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首页> 外文期刊>Geografiska Annaler, Series A. Physical Geography >Influence of climate and climate anomalies on Norway spruce tree-ring growth at different altitudes and on glacier responses: Examples from the Central Italian Alps
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Influence of climate and climate anomalies on Norway spruce tree-ring growth at different altitudes and on glacier responses: Examples from the Central Italian Alps

机译:气候和气候异常对挪威云杉树木在不同高度的生长以及冰川响应的影响:意大利中部阿尔卑斯山的例子

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摘要

Climate change and climate anomalies are inducing strong variations in the high-mountain environment, driving the responses of physical and biological systems differently. This paper assesses tree-ring growth responses to climate for two Norway spruce (Picea abies (L.) Karst.) sites at different altitudes from an Ortles-Cevedale Group (OCG; internal zones of the Central Italian Alps) valley site and reports some examples of climate impact on glacier dynamics in the OCG in recent decades. Growth-climate relationships between tree-ring chronologies and meteorological data were established by means of Pearson's correlation and response functions. In the high-altitude chronology we found a strong signal of July temperatures, whereas the low-altitude chronology also contained a signal of summer precipitation. Climate anomalies occurring in these months proved to influence tree growth at the two sites differently. In summer 2003 extreme climatic conditions established over Europe and the Alps, strongly affecting physical and biological systems. Spruce responses to the climate anomaly of 2003 were more evident with a one-year lag. The high-altitude site profited from the warmer growing season, whereas trees at the low-altitude site experienced water stress conditions and their growth was strongly inhibited also in the following year. Glacier mass loss in the OCG in 2003 was the highest since yearly measurement started. The examples reported confirm the strong and even divergent variations affecting the Alpine environment, induced by recent climate change.
机译:气候变化和气候异常正在高山环境中引起强烈变化,从而以不同方式推动了物理和生物系统的响应。本文评估了Ortles-Cevedale小组(OCG;意大利中部阿尔卑斯山内部区域)谷地两个海拔不同的挪威云杉(Picea abies(L.)Karst。)场地树木对气候的生长响应,并报告了一些近几十年来气候对OCG冰川动力学影响的实例。通过皮尔逊的相关和响应函数,建立了树轮年表与气象数据之间的生长气候关系。在高空年表中,我们发现强烈的七月温度信号,而低空年表中也包含夏季降水信号。事实证明,这几个月中发生的气候异常对这两个地点的树木生长有不同的影响。 2003年夏季,欧洲和阿尔卑斯山出现了极端的气候条件,严重影响了自然和生物系统。对2003年气候异常的云杉响应明显滞后了一年。高海拔地区从生长季节的获利中获利,而低海拔地区的树木则经历了水分胁迫,第二年的生长也受到强烈抑制。自从开始年度测量以来,OCG中的冰川质量损失是2003年以来最高的。报告的例子证实了由于最近的气候变化而影响高山环境的强烈甚至不同的变化。

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