首页> 外文期刊>Agricultural and Forest Meteorology >Diurnal and seasonal transitions of water and ice content in apple stems: Field tracking the radial location of the freezing- and thawing-fronts using a noninvasive smart sensor
【24h】

Diurnal and seasonal transitions of water and ice content in apple stems: Field tracking the radial location of the freezing- and thawing-fronts using a noninvasive smart sensor

机译:苹果茎中的水和冰含量的昼夜和季节过渡:使用非冒险智能传感器跟踪冻结和解冻前部的径向位置

获取原文
获取原文并翻译 | 示例
           

摘要

Documentation in the field of the longitudinal progression of freezing in woody stems during winter has recently become feasible due to development of advanced instrumentation. Similar techniques to detect the radial progression of freezing fronts in the stem have remained challenging and, so far, unresolved. Here we address this problem with a smart sensor, based on an inner fringing dielectric technique, but combined with a new analytical model of radial freezing-thawing-fronts. These fronts, occurring in night and daytime of winter, respectively, are considered as vectors, both moving radially from the outside of the stem inward. We present laboratory calibration data and a field experiment in a 14-year old apple orchard to demonstrate the novel capability of this noninvasive sensor for in situ determination of ice content. We track the diurnal and seasonal variation of ice content, identify the radial location of the freezing/thawing-front, link this to anatomical features of the stem, and characterize hysteresis in freezing and subsequent thawing. We document homeostasis of total tissue water content during winter which allowed quantification of ice and liquid water content over both diurnal and seasonal cycles. Moreover, the progressive, day-to-day, decrease in liquid water during cold acclimation in autumn and increase during de-acclimation in spring are shown, along with the associated transpirational fluxes. These data contribute to fundamental knowledge of the water relations of trees, demonstrate a practical technique to monitor multiple trees in the field, and thus provide insight into the ecophysiological processes involved as trees overwinter.
机译:由于先进仪器的发展,冬季冬季冻结冻结纵向进展的文献最近变得可行。类似的技术来检测茎中冷冻前沿的径向进展仍然挑战,到目前为止,尚未解决。在这里,我们通过基于内部传感介电技术来解决一个智能传感器的这个问题,但结合了径向冻结 - 辐射前部的新分析模型。这些前端分别在冬季和白天发生的前沿被认为是矢量,两者都从阀杆向内径向移动。我们在14岁的苹果园提供了实验室校准数据和田间实验,以展示这种非侵入性传感器的新功能,以便原位测定冰含量。我们跟踪冰含量的昼夜季节性变化,识别冷冻/解冻前面的径向位置,将其连接到茎的解剖学特征,并在冻结和随后的解冻中表征滞后。我们在冬季介绍总组织含水量的稳态,允许在昼夜和季节性循环中定量冰和液体含水量。此外,示出了秋季冷适应期间的进步,日常,液体水中的液体水,以及在弹簧中的去适应期间增加的液体水中的液体水。这些数据有助于树木水合关系的基础知识,证明了一种实用的技术来监测该领域的多棵树,从而深入了解作为树木溢冬的生态学过程。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号