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首页> 外文期刊>Journal of Hydrology >Tree sap flow and stand transpiration of two Acacia mangium plantations in Sabah, Borneo
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Tree sap flow and stand transpiration of two Acacia mangium plantations in Sabah, Borneo

机译:婆罗洲沙巴的两个相思树人工林的树液流动和林分蒸腾

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摘要

Water use of Acacia mangium trees grown in plantations was measured by a heat balance method in two stands that largely differed in tree density. Tree sap flow was closely coupled to climatic drivers and responded with minimal time delay. Using no time shift, sap flow rate could be tightly fitted to a simple equation that combined a parabolic response to radiation and an inverse linear response to air humidity. On the contrary, the analysis of canopy conductance showed no meaningful response to either individual or combined microclimatic variables. No indication of water deficit was observed, though the measurement period was during the dry period of the year. The measurements indicate a minimal diurnal use of water stored in plant tissues. The difference in tree water use from the two studied stands was effectively scaled by tree sapwood area. Canopy transpiration of the densest stand reached in average 3.9 mm d(-1) compared with 2.7 mm d(-1) for the stand representing the average conditions in the catchment, (C) 2000 Elsevier Science B.V. All rights reserved. [References: 40]
机译:通过热平衡法在两个树木密度差异很大的林分中测量了人工林中相思树的用水情况。树液流动与气候驱动因素密切相关,并且响应时间极短。不使用时间偏移,树液流速可以紧密地拟合为一个简单的方程式,该方程式将对辐射的抛物线响应与对空气湿度的反线性响应相结合。相反,对冠层电导率的分析表明,对单个或组合的微气候变量都没有有意义的响应。尽管测量期是在一年中的干燥期,但没有观察到缺水的迹象。测量结果表明植物组织中所储存的水的日使用量最少。这两个研究林分的树木水利用差异通过树木边材面积有效地定标。最茂密林分的冠层蒸腾量平均为3.9 mm d(-1),而代表流域平均条件的林分为2.7 mm d(-1),(C)2000 Elsevier Science B.V.保留所有权利。 [参考:40]

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