Structure and function model of Chinese fir and its mixed-forest:A case study in Jiangle state-owned forest farm, Fujian Province
Lu Nini, Xu Hao, Liao Wenchao, Liao Xianglong, Ling Wei, Wang Xinjie
1. Forestry College of Beijing Forestry University, Key Laboratory for Silviculture and Conservation of Jointly-constructed by Province and Ministry of Education, 100083, Beijing, China;
2. Beijing Water Consulting Corporation, 100089, Beijing, China
[Background] Due to the deterioration of ecological environment, forest service functions were getting more and more attention. Forest function is closely influenced by the structure. It has been the research focus that how to quantitative describe the relationship between forest structure and function. The purpose of this study is to define the quantitative relationship between Cunninghamia lanceolata forest stand structure and function through the multiple regression model, and then to improve the forest multi-function management level and forest benefits by adjusting forest structure. [Methods] C. anceolata and its mixed-forest which is typical in Jiangle state-owned forest farm in Fujian Province were taken as an example. Seventeen easy measuring factors (stand age (A), stand average diameter at breast height (DBH), stand average height (H), stand density, maximum water holding capacity of litter, soil non-capillary water capacity, total P, total K, total N, organic matter content, tree layer biomass, shrub layer biomass, herb layer biomass, shrub richness, herb richness, shrub diversity, herb diversity) were chosen as independent variables ( IV), functions including forest biomass accumulation, water conservation, soil conservation and species diversity conservation were considered as dependent variables, then a forest structure and function model was built by multiple linear regression method, and a forest comprehensive function model was finally established by principal components analysis method. [Results] The stand biomass per hectare was mainly determined by A, DBH and stand density (R2 = 0.801 4). Water conservation function was mostly influenced by A, DBH, H and stand density (R2 = 0.5612). Soil conservation function was mainly affected by A, DBH and H (R2 =0.561 2). Richness and diversity of undergrowth were determined by A, DBH, H and stand density (R2 =0.661 8). Factors including A, DBH and stand density had influences on all of the studied forest functions, while stand average height had a significant effect on forest water conservation function. In the forest comprehensive function model, first five principal components, respectively, reflected the forest timber production function, species diversity conservation function, soil onservation function, biomass accumulation function and water conservation function. Among the 55 sample plots, the highest forest comprehensive function index (FI) was 453 (No. 19) while the lowest was -153 (No. 5). Sample plot No. 19 had a significantly higher index in A, DNH, H and tree layer biomass than No. 5. [Conclusions] Forest multi-function was mainly determined by stand age and average DBH. 82% of Chinese fir forest had a powerful forest comprehensive function, however, 18% of Chinese fir forest had a weak timber production capacity and diversity protection ability, which needs forest stand structural adjustment to raise its forest multi-function level.
卢妮妮1,许昊1,廖文超2,廖祥龙1,凌威1,王新杰1. 杉木及其混交林的结构与功能模型——以福建省将乐国有林场为例[J]. 中国水土保持科学, 2016, 14(2): 74-80.
Lu Nini, Xu Hao, Liao Wenchao, Liao Xianglong, Ling Wei, Wang Xinjie. Structure and function model of Chinese fir and its mixed-forest:A case study in Jiangle state-owned forest farm, Fujian Province. SSWC, 2016, 14(2): 74-80.