[1] 胡伟, 杜峰, 徐学选, 等.黄土丘陵区刺槐树干液流动态分析[J].应用生态学报, 2010, 21(6):1367-1373.

HU Wei, DU Feng, XU Xuexuan, et al. Dynamic changes of Robinia pseudoacacia sap flow in hilly-gully region of Loess Plateau[J]. Chin J Appl Ecol, 2010, 21(6):1367-1373.
[2] 王华田.林木耗水性研究述评[J].世界林业研究, 2003, 16(2):23-27.

WANG Huatian. Review of tree species water consumption[J]. World For Res, 2003, 16(2):23-27.
[3] 凡超, 邱燕萍, 李志强, 等.荔枝树干液流速率与气象因子的关系[J].生态学报, 2014, 34(9):2401-2410.

FAN Chao, QIU Yanping, LI Zhiqiang, et al. Relationships between stem sap flow rate of litchi trees and meteorological parameters[J]. Acta Ecol Sin, 2014, 34(9):2401-2410.
[4] OGUNTUNDE P G. Whole-plant water use and canopy conductance of cassava under limited available soil water and varying evaporative demand[J]. Plant Soil, 2005, 278(1):371-383.
[5] NICOLAS E, TORRECILLAS A, ALARCON J J. Using sap flow measurements to quantify water consumption in apricot trees[J]. Acta Hortic, 2006, 717:37-40
[6] 马玲, 赵平, 饶兴权, 等.马占相思树干液流特征及其与环境因子的关系[J].生态学报, 2005, 25(9):2145-2151.

MA Ling, ZHAO Ping, RAO Xingquan, et al. Effects of environmental factors on sap flow in Acacia mangium[J]. Acta Ecol Sin, 2005, 25(9):2145-2151.
[7] FIORA A, CESCATTI A. Diurnal and seasonal variability in radial distribution of sap flux density:implications for estimating stand transpiration[J]. Tree Physiol, 2006, 26(9):1217-1225.
[8] KUMAGAI T, SAITOH T M, SATO Y, et al. Transpiration, canopy conductance and the decoupling coefficient of a lowland mixed dipterocarp forest in Sarawak, Borneo:dry spell effects[J]. J Hydrol, 2004, 287(1/4):237-251.
[9] 王志超. 不同整地措施对桉树幼林生长及林地环境变化的影响[D]. 北京: 中国林业科学研究院, 2014.

WANG Zhichao. The Impact of Different Soil Preparation Measures on the Growth and Environment Change of Young Eucalypt Plantation[D]. Beijing:Chinese Academy of Forestry, 2014.
[10] CALDER I R. Water use of eucalypts:a review[G]//CALDER I R, HALL R L, ADLARD P G, et al. Growth and Water Use of Forest Plantation. New York:John Wiley and Sons, 1992:167-179.
[11] 时忠杰, 徐大平, 张宁南, 等.桉树人工林水文影响研究进展[J].林业科学, 2009, 45(11):135-140.

SHI Zhongjie, XU Daping, ZHANG Ningnan, et al. Progress in researches on hydrological effects of Eucalyptus plantation[J]. Sci Silv Sin, 2009, 45(11):135-140.
[12] 于福科, 黄新会, 王克勤, 等.桉树人工林生态退化与恢复研究进展[J].中国生态农业学报, 2009, 17(2):393-398.

YU Fuke, HUANG Xinhui, WANG Keqin, et al. An overview of ecological degradation and restoration of Eucalyptus plantation[J]. Chin J Eco-Agric, 2009, 17(2):393-398.
[13] FORRESTER D I, THEIVEYANATHAN S, COLLOPY J J, et al. Enhanced water use efficiency in a mixed Eucalyptus globulus and Acacia mearnsii plantation[J]. For Ecol Manage, 2010, 259(9):1761-1770.
[14] 张宁南. 广东桉树人工林耗水量研究[D]. 北京: 中国林业科学研究院, 2010.

