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首页> 外文期刊>Tree Physiology >Medium-term sap flux monitoring in a Scots pine stand: analysis of theoperability of the heat dissipation method for hydrological purposes
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Medium-term sap flux monitoring in a Scots pine stand: analysis of theoperability of the heat dissipation method for hydrological purposes

机译:苏格兰松林中的中期树汁通量监测:水文散热方法的可操作性分析

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The operability of Granier-type heat dissipation sap flow meters for the medium-term monitoring of Scots pine transpiration was tested. Three sensors that had been working for 3 years were duplicated by inserting new sensors in the same trees. The new sensors operated simultaneously with the old sensors for 18 months. Analysis of the temporal patterns of thermal dissipation of the sensors showed a slight, but significant decrease in all sensors, indicating the conservation of sapwood thermal properties. Although there was a high correlation between sap flux densities registered by the old and new sensors, significant differences in sap flux densities between the duplicated sensors were detected. Such differences could not be attributed to tissue injury around the sensors or to loss of sensitivity of the old sensors, because two of the old sensors registered higher flux rates than the new sensors. No instrumental error to explain the sap flux differences was found. Because the new sensors were installed at some angular distance from the old sap flow meters to avoid thermal interferences, it was inferred that the observed sap flux differences between duplicate sensors were the result of an azimuthal sap flow pattern.
机译:测试了Granier型散热树液流量计在苏格兰松树蒸腾中期监测中的可操作性。通过在同一棵树中插入新的传感器来复制三个已经使用了三年的传感器。新传感器与旧传感器同时运行18个月。对传感器的散热时间模式的分析显示,所有传感器均出现轻微但显着的下降,表明边材的热性能得以保持。尽管旧传感器和新传感器记录的树汁通量密度之间存在高度相关性,但检测到重复传感器之间的树汁通量密度存在显着差异。这种差异不能归因于传感器周围的组织损伤或旧传感器的灵敏度损失,因为两个旧传感器的通量率高于新传感器。找不到说明树液通量差异的仪器误差。由于新传感器的安装距离旧树液流量计有一定的角度,以避免热干扰,因此可以推断,观察到的重复传感器之间的树液通量差异是由于树液方位角呈流型引起的。

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