[1] MOHAMMADI M H,MESKINI-VISHIKAEE F.Predicting soil moisture characteristic curves from continuous particle-size distribution data[J]. Pedosphere,2013,23(1):70–80. [2] HU H C,TIAN F Q,HU H P.Soil particle size distribution and its relationship with soil water and salt under mulched drip irrigation in Xinjiang of China[J]. Science China Technology Sciences,2011,54(6):1568–1574. [3] 张俊华,李国栋,南忠仁,等. 黑河绿洲区耕作影响下的土壤粒径分布及其与有机碳的关系[J]. 地理研究,2012,31(4):608–618. [ZHANG Junhua,LI Guodong,NAN Zhongren,et al.Research on soil particle size distribution and its relationship with soil organic carbon under the effects of tillage in Heihe oasis[J]. Geographical Research,2012,31(4):608–618.] [4] XU G C,LI Z B,LI P.Fractal features of soil particle-size distribution and total soil nitrogen distribution in a typical watershed in the source area of the middle Dan River,China[J]. Catena,2013,101:17–23. [5] EACUTE M C J,MILTON C C C,DENILTON C G,et al. Fractal analysis in the description of soil particle-size distribution under different land-use patterns in Southern Amazonas State,Brazil[J]. African Journal of Agricultural Research,2016,11(23):2032–2042. [6] WANG D,FU B J,ZHAO W W.Multifractal characteristics of soil particle size distribution under different land-use types on the Loess Plateau,China[J]. Catena,2008,72(1):29–36. [7] 桂东伟,雷加强,曾凡江,等. 绿洲农田不同深度土壤粒径分布特性及其影响因素:以策勒绿洲为例[J]. 干旱区研究,2011,28(4):622–629. [GUI Dongwei,LEI Jiaqiang,ZENG Fanjiang,et al.Analysis on soil PSD and its affecting factors at different depths in oasis farmland:A case study in the Qira Oasis[J]. Arid Zone Research,2011,28(4):622–629.] [8] 杜海燕,周智彬,刘凤山,等. 绿洲化过程中阿拉尔垦区土壤粒径分形变化特征[J]. 干旱区研究,2013,30(4):615–622. [DU Haiyan,ZHOU Zhibin,LIU Fengshan,et al.Variation of fractal dimension of soil particle size distribution in the aral reclamation area in oasis development[J]. Arid Zone Research,2013,30(4):615–622.] [9] NADEU E,VENTE J D,MARTINEZ-MENA M,et al.Exploring particlesize distribution and organic carbon pools mobilized by different erosion processes at the catchment scale[J]. Journal of Soils and Sediments,2011,11(4):667–678. [10] 高永,丁延龙,汪季,等. 不同植物灌丛沙丘表面沉积物粒度变化及其固沙能力[J]. 农业工程学报,2017,33(22):135–142. [GAO Yong,DING Yanlong,WANG Ji,et al.Sediments particle size changes and its sand fixation ability for different shrub dunes[J]. Transactions of the Chinese Society of Agricultural Engineering,2017,33(22):135–142.] [11] XIANG N,PENG G,BING W,et al.Fractal characteristics of soil retention curve and particle size distribution with different vegetation types in mountain areas of northern China[J]. International Journal of Environmental Research and Public Health,2015,12(12):15379–15389. [12] 任悦,高广磊,丁国栋,等. 沙地樟子松人工林叶片-枯落物-土壤氮磷化学计量特征[J]. 应用生态学报,2019,30(3):743–750. [REN Yue,GAO Guanglei,DING Guodong,et al.Characteristics of organic carbon content of leaf-litter-soil system in Pinus sylvestris var. mongolica plantations[J]. Journal of Beijing Forestry University,2019,30(3):743–750.] [13] CHEN Fusheng,ZENG Dehui,SINGH Anand Narain,et al.Effects of soil moisture and soil depth on nitrogen mineralization process under Mongolian pine plantations in Zhanggutai sandy land,P R China[J]. Journal of Forestry Research,2005,16(2):101–104. [14] 包永志,刘廷玺,段利民,等. 科尔沁沙地混生小叶锦鸡儿和人工杨树光合特性及其对气候的响应[J]. 干旱区研究,2019,36(2):420–429. [BAO Yongzhi,LIU Yanxi,DUAN Limin,et al.Photosynthetic traits of Caragana microphylla and Populus spp. and their responses to climate in the Horqin Sandy Land[J]. Arid Zone Research,2019,36(2):420–429.] [15] 刘新平,何玉惠,魏水莲,等. 科尔沁沙地樟子松(Pinus sylvestris var. mongolica)生长对降水和温度的响应[J]. 