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油松毛虫幼虫和蛹在油松各轮枝层分布的空间格局及其变化规律研究 被引量:8
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作者 马占山 张执中 《林业科学》 EI CAS CSCD 北大核心 1990年第6期519-526,共8页
将油松植株看作是处于不同空间层次的亚生境单元——“轮枝层”构成的一个多层次立体结构,以Taylor幂法则模型及笔者重新解释的Taylor幂法则,作为描述种群空间格局的基本模型和准则。采用模糊聚类分析,灰色聚类分析,趋势面分析等方法,... 将油松植株看作是处于不同空间层次的亚生境单元——“轮枝层”构成的一个多层次立体结构,以Taylor幂法则模型及笔者重新解释的Taylor幂法则,作为描述种群空间格局的基本模型和准则。采用模糊聚类分析,灰色聚类分析,趋势面分析等方法,研究油松毛虫在各轮枝层分布的空间格局及其在各层间的变化规律;并测定了种群个体在油松植株内层间垂直分布的种群聚集度。结果表明:(1)种群在各轮枝层分布格局的种群聚集度,均为逆密度制约型,并给出了种群聚集临界密度m_0的值,因而可以对各轮枝层的空间格局连续统作出定量描述;(2)各轮枝层的种群聚集度在各层间的变化是非线性的;可以按聚集特征参数划分一定类别;(3)种群个体在植株内垂直分布的种群聚集度也是逆密度制约型。 展开更多
关键词 油松毛虫 种群 幼虫 空间格局
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Variation in individual biomass decreases faster than mean biomass with increasing density of bamboo stands 被引量:2
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作者 Guohua Liu Cang Hui +4 位作者 Ming Chen Lauren SPile GGeoff Wang Fusheng Wang Peijian Shi 《Journal of Forestry Research》 SCIE CAS CSCD 2020年第3期981-987,共7页
The total biomass of a stand is an indicator of stand productivity and is closely related to the density of plants. According to the self-thinning law, mean individual biomass follows a negative power law with plant d... The total biomass of a stand is an indicator of stand productivity and is closely related to the density of plants. According to the self-thinning law, mean individual biomass follows a negative power law with plant density. If the variance of individual biomass is constant, we can expect increased stand productivity with increasing plant density. However, Taylor's power law(TPL) that relates the variance and the mean of many biological measures(e.g. bilateral areal differences of a leaf, plant biomass atdifferent times, developmental rates at different temperatures, population densities on different spatial or temporal scales), affects the estimate of stand productivity when it is defined as the total biomass of large plants in a stand.Because the variance of individual biomass decreases faster than mean individual biomass, differences in individual biomass decline with increasing density, leading to more homogeneous timbers of greater economic value. We tested whether TPL in plant biomass holds for different species and whether the variance of individual biomass changes faster than the mean with increasing stand density.The height, ground diameter and fresh weight of 50 bamboo species were measured in 50 stands ranging from 1 m by 1 m to 30 m by 30 m to ensure more than 150 bamboos in every stand. We separately examined TPL in height,ground diameter, and weight, and found that TPL holds for all three biological measures, with the relationship strongest for weight. Using analysis of covariance to compare the regression slopes of logarithmic mean and variance against the logarithm of density, we found that the variance in individual biomass declined faster than the mean with increasing density. This suggests that dense planting reduced mean individual biomass but homogenized individual biomass. Thus, there exists a trade-off between effective stand productivity and stand density for optimal forest management. Sparse planting leads to large variation in individual biomass, whereas dense planting reduces mean individual biomass. Consequently, stand density for a plantation should be set based on this trade-off with reference to market demands. 展开更多
关键词 BAMBOO Linear fitting SELF-THINNING law taylor's power law Variance
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