首页> 外文期刊>IEEE Transactions on Geoscience and Remote Sensing. >Diurnal and spatial variation of xylem dielectric constant in Norway Spruce (Picea abies [L.] Karst.) as related to microclimate, xylem sap flow, and xylem chemistry
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Diurnal and spatial variation of xylem dielectric constant in Norway Spruce (Picea abies [L.] Karst.) as related to microclimate, xylem sap flow, and xylem chemistry

机译:挪威云杉(Picea abies [L.] Karst。)木质部介电常数的昼夜和空间变化与小气候,木质部树液流动和木质部化学的关系

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Spatial and temporal variations in vegetation dielectric properties strongly influence the microwave backscatter characteristics of forested landscapes. This paper examines the relationship between xylem tissue dielectric constant, xylem sap flux density, and xylem sap chemical composition as measured in the stems of two Norway Spruce (Picea abies [L.] Karst.) trees in the Fichtelgebirge region of Northern Bavaria, Germany. Dielectric constant and xylem sap flux were monitored continuously from June through October 1995, at several heights along the tree trunks. At the end of the measurement series, each tree was harvested, and its xylem sap extracted and analyzed to determine the concentrations of amino acids and cations. Results show that the sap flux density was correlated with vapor pressure deficit (VPD) at all heights in the stem. In contrast, the xylem tissue dielectric constant is influenced by VPD but can exhibit a significant temporal lag relative to changes in VPD. This lag varies with position along the tree trunk. The temporal variability of the dielectric constant is compared with both trees at several positions along the tree trunks. Results of xylem sap chemical analysis are presented. We show that spatial and temporal variability in the xylem tissue dielectric constant is influenced not only by water content, but by variations in xylem sap chemistry as well. This has important implications for microwave remote sensing of forested landscapes, as useful information may be acquired regarding stand physiology and water relations and where variations in dielectric properties within individual trees and across geographic areas can be significant error sources for forest inventory mapping.
机译:植被介电特性的时空变化强烈影响森林景观的微波反向散射特性。本文研究了德国北部巴伐利亚州Fichtelgebirge地区两棵挪威云杉(Picea abies [L.] Karst。)的茎中测得的木质部组织介电常数,木质部汁液通量密度和木质部汁液化学成分之间的关​​系。 。从1995年6月至10月,在树干的几个高度连续监测介电常数和木质部树液的通量。在测量系列结束时,收获每棵树,提取并分析其木质部树液以确定氨基酸和阳离子的浓度。结果表明,在茎的所有高度,汁液通量密度与蒸气压亏缺(VPD)相关。相反,木质部组织介电常数受VPD影响,但相对于VPD的变化可能表现出明显的时间滞后。该滞后随沿树干的位置而变化。将介电常数的时间变化与沿树干的几个位置处的两棵树进行比较。介绍了木质部汁液化学分析的结果。我们表明,木质部组织介电常数的空间和时间变化不仅受水分含量的影响,而且受木质部树液化学变化的影响。这对于森林景观的微波遥感具有重要意义,因为可以获得有关林分生理和水关系的有用信息,并且在单个树木内以及整个地理区域内介电特性的变化可能是造成森林清单制图的重要误差源。

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