[1] 刘世荣, 杨予静, 王 晖. 中国人工林经营发展战略与对策: 从追求木材产量的单一目标经营转向提升生态系统服务质量和效益的多目标经营[J]. 生态学报, 2018, 38(1):1-10. doi: 10.5846/stxb201712072201
[2] 自然资源部. 2022年中国自然资源统计公报[EB/OL].https://m.mnr.gov.cn/sj/zrzyzygb/202304/P020230412557301980490.pdf, 2023-04-12/2023-7-14.
[3] 陈幸良, 巨 茜, 林昆仑. 中国人工林发展现状、问题与对策[J]. 世界林业研究, 2014, 27(6):54-59. doi: 10.13348/j.cnki.sjlyyj.2014.06.008
[4] 刘 涛, 谢耀坚. 中国桉树人工林快速发展动因分析与展望[J]. 桉树科技, 2020, 37(4):38-47. doi: 10.13987/j.cnki.askj.2020.04.07
[5] 黄香兰, 杨振意, 薛 立. 抚育间伐对人工林影响的研究进展[J]. 林业资源管理, 2013(1):62-67 + 75. doi: 10.13466/j.cnki.lyzygl.2013.01.020
[6] 张 甜, 朱玉杰, 董希斌. 抚育间伐和修枝对落叶松用材林生长和冠层的影响[J]. 东北林业大学学报, 2017, 45(12):8-11. doi: 10.13759/j.cnki.dlxb.2017.12.002
[7] MONTAGU K D, KEARNEY D E, SMITH R G B. The biology and silviculture of pruning planted eucalypts for clear wood production—a review[J]. Forest Ecology and Management, 2003, 179(1-3): 1-13. doi: 10.1016/s0378-1127(2)00579-0
[8] BULINSKI J, MATTHIESSEN J N, ALEXANDER R. Development of a cost-effective, pesticide-free approach to managing African black beetle (Heteronychus arator) in Australian eucalyptus plantations[J]. Crop Protection, 2006, 25(11): 1161-1166. doi: 10.1016/j.cropro.2005.12.006
[9] FAROOQ T H, SHAKOOR A, WU X H, et al. Perspectives of plantation forests in the sustainable forest development of China[J]. iForest-Biogeosciencesand Forestry, 2021, 14(2): 166-174. doi: 10.3832/ifor3551-014
[10] SILVA D E M D, AZEVEDO L A S D, POLTRONIERI T P D S. Avaliação da resistência de espécies de eucalipto à ferrugem (Puccinia psidii Winter)[J]. Summa Phytopathologica, 2014, 40(1): 54-62. doi: 10.1590/S0100-54052014000100008
[11] TURNBULL J W. Development of sustainable forestry plantations in China: a review[C]. Canberra: Australian Centre for International Agricultural Research, 2007: 37.
[12] 李书玲, 莫康克, 刘勇等. 尾巨桉DH32-28间伐效应分析[J]. 桉树科技, 2021, 38(2):38-40. doi: 10.13987/j.cnki.askj.2021.02.007
[13] 许晓东. 尾巨桉人工林抚育间伐调控技术研究[D]. 广州: 华南农业大学, 2019: 25-29.
[14] 陈少雄, 杨建林, 周国福. 不同栽培措施对尾巨桉生长的影响及经济效益分析[J]. 林业科学研究, 1999, 12(4):357-362.
[15] 国家林业局桉树研究开发中心. 桉树大径材培育技术规程: LY/T 2909-2017[S]. 北京: 国家林业局, 2017: 3.
[16] VUJICIC T, MATIJEVIC T, LJUCOVIC J, et al. Comparative analysis of methods for determining number of hidden neurons in artificial neural network: central european conferenceon informationand intelligent systems (CECIIS 2016)[Z]. HUNJAK T, KIRINIC V, KONECKI M. 27th central european conference on information and intelligent systems (CECIIS): 2016: 219-223.
[17] 倪艳林, 杨丽丽, 彭 君, 等. 指数施磷后闽楠幼苗诊断施肥综合法营养诊断研究[J]. 西部林业科学, 2023, 52(2):121-131. doi: 10.16473/j.cnki.xblykx1972.2023.02.017
[18] 赵匡记, 纪福利, 刘延文, 等. 华北落叶松林分生长对间伐和修枝的响应[J]. 浙江农林大学学报, 2016, 33(4):581-588. doi: 10.11833/j.issn.2095-0756.2016.04.005
[19] 管惠文, 董希斌. 间伐强度对落叶松次生林冠层结构和林内光环境的影响[J]. 北京林业大学学报, 2018, 40(10):13-23.
[20] 王翰琛, 张雄清, 张建国, 等. 杉木人工林不同密度间伐林分生长优势的变化规律分析[J]. 林业科学研究, 2021, 34(5):32-38.
[21] PELKKI M H, COLVIN R J. Effects of thinning in a cherrybark oak plantation[J]. Southern Journal of Applied Forestry, 2004, 28(1): 55-58. doi: 10.1093/sjaf/28.1.55
[22] de MONTIGNY L, NIGH G. Growth, mortality, and damage in fast growing douglas-fir stands in coastal british columbia twenty years after heavy juvenile thinning and moderate pruning at age nine[J]. Northwest Science, 2014, 88(3): 206-218. doi: 10.3955/046.088.0304
[23] FORRESTER D I, BAKER T G. Growth responses to thinning and pruning in Eucalyptus globulus, Eucalyptus nitens, and Eucalyptus grandis plantations in southeastern Australia[J]. Canadian Journal of Forest Research-Revue Canadiennede Recherche Forestiere, 2012, 42(1): 75-87. doi: 10.1139/x11-146
[24] 欧阳林男, 兰 俊, 陈少雄, 等. 一次间伐对速生桉树大径材增长影响及经济效益分析[J]. 桉树科技, 2021, 38(3):1-10.
[25] FONTAN I, REIS G G, REIS M, et al. Growth of pruned eucalypt clone in an agroforestry system in southeastern Brazil[J]. Agroforestry Systems, 2011, 83(2): 121-131. doi: 10.1007/s10457-011-9432-1
[26] MEDEIROS R A, de PAIVA H N, SOARES A, et al. Thinning from below: effects on height of dominant trees and diameter distribution in eucalyptus stands[J]. Journal of Tropical Forest Science, 2017, 29(2): 238-247.
[27] 卯光宪, 谭 伟, 柴宗政, 等. 基于BP神经网络的马尾松人工林胸径-树高模型预测[J]. 浙江农林大学学报, 2020, 37(4):752-760.
[28] 孙 翊, 姜树海, 陈至灵. 人工神经网络在林业上的应用研究进展[J]. 世界林业研究, 2019, 32(3):7-12.