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首页> 外文期刊>Trees. Structure and Function >Sap flow-based transpiration in Phyllostachys pubescens: applicability of the TDP methodology, age effect and rhizome role
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Sap flow-based transpiration in Phyllostachys pubescens: applicability of the TDP methodology, age effect and rhizome role

机译:SAP基于流动的流动蒸腾于Phyllostachys Pubescens:TDP方法的适用性,年龄效应和根茎作用

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To accurately quantify the water use of bamboo forest stands, the applicability of a modified TDP (10 mm long) for measuring the sap flow of bamboo culms was verified. We also investigated the effects of culm age and rhizomes on water use. To this end, we designed two experimental systems, an induced hydraulic pressure and sap flow changing device and a whole-culm pot weighing method to validate the sap flow equation in Phyllostachys pubescens. The results showed that the modified 10 mm long TDP was a valid means of measuring the sap flow of P. pubescens. The verified probes and the corrected Granier's empirical equation were applied to monitoring and calculating the sap flow density of P. pubescens. The results showed that stand transpiration changed significantly across the wet and dry seasons. Culm transpiration decreased with culm age whether in winter or in summer. Juvenile bamboo had the highest daily transpiration, and more than 20 % of compensative water was imported from other culms by rhizomes in summer. The water potential of the rhizome-cut culms was lower than that of normal culms. It is concluded that the rhizome system has a strong transfer function and that the water consumed by juvenile culms includes water self-absorbed directly from soil and water transferred from other culms via rhizomes.
机译:为了准确量化竹林的水分利用,验证了改良TDP(10 mm长)测量竹竿液流的适用性。我们还研究了秆龄和根茎对水分利用的影响。为此,我们设计了两个实验系统,一个诱导液压和液流变化装置和一个整秆盆栽称重法来验证毛竹液流方程。结果表明,改良的10mm长TDP是测定毛白杨树液流量的有效方法。利用经验证的探针和修正的Granier经验公式,对毛白杨树液流密度进行了监测和计算。结果表明,林分蒸腾作用在雨季和旱季有显著变化。无论是在冬季还是夏季,茎秆蒸腾量都随着茎秆年龄的增加而减少。幼龄竹的日蒸腾速率最高,夏季20%以上的补偿水分是通过根茎从其他竹竿中输入的。根茎切块茎秆的水势低于正常茎秆。结果表明,根茎系统具有很强的传递功能,幼嫩茎秆消耗的水分包括直接从土壤中吸收的水分和通过根茎从其他茎秆中转移的水分。

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