中国沙漠,2016,36(1):57–63. [LIU Xinping,HE Yuhui,WEI Shuilian,et al.Growth response of Pinus sylvestris var. mongolica to precipitation and air temperature in the Horqin Sandy Land[J]. Journal of Desert Research,2016,36(1):57–63.] [16] 孟祥楠,赵雨森,郑磊,等. 嫩江沙地不同年龄樟子松人工林种群结构与林下物种多样性动态[J]. 应用生态学报,2012,23(9):2332–2338. [MENG Xiangnan, ZHAO Yusen, ZHENG Lei, et al.Population structure and understory species diversity of different aged Pinus sylvestris var. mongolica plantations in Nenjiang Sandy Land of northeast China[J]. Chinese Journal of Applied Ecology,2012,23(9):2332–2338.] [17] 张继义,赵哈林,崔建垣,等. 科尔沁沙地樟子松人工林土壤水分动态的研究[J]. 林业科学,2005,41(3):1–6. [ZHANG Jiyi,ZHAO Halin,CUI Jianheng,et al.Community structure,soil water dynamics and community stability of Pinus sylvestris var. mongolica plantation in Horqin Sandy Land[J]. Scientia Silvae Sinicae,2005,41(3):1–6.] [18] 陈伏生,曾德慧,范志平,等. 章古台沙地樟子松人工林土壤有效氮的研究[J]. 北京林业大学学报,2005,27(3):6–11. [CHEN Fusheng,ZENG Dehui,FAN Zhiping,et al.Available nitrogen in forest soil of Pinus sylvestris var. mongolica plantations in Zhanggutai sandy lands[J]. Journal of Beijing Forestry University,2005,27(3):6–11.] [19] 高广磊,丁国栋,赵媛媛,等. 四种粒径分级制度对土壤体积分形维数测定的影响[J]. 应用基础与工程科学学报,2014,6:1060–1068. [GAO Guanglei,DING Guodong,ZHAO Yuanyuan,et al.Effects of soil particle size classification system on calculating volume-based fractal dimension[J]. Journal of Basic Science and Engineering,2014,22(6):1060–1068.] [20] 杨金玲,李德成,张甘霖,等. 土壤颗粒粒径分布质量分形维数和体积分形维数的对比[J]. 土壤学报,2008,45(3):413–419. [YANG Jinling,LI Decheng,ZHANG Ganlin,et al.Comparison of mass and volume fractal dimensions of soil particle size distribution[J]. Acta Pedolocica Sinica,2008,45(3):413–419.] [21] 董智,王丽琴,杨文斌,等. 额济纳盆地戈壁沉积物粒度特征分析[J]. 中国水土保持科学,2013,11(1):32–38. [DONG Zhi,WANG Liqin,YANG Wenbin,et al.Grain size characteristics of gobi sediment in Ejina Basin[J]. Science of Soil and Water Conservation,2013,11(1):32–38.] [22] GAO G L,DING G D,ZHAO Y Y,et al.Characterization of soil particle size distribution with a fractal model in the desertified regions of northern China[J]. Acta Geophysica,2016,64(1):1–14. [23] 贾晓红,李新荣,李元寿. 干旱沙区植被恢复过程中土壤颗粒分形特征[J]. 地理研究,2007,26(3):518–525. [JIA Xiaohong,LI Xinrong,LI Yuanshou.Fractal dimension of soil particle size distribution during the process of vegetation restoration in arid sand dune area[J]. Geograpgical Research,2007,26(3):518–525.] [24] YU K Y,YAO X,DENG Y B,et al.Effects of stand age on soil respiration in Pinus massoniana plantations in the hilly red soil region of southern China[J]. Catena,2019,178(7):313–321. [25] HUPY J P.Influence of vegetation cover and crust type on wind-blown sediment in a semi-arid climate[J]. Journal of Arid Environments,2004,58(2):167–179. [26] 丁国栋. 风沙物理学[M]. 北京:中国林业出版社,2010:138–139. [DING Guodong.Aeolian physics[M]. Beijing:China?Forestry?Publishing?House. 2010:138–139.] [27] 刘昀东,高广磊,丁国栋,等. 风蚀荒漠化地区土壤质量演变研究进展[J]. 南京林业大学学报(自然科学版),2017,41(5):161–168. [LIU Yundong,GAO Guanglei,DING Guodong,et al.Soil quality in wind erosion desertified regions:A review[J]. Journal of Nanjing Forestry University (Natural Sciences Edition),2017,41(5):161–168.] [28] 胡云锋,刘纪远,庄大方,等. 不同土地利用/土地覆盖下土壤粒径分布的分维特征[J]. 土壤学报,2005,42(2):336–339. [HU Yunfeng,LIU Jiyuan,ZHUANG Dafang,et al.Fractal dimension of soil particle size distribution under different land use /land coverage[J]. Acta Pedologica Sinica,2005,42(2):336–339.] [29] 韩广,张桂芳,杨文斌. 呼伦贝尔沙地沙丘砂来源的定量分析——逐步判别分析(SDA)在粒度分析方面的应用[J]. 地理学报,2004,59(2):189–196. [HAN Guang,ZHANG Guifang,YANG Wenbin.A quantitative analysis for the provenance of dune sand in the Hulun Buir Sandy Land:Application of stepwise discriminant analysis to the granulometric data[J]. Acta Geographica Sinica,2004,59(2):189–196.] |