首页> 外文会议>Asian Conference on Unsaturated Soils; 20070421-23; Nanjing(CN) >OBSERVATIONS OF ROOT ARCHITECTURE AND THEIR IMPLICATIONS FOR MODELLING WATER MOVEMENTS IN PARTIALLY SATURATED SOILS
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OBSERVATIONS OF ROOT ARCHITECTURE AND THEIR IMPLICATIONS FOR MODELLING WATER MOVEMENTS IN PARTIALLY SATURATED SOILS

机译:根结构的观察及其对部分饱和土壤中水运动建模的启示

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Vegetation is responsible for imposing relatively severe suctions on the foundation soils beneath lightly loaded structures. If the role of trees, shrubs and even grasses in causing movements in expansive clay foundation soils is to be predicted and understood, their influence must be accurately included in foundation soil moisture models. Surprisingly, little is known about the spatial extent of root masses, and consequently, their effect on foundation behaviour. This paper presents a series of observations of root architecture. The observations are drawn from a variety of sources within the literature and the authors' collective experience.From these observations, a set of guiding principles are established. The most fundamental of these, are that the roots of trees and shrubs are not limited to particular distances or depths, but rather, they will extend as far as they need to, or as far as they can, depending upon the type and species. Subject to their physical limitations, roots will extend as far as they must in order to ensure survival and/or proliferation. If water is readily available, or ifroot extension is prevented, the extent of root masses may be relatively small. If water is scarce and conditions allow, roots will extend to many meters in depth, and tens of metres laterally,provided they can penetrate the soil/rock profile and have access to oxygen. Hence, tree root architecture should be modelled according to the hydro-geological constraints of the soil profile being studied.
机译:植被负责在轻载结构下的基础土壤上施加相对较大的吸力。如果要预测和理解树木,灌木甚至草类在膨胀粘土基础土壤中引起运动的作用,则必须将其影响准确地包含在基础土壤水分模型中。令人惊讶的是,人们对根团的空间范围以及其对基础行为的影响知之甚少。本文提出了对根架构的一系列观察。这些观察结果来自文献中的各种来源以及作者的集体经验,并根据这些观察结果建立了一套指导原则。其中最基本的是,树木和灌木的根并不限于特定的距离或深度,而是取决于类型和种类,它们会根据需要延伸到尽可能远的距离。受其身体限制,根系将延伸到必须的程度,以确保生存和/或繁殖。如果容易获得水,或者如果阻止了根的扩展,则根的质量范围可能会相对较小。如果水稀少且条件允许,只要能穿透土壤/岩石剖面并能接触到氧气,根的深度将延伸至数米深,横向延伸数十米。因此,应根据所研究土壤剖面的水文地质约束条件对树根结构进行建模。

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