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单棵树木中水流的动态模型:模型必须考虑水力结构的证据。

A dynamic model for water flow in a single tree: evidence that models must account for hydraulic architecture.

作者信息

Tyree M T

机构信息

Department of Botany, University of Vermont, Burlington, VT 05405, USA.

出版信息

Tree Physiol. 1988 Sep;4(3):195-217. doi: 10.1093/treephys/4.3.195.

Abstract

A model is presented for the dynamics of water flow in a single eastern white cedar tree (Thuja occidentalis L.). The model takes into account the spatial and temporal dependence of the evaporative flux from leaves in the crown. It also accounts for the quantitative hydraulic architecture of the tree, i.e., the model characterizes the tree as a branched catena of > 4000 stem segments in which account is taken of the segment length, diameter, hydraulic resistance, and the total area of leaves attached to the segment. Input values needed to run the model are measurements of evaporative flux, hydraulic conductance of stems versus stem diameter, and leaf and stem water storage capacitances. Output parameters are the spatial and temporal characterization of stem and leaf water potentials, stem and leaf water deficits, sap flow rate, and relative sap velocity. The input and output values of the branched catena model are compared and contrasted to that of an unbranched catena model. It is shown that the branched catena model fits independently measured field parameters better than an unbranched catena model. Close correspondence is found between model predictions and field measurements of shoot water potential, pressure gradients in stems, hysteresis in sap velocity between the lower and upper parts of the tree, and diurnal changes in stem and leaf water deficits. This model is discussed in terms of both the hydraulic architecture of trees and the potential application of the model to questions of tree morphology, ecology, physiology and evolution.

摘要

本文提出了一个关于东部白松(Thuja occidentalis L.)单株树木水流动力学的模型。该模型考虑了树冠中叶片蒸发通量的时空依赖性。它还考虑了树木的定量水力结构,即该模型将树木表征为一个由超过4000个茎段组成的分支链,其中考虑了茎段长度、直径、水力阻力以及附着在该茎段上的叶片总面积。运行该模型所需的输入值是蒸发通量、茎干水力传导率与茎干直径的关系以及叶和茎的储水能力的测量值。输出参数是茎和叶水势、茎和叶水分亏缺、液流速率以及相对液流速度的时空特征。将分支链模型的输入和输出值与非分支链模型进行了比较和对比。结果表明,分支链模型比非分支链模型能更好地拟合独立测量的田间参数。在嫩梢水势的模型预测与田间测量、茎干中的压力梯度、树木上下部分液流速度的滞后现象以及茎和叶水分亏缺的日变化之间发现了密切的对应关系。本文从树木的水力结构以及该模型在树木形态学、生态学、生理学和进化问题上的潜在应用两个方面对该模型进行了讨论。

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