[1] Yu Yunjiang, Shi Peijun, Lu Chunxia, et al. Response of the ecophysiological characteristics of some plants under blown sand[J]. Acta Phytoecologica Sinica, 2003, 27(1): 53-58. [于云江, 史培军, 鲁春霞, 等. 不同风沙条件对几种植物生态生理特征的影响[J]. 植物生态学报, 2003, 27(1): 53-58.] [2] Tang Xia, Cui Jianyuan, Qu Hao, et al. Impact of wind on seedling's photosynthesis and transpiration of several common crops in Horqin sandy land[J]. Chinese Journal of Ecology, 2011, 30(3): 471-476. [唐霞, 崔建垣, 曲浩, 等. 风对科尔沁地区几种常见作物幼苗光合、 蒸腾特性的影响[J]. 生态学杂志, 2011, 30(3): 471-476.] [3] Li Xia, Wang Guodong, Xue Xuzhang, et a1. Effects of different wind speeds in greenhouse on growth and transpiration of potted sweet pepper[J]. Transactions of the CSAE, 2008, 24(2): 214-218. [李霞, 王国栋, 薛绪掌, 等. 温室内不同风速对盆栽甜椒生长及蒸腾的影响[J]. 农业工程学报, 2008, 24(2): 214-218.] [4] Pan Ruizhi. Plant physiology[M]. Beijing: Higher Education Press, 2001. [潘瑞炽. 植物生理学[M]. 北京: 高等教育出版社, 2001.] [5] He Bin, Chen Yaning, Li Weihong, et al. Analysis on the variation of sap flow of Populus euphratica oliv. and Chinese tamarisk at the lower reaches of Tarim river[J]. Journal of Arid Land Resource and Environment, 2007(7): 135-141. [何斌, 陈亚宁, 李卫红, 等. 塔里木河下游地区胡杨、 柽柳液流变化研究: 以英苏断面为例[J]. 干旱区资源与环境, 2007(7): 135-141.] [6] Ling Yuquan, Qu Jianjun, Jin Jiong. Influence of sparse natural vegetation on sand-transporting quantity[J]. Journal of Desert Research, 2003, 23(1): 13-17. [凌裕泉, 屈建军, 金炯. 稀疏天然植被对输沙量的影响[J]. 中国沙漠, 2003, 23(1): 13-17.] [7] Wei Xiao, Chang Xuexiang, Yang Qiyue, et al. Characteristics of nocturnal sap flow of Picea crassifolia in the Qilian mountains and its influence factors[J]. Journal of Glaciology and Geocryology, 2015, 37(1): 87-94. [魏潇, 常学向, 杨淇越, 等. 祁连山青海云杉(Picea crassifolia)夜间树干液流特征及影响因素[J]. 冰川冻土, 2015, 37(1): 87-94.] [8] Ma Rui, Wang Jihe, Liu Hujun, et al. Effection on wind speed of Haloxylon ammodendron forest with different density[J]. Journal of Soil and Water Conservation, 2009, 23(2): 249-252. [马瑞, 王继和, 刘虎俊, 等. 不同密度梭梭林对风速的影响[J]. 水土保持学报, 2009, 23(2): 249-252.] [9] Xu Wentao, Zhao Ping, Wang Quan, et al. Calculation and modeling of the canopy stomatal conductance of Acacia mangium from sap flow data[J]. Acta Ecologica Sinica, 2007(10): 4122-4131. [许文滔, 赵平, 王权, 等. 基于树干液流测定值的马占相思(Acacia mangium)冠层气孔导度计算及数值模拟[J]. 生态学报, 2007(10): 4122-4131.] [10] Chen S, Lin G, Huang J, et al. Dependence of carbon sequestration on the differential responses of ecosystem photosynthesis and respiration to rain pulses in a semiarid steppe[J]. Global Change Biology, 2009, 15(10): 2450-2461. [11] Green S R, McNaughton K G, Clothier B E. Observations of night-time water-use in kiwifruit vines and apple-trees[J]. Agricultural and Forest Meteorology, 1989, 48(3/4): 251-261. [12] Fisher J B, Baldocchi D D, Misson L, et al. What the towers don't see at night: nocturnal sap flow in trees and shrubs at two Ameri Flux sites in California[J]. Tree Physiology, 2007, 27(4): 597-610. [13] Cao Shengkui, Feng Qi, Si Jianhua, et al. Variations of foliar stable carbon isotope composition and water use efficiency in Populus euphratica for different plots[J]. Journal of Glaciology and Geocryology, 2012, 34(1): 155-160. [曹生奎, 冯起, 司建华, 等. 