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Effects of ring-porous and diffuse-porous stem wood anatomy on the hydraulic parameters used in a water flow and storage model

机译:环孔和扩散孔茎木解剖结构对水流和存储模型中水力参数的影响

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摘要

Calibration of a recently developed water flow and storage model based on experimental data for a young diffuse-porous beech tree (Fagus sylvatica L.) and a young ring-porous oak tree (Quercus robur L.) revealed that differences in stem wood anatomy between species strongly affect the calibrated values of the hydraulic model parameters. The hydraulic capacitance (C) of the stem storage tissue was higher in oak than in beech (939.8 versus 212.3 mg MPa?1). Model simulation of the elastic modulus (ε) revealed that this difference was linked to the higher elasticity of the stem storage tissue of oak compared with beech. Furthermore, the hydraulic resistance (Rx) of beech was about twice that of oak (0.1829 versus 0.1072 MPa s mg?1). To determine the physiological meaning of the Rx parameter identified by model calibration, we analyzed the stem wood anatomy of the beech and oak trees. Calculation of stem specific hydraulic conductivity (ks) of beech and oak with the Hagen-Poiseuille equation confirmed the differences in Rx predicted by the model. The contributions of different vessel diameter classes to the total hydraulic conductivity of the xylem were calculated. As expected, the few big vessels contributed much more to total conductivity than the many small vessels. Compared with beech, the larger vessels of oak resulted in a higher ks (10.66 versus 4.90 kg m?1 s?1 MPa?1). The calculated ratio of ks of oak to beech was 2, confirming the Rx ratio obtained by model calibration. Thus, validation of the Rx parameter of the model led to identification of its physiological meaning.
机译:根据实验数据对最近开发的水流量和存储模型进行校准,该实验数据来自年轻的散孔山毛榉树(Fagus sylvatica L.)和年轻的环状多孔橡树(Quercus robur L.),发现之间的茎木解剖结构差异种类严重影响水力模型参数的校准值。橡木中茎部贮藏组织的水力电容(C)高于山毛榉(939.8对212.3 mg MPa ?1 )。弹性模量(ε)的模型仿真表明,与山毛榉相比,这种差异与橡木的茎部存储组织的较高弹性有关。此外,山毛榉的水力阻力(R x )约为橡木的两倍(0.1829对0.1072 MPa s mg ?1 )。为了确定模型校准确定的R x 参数的生理意义,我们分析了山毛榉和橡树的茎木解剖结构。用Hagen-Poiseuille方程计算山毛榉和橡树的茎比水导率(k s )证实了模型预测的R x 的差异。计算了不同容器直径类别对木质部总水力传导率的贡献。正如预期的那样,少数几个大容器对总电导率的贡献要比许多小的容器大得多。与山毛榉相比,较大的橡木容器产生更高的k s (10.66比4.90 kg m ?1 s ?1 MPa ?1 )。橡木与山毛榉的k s 的计算比率为2,确认了通过模型校准获得的R x 比率。因此,验证模型的R x 参数可以识别其生理意义。

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  • 来源
    《Tree Physiology》 |2007年第1期|43-52|共10页
  • 作者单位

    Faculty of Bioscience Engineering Department of Applied Ecology and Environmental Biology Laboratory of Plant Ecology Ghent University Coupure links 653 B-9000 Ghent Belgium;

    Corresponding author kathy.steppe{at}UGent.be;

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