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首页> 外文期刊>Agricultural and Forest Meteorology >Xylem temperatures during winter in conifers at the alpine timberline.
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Xylem temperatures during winter in conifers at the alpine timberline.

机译:高山林线的针叶树冬季木质部温度。

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摘要

Trees at the alpine timberline are exposed to extreme temperatures during winter. These temperature conditions affect the hydraulic properties of the xylem because frozen sections block water flux and freeze-thaw events can induce embolism. Winter temperature regimes in the xylem of Picea abies and Pinus cembra growing at the Central Alps timberline, in Tyrol, Austria, were analysed. During mid-winter nights minimum xylem temperatures were down to -20.5 degrees C. In late winter, daytime xylem temperatures up to 22.8 K above air temperature and extreme diurnal temperature amplitudes of up to 30 K were observed. The number of freeze-thaw events was highest (115 events from September to May) in sun exposed parts at the top of the trees, and decreased towards the trunk base as well as from the trunks surface to its centre and from distal to proximal twig sections. Freezing and thawing rates were higher at the top of the tree (up to 5.4 and 7.0 K h-1) than at the trunk base (up to 4.4 and 4.5 K h-1). Our study demonstrates that sun exposed parts of timberline trees exhibit most extreme temperature minima and maxima, highest rates of temperature change, as well as the highest number of freeze-thaw events. These conditions are favourable to induce embolism. In contrast, the xylem of less exposed crown parts was found to be frozen and consequently separated from trunk water resources during prolonged periods. The observed complexity of temperature regimes may be relevant for tree life at high altitudes as temperature has been suggested to be a limiting factor at the timberline..
机译:冬季,高山林线的树木暴露于极端温度下。这些温度条件会影响木质部的水力特性,因为冻结的部分会阻塞水通量,而冻融事件会导致栓塞。分析了奥地利蒂罗尔州中部阿尔卑斯山林线生长的云杉和冷杉松木木质部的冬季温度状况。在冬季深夜,木质部的最低温度降至-20.5摄氏度。在冬季末期,白天木质部的温度比空气温度高22.8 K,并且观察到的极端昼夜温度幅值高达30K。在树顶的日光照射部分,冻融事件的数量最高(9月至5月为115次),向树干底部以及从树干表面到其中心以及从远端到近端树枝的数量都减少了。部分。树顶(高达5.4和7.0 K h-1)的冷冻和解冻速率高于树干基部(高达4.4和4.5 K h-1)的冷冻和解冻速率。我们的研究表明,林木的阳光照射部分表现出最大的极端温度最小值和最大值,最高的温度变化率以及最多的冻融事件。这些条件有利于诱发栓塞。相反,较少暴露的树冠部分的木质部被冻结,并因此在较长时期内与树干水资源分离。观察到的温度制度的复杂性可能与高海拔地区的树木生活有关,因为已经提出温度是林线的限制因素。

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