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林分年龄、造林密度和林分自然稀疏对杉木人工林个体大小分化和生产力关系的影响 被引量:24
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作者 杨桂娟 胡海帆 +2 位作者 孙洪刚 张建国 段爱国 《林业科学》 EI CAS CSCD 北大核心 2019年第11期126-136,共11页
【目的】研究林分生长过程中个体大小分化规律以及个体分化对林分生产力的影响,为通过培育措施调整改变林分内个体大小分化进而提高林分生产力提供理论依据。【方法】基于5种造林密度(2.0 m×3.0 m、2.0 m×1.5 m、2.0 m×1... 【目的】研究林分生长过程中个体大小分化规律以及个体分化对林分生产力的影响,为通过培育措施调整改变林分内个体大小分化进而提高林分生产力提供理论依据。【方法】基于5种造林密度(2.0 m×3.0 m、2.0 m×1.5 m、2.0 m×1.0 m、1.0 m×1.5 m和1.0 m×1.0 m)的26年生杉木密度试验林定位观测数据,采用广义线性混合模型研究林分年龄、造林密度和林分自然稀疏对林分个体大小分化的影响以及个体分化与林分生产力的数量关系。【结果】Gini系数(个体大小分化)随林分年龄和造林密度增加而增大,林分发生自然稀疏时Gini系数降低,但在林分自然稀疏进程中林分内个体大小分化程度再次增大。造林密度越大,林分生产力越高;林分发生自然稀疏时林分生产力下降,但自然稀疏后生产力增加速度大于自然稀疏前;林分生产力与个体大小分化呈负相关。【结论】随林分年龄和造林密度增加,个体间分化程度增大,林分生产力增加;发生林分自然稀疏时,个体间分化程度降低,林分生产力下降;在随后的林分生长进程中,个体间分化程度不断增大,林分生产力也继续提高。林分自然稀疏可改变林分种内竞争强度,进而改变个体分化和生产力之间关系的轨迹。 展开更多
关键词 个体大小分化 林分生产力 杉木 林分自然稀疏 GINI系数
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Self-thinning Rules at Chinese Fir(Cunninghamia lanceolata) Plantations——Based on a Permanent Density Trial in Southern China 被引量:8
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作者 DUAN Aiguo FU Lihua ZHANG Jianguo 《Journal of Resources and Ecology》 CSCD 2019年第3期315-323,共9页
Data selection and methods for fitting coefficients were considered to test the self-thinning law. TheChinese fir (Cunninghamia lanceolata) in even-aged pure stands with 26 years of observation data were applied tofit... Data selection and methods for fitting coefficients were considered to test the self-thinning law. TheChinese fir (Cunninghamia lanceolata) in even-aged pure stands with 26 years of observation data were applied tofit Reineke's (1933) empirically derived stand density rule (No∝d^-1.605, N = numbers of stems, d= mean diameter),Yoda's (1963) self-thinning law based on Euclidian geometry (v ∝ N^-3/2, v= tree volume), and West, Brown andEnquist's (1997, 1999)(WBE) fractal geometry (w ∝ d^-8/3). OLS, RMA and SFF algorithms provided observedself-thinning exponents with the seven mortality rate intervals (2%--80%, 5%--80%, 10%- 80%, 15%--80%,20%- 80%, 25%--80% and 30%- 80%), which were tested against the exponents, and expected by the rules con-sidered. Hope for a consistent allometry law that ignores species-specific morphologic allometric and scale differ-ences faded. Exponents a of N ∝ d^α, were significantly different from -1.605 and -2, not expected by Euclidianfractal geometry;exponents β of w ∝ N^β varied around Yoda's self-thinning slope - 3/2, but was significantly differentfrom - 4/3;exponent Y of w ∝ d^γ tended to neither 8/3 nor 3. 展开更多
关键词 Chinese fir SELF-THINNING stand density mortality rate
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