ZHANG Ningnan. Studies on Water Use of Eucalyptus Plantations in Guangdong[D]. Beijing:Chinese Academy of Forestry, 2010.
[15] VERTESSY R A, HATTON T J, REECE P, et al. Estimating stand water use of large mountain ash trees and validation of the sap flow measurement technique[J]. Tree Physiol, 1997, 17(12):747-756.
[16] WULLSCHEGER S D, HANSON P J, TODD D E. Transpiration from a multi-species deciduous forest as estimated by xylem sap flow technique[J]. For Ecol Manage, 2001, 143(1/3):205-213.
[17] 孙振伟, 赵平, 牛俊峰, 等.外来引种树种大叶相思和柠檬桉树干液流和蒸腾耗水的季节变异[J].生态学杂志, 2014, 33(10):2588-2595.

SUN Zhenwei, ZHAO Ping, NIU Junfeng, et al. Seasonal variations of sap flow and transpiration water consumption of introduced tree species Acacia auriculaeformis and Eucalyptus citriodora[J]. Chin J Ecol, 2014, 33(10):2588-2595.
[18] 蒋文伟, 郭运雪, 杨淑贞, 等.天目山柳杉古树的树干液流速率时空变化[J].浙江农林大学学报, 2012, 29(6):859-866.

JIANG Wenwei, GUO Yunxue, YANG Shuzhen, et al. Temporal and spatial changes for sap flow velocity of Cryptomeria fortunei stems in National Nature Reserve of Mount Tianmu[J]. J Zhejiang A & F Univ, 2012, 29(6):859-866.
[19] 涂洁, 胡良, 刘琪璟, 等.江西千烟洲杉木生长季树干液流特征及影响因子[J].浙江农林大学学报, 2015, 32(2):257-263.

TU Jie, HU Liang, LIU Qijing, et al. Sap flow characteristics during the growing season for Cunninghamia lanceolata in red soil areas of Jiangxi Province[J]. J Zhejiang A & F Univ, 2015, 32(2):257-263.
[20] 刘文国, 刘玲, 张旭东, 等.杨树人工林树干液流特征及其与影响因子关系的研究[J].水土保持学报, 2010, 24(2):95-101.

LIU Wenguo, LIU Ling, ZHAND Xudong, et al. Characteristics of sap flow and its relation to influencing factors in poplar plantation[J]. J Soil & Water Conserv, 2010, 24(2):95-101.
[21] 王文, 朱烨, 诸葛绪霞, 等.尾巨桉树干液流特性及其影响因子分析[J].水土保持通报, 2013, 33(3):159-164.

WANG Wen, ZHU Ye, ZHUGE Xuxia, et al. Stem sap flow characters of Eucalyptus urophylla×E. grandis and its influence factors[J]. Bull Soil Water Conserv, 2013, 33(3):159-164.
[22] GRANIER A. Evaluation of transpiration in a Douglas-fir stand by means of sap flow measurements[J]. Tree Physiol, 1987, 3(4):309-320.
[23] 蒋文伟, 杨广远, 赵明水, 等.天目山柳杉树干液流的昼夜及季节变化[J].南京林业大学学报 (自然科学版), 2012, 36(5):77-80.

JIANG Wenwei, YANG Guangyuan, ZHAO Mingshui, et al. Diurnal and seasonal variation of stem sap flow for Cryptomeria fortunei in Mount Tianmu[J]. J Nanjing For Univ Nat Sci Ed, 2012, 36(5):77-80.
[24] 尹立河, 黄金廷, 王晓勇, 等.陕西榆林地区旱柳和小叶杨夜间树干液流变化特征分析[J].西北农林科技大学学报 (自然科学版), 2013, 41(8):85-90.

YIN Lihe, HUANG Jinting, WANG Xiaoyong, et al. Characteristics of night time sap flow of Salix matsudana and Populus simonii in Yulin, Shaanxi[J]. J Northwest A & F Univ Nat Sci Ed, 2013, 41(8):85-90.
[25] 孙鹏森, 马履一, 王小平, 等.油松树干液流的时空变异性研究[J].北京林业大学学报, 2000, 22(5):1-6.

