阔叶红松林

kuò yè hóng sōng lín
  • broad-leaved Korean pine forest
阔叶红松林阔叶红松林
  1. 人工诱导阔叶红松林种群结构及分布格局

    Population Structure and Distribution Pattern of Artificially Inducing Broad-leaved Korean Pine Forest

  2. 不同发育阶段阔叶红松林空间结构的初步研究

    Study on the Spatial Structure of Broad-leaved Korean Pine Forest in the Different Growth Stage

  3. 结果表明,阔叶红松林土壤CO2排放与表层无凋落物的土壤CO2排放速率在测定年度内具有相同的季节变化趋势。

    The results showed that there were similarly seasonal variation trends for soil CO 2 emission rates in soil and litter-free soil .

  4. 长白山阔叶红松林通量观测的footprint及源区分布

    Distribution of footprint and flux source area of the mixed forest of broad-leaved and Korean pine in Changbai Mountain

  5. 采用静态封闭箱式技术对长白山阔叶红松林土壤CO2的排放通量进行1年的观测,并通过多元回归分析了土壤CO2排放速率与5个环境因子间的关系。

    The soil CO 2 emission fluxes in two treatments in the broad-leaved Korean pine ( Pinus koreansis ) forest of Changbai Mountain were evaluated with closed static chamber technique .

  6. 利用压力脉动模型对长白山阔叶红松林冬季土壤释放的CO2在雪层中的扩散过程进行模拟,进而估算土壤呼吸。

    The diffusion of CO2 released from soil through the snow layer in the broadleaved pine forests in Changbai Mountain was simulated with pressure-pumping models , and soil respiration was estimated .

  7. 采用静态密闭箱/气相色谱分析方法对长白山阔叶红松林两个样地的N2O排放通量进行了测定。

    The soil N 2O emission fluxes in the two plots of broad-leaved Korean pine forest were measured by static closed chamber-gas chromatograph in Changbai Mountain .

  8. 结果表明,长白山阔叶红松林25hm2样地内胸径≥1cm的木本植物共51个种,59158个活的个体。

    The results show that there are 51 woody species and 59 158 living individuals .

  9. 阔叶红松林净初级生产力对气候变化响应模拟基于IBIS模型的东北森林净第一性生产力模拟

    Modeling response of mixed Korean pine and broad-leaf forest to climate change Simulation of forest net primary productivity in northeastern China with IBIS

  10. 对长白山阔叶红松林2003年生长季的涡动相关实测时间序列进行了去倾修订与超声风速仪倾斜修订,并分析了不同修订方法对森林CO2通量计算值的影响。

    Detrending correction and sonic anemometer tilt correction were made to modify the raw time series measured from eddy covariance system in broad-leaved Korean pine forest of Changbai Mountains during the growing season of 2003 , and the impact of different correction methods on CO 2 flux was analyzed quantificationally .

  11. 在原始阔叶红松林测定空气N2O的垂直分布,三次观测结果发现林冠高度处N2O浓度比树干和林冠上方的背景值高543%-74%,差异极显著。

    The vertical distribution of N 2O concentration are measured within the primary Korean pine forests . Results of three observations show that N 2O concentration at the canopy height is 5.43 % - 74 % higher than the normal concentrations at trunk space heights and above canopy heights .

  12. 阔叶红松林现有倒木贮量开始为16.25t/hm2,以后随时间减少,到100a后分解掉其干重的85%左右,300a后所剩无几。

    The existing storage of fallen trees was 16.25 t / hm 2 in the initial stage , then the storage reduced , after 100 years , 85 % of the dry weight was decomposed and only a few left after 300 years .

  13. 人工诱导的阔叶红松林群落结构动态

    Dynamics of Community Structure in Artificial Induced Broad-leaved Korean Pine Forests

  14. 阔叶红松林择伐强度及更新技术的研究

    Study on the selective cutting intensity and generation techniques of broad-leaved korean forests

  15. 可持续经营框架下阔叶红松林区生物多样性间接评价体系的研究

    An indirect assessment system for biodiversity in the Korean pine broadleaved forest region

  16. 阔叶红松林区的林分生长模拟

    Simulation of Stand-growth for Broad-leaved Korean Pine Forests

  17. 温度与土壤含水量对阔叶红松林土壤呼吸影响

    Influence of temperature and soil water content on soil respiration in a broad-leaved korean pine forest

  18. 阔叶红松林主要组成树种树冠特征及其对更新的影响

    Crown Characteristic and Effect to Regeneration of Major Tree Species in the Mixed Broadleaved-Korean Pine Forest

  19. 人工诱导异龄复层阔叶红松林上层抚育研究

    Tending and thinning experiments in upper layers in man-made inducing unevenaged multilayered broadleaved Pinus koraiensis forests

  20. 采伐对长白山阔叶红松林乔木竞争关系的影响

    Influence of Cutting on the Tree Competition Relation of Broad-leaved Korean Pine Forest in Changbaishan Mountain

  21. 长白山阔叶红松林不同采伐强度与森林病害的发生

    Different Cutting intensities and Incidence of Forest Discases in Broad Leaved-Korean Pine Forest of Changbai Mountain

  22. 长白山北坡阔叶红松林和暗针叶林的土壤水分物理性质

    Soil hydro-physical properties under broadleaved Korean pine and dark coniferous forests on northern slope of Changbai Mountains

  23. 长白山阔叶红松林生态系统碳动态及其对气候变化的响应

    Carbon dynamics of broad-leaved Korean pine forest ecosystem in Changbai Mountains and its responses to climate change

  24. 太阳辐射对长白山阔叶红松林净生态系统碳交换的影响

    Effects of solar radiation on net ecosystem exchange of broadleaved-Korean pine mixed forest in Changbai mountain , china

  25. 野生人参自然分布的典型原始阔叶红松林群落及其特征研究

    Studies on typical primitive broad-leaved Pinus koraiensis forest community in which wild ginseng distributes naturally and its characteristics

  26. 基于模型数据融合的长白山阔叶红松林碳循环模拟

    Carbon cycle modeling of a broad-leaved Korean pine forest in Changbai Mountain of China using the model-data fusion approach

  27. 东北地区阔叶红松林的群落结构及其物种多样性比较

    Comparison of community structure and species diversity of mixed forests of deciduous broad-leaved tree and Korean pine in Northeast China

  28. 东北阔叶红松林分布区生态气候适宜性及全球气候变化影响评价

    Assessment of eco climatic suitability and climate change impacts of / on broad leaved Korean pine forest in Northeast China

  29. 土壤干湿交替对长白山阔叶红松林土壤微生物活性与区系的影响

    Influence of Wet / Dry Cycle on Soil Microbial Activity and Community Flora in Broadleaved Korean Pine Forest in Changbai Mountains

  30. 本文采用全站仪获取定位数据,通过对林分特征、特别是空间结构的分析研究,为阔叶红松林的可持续经营提供理论和技术支撑。

    The data used in this paper are got by the total station to analyze the stand characters including the spatial structure of the broad-leaved korean pine .