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六盘山南坡不同密度华北落叶松人工林年内径向生长动态及其影响因素
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作者 王国蕊 徐丽宏 +5 位作者 于澎涛 王彦辉 张酉婷 胡振华 刘泽彬 李佳梅 《林业科学研究》 CSCD 北大核心 2024年第2期72-80,共9页
[目的]探究不同密度下华北落叶松人工林林分径向生长的季节变化特征及其对环境因子的响应,为准确评估和预测未来区域尺度上华北落叶松人工林树木径向生长和森林动态、实现可持续管理与多功能维持提供科学依据。[方法]在宁夏六盘山南部... [目的]探究不同密度下华北落叶松人工林林分径向生长的季节变化特征及其对环境因子的响应,为准确评估和预测未来区域尺度上华北落叶松人工林树木径向生长和森林动态、实现可持续管理与多功能维持提供科学依据。[方法]在宁夏六盘山南部香水河小流域,设置4种不同密度华北落叶松样地,使用树木生长尺对华北落叶松年内径向生长过程进行监测,并同步监测气象因子、土壤温度和湿度。[结果]表明:(1)在生长季时间尺度,华北落叶松径向变化呈“S”型,径向变化呈相对稳定、快速增大、涨缩波动3个阶段的时间格局,快速增大阶段主要发生在6月初—7月下旬,DOY152—210。(2)在544、742、999和1020株·hm^(-2)的密度下,生长季节内华北落叶松林平均累积径向生长量分别为1070±230μm、775±181μm、518±214μm和494±124μm;随林分密度的增加,华北落叶松年内累积径向生长量呈下降趋势,其快速增大阶段缩短;(3)混合效应模型分析结果表明,华北落叶松径向生长主要受土壤水分和平均气温控制,但林分密度和生长时期对年内径向生长也有显著影响;同时考虑林分密度、生长时期、树木大小以及气象因子等变量的模型可解释72.0%的方差,但排除林分密度和生长时期因素后,树木大小和气象因子共同仅能解释46.4%的方差。[结论]超过2/3的华北落叶松径向生长发生在快速生长期;华北落叶松平均累积径向生长量随密度增大而减小;林分密度、生长时期、树木大小和气象因子共同调控树木的年内径向生长。 展开更多
关键词 华北落叶松 年内生长 径向生长 林分密度 环境因子 生长尺
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Growth at the microscale:long term thinning effects on patterns and timing of intra-annual stem increment in radiata pine
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作者 David M.Drew Geoffrey M.Downes 《Forest Ecosystems》 SCIE CSCD 2018年第4期438-450,共13页
Background: Stem radial growth in forests is not uniform. Rather, it is characterized by periods of relatively fast or slow growth, or sometimes no growth at all. These fluctuations are generally a function of varying... Background: Stem radial growth in forests is not uniform. Rather, it is characterized by periods of relatively fast or slow growth, or sometimes no growth at all. These fluctuations are generally a function of varying environmental conditions(e.g. water availability) and, importantly, will also be associated with adjustments in proprties in the wood formed. Stand level conditions and forest management, particularly thinning and stand density will, thowever, also have a major influence on patterns of growth variation. We explore how different thinning histories and/or stand densities influence these dynamics of tree growth in the important commercial plantation species Pinus radiata D. Don.Methods: Daily stem size change was measured using electronic point dendrometers over two growing seasons on P. radiata trees at two sites, subjected to different thinning regimes. Timing, rates and periodicity of annual growth were calculated from these data.Results: Greater overall cross-sectional growth in thinned plots was driven mainly by two dynamics. First, the cessation of seasonal growth occurred at least 3 weeks later in the stands in which thinning had taken place. There was no difference between thinned/unthinned stands, however, in the timing of growth onset. Second, within the longer season, trees in thinned plots had more growth days(as much as 20% more) than unthinned plots. The rates of growth on days when growth occurred were not different, however. In this context, it is notable that in trees in the unthinned plots experiencing the most severe competition there were strong "pulses" of growth following drought-breaking rainfall events. Unthinned plots at high stand densities also maintained a smaller(but consistent) zone of dividing cells throughout the season than thinned plots.Conclusions: In Pinus radiata growing under conditions as in our study, conditions late in summer, particularly drought, have an important effect on the timing of cessation of growth. Early season temperature appears to have no effect i 展开更多
关键词 Monterey pine DENDROMETER intra-annual growth DROUGHT THINNING
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雪松年内径向生长节律研究 被引量:1
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作者 吕庚鑫 徐军亮 +4 位作者 何存存 皇开源 李艺杰 张玉茹 魏龙鑫 《西北林学院学报》 CSCD 北大核心 2021年第2期186-192,共7页
研究树木年内径向生长规律(intra-annual radial growth)可以为树木生长对气候变化响应研究提供高分辨率基础数据。以雪松为研究对象,采用微树芯技术通过室内制作石蜡切片的方法观察雪松形成层和木质部细胞在生长季期间的活动过程,运用G... 研究树木年内径向生长规律(intra-annual radial growth)可以为树木生长对气候变化响应研究提供高分辨率基础数据。以雪松为研究对象,采用微树芯技术通过室内制作石蜡切片的方法观察雪松形成层和木质部细胞在生长季期间的活动过程,运用Gompertz函数模拟雪松径向生长的过程,探讨分析洛阳地区针叶树雪松树木年内径向生长节律,并结合气象数据,分析温度、降水量与年内径向生长的关系。结果表明:1)在生长季期间,形成层和扩大加厚期细胞活动呈现双峰分布,木质部细胞积累过程呈现“S”型曲线。2)通过Gompertz函数模拟雪松生长过程,发现在第162天,径向生长细胞个数和长度均出现最大值,分别为1.15个/d、36.7μm/d。年内平均累计生长细胞个数达到178.3个,年内平均累计生长量达到5276.7μm。3)年内径向生长的进程受日均气温和日均降水量的共同影响,温度在生长季不同时期表现为不同的相关性,降水量在生长季期间表现为正相关。 展开更多
关键词 雪松 形成层细胞 微树芯 气候变化 年内径向生长节律
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