Study on Landscape Characteristics and Development Evolution of Typical Danxia Landforms in Yan'an
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摘要: 本文是在延安典型丹霞地貌景观特征分析的基础上, 采用宇宙成因核素10Be和26Al技术获得暴露年龄和侵蚀速率, 研究“黄土覆盖型沟谷丹霞”地貌景观的演化历史。研究结果显示: 延安典型丹霞地貌的类型有狭缝式、石蘑菇式、天生桥式, 其中狭缝式丹霞的景观特征为“窄狭、多弯、韵律、多彩”, 同时也是典型的“黄土覆盖型沟谷丹霞”, 石蘑菇式丹霞造型奇特, 天生桥式丹霞地貌整体规模宏大, 这两者发育都严格受控于垂直节理和外力作用的侵蚀; 运用宇宙成因核素10Be和26Al技术, 计算获得志丹猫巷狭缝式丹霞地貌的暴露年代有两期, 分别为(0.75±18)~(0.83±0.14) ka和(1.14±13)~(1.29±0.30) ka, 安塞王家湾石蘑菇式丹霞地貌暴露年代为(1.76±0.45)~(1.77±0.15) ka, 这两处丹霞地貌暴露地表的年代都在全新世(Qh), 前者晚于后者, 地貌较年青; 运用宇宙成因核素10Be-26Al计算获得两处典型丹霞地貌侵蚀速率为(39±3.3)~(104±24.4) cm·ka-1, 与目前国内外学者研究地表和基岩得到的侵蚀速率对比, 这两处典型丹霞地貌的侵蚀速率较大, 结果还有待进一步研究; 延安典型丹霞地貌景观发育的演化始于白垩纪红层的堆积, 大致都经历了四个演化阶段, 初步揭示了地质构造、上覆黄土盖层以及流水等多种因素共同控制和影响延安典型丹霞地貌的形成, 演化阶段总体都处于青年晚期。
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关键词:
- 延安 /
- 典型丹霞地貌景观特征 /
- 宇宙成因核素10Be和26Al /
- 暴露年龄 /
- 侵蚀速率 /
- 发育演化
Abstract: In this study, the landscape characteristics of typical Danxia landforms in Yan'an were analyzed using cosmogenic nuclide 10Be and 26Al techniques to obtain exposure ages and erosion rates to investigate the evolutionary history of the "loess-covered valley Danxia" landscape.Our results showed that typical types of Danxia landform in Yan'an include slit type, stone mushroom type, and natural bridge type, and the landscape characteristics of the slit-type Danxia are "narrow, multi curved, rhythmic, and colorful".Moreover, the typical"loess-covered valley Danxia" was categorized as a stone mushroom-type Danxia landform, and was characterized by a unique and beautiful shape.The natural bridge-type Danxia landform is large in overall scale.Both of these landforms are formed by vertical joints and erosion by external forces.Using cosmogenic nuclide 10Be and 26Al techniques, we calculated that the exposure age of Zhidan Maoxiang slit Danxia landscape formed in two stages, (0.75±18)~(0.83±0.14) ka and (1.14±13)~(1.29±0.30) ka.The exposure age of the Wangjiawan mushroom-type Danxia landform in Ansai is (1.76±0.45)~(1.77±0.15) ka.These two Danxia landforms formed in the Holocene(Qh), the former developing after the latter, and the terrain is relatively young.Using cosmogenic nuclide 10Be-26Al techniques, the erosion rate of the two typical Danxia landforms was determined to be(39±3.3)~(104±24.4) cm·ka-1.Compared with the current erosion rate obtained by domestic and foreign scholars studying the surface and bedrock, the erosion rate of these two typical Danxia landforms is relatively high, and the results need further examination.The landscape evolution of Danxia landforms in Yan'an began with the accumulation of red beds during the Cretaceous.The landforms have gone through roughly four evolution stages, initially revealing that geological structure, overlying loess cover, water, and other factors jointly control and affect the formation of typical Danxia landforms in Yan'an, and the evolution stage is generally in the late early stage. -
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陈安泽, 2007.丹霞地貌若干问题探讨[J].经济地理, 27(S1):10-15.
陈清敏, 张丽, 王喆, 等, 2018.汉中大佛洞宇宙成因核素26Al/10Be埋藏年龄[J].地球环境学报, 9(1): 38-44.
丁华, 段丰浩, 陈姗姗, 等, 2023.陕北甘泉丹霞峡谷群地质遗迹景观特征与保护利用[J].地球科学与环境学报, 45(2):362-372.
郭福生, 陈留勤, 严兆彬, 等, 2020.丹霞地貌定义、分类及丹霞作用研究[J].地质学报, 94(2): 361-374.
洪增林, 2023.陕西红层与丹霞地貌[M].西安: 西安地图出版社.
黄费新, 李岩, 程杨, 2019.原地生成宇宙成因核素测年技术思考(一): 稳态侵蚀等式解出的ε是当前地表侵蚀速率[J].地质与勘探, 55(1): 145-151.
