[1] 朱 诚,于世永,刘晓宁.分形方法在庐山第四纪沉积环境研究中的应用[J].地理研究,1996,15(3):64-69.
ZHU Cheng,YU Shi-yong,LIU Xiao-ning.The App-lication of Fractal Method to Studying Quaternary Sedimental Environment in Lushan Area[J].Geographical Research,1996,15(3):64-69.
[2] 周秉根.黄山第四纪泥砾沉积物分形结构特征与沉积环境分析[J].地理科学,1999,19(1):92-94.
ZHOU Bing-gen.Analysis on the Fractal Structure Features and Sedimentary Environment of the Boulder Clay of the Quaternary in Mt. Huangshan[J].Scientia Geographica Sinica,1999,19(1):92-94.
[3] 秦耀辰,刘 凯.分形理论在地理学中的应用研究进展[J].地理科学进展,2003,22(4):426-436.
QIN Yao-chen,LIU Kai.Advancement of Applied Studies of Fractal Theory in Geography[J].Progress in Geography,2003,22(4):426-436.
[4] BURROUGH P A.Fractal Dimensions of Landscapes and Other Environmental Data[J].Nature,1981,294:240-242.
[5] 柏春广,穆桂金,王 建.艾比湖湖相沉积物粒度的分维特征及环境意义[J].干旱区地理,2002,25(4):336-341.
BAI Chun-guang,MU Gui-jin,WANG Jian.Grain-size Fractal Dimensions Characteristics of Lacustrine Sediments of Aiby Lake and the Environmental Significance[J].Arid Land Geography,2002,25(4):336-341.
[6] 徐利强,徐 芳,周涛发.巢湖沉积物粒度特征及其沉积学意义[J].地理科学,2015,35(10):1318-1324.
XU Li-qiang,XU Fang,ZHOU Tao-fa.Grain-size Features of Lacustrine Sediments from Chaohu Lake and Its Sedimentary Implications[J].Scientia Geographica Sinica,2015,35(10):1318-1324.
[7] 贺 拿,曾 梅,陈宁生,等.砾石土分形特征及其与泥石流启动关系试验[J].山地学报,2016,34(1):63-70.
HE Na,ZENG Mei,CHEN Ning-sheng,et al.Experiment on Fractal Feature of Gravelly Soil and Relationship Between Fractal Dimension and Debris Flow Initiation[J].Mountain Research,2016,34(1):63-70.
[8] 卜祥航,唐 川,屈永平,等.四川省石棉县“7·4”特大泥石流堆积物粒度分布及结构分维[J].防灾减灾工程学报,2017,37(6):1016-1022.
BU Xiang-hang,TANG Chuan,QU Yong-ping,et al.Grain-size Distribution and Structural Dimension of “7·4” Giant Debris-flow Deposition in Shimian County,Sichuan Province[J].Journal of Disaster Prevention and Mitigation Engineering,2017,37(6):1016-1022.
[9] SUN Z X,JIANG Y Y,WANG Q B,et al.A Fractal Evaluation of Particle Size Distributions in an Eolian Loess-paleosol Sequence and the Linkage with Pedogenesis[J].Catena,2018,165:80-91.
[10] 黄文敏,伍永秋,潘美慧,等.西藏安多剖面沉积物粒度特征及环境意义[J].中国沙漠,2014,34(2):349-357.
HUANG Wen-min,WU Yong-qiu,PAN Mei-hui,et al.Grain Size Characteristics and Its Environmental Significance of the Amdo Profile in Tibet,China[J].Journal of Desert Research,2014,34(2):349-357.
[11] 安福元,马海州,樊启顺,等.粒度在沉积物物源判别中的运用[J].盐湖研究,2012,20(1):50-55.
AN Fu-yuan,MA Hai-zhou,FAN Qi-shun,et al.The Application of Grain Size Analysis in Sediments Pro-venance Discriminance[J].Journal of Salt Lake Research,2012,20(1):50-55.
[12] 刘东生.黄土与环境[M].北京:科学出版社,1985.
LIU Dong-sheng.Loess and Environment[M].Beijing:Science Press,1985.
[13] 侯春梅,刘小伟,李 明,等.甘肃黄土的粒度分维特征及意义[J].地质科学,2005,40(4):539-546.
HOU Chun-mei,LIU Xiao-wei,LI Ming,et al.Grain-size Fractal Dimension of the Loess in Gansu and Its Significance[J].Chinese Journal of Geology,2005,40(4):539-546.
[14] 刘连文,陈 骏,季峻峰,等.陕西洛川黄土的粒度分维值及其意义[J].高校地质学报,1999,59(4):412-416.
LIU Lian-wen,CHEN Jun,JI Jun-feng,et al.Grain-size Fractal Dimension of Loess-paleosol and Its Significance[J].Geological Journal of China Univer-sities,1999,59(4):412-416.
[15] 汪品先.气候与环境演变中的非线性关系:以末次冰期为例[J].第四纪研究,1991(2):97-103.
WANG Pin-xian.Nonlinear Interactions in Climatic and Environmental Evolution:Examples from the Last Deglaciation[J].Quaternary Sciences,1991(2):97-103.
