到的特殊困难是固定或固定在测试装置的附接装置(如此称为根针或拉伸试验机器)中固定或固定根的端部,因为所用的各种夹具可以容易地损坏减少的根测量强度或以其他方式导致不切实际的测试结果。实验室剪切盒试验遇到类似的难度,因为根部不是在剪切盒的底部固定或限制;现场剪切盒测试倾向于避免这个问题,因为根部存在于土壤和岩石基材中的自然锚固特性中。生根剪切箱试验研究普遍报道的结果是根茎土壤的峰值剪切强度显着超过该土壤在非生根病症中的峰值剪切强度,并且通常记录生根土壤峰值强度剪切位移距离几倍的非生根土壤。这一结果从根本上解释了森林山坡对浅层滑坡的降低易感性。制定了各种解决方案,以应对所概述的根和土壤测试的困难。还提出了一种用于进行根拉伸试验和场拔出测试的一组建议的协议。旨在通过这些协议的采用将使测试结果和更自信地对来自不同物种和现场网站产生的测试结果之间的相似性和差异更有效和更自信的解释。

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