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Sapflow+: a four-needle heat-pulse sap flow sensor enabling nonempirical sap flux density and water content measurements

机译:Sapflow +:四针热脉冲树液流量传感器,可进行非经验的树液通量密度和水含量测量

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摘要

To our knowledge, to date, no nonempirical method exists to measure reverse, low or high sap flux density. Moreover, existing sap flow methods require destructive wood core measurements to determine sapwood water content, necessary to convert heat velocity to sap flux density, not only damaging the tree, but also neglecting seasonal variability in sapwood water content. Here, we present a nonempirical heat-pulse-based method and coupled sensor which measure temperature changes around a linear heaterin both axial and tangential directions after application of a heat pulse. By fitting the correct heat conduction-convection equation to the measured temperature profiles, the heat velocity and water content of the sapwood can be determined. An identifiability analysis and validation tests on artificial and real stem segments of European beech (Fagus sylvatica L.) confirm the applicability of the method, leading to accurate determinations of heat velocity, water content and hence sap flux density. The proposed method enables sap flux density measurements to be made across the entire natural occurring sap flux density range of woody plants. Moreover, the water content during low flows can be determined accurately, enabling a correct conversion from heat velocity to sap flux density without destructive core measurements.
机译:据我们所知,迄今为止,还没有非经验方法可以测量反向,低或高的树汁通量密度。此外,现有的汁流方法需要破坏性的木芯测量来确定边材含水量,这是将热速度转换为树汁通量密度所必需的,不仅损害树木,而且还忽略了边材含水量的季节性变化。在这里,我们介绍了一种基于非经验性热脉冲的方法和耦合传感器,该方法可测量施加热脉冲后沿轴向和切线方向在线性加热器周围的温度变化。通过将正确的导热对流方程拟合到测得的温度曲线,可以确定边材的热速度和含水量。对欧洲山毛榉(Fagus sylvatica L.)的人工茎段和真实茎段进行的可识别性分析和验证测试证实了该方法的适用性,从而可以准确测定热速,水含量和汁液通量密度。所提出的方法使得能够在木本植物的整个自然发生的树液通量密度范围内进行树液通量密度测量。此外,可以精确确定低流量时的含水量,从而可以在不破坏岩心的情况下从热速度正确转换为树液通量密度。

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