[16] 艾南山,李后强.第四纪研究的非线性科学方法[J].第四纪研究,1993(2):109-119.
AI Nan-shan,LI Hou-qiang.Nonlinear Scientific Methods for Quaternary Studies[J].Quaternary Sciences,1993(2):109-119.
[17] 黎武标,李志文,王志刚,等.中国暖温带海岸风尘沉积序列的研究现状与展望[J].中国沙漠,2019,39(6):56-65.
LI Wu-biao,LI Zhi-wen,WANG Zhi-gang,et al.Overview and Prospect of Research on Eolian Deposite Sequence Along the Warm Temperate Coast of China[J].Journal of Desert Research,2019,39(6):56-65.
[18] 李 杰,李日辉,杨士雄,等.渤海西部海域晚更新世以来的孢粉组合及古环境变化[J].海洋地质与第四纪地质,2018,38(2):115-128.
LI Jie,LI Ri-hui,YANG Shi-xiong,et al.Pollen Spore Assemblages and Induced Palaeoenvironmental Changes in the Western Bohai Sea Since Late Pleistocene[J].Marine Geology and Quaternary Geology,2018,38(2):115-128.
[19] ZHANG W G,DONG C Y,YE L P,et al.Magnetic Properties of Coastal Loess on the Midao Islands,Northern China:Implications for Provenance and Weathering Intensity[J].Palaeogeography,Palaeoclimatology,Palaeoecology,2012,333/334:160-167.
[20] 李志文,李保生,孙 丽,等.柳夼剖面末次冰期层段Rb/Sr的不稳定变化及其揭示的气候特征[J].热带地理,2015,35(4):592-600.
LI Zhi-wen,LI Bao-sheng,SUN Li,et al.Climatic Characteristics Indicated by the Variations of Rb/Sr in the Liukuang Section During the Last Glacial Period[J].Tropical Geography,2015,35(4):592-600.
[21] 徐树建,李 强,付信花,等.胶莱盆地北部风尘堆积物光释光年代序列研究[J].干旱区资源与环境,2015,29(5):48-52.
XU Shu-jian,LI Qiang,FU Xin-hua,et al.Study on the OSL Chronosequence of Eolian Deposits in the Northern of Jiaolai Basin[J].Journal of Arid Land Resources and Environment,2015,29(5):48-52.
[22] XU S J,KONG F B,JIA G J,et al.An Integrated OSL Chronology,Sedimentology and Geochemical Approach to Loess Deposits from Tuoji Island,Shandong Province:Implications for the Late Quaternary Paleoenvironment in East China[J].Aeolian Research,2018,31:105-116.
[23] 张存勇.连云港近岸海域沉积物粒度的分形特性[J].海洋湖沼通报,2015(3):170-176.
ZHANG Cun-yong.Fractal Characteristics of Grain Size Distribution in Lianyungang Coastal Waters[J].Transactions of Oceanology and Limnology,2015(3):170-176.
[24] 何华春,丁海燕,张振克,等.淮河中下游洪泽湖湖泊沉积物粒度特征及其沉积环境意义[J].地理科学,2005,25(5):590-596.
HE Hua-chun,DING Hai-yan,ZHANG Zhen-ke,et al.Grain-size Characteristics and Their Environmental Significance of Hongze Lake Sediments[J].Scientia Geographica Sinica,2005,25(5):590-596.
[25] GROOTE P M,STULVER M,WHLTET J W C,et al.Comparison of Oxygen Isotope Records from the GISP2 and GRIP Greenland Ice Cores[J].Nature,1993,366:552-554.
[26] 蔡爱智.论芝罘连岛沙坝的形成[J].海洋与湖沼,1978,9(1):1-13.
CAI Ai-zhi.On the Formation of Zhifu Tombolo[J].Oceanologia et Limnologia Sinica,1978,9(1):1-13.
[27] 黎武标,李志文,王志刚,等.粒度端元揭示的芝罘剖面末次间冰期—末次冰期气候环境变化特征[J].海洋地质与第四纪地质,2019,39(2):177-187.
LI Wu-biao,LI Zhi-wen,WANG Zhi-gang,et al.Climatic Environment Changes During the Last Interglacial-glacial Cycle in Zhifu Loess Section:Revealed by Grain-size End-member Algorithm[J].Marine Geology and Quaternary Geology,2019,39(2):177-187.
[28] FOLK R L,WARD W C.Brazos River Bar:A Study in the Signification of Grain Size Parameters[J].Journal of Sedimentary Petrology,1957,27(1):3-27.
[29] 孙仲秀,王秋兵.中国辽宁典型风成黄土分维区间选取研究[J].土壤,2018,50(3):593-597.
SUN Zhong-xiu,WANG Qiu-bing.Selecting Fragmentation Fractal Scaling Range for Typical Eolian Loess-paleosol in Liaoning,China[J].Soils,2018,50(3):593-597.
[30] 张一辉,徐利强,吴礼彬,等.南海琼东陆架海洋沉积物粒度分形特征及其影响因素[J].地球科学与环境学报,2018,40(6):739-745.