黄进, 2006.丹霞地貌区地壳上升速率公式改进及其意义[J].经济地理, 26(S1): 8-13.
江新胜, 潘忠习, 2005.中国白垩纪沙漠及气候[M].北京: 地质出版社.
潘志新, 任舫, 陈留勤, 等, 2021.陕北丹霞地貌特征及国内外对比研究[J].地理科学, 41(6): 1069-1078.
彭华, 2011.中国南方湿润区红层地貌及相关问题探讨[J].地理研究, 30(10): 1739-1752.
彭华, 潘志新, 闫罗彬, 等, 2013.国内外红层与丹霞地貌研究述评[J].地理学报, 68(9): 1170-1181.
彭小华, 吴昊, 李兴文, 等, 2021.延安地区丹霞地貌类型及发育机制研究[J].干旱区地理, 44(2): 418-426.
齐德利, 陈致均, 王随继, 等, 2015.崆峒山丹霞地貌地层归属演化及地貌年龄[J].山地学报, 33(4): 408-415.
齐德利, 于蓉, 张忍顺, 等, 2005.中国丹霞地貌空间格局[J].地理学报, (1): 41-52.
陕西省地质调查院, 2017.中国区域地质志(陕西志)[M].北京:地质出版社.
王凤之, 陈留勤, 2018.风成砂沉积和古气候研究[J].沉积与特提斯地质, 38(1): 71-81.
吴昊, 李益朝, 王秦伟, 等, 2018.陕北延安丹霞地貌类型特征及演化模式分析[J].矿产勘查, 9(9): 1812-1819.
杨望暾, 2016.鄂尔多斯盆地西南缘丹霞地貌形成机制研究[D].西安: 长安大学.
杨颖瑜, 1993.关于丹霞地貌与丹霞旅游地貌定义的研究[J].旅游学刊, (5): 48-51.
张丽, 武振坤, 李明, 等, 2018.10Be和26Al揭示的合黎山西南部侵蚀速率初步研究[J].地球环境学报, 9(1): 45-53.
朱诚, 彭华, 欧阳杰, 等, 2009.浙江方岩丹霞地貌发育的年代、成因与特色研究[J].地理科学, 29(2): 229-237.
BALCO G, STONE J O, LIFTON N A, et al., 2008.A complete and easily accessible means of calculating surface exposure ages or erosion rates from 10Be and 26Al measurements[J].Quaternary Geochronology, 3(3): 174-195.
BROWN E T, BROOK E J, RAISBECK G M, 1992.Effective attenuation lengths of cosmic rays producing 10Be and 26Al in quartz: Implication for exposure age dating[J].Geophysical Research Letters, 19(4): 369-372.
CHEN Anze, 2007.Discussion of some problems of Danxia landform[J].Economic Geography, 27(Sl): 10-15(in Chinese with English abstract).
CHEN Liuqin, MIGOŃ P, GUO Fusheng, et al., 2022.Cavernous Weathering in Aeolian Sandstones: An Example from the Yongningshan Hill of the Loess Plateau, Northwest China[J].Acta Geologica Sinica(English Edition), 96(5): 1764-1777.
CHEN Qingmin, ZHANG Li, WANG Zhe, et al., 2018.Cosmogenic nuclides 26Al/10Be burial ages of Dafo Cave in Hanzhong, Shaanxi, China[J].Journal of Earth Environment, 9(1): 38-44(in Chinese with English abstract).
CHMELEFF J, BLANCKENBURG F V, KOSSERT K, et al., 2010.Determination of the 10Be half-life by multicollector ICP-MS and liquid scintillation counting[J].Nuclear Instruments & Methods in Physics Research B, 268(2): 192-199.
DAVIS W M, 1899.The geographical cycle[J].Geographical Journal, 14: 481-504.
DING Hua, DUAN Fenghao, CHEN Shanshan, et al., 2023.Characteristics, Protection and Utilization of the Canyons of Danxia Landscape Geoheritages in Ganquan Area of the Northern Shaanxi, China[J].Journal of Earth Sciences and Environment, 45(2): 362-372(in Chinese with English abstract).
DUNAI T J, 2010.Cosmogenic Nuclides: Principles, Concepts and Applications in the Earth Surface Sciences[M].Cambridge:Cambridge University Press.
GOSSE J C, PHILLIPS F M, 2001.Terrestrial in situ cosmogenic nuclides: theory and application[J].Quaternary Science Reviews, 20(14): 1475-1560.
GUO Fusheng, CHEN Liuqin, LIU Fujun, et al., 2019.Characteristics of DanxiaLandscapes in Northern Shaanxi Province and Comparison with South China[J].Acta Geologica Sinica(English Edition), 93(z2): 464-465.
GUO Fusheng, CHEN Liuqin, YAN Zhaobin, et al., 2020.Definition, classification, and danxianization of Danxia landscapes[J].Acta Geologica Sinica, 94(2): 361-374(in Chinese with English abstract).
