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首页> 外文期刊>Weather and Climate Extremes >Climate and atmospheric circulation related to frost-ring formation in Picea mariana trees from the Boreal Plains, interior North America
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Climate and atmospheric circulation related to frost-ring formation in Picea mariana trees from the Boreal Plains, interior North America

机译:与北方北美的北美北美的Picea Mariana树木中冻融环形成有关的气候和大气循环

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摘要

Earlier spring and earlier onset of growth, as a consequence of climate change, may expose trees and crops to increased risk of exposure to frost damage. In this study, we compare the frequency of frost rings in three regions [Porcupine Provincial Forest (PPF; north-latitude); Duck Mountain Provincial Forest (DMPF; mid-latitude) and Riding Mountain National Park (RMNP, south-latitude)] located in the Boreal Plains of interior North America. In each of PPF and DMPF, twenty upland black spruce [ Picea mariana (Mill.) BSP] trees were sampled using stem analysis and others were sampled at breast height or below. In RMNP, multiple coniferous tree species were sampled at breast height or below to allow comparison among species. Results from stem analysis indicated that frost rings were more frequent in DMPF than PPF (north of DMPF). Frost rings identified up to a height of 16?m and were formed predominantly in the early cambial age zone. As a general pattern, frost rings recorded in PPF occurred more abundantly in years with warm April temperatures and this association was less prevalent in DMPF. Frost rings were formed following extreme frost events in late May - early June and frost-ring years corresponded to years with cooler June temperatures. A significant positive association was found between frost-ring frequency and the El Ni?o Southern Oscillation. In the absence of an early spring, black spruce trees were less affected by frost damages. Stem analysis provided a better record of spring frosts than solely sampling at breast height or below. The multi-species approach used in RMNP revealed many years with synchronous frost rings among species. The development of a large network of frost-ring chronologies from tree species of various age classes and/or from stem analysis will help with assessing the impact of late spring frosts on forest dynamics and to document large-scale climate anomalies in areas with low climate data coverage and/or prior to instrumental records.
机译:由于气候变化,早期的春天和早期的增长发病可能会使树木和农作物揭露暴露于霜冻损伤的风险。在这项研究中,我们将霜环的频率与三个地区进行比较[豪猪省森林(PPF;北纬);鸭山省森林(DMPF;中纬)和骑马山国家公园(RMNP,南纬),位于北美的北方地区。在PPF和DMPF中的每一个,使用Stem分析采样二十万隆黑色云杉[Picea Mariana(Mill.)BSP]树木,并在乳房高度或下方进行采样。在RMNP中,在乳房高度或下方进行多种针叶树种类以允许物种的比较。茎分析结果表明,DMPF中的霜环比PPF更频繁(DMPF北部)。霜环鉴定为16?m的高度,主要在早期的山羊年龄区形成。作为一般图案,在PPF中记录的霜环多年来,温暖的4月温度温暖,这种关联在DMPF中普遍存在。在5月下旬 - 6月初和霜环末期与较冷的6月温度较低的弗罗斯圈年来形成霜环。在冰霜环频率和EL NI南部振荡之间发现了一个显着的阳性关联。在没有早期春天的情况下,黑云杉树木受到霜冻损伤的影响较小。 STEM分析提供了春霜的更好的记录,而不是在乳房高度或以下采样。 RMNP中使用的多种方法透露了多年的物种之间的同步霜环。从各个年龄阶级和/或茎分析的树种的大型霜环时间段的发展将有助于评估晚期霜冻对森林动力学的影响,并在气候低落的地区记录大规模的气候异常。数据覆盖范围和/或乐器记录。

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