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A Theoretical Study of the In Vivo Mechanical Properties of Angiosperm Roots: Constitutive Theories and Methods of Parameter Estimation

机译:被子植物根的体内力学特性的理论研究:本构理论和参数估计方法

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摘要

To investigate the constitutive relation of a plant tissue regarded as a deformable continuum, stress and strain must be determined experimentally for the same configurations. Such experiments are hindered by the inherent theoretical complexity of continuum mechanics, and by the technical difficulties of effecting external stress loads or body forces on the tissue without invasion, especially on a small scale. An understanding of appropriate mechanical problems and their solutions can help the experimentalist overcome these difficulties to a certain extent. Based on recent work on fiber-reinforced material, we formulate a constitutive theory for the root of different angiosperm species and suggest a set of loading conditions to determine the parameter values in a specific tissue sample. The loading conditions are formulated with a view toward experimental realization in vivo or with minimal invasion. For each loading condition, we formulate the corresponding mechanical problem and show how to obtain the values of the elastic parameters from known solutions. This framework can be used to analyze the interplay between mechanical and metabolic behavior in plants and to study the elastodynamics of plant tissues.
机译:为了研究被视为可变形连续体的植物组织的本构关系,必须通过实验确定相同构型的应力和应变。这样的实验受到连续力学固有的理论复杂性的阻碍,并且受到在组织上施加外部应力载荷或体力而又没有侵入的技术困难的阻碍,特别是在小规模的情况下。对适当的机械问题及其解决方案的理解可以帮助实验人员在一定程度上克服这些困难。基于纤维增强材料的最新研究,我们为不同被子植物的根部制定了本构理论,并提出了一组载荷条件,以确定特定组织样品中的参数值。配制负载条件是为了实现体内实验或最小程度的入侵。对于每种载荷条件,我们制定相应的机械问题,并说明如何从已知解决方案中获得弹性参数的值。该框架可用于分析植物的机械行为与代谢行为之间的相互作用,并研究植物组织的弹性动力学。

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