HONG Zenglin, 2023.Shaanxi Red Layer and Danxia Landform[M].Xi'an: Xi'an Map Publishing House(in Chinese).
HUANG Feixin, LI Yan, CHEN Yang, 2019.Consideration on in-situ produced cosmogenic nuclide dating techniques(1): ε solved by steady-state erosion equation is the current surface erosion rate[J].Geology and Exploration, 55(1): 145-151(in Chinese with English abstract).
HUANG Jin, 2006.Improvement and significance of the crustal uplift rate formula in the Danxia landform area[J].Economic Geography, 26(S1): 8-13(in Chinese with English abstract).
HUININK H P, PELL K, 2004.Simulating the growth of tafoni[J].Earth Surface Process and Landforms, 29: (10): 1225-1233.
JIANG Xinsheng, PAN Zhongxi, 2005.The Cretaceous Desert and Climate in China[M].Beijing: Geological Publishing House(in Chinese).
KORSCHINEK G, BERGMAIER A, FAESTERMANN T, et al., 2010.A new value for the half-life of 10Be by Heavy-Ion Elastic Recoil Detection and liquid scintillation counting[J].Nuclear Instruments & Methods in Physics Research, 268(2):187-191.
LAL D, 1991.Cosmic ray labeling of erosion surfaces: in situ nuclide production rates and erosion models[J].Earth and Planetary Science Letters, 104(2): 424-439.
LAL D, PETERS B, 1967.Comic ray produced radioactivity on earth[C]//FLUEGGE S, SITTE K.Engyclopedia of Physics, Cosmic Rays(Ⅱ).Berlin: Springer Verlag: 551-612
NISHIIZUMI K, 2004.Preparation of 26Al AMS standards[J].Nuclear Instruments & Methods in Physics Research Section B, 223-224: 388-392.
PAN Zhixin, REN Fang, CHEN Liuqin, et al., 2021.Characteristics of Danxia landform in the northern Shaanxi and a comparison with other Danxia areas in and outside China[J].Scientia Geographica Sinica, 41(6): 1069-1078(in Chinese with English abstract).
PENG Hua, 2011.Perspectives on the red beds landforms in humid area of southern China and some related problems[J].Geographical Research, 30(10): 1739-1752(in Chinese with English abstract).
PENG Hua, PAN Zhixin, YAN Luobin, et al., 2013.A review of the research on red beds and Danxia landform[J].Acta Geographica Sinica, 68(9): 1170-1181(in Chinese with English abstract).
PENG Xiaohua, WU Hao, LI Xingwen, et al., 2021.Danxia landform types and development mechanism in Yan’an City[J].Arid Land Geography, 44(2): 418-426(in Chinese with English abstract).
QI Deli, CHEN Zhijun, WANG Suiji, et al., 2015.Stratigraphic Classification, Evolution Stage and Geomorphologic Age of Kongtongshan Danxia Landform in Pingliang, Gansu, China[J].Mountain Research, 33(4): 408-415(in Chinese with English abstract).
QI Deli, YU Rong, ZHANG Renshun, et al., 2005.On the spatial pattern of Danxia landform in China[J].Acta Geographica Sinica, 60(1): 41-52(in Chinese with English abstract).
Shaanxi Provincial Geological Surney Institute, 2017.China Regional Geological Records (Shaanxi Records)[M].Beijing:Geological Publishing House(in Chinese).
SMITH B J, MCALLISTER J J, 1986.Observation on the occurrence and origins of salt weathering phenomena near Lake Megadi, southern Kenya[J].Zeitschrift für Geomorphologie Supplementary Issues, 30(4): 445-460.
WANG Fengzhi, CHEN Liuqin, 2018.Aeolian deposits and paleoclimatology: an overview[J].Sedimentray Geology and Tethyan Geology, 38(1): 71-81(in Chinese with English abstract).
WU Hao, LI Yizhao, WANG Qinwei, et al., 2018.Characteristics of Danxia landform types and their evolution model in Yanan, Northern Shaanxi[J].Mineral Exploration, 9(9): 1812-1819(in Chinese with English abstract).
YANG Wangtun, 2016.Study on Genesis of Danxia Landforms in the Southwestren margin of Ordos basin[D].Xi’an: Chang’an University(in Chinese with English abstract).
YANG Yingyu, 1993.Study on the definition of Danxia landform and Danxia tourism landform[J].Tourism Tribune, (5):48-51(in Chinese with English abstract).
ZHANG Li, WU Zhenkun, LI Ming, et al., 2018.Erosion rate in the southwest of Helishan from in-situ cosmogenic nuclides 10Be and 26Al[J].Journal of Earth Environment, 9(1): 45-53(in Chinese with English abstract).
ZHU Cheng, PENG Hua, OUYANG Jie, et al., 2009.Age Genesis and Characteristics of Danxia Landform of Fangyan in Zhejiang Province, China[J].Scientia Geographica Sinica, 29(2): 229-237(in Chinese with English abstract).
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