不同立地条件下胡杨叶片稳定碳同位素组成及水分利用效率的变化[J]. 冰川冻土, 2012, 34(1): 155-160.] [14] Duan Yuxi, Qin Jing, He Kangning, et al. A comparative study on the sap flow patterns of Ulmus pumila and Populus alba and their responses in Hedong sandy land[J]. Journal of Desert Research, 2008, 28(6): 1136-1144. [段玉玺, 秦景, 贺康宁, 等. 白榆、 新疆杨液流动态比较研究[J]. 中国沙漠, 2008, 28(6): 1136-1144.] [15] Huang Lei, Zhang Zhishan, Zhou Xiaokun. Stem sap flow of Caragana korshinskii and its influence factors in a revegetated desert area[J]. Journal of Desert Research, 2011, 31(2): 415-419. [黄磊, 张志山, 周小琨. 沙漠人工植被区柠条树干液流变化及影响因子分析[J]. 中国沙漠, 2011, 31(2): 415-419.] [16] Griddings L A. Evanspiration of Silphium laciniatam L[J]. Plant World, 1914, 35: 937-942. [17] Xu Junliang. Evaluation on environmental factors and simulation of whole tree water consumption of Pinus tabulaeformis and Platycladus orientalis forests in Beijing western mountains[D]. Beijing: Northeast Forestry University, 2006. [徐军亮. 京西山区油松、 侧柏单木耗水环境影响因子评价与模拟[D]. 北京: 北京林业大学, 2006.] [18] Pan Jianping, Han Shijie, Su Runzhou, et al. The influence of wind on leaf transpiration of Populus davidiana[J]. Journal of Northeast Forestry University, 1996, 24(1): 27-32. [潘建平, 韩士杰, 苏润州, 等. 风对山杨叶片蒸腾的影响[J]. 东北林业大学学报, 1996, 24(1): 27-32.] [19] He Siwei, Nan Zhuotong, Zhang Lin, et al. Spatial-temporal distribution of water and energy fluxes in the upper reaches of the Heihe river stimulated with VIC model[J]. Journal of Glaciology and Geocryology, 2015, 37(1): 211-225. [何思为, 南卓铜, 张凌, 等. 用VIC模型模拟黑河上游流域水分和能量通量的时空分布[J]. 冰川冻土, 2015, 37(1): 211-225.] [20] Ruan Yunfeng, Zhao Liangju, Xiao Honglang, et al. The groundwater in the Heihe river basin: isotope age and renew ability[J]. Journal of Glaciology and Geocryology, 2015, 37(3): 767-782. [阮云峰, 赵良菊, 肖洪浪, 等. 黑河流域地下水同位素年龄及可更新能力研究[J]. 冰川冻土, 2015, 37(3): 767-782.] [21] Zhao Chuanyan, Zhao Yang, Peng Shouzhang, et al. The growth state of Populus euphratica Oliv and its leaf ecological characteristics in the lower reaches of Heihe River[J]. Acta Ecologica Sinica, 2014, 34(16): 4518-4525. [赵传燕, 赵阳, 彭守璋, 等. 黑河下游绿洲胡杨(Populus euphratica Oliv)生长状况与叶生态特征[J]. 生态学报, 2014, 34(16): 4518-4525.] [22] Xiao Shengchun, Xiao Hongliang, Peng Xiaomei. Study of seasonal stem radical growth of Popolus euphratica in the lower reaches of the Heihe River[J]. Journal of Glaciology and Geocryology, 2012, 34(3): 706-712. [肖生春, 肖洪浪, 彭小梅. 黑河下游胡杨季节尺度径向生长变化研究[J]. 