ZHANG Yi-hui,XU Li-qiang,WU Li-bin,et al.Fractal Characteristics of Marine Sediments from the East Continental Shelf of Hainan Island,South China Sea and Their Influence Factors[J].Journal of Earth Sciences and Environment,2018,40(6):739-745.
[31] 姚姣转,刘廷玺,童 新,等.科尔沁沙地沙丘-草甸相间地土壤颗粒的分形特征[J].中国沙漠,2016,36(2):433-440.
YAO Jiao-zhuan,LIU Ting-xi,TONG Xin,et al.Soil Particle Fractal Dimension in the Dune-meadow Ecotone of the Horqin Sandy Land[J].Journal of Desert Research,2016,36(2):433-440.
[32] 王 斌,曾 琳,赵万苍,等.对黄土高原风尘搬运动力与沉积控制因素的新认识[J].中国沙漠,2017,37(2):237-246.
WANG Bin,ZENG Lin,ZHAO Wan-cang,et al.A New Progress of the Transport Dynamics and the Accumulation Factors of the Aeolian Dust in Chinese Loess Plateau[J].Journal of Deserts Research,2017,37(2):237-246.
[33] XU S J,DING X C,YU L P,et al.Palaeoclimatic Implications of Aeolian Sediments on the Miaodao Islands,Bohai Sea,East China,Based on OSL Dating and Proxies[J].Aeolian Research,2015,19:259-266.
[34] SAHU B K.Depositional Mechanisms from the Size Analysis of Clastic Sediments[J].Journal of Sedimentary Petrology,1964,34(1):73-83.
[35] 柏春广,王 建.一种新的粒度指标:沉积物粒度分维值及其环境意义[J].沉积学报,2003,21(2):234-239.
BAI Chun-guang,WANG Jian.A New Grain-size Index:Grain-size Fractal Dimension of Sediment and Its Environmental Significance[J].Acta Sedimentologica Sinica,2003,21(2):234-239.
[36] 陈冬梅,穆桂金.不同沉积环境下沉积物的粒度分形特征的对比研究[J].干旱区地理,2004,27(1):47-51.
CHEN Dong-mei,MU Gui-jin.Comparising Study of Grain-size Fractal Dimensions Characteristics Between Several Sediments with Different Forming Environments[J].Arid Land Geography,2004,27(1):47-51.
[37] 张 威,郭善莉,李永化,等.辽东半岛黄土粒度分维特征及其环境意义[J].地理科学进展,2010,29(1):79-86.
ZHANG Wei,GUO Shan-li,LI Yong-hua,et al.Grain-size Fractal Dimension of Loess and Its Environmental Significance in the Peninsula of East Liaoning[J].Progress in Geography,2010,29(1):79-86.
[38] 董光荣,王贵勇,李孝泽,等.末次间冰期以来我国东部沙区的古季风变迁[J].中国科学:D辑,地球科学,1996,26(5):437-444.
DONG Guang-rong,WANG Gui-yong,LI Xiao-ze,et al.Changes of Paleomonsoon in Sandy Areas of Eastern China Since the Last Interglacial Period[J].Science in China:Series D,Earth Sciences,1996,26(5):437-444.
[39] 苍树溪,赵松令,张宏才,等.渤海西岸中更新世以来古生态、古气候、古地理[J].古生物学报,1979,18(6):580-591.
CANG Shu-xi,ZHAO Song-ling,ZHANG Hong-cai,et al.Middle Pleistocene Paleoecology,Paleoclimatology and Paleogeography of the Western Coast of Bohai Gulf[J].Acta Palaeontologica Sinica,1979,18(6):580-591.
[40] 管清玉,潘保田,高红山,等.粘粒含量:夏季风的良好替代指标[J].干旱区资源与环境,2004,18(8):17-19.
GUAN Qing-yu,PAN Bao-tian,GAO Hong-shan,et al.A Good Proxy of East Asian Monsoon:Fine Grain Size[J].Journal of Arid Land Resources and Environment,2004,18(8):17-19.
[41] NIL I,ULYSSES S N,HELGA(KIKKI)F K,et al.Evidence for Regional Cooling,Frontal Advances,and East Greenland Ice Sheet Changes During the Demise of the Last Interglacial[J].Quaternary Science Reviews,2016,150:184-199.
[42] LI B S,ZHANG D D,WEN X H,et al.A Multi-cycle Climatic Fluctuation Record of the Last Interglacial Period:Typical Stratigraphic Section in the Salawusu River Valley on the Ordos Plateau,China[J].Acta Geologica Sinica(English Edition),2005,79(3):398-404.
[43] AN Z S,PORTER S C.Millennial-scale Climatic Oscillations During the Last Interglaciation in Central China[J].Geology,1997,25(7):603-606.
[44] 曹家欣,李培英,石 宁.山东庙岛群岛的黄土[J].中国科学:B辑,1987,17(10):1117-1122.
CAO Jia-xin,LI Pei-ying,SHI Ning.Loess of Miao-dao Islands in Shandong Province[J].Science in China:Series B,1987,17(10):1117-1122.