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Changes in stem water content influence sap flux density measurements with thermal dissipation probes.

机译:茎干水含量的变化会影响通过热耗散探针进行的汁液通量密度测量。

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There is increasing evidence of diel variation in water content of stems of living trees as a result of changes in internal water reserves. The interplay between dynamic water storage and sap flow is of current interest, but the accuracy of measurement of both variables has come into question. Fluctuations in stem water content may induce inaccuracy in thermal-based measurements of sap flux density because wood thermal properties are dependent on water content. The most widely used thermal method for measuring sap flux density is the thermal dissipation probe (TDP) with continuous heating, which measures the influence of moving sap on the temperature difference between a heated needle and a reference needle vertically separated in the flow stream. The objective of our study was to investigate how diel fluctuations in water content could influence TDP measurements of sap flux density. We analysed the influence of water content on the zero-flow maximum temperature difference, dTm, which is used as the reference for calculating sap flux density, and present results of a dehydration experiment on cut branch segments of American sycamore (Platanus occidentalis L.). We demonstrate both theoretically and experimentally that dTm increases when stem water content declines. Because dTm is measured at night when water content is high, this phenomenon could result in underestimations of sap flux density during the day when water content is lower. We conclude that diel dynamics in water content should be considered when TDP is used to measure sap flow.
机译:越来越多的证据表明,由于内部储水量的变化,活树的茎中水分的diel变化。动态储水和汁液流量之间的相互作用目前是人们关注的问题,但是两个变量的测量精度都受到了质疑。茎中水分的波动可能会导致基于热的树液通量密度测量结果不准确,因为木材的热性质取决于水分。用于测量树液通量密度的最广泛使用的热方法是连续加热的热耗散探头(TDP),它测量树液移动对在流中垂直分离的加热针和参考针之间的温差的影响。我们研究的目的是研究含水量的diel波动如何影响树汁通量密度的TDP测量。我们分析了水分含量对零流量最大温差dT m 的影响,该值可作为计算树汁通量密度的参考,并给出了脱水试验的结果,该脱水过程对切分枝段美国梧桐(Platanus occidentalis L.)。我们在理论和实验上都证明,当茎干含水量下降时,dT m 会增加。因为dT m 是在水含量高的夜晚测量的,所以这种现象可能导致水含量低的白天的树液通量密度被低估。我们得出的结论是,当使用TDP来测量树液流量时,应考虑水的Diel动力学。

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