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首页> 外文期刊>Trees. Structure and Function >Thermal properties of sapwood of fruit trees as affected by anatomy and water potential: errors in sap flux density measurements based on heat pulse methods
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Thermal properties of sapwood of fruit trees as affected by anatomy and water potential: errors in sap flux density measurements based on heat pulse methods

机译:受解剖和水势影响的果树边材的热特性:基于热脉冲法的树汁通量密度测量中的误差

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Key message The accuracy of heat pulse methods is compromised both by changes in sapwood water content and by the methodology applied to determine its thermal properties.Sapwood thermal properties and water content (F (w)) natural variations affect the accuracy of heat pulse sap flow methods, as they are typically set as constants or calculated during zero flow conditions. In a first experiment, a characterisation of both thermal properties and some of their determining anatomical and functional factors was conducted on several fruit tree species assessing the reliability of different methodologies. Besides that, a second experiment was carried out to evaluate the errors of heat pulse methods arising from ignoring F (w) variations. To do so, desorption curves were constructed, allowing the substitution of F (w) changes with those of water potential (I). Results of the first experiment showed considerable differences between species in both the thermal, anatomical and functional properties of sapwood. Apart from that, discrepancies between the methods applied to determine thermal properties were also found and their implications for some heat pulse methods are discussed. The analysis conducted for the second experiment indicated that large errors in sap flux density (J) determinations might occur when daily and seasonal variations of I (and hence of F (w)) are disregarded. The extent of these errors was influenced by the species and heat pulse technique. Thus, the heat ratio and T (max) were, respectively, the least and most vulnerable methods to errors in J determinations associated with changes in F (w)
机译:重要信息边材含水率的变化以及确定其热特性的方法都会影响热脉冲法的准确性边材的热特性和含水量(F(w))自然变化会影响热脉冲汁液流动的准确性方法,因为它们通常设置为常数或在零流量条件下计算。在第一个实验中,对几种果树进行了热特性及其一些确定的解剖和功能因素的表征,以评估不同方法的可靠性。除此之外,还进行了第二项实验,以评估由于忽略F(w)变化而引起的热脉冲方法的误差。为此,构建了解吸曲线,可以用水势(I)替换F(w)变化。第一个实验的结果表明,边材的热学,解剖学和功能特性在物种之间存在相当大的差异。除此之外,还发现了用于确定热性质的方法之间的差异,并讨论了它们对某些热脉冲方法的影响。对第二个实验进行的分析表明,当忽略I(以及F(w))的每日和季节性变化时,汁液通量密度(J)的测定可能会出现较大误差。这些错误的程度受种类和热脉冲技术的影响。因此,热量比和T(max)分别是最容易和最容易受到与F(w)变化相关的J确定错误影响的方法。

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