SEISMOLOGY AND GEOLOGY ›› 2017, Vol. 39 ›› Issue (6): 1316-1335.DOI: 10.3969/j.issn.0253-4967.2017.06.015
XU Wei1, LIU Zhi-cheng1, YUAN Zhao-de1, GAO Zhan-wu1, YANG Yuan-yuan2
Received:
2017-01-05
Revised:
2017-09-26
Online:
2017-12-20
Published:
2018-01-23
徐伟1, 刘志成1, 袁兆德1, 高战武1, 杨源源2
通讯作者:
高战武,高级工程师,E-mail:515214334@qq.com
作者简介:
徐伟,男,1986年生,2011年毕业于中国地震局地壳应力研究所,获硕士学位,现主要从事活动构造、构造地貌、第四纪地貌研究,电话:13426220213,E-mail:xwazhy@163.com。
基金资助:
CLC Number:
XU Wei, LIU Zhi-cheng, YUAN Zhao-de, GAO Zhan-wu, YANG Yuan-yuan. RIVER GEOMORPHIC PARAMETERS OF THE HUASHAN PIEDMONT AND THEIR TECTONIC IMPLICATIONS[J]. SEISMOLOGY AND GEOLOGY, 2017, 39(6): 1316-1335.
徐伟, 刘志成, 袁兆德, 高战武, 杨源源. 华山山前河流地貌参数及其构造意义[J]. 地震地质, 2017, 39(6): 1316-1335.
Add to citation manager EndNote|Ris|BibTeX
URL: https://www.dzdz.ac.cn/EN/10.3969/j.issn.0253-4967.2017.06.015
常直杨, 王建, 白世彪, 等. 2014. 基于DEM的白龙江流域构造活动定量分析[J]. 第四纪研究, 34(2):292-301.CHANG Zhi-yang, WANG Jian, BAI Shi-biao, et al. 2014. Appraisal of active tectonic in Bailongjiang Basin based on DEM data[J]. Quaternary Sciences, 34(2):292-301(in Chinese). 常直杨, 王建, 白世彪, 等. 2015. 白龙江流域河流纵剖面与基岩侵蚀模型特征[J]. 山地学报, 33(2):183-190.CHANG Zhi-yang, WANG Jian, BAI Shi-biao, et al. 2015. Morpho-tectonic Analysis of the Bailongjiang Drainage Basin[J]. Mountain Research, 33(2):183-190(in Chinese). 陈麒光, 邵兆刚, 韩建恩, 等. 2006. 基于ASTER-GDEM数据的羊卓雍错地区构造地貌分析[J]. 地质力学学报, 20(3):304-316.CHEN Qi-guang, SHAO Zhao-gang, HAN Jian-en, et al. 2006. Analysis of geomorphologic characteristics of the Yamzho Yumco region based on ASTER-GDEM[J]. Journal of Geomechanics, 20(3):304-316(in Chinese). 陈彦杰, 宋国城, 陈昭男. 2006. 非均衡山脉的河流水力侵蚀模型[J]. 科学通报, 51(7):865-869.CHEN Yan-jie, SONG Guo-cheng, CHEN Zhao-nan. 2006. Stream-power incision model in non-steady-state mountain ranges:An empirical approach[J]. Chinese Science Bulletin, 51(22):2789-2794. 程谦恭. 1988. 华山北麓断层崖与大地震重复周期分析[J]. 西安地质学院报, 10(4):53-64.CHENG Qian-gong. 1988. An analysis of fault scarps on north Huashan mountain front and the recurrence intervals of large earthquakes[J]. Journal of Xi'an College of Geology, 10(4):53-64(in Chinese). 杜建军, 黎敦朋, 马寅生, 等. 2013. 18.7万年前的高速远程古滑坡:来自陕西华县莲花寺滑坡体上覆黄土光释光(OSL)测年的证据[J]. 第四纪研究, 33(5):1005-1015.DU Jian-jun, LI Dun-peng, MA Yin-sheng, et al. 2013. The high-speed and long-distance ancient landslides before 187ka:The evidence from the OSL dating of the loess overlying the landslide body of Lianhuasi landslides in Huaxian, Shaanxi Province, China[J]. Quaternary Sciences, 33(5):1005-1015(in Chinese). 韩恒悦, 贺明静, 李永善. 1987. 渭河盆地东部地区的活断层[J]. 地震地质, 9(2):85-90.HAN Heng-yue, HE Ming-jing, LI Yong-shan. 1987. The active faults in the eastern of the Weihe Basin[J]. Seismology and Geology, 9(2):85-90(in Chinese). 何祥丽, 张绪教, 何泽新. 2014. 基于构造地貌参数的新构造运动研究进展与思考[J]. 现代地质, 28(1):119-130.HE Xiang-li, ZHANG Xu-jiao, HE Ze-xin. 2014. Neotectonics research based on tectonic geomorphologic parameters:progress and discussion[J]. Geoscience, 28(1):119-130(in Chinese). 李利波, 徐刚, 胡建民, 等. 2012. 基于DEM渭河上游流域的活动构造量化分析[J]. 第四纪研究, 32(5):866-879.LI Li-bo, XU Gang, HU Jian-min, et al. 2012. Quantitative analysis of relative active tectonics of the upstream region of Weihe river based on DEM[J]. Quaternary Sciences, 32(5):866-879(in Chinese). 