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首页> 外文期刊>Annals of Forest Science >Growth and fructification of a Norway spruce (Picea abies L. Karst) forest ecosystem under changed nutrient and water input
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Growth and fructification of a Norway spruce (Picea abies L. Karst) forest ecosystem under changed nutrient and water input

机译:养分和水分输入变化下的挪威云杉(Picea abies L. Karst)森林生态系统的生长和结实

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摘要

In the mountainous region of a low mountain range (Solling mountains) an ecosystem manipulation experiment with roof constructions underneath the canopy of a 60-year old Norway spruce stand is run since 1991. The responses to artificially prepared, "preindustrial" through fall and to extended summer droughts with intensive rewetting are investigated in two parallel roof experiments and evaluated against a roof control and an ambient control plot. After long terms of drought distinct reactions of the trees were visible in growth. The reactions of height-increment were more distinct than the effects on diameter-increment. Furthermore, the trees of the dominating social classes (Kraft I and II) reacted more on low water-supply than the dominated trees. So it is probable that a long lasting stress by drought effects changes the stand structure, too: the vertical structure of a stand would get more homogeneous and the diversity in the stand structure would decrease. Reduced input of sulphur and nitrogen did not show any distinct growth reactions within the 9-year observation period.
机译:自1991年以来,在低山区的山脉地区(索林山)进行了生态系统操纵实验,该实验在60年历史的挪威云杉林冠层的冠层下进行。在两个平行的屋顶实验中研究了长时间进行强湿润的夏季干旱,并根据屋顶控制和环境控制图进行了评估。长期干旱后,树木的明显反应在生长中可见。高度增加的反应比对直径增加的影响更明显。此外,主要社会阶层的树木(卡夫一世和二世)对低水供应的反应比对主要树种的反应更大。因此,干旱造成的长期持久压力很可能也会改变林分结构:林分的垂直结构会变得更加均匀,林分结构的多样性会降低。在9年的观察期内,减少的硫和氮输入量未显示任何明显的生长反应。

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