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Sap flux density measurements based on the heat field deformation method

机译:基于热场变形法的树液通量密度测量

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摘要

Accurate measurements of whole tree water use are needed in many scientific disciplines such as hydrology, ecophysiology, ecology, forestry, agronomy and climatology. Several techniques based on heat dissipation have been developed for this purpose. One of the latest developed techniques is the heat field deformation (HFD) method, which relies on continuous heating and the combination of a symmetrical and an asymmetrical temperature measurement. However, thus far the development of this method has not been fully described in the scientific literature. An understanding of its underlying principles is nevertheless essential to fully exploit the potential of this method as well as to better understand the results. This paper therefore structures the existing, but dispersed, data on the HFD method and explains its evolution from an initial ratio of temperature differences proportional to vapor pressure deficit to a fully operational and practically applicable sap flux density measurement system. It stresses the importance of HFD as a method that is capable of measuring low, high and reverse flows without necessitating zero flow conditions and on several sapwood depths to establish a radial profile. The combination of these features has not been included yet in other heat-based sap flow measurement systems, making the HFD method unique of its kind.
机译:在许多科学领域,例如水文学,生态生理学,生态学,林业,农学和气候学,都需要准确测量整个树木的用水量。为此已经开发了几种基于散热的技术。最新开发的技术之一是热场变形(HFD)方法,该方法依赖于连续加热以及对称和不对称温度测量的组合。但是,迄今为止,该方法的发展尚未在科学文献中得到充分描述。然而,充分了解这种方法的潜力以及更好地理解其结果,了解其基本原理至关重要。因此,本文构建了有关HFD方法的现有但分散的数据,并解释了其从与蒸汽压差成比例的温度差的初始比率到完全可操作且实用的树液通量密度测量系统的演变。它强调了HFD作为一种能够测量低,高和反向流量而无需零流量条件和在多个边材深度上建立径向轮廓的方法的重要性。这些功能的组合尚未包含在其他基于热的树液流量测量系统中,这使得HFD方法具有同类产品中的独特性。

著录项

  • 来源
    《Trees》 |2012年第5期|1439-1448|共10页
  • 作者单位

    Institute of Forest Ecology Mendel University of Agriculture and Forestry Zemedelska 3 61300 Brno Czech Republic;

    Laboratory of Plant Ecology Faculty of Bioscience Engineering Ghent University Coupure links 653 9000 Ghent Belgium;

    Laboratory of Plant Ecology Faculty of Bioscience Engineering Ghent University Coupure links 653 9000 Ghent Belgium;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Flow direction; Radial profile; Sensor; Thermal gradient; Tree water use;

    机译:流动方向;径向轮廓;传感器;温度梯度;树木用水;

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