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首页> 外文期刊>Acta Geotechnica: An International journal for Geoengineering >Field monitoring of suction in the vicinity of an urban tree: exploring termite infestation and the shading effects of tree canopy
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Field monitoring of suction in the vicinity of an urban tree: exploring termite infestation and the shading effects of tree canopy

机译:城市树附近吸入的现场监测:探索白蚁侵扰和树冠的遮蔽效果

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摘要

The objective of this short communication is to explore spatial distribution of soil suction in the vicinity of an urban tree considering effects of termite infestation and also radiant energy interception by canopy. A site in an urban landscape containing a mix of species cover (grass cover in the vicinity of trees) was selected for monitoring. A field monitoring program was designed to monitor soil (soil suction, moisture), vegetation parameters (tree height, grass leaf area), and meteorological parameters during drying/wetting cycles. As expected, before termite infestation, suction magnitude and rate of change were highest near the tree stem and at shallower depths, reflecting the dominance of transpiration over evaporation. However, after termite infestation, soil suction diminished significantly near the tree stem and increased farther from the tree stem, a phenomenon accompanied by loss of canopy area, as captured by a color analysis technique (i.e., an image processing method). These findings reflected a reduction in stomatal conductance, itself an indicator of transpiration loss through the stomata-likely because reduced canopy shading effects caused increased evaporation. Soil suction at deeper depths seemed not to be significantly affected, generally due to canopy and termite infestation. In summary, the study sheds new light on issues of tree maintenance by showing how termite infestation can significantly affect the performance of green infrastructure.
机译:这种短暂的沟通的目的是探讨在考虑白蚁侵扰的城市树附近的土壤吸力的空间分布,以及通过树冠的辐射能量拦截。选择含有物种覆盖混合物的城市景观的网站(树木附近的草盖)进行监测。旨在监测干燥/润湿循环期间的土壤(土壤吸力,水分),植被参数(树高,草叶面积)和气象参数。正如预期的那样,在白蚁侵染之前,在树干附近和较浅的深度附近的吸入幅度和变化率最高,反映了蒸腾蒸腾的优势。然而,在白蚁侵蚀后,土壤抽吸在树木杆附近显着减少,并且从树干的较远升高,通过颜色分析技术(即图像处理方法)捕获的冠状面积损失的现象。这些发现反映了气孔导度的降低,本身通过气孔的蒸腾损失指标 - 可能导致蒸发增加增加。在更深的深度下的土壤吸力似乎没有受到显着影响,通常是由于冠层和白蚁侵扰。总之,该研究通过展示无菌侵扰如何显着影响绿色基础设施的性能,阐述了树木维护问题的新光。

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