李祥根, 冉勇康. 1983. 华山北坡及渭南塬前活断层[J]. 华北地震科学, 1(2):10-19.LI Xiang-gen, RAN Yong-kang. 1983. Active faults in the north slope of Huashan Mountain and the front of the Weinan tableland[J]. North China Earthquake Sciences, 1(2):10-19(in Chinese). 李小强, 王军, 熊仁伟, 等. 2016. 六盘山地区河道陡峭指数对隆升速率差异的响应[J]. 第四纪研究, 36(2):443-452.LI Xiao-qiang, WANG Jun, XIONG Ren-wei, et al. 2016. The response of the change channel steepness index to the difference of uplift rate in the Liupanshan Mountain area[J]. Quaternary Sciences, 36(2):443-452(in Chinese). 李永善. 1992. 西安地裂及渭河盆地活断层研究[M]. 北京:地震出版社.LI Yong-shan. 1992. Research on ground fissures in Xi'an region and active faults in Weihe Basin[M]. Seismological Press, Bejing(in Chinese). 李昭淑, 崔鹏. 2007. 1556年华县大地震的次生灾害[J]. 山地学报, 25(4):425-430.LI Zhao-shu, CUI Peng. 2007. The Secondary Disasters of Great Huaxian Earthquake in 1556[J]. Journal of Mountain Science, 25(4):425-430(in Chinese). 刘少毅. 2007. 1 ︰ 5万DEM质量评估方法研究. 郑州:中国人民解放军信息工程大学。LIU Shao-yi. 2007. The researches on quality evaluation methods of 1 ︰ 50 000 DEM. The PLA Information Engineering University, Zhengzhou(in Chinese). 万景林, 李齐, 王瑜. 2000. 华山岩体中、新生代抬升的裂变径迹证据[J]. 地震地质, 22(1):53-58. doi:10.3969/j.issn.0253-4967.2000.01.007.WAN Jing-lin, LI Qi, WANG Yu. 2000. The fission track evidence of Huashan batholith uplifting in Mesozoic-Cenozoic[J]. Seismology and Geology, 22(1):53-58(in Chinese). 王斌, 郑洪波, 王平, 等. 2013. 渭河盆地新生代地层与沉积演化研究:现状和问题[J]. 地球科学进展, 28(10):1126-1135.WANG Bin, ZHENG Hong-bo, WANG Ping, et al. 2013. The Cenozoic strata and depositional evolution of Weihe Basin:Progresses and problems[J]. Advances in Earth Science, 28(10):1126-1135(in Chinese). 王乃瑞, 韩志勇, 李徐生, 等. 2015. 河流纵剖面陡峭指数对庐山构造抬升的指示[J]. 地理学报, 70(9):1516-1525.WANG Nai-rui, HAN Zhi-yong, LI Xu-sheng, et al. 2015. Tectonic uplift of Mt. Lushan indicated by the steepness indices of the river longitudinal profiles[J]. Acta Geographica Sinica, 70(9):1516-1525(in Chinese). 吴中海, 吴珍汉, 万景林, 等. 2003. 华山新生代隆升-剥蚀历史的裂变径迹热年代学分析[J]. 地质科技情报, 22(3):27-32.WU Zhong-hai, WU Zhen-han, WAN Jing-lin, et al. 2003. Cenezoic uplift and denudation history of Huashan mountains:evidence from fission track thermos-chronology of Huashan granite[J]. Geological Science and Technology Information, 22(3):27-32(in Chinese). 夏勇. 2007. 渭河盆地新生代沉积特征及与构造的关系. 西安:长安大学.XIA Yong. 2007. The sedimentary characteristic of Cenozoic in Weihe Basin and its research with tectonics. Chang'an University, Xi'an(in Chinese). 徐伟, 杨源源, 袁兆德, 等. 2017. 华山山前断裂断错地貌及晚第四纪活动性[J]. 地震地质, 39(3):587-604. doi:10.3969/j.issn.0253-4967.2017.03.011.XU Wei, YANG Yuan-yuan, YUAN Zhao-de, et al. 2017. Late Quaternary faulted landforms and fault activity of the Huashan piedmont fault[J]. Seismology and Geology, 39(3):587-604(in Chinese). 徐岳仁, 何宏林, 邓起东, 等. 2013. 山西霍山山脉河流地貌定量参数及其构造意义[J]. 第四纪研究, 33(4):746-759.XU Yue-ren, HE Hong-lin, DENG Qi-dong, et al. 2013. Quantitative river geomorphic parameters surrounding Mts. Huoshan, Shanxi Province and their tectonic implications[J]. Quaternary Sciences, 33(4):746-759(in Chinese). 