冰川冻土, 2012, 34(3): 706-712.] [23] Si Jianhua, Feng Qi, Zhang Xiaoyou. Application of heat-pulse technique to determine the stem sap flow of Populus euphratica[J]. Journal of Glaciology and Geocryology, 2004, 26(4): 503-508. [司建华, 冯起, 张小由. 热脉冲技术在确定胡杨幼树干液流中的应用[J]. 冰川冻土, 2004, 26(4): 503-508.] [24] Gao Song, Su Peixi, Yan Qiaodi, et al. Leaf anatomical structure and photosynthetic physiological characteristics of C4 desert species Salsola collina and S. arbuscula[J]. Chinese Journal of Plant Ecology, 2009, 33(2): 347-354. [高松, 苏培玺, 严巧娣, 等. C4荒漠植物猪毛菜与木本猪毛菜的叶片解剖结构及光合生理特征[J]. 植物生态学报, 2009, 33(2): 347-354.] [25] Zhang Xiaoyou, Gong Jiadong, Zhou Maoxian, et al. A study on the stem sap flow of Populus euphrtaicr and Tamaris spp. by heat pulse technique[J]. Journal of Glaciology and Geocryology, 2003, 25(5): 585-590. [张小由, 龚家栋, 周茂先, 等. 应用热脉冲技术对胡杨和柽柳树干液流的研究[J]. 冰川冻土, 2003, 25(5): 585-590.] [26] Burgess S S O, Adams M A, Turner N C, et al. An improved heat pulse method to measure low and reverse rates of sap flow in woody plants[J]. Tree Physiology, 2001, 21: 589-598. [27] Wang Ruihui, Ma Lüyi, Xi Ruchun, et al. Fluctuation of acer truncatum sap flow in rapid growth season and relevant variables[J]. Chinese Journal of Ecology, 2006, 25(3): 231-237. [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.] [28] Qu Hao, Zhao Xueyong, Yue Guangyang, et al. Physiological response to wind of some common plants in Horqin sand land[J]. Journal of Desert Research, 2009, 29(4): 668-673. [曲浩, 赵学勇, 岳广阳, 等. 科尔沁沙地几种常见植物对风胁迫的生理响应[J]. 中国沙漠, 2009, 29(4): 668-673.] [29] Wang Hua, Ouyang Zhiyun, Zhen Hua, et al. Time lag characteristics of stem sap flow of common tree species during their growth season in Beijing downtown[J]. Chinese Journal of Applied Ecology, 2009, 20(9): 2111-2117. [王华, 欧阳志云, 郑华, 等. 北京城区常见树种生长季树干液流的时滞特征[J]. 应用生态学报, 2009, 20(9): 2111-2117.] [30] Granier A, Loustau D, Breda N. A generic model of forest canopy conductance dependent on climate: soil water availability and leaf area index[J]. Annals of Forest Sciences, 2000, 57: 755-765. [31] Sun Di, Guan Dexin, Yuan Fenghui, et al. Time lag effect between poplar's sap flow velocity and microclimate factors in agroforestry system in west Liaoning Province[J]. Annals of Forest Sciences, 2010, 21(11): 2742-2748. [孙迪, 关德新, 袁凤辉, 等. 辽西农林复合系统中杨树液流速率与气象因子的时滞效应[J]. 应用生态学报, 2010, 21(11): 2742-2748.] [32] Martin E V, Clements F E. Studies of the effects of artificial wind on growth and transpiration in Helianthus annuus[J]. Plant Physiology, 1935, 10: 613-636. [33] Li Xia, Xue Xuzhang, Wang Guodong, et al. Effect of wind speed on transpiration and biomass accumulation of potted amaranth[J]. Chinese Journal of Eco-Agriculture, 2009, 17(6): 1143-1148. [李霞, 薛绪掌, 王国栋, 等. 风速对盆栽苋菜蒸腾及物质积累的影响[J]. 中国生态农业学报, 2009, 17(6): 1143-1148.] |