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首页> 外文期刊>Journal of Forest Research >Azimuthal variations of sap flux density within Japanese cypress xylem trunks and their effects on tree transpiration estimates
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Azimuthal variations of sap flux density within Japanese cypress xylem trunks and their effects on tree transpiration estimates

机译:日本柏树木质部树干汁液通量密度的方位变化及其对蒸腾作用的影响

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摘要

Sap flow techniques are practical tools for estimating tree transpiration. Though many previous studies using sap flow techniques did not consider azimuthal variations of sap flux density (F d) on xylem trunk to estimate tree transpiration, a few studies reported that ignoring the azimuthal variations in F d could cause large errors in tree transpiration estimates for some tree species. Therefore, examining azimuthal variations in F d for major plantation tree species is critical for estimating tree transpiration. Using the thermal dissipation method, we examined azimuthal variations in F d in six trees of Japanese cypress Chamaecyparis obtusa (Sieb. et Zucc.) Endl., which is one of the most common plantation tree species in Japan. We recorded considerable variations among F d at four different azimuthal directions. The F d value for one aspect was more than 100% larger than those for the other aspects. We calculated differences between tree transpiration estimates based on F d for one to three azimuthal directions and those based on F d for four aspects. The differences relative to tree transpiration estimates based on F d for four aspects were typically 30, 20, and 10% in accordance with the F d for one, two, and three measurement aspects, respectively. This finding indicates that ignoring azimuthal variations could cause large errors in tree transpiration estimates for Japanese cypress.
机译:液流技术是估算树木蒸腾作用的实用工具。尽管以前使用树液流动技术进行的许多研究都没有考虑木质部树干上树液通量密度(F d )的方位角变化来估计树木的蒸腾作用,但一些研究报告却认为忽略F d的方位角变化可以在某些树种的树木蒸腾量估计中造成很大的误差。因此,检查主要人工林树种的F d 方位角变化对于估算树木的蒸腾作用至关重要。使用散热方法,我们研究了日本柏树Chamaecyparis obtusa(Sieb。et Zucc。)Endl。的六棵树中F d的方位角变化,这是日本最常见的人工林树种之一。我们在四个不同的方位角方向上记录了F d 之间的显着变化。一个方面的F d 值比其他方面大100%以上。我们计算了基于F d 的一到三个方位方向上的树木蒸腾估算值与基于F d 的四个方面上的蒸腾估算值之间的差异。相对于基于四个方面的F d的树木蒸腾量估计值的差异通常分别对应于针对一个,两个和三个测量方面的F d的30%,20%和10%。这一发现表明,忽略方位角变化可能会导致日本柏树蒸腾量估计值出现较大误差。

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