杨源源, 高战武, 徐伟. 2012. 华山山前断裂中段晚第四纪活动的地貌表现及响应[J]. 震灾防御技术, 7(4):335-347.YANG Yuan-yuan, GAO Zhan-wu, XU Wei. 2012. Geomorphic expression and response of the activity along the middle section of Huashan front fault in the late quaternary period[J]. Technology for Earthquake Disaster Prevention, 7(4):335-347(in Chinese). 尹功明, 卢演俦, 赵华, 等. 2001. 华山新生代构造抬升[J]. 科学通报, 46(13):1121-1123.YIN Gong-ming, LU Yan-chou, ZHAO hua, et al. 2001. The tectonic uplift of the Huashan in the Cenozoic[J]. Chinese Science Bulletin, 46(19):1665-1668. 原廷宏, 冯希杰. 2010. 一五五六年华县特大地震[M]. 北京:地震出版社:1-120.YUAN Ting-hong, FENG Xi-jie. 2010. The 1556 Great Huaxian Earthquake[M]. Seismological Publishing House, Beijing:1-120(in Chinese). 张安良, 米丰收, 种瑾. 1989. 1556年陕西华县大地震形变遗迹及华山山前断裂古地震研究[J]. 地震地质, 11(3):73-81, 100.ZHANG An-liang, MI Feng-shou, CHONG Jin. 1989. Deformation relics of the 1556 Huaxian(Shaanxi, China)great earthquake and the study of palaeoseismicity on the frontal fault zone of the Huashan Mts[J]. Seismology and Geology, 11(3):73-81, 100(in Chinese). 张会平, 杨农, 刘少峰, 等. 2006. 数字高程模型(DEM)在构造地貌研究中的应用新进展[J]. 地质通报, 25(6):660-669.ZHANG Hui-ping, YANG Nong, LIU Shao-feng, et al. 2006. Recent progress in the DEM-based tectonogeomorphic study[J]. Geological Bulletin of China, 25(6):660-669(in Chinese). Alipoor R, Poorkermani M, Zare M, et al. 2011. Active tectonic assessment around Rudbar Lorestan dam site, High Zagros Belt(SW of Iran)[J]. Geomorphology, 128(1-2):1-14. Bagha N, Arian M, Ghorashi M, et al. 2014. Evaluation of relative tectonic activity in the Tehran Basin, central Alborz, northern Iran[J]. Geomorphology, 213:66-87. Castillo M, Muñoz-Salinas E, Ferrari L. 2014 Response of a landscape to tectonics using channel steepness indices(ksn)and OSL:A case of study from the Jalisco Block, Western Mexico[J]. Geomorphology, 221:204-214. Dehbozorgi M, Pourkermani M, Arian M, et al. 2010. Quantitative analysis of relative tectonic activity in the Sarvestan area, central Zagros, Iran[J]. Geomorphology, 121(3-4):329-341. Flint J J. 1974. Stream gradient as a function of order, magnitude, and discharge[J]. Water Resources Research, 10(5):969-973. Font M, Amorese D, Lagarde J L. 2010. DEM and GIS analysis of the stream gradient index to evaluate effects of tectonics:The Normandy intraplate area(NW France)[J]. Geomorphology, 119(3-4):172-180. Hack J T. 1973. Stream-profile analysis and stream-gradient index[J]. Journal of Research of the U.S. Geological Survey, 1(4):421-429. Haghipour N, Burg J P. 2014. Geomorphological analysis of the drainage system on the growing Makran accretionary wedge[J]. Geomorphology, 29:111-132. Hamdouni R E, Irigaray C, Fernández T, et al. 2008. Assessment of relative active tectonics, southwest border of the Sierra Nevada(southern Spain)[J]. Geomorphology, 96(1-2):150-173. Howard A D, Kerby G. 1983. Channel changes in badlands[J]. GSA Bulletin, 94(6):739-752. Keller E A, Printer N. 2002. Active tectonic:Earthquakes, Uplift, and Landscape[M]. New Jersey:Prentice Hall, Inc. Kirby E, Whipple K X. 2001. Quantifying differential rock-uplift rates via stream profile