SUN Pengsen, MA Lüyi, WANG Xiaoping, et al. Temporal and spacial variation of sap flow of Chinese pine (Pinus tabulaeformis)[J]. J Beijing For Univ, 2000, 22(5):1-6.
[26] 夏永秋, 邵明安.黄土高原半干旱区柠条 (Caragana korshinskii) 树干液流动态及其影响因子[J].生态学报, 2008, 28(4):1376-1382.

XIA Yongqiu, SHAO Ming'an. The sap flow dynamics of Caragana korshinskii and the influence of environmental factors in semi-arid region of the Loess Plateau[J]. Acta Ecol Sin, 2008, 28(4):1376-1382.
[27] 任世奇, 邓紫宇, 郭东强, 等.尾巨桉液流密度动态及其影响因子分析[J].森林与环境学报, 2016, 36(1):1-7.

REN Shiqi, DENG Ziyu, GUO Dongqiang, et al. Dynamics of sap flow density of Eucalyptus urophylla×Eucalyptus grandis and relationship with environmental factors[J]. J For Environ, 2016, 36(1):1-7.
[28] 王小菲, 孙永玉, 李昆, 等.干热河谷大叶相思树干液流季节动态及其与气象因子的关系[J].林业科学研究, 2013, 26(2):145-150.

WANG Xiaofei, SUN Yongyu, LI Kun, et al. Stem sap flow characteristics of Acacia auriculaeformis in Dry-hot Valley and their relations to meteorological factors[J]. For Res, 2013, 26(2):145-150.
[29] GOLDSTEIN G, ANDRADE J L, MEINZER F C, et al. Stem water storage and diurnal patterns of water use in tropical forest canopy trees[J]. Plant Cell Environ, 1998, 21(4):397-406.
[30] 王艳兵, 德永军, 熊伟, 等.华北落叶松夜间树干液流特征及生长季补水格局[J].生态学报, 2013, 33(5):1375-1385.

WANG Yanbing, DE Yongjun, XIONG Wei, et al. The characteristics of nocturnal sap flow and stem water recharge pattern in growing season for a Larix principis-rupprechtii plantation[J]. Acta Ecol Sin, 2013, 33(5):1375-1385.
[31] 王华, 赵平, 王权, 等.马占相思夜间树干液流特征和水分补充现象的分析[J].生态学杂志, 2007, 26(4):476-482.

WANG Hua, ZHAO Ping, WANG Quan, et al. Characteristics of nighttime sap flow and water recharge in Acacia mangium trunk[J]. Chin J Ecol, 2007, 26(4):476-482.
[32] 肖以华, 陈步峰, 陈嘉杰, 等.马占相思树干液流的研究[J].林业科学研究, 2005, 18(3):331-335.

XIAO Yihua, CHEN Bufeng, CHEN Jiajie, et al. A study on the stem sap flow of Acacia mangium[J]. For Res, 2005, 18(3):331-335.
[33] 王瑞辉, 马履一, 奚如春, 等.元宝枫生长旺季树干液流动态及影响因素[J].生态学杂志, 2006, 25(3):231-237.

WANG Ruihui, MA Lüyi, XI Ruchun, et al. Fluctuation of Acer truncatum sap flow in rapid growth season and relevant variables[J]. Chin J Ecol, 2006, 25(3):231-237.
[34] 黄德卫, 张德强, 周国逸, 等.鼎湖山针阔叶混交林优势种树干液流特征及其与环境因子的关系[J].应用生态学报, 2012, 23(5):1159-1166.

HUANG Deiwei, ZHANG Deqiang, ZHOU Guoyi, et al. Characteristics of dominant tree species stem sap flow and their relationships with environmental factors in a mixed conifer-broadleaf forest in Dinghushan, Guangdong Province of South China[J]. Chin J Appl Ecol, 2012, 23(5):1159-1166.