analysis[J]. Geology, 29(5):415-418. Kirby E, Whipple K X, Tang W, et al. 2003. Distribution of active rock uplift along the eastern margin of the Tibetan plateau:Inferences from bedrock channel longitudinal profiles[J]. Journal of Geophysical Research:Solid Earth, 108(B4):2217. Kothyari G C, Rastogi B K, Morthekai P, et al. 2016. Active segmentation assessment of the tectonically active South Wagad Fault in Kachchh, Western Peninsular India[J]. Geomorphology, 253:491-507. Li D P, Du J J, Ma Y S, et al. 2015. Active faults and dip slip rates along the northern margins of the Huashan Mountain and Weinan loess tableland in the southeastern Weihe Graben, Central China[J]. Journal of Asian Earth Sciences, 114:266-278. Ohmori H, Saito K. 1993. Morphological development of longitudinal profiles of rivers in Japan and Taiwan[J]. Bulletin of the Department of Geography, University of Tokyo, 25:29-41. Pablo G S, Goy J L, Zazo C, et al. 2003. Fault-generated mountain fronts in southeast Spain:geomorphologic assessment of tectonic and seismic activity[J]. Geomorphology, 50(1-3):203-225. Rao G, Lin A M, Yan B. 2015. Paleoseismic study on active normal faults in the southeastern Weihe Graben, Central China[J]. Journal of Asian Earth Sciences, 114:212-225. Rao G, Lin A M, Yan B, et al. 2014. Tectonic activity and structural features of active intracontinental normal faults in the Weihe Graben, central China[J]. Tectonophysics, 636:270-285. Rebai N, Achour H, Chaabouni R, et al. 2013. DEM and GIS analysis of sub-watersheds to evaluate relative tectonic activity. A case study of the North-south axis(Central Tunisia)[J]. Earth Science Informatics, 6(4):187-198. Snyder N P, Whipple K X, Tucker G E, et al. 2000. Landscape response to tectonic forcing:Digital elevation model analysis of stream profiles in the Mendocino triple junction region, northern California[J]. Geological Society of America Bulletin, 112(8):1250-1263. Strahler A N. 1952. Hypsometric(area-altitude)analysis of erosional topography[J]. GSA Bulletin, 63(11):1117-1142. Wang J M. 1987. The Fenwei rift and its recent periodic activity[J]. Tectonophysics, 133(3-4):257-275. Whipple K X. 2004. Bedrock rivers and the geomorphology of active orogens[J]. Annual Review of Earth and Planetary Sciences, 32(1):151-185. Whipple K X, Tucker G E. 1999. Dynamics of the stream-power river incision model:Implications for height limits of mountain ranges, landscape response timescales, and research needs[J]. Journal of Geophysical Research:Solid Earth, 104(B8):17661-17674. Zhang Y Q, Ma Y S, Yang N, et al. 2003. Cenozoic extensional stress evolution in North China[J]. Journal of Geodynamics, 36(5):591-613. |
[1] | ZHANG Wen-liang, LI Ying, LIU Zhao-fei, HU Le, LU Chang, CHEN Zhi, HAN Xiao-kun. SPATIAL DISTRIBUTION CHARACTERISTICS OF SOIL GAS HE CONCENTRATION IN THE EASTERN LIUPANSHAN FAULT ZONE AND ITS RELATIONSHIP WITH TECTONIC ACTIVITY [J]. SEISMOLOGY AND GEOLOGY, 2023, 45(3): 753-771. |
[2] | ZHU Zhi-guo, ZHU Yi-qing, WANG Dong-zhen, HUSAN Irxat. COMPREHENSIVE ANALYSIS OF GRAVITY AND CRUSTAL DEFORMATION OF JIASHI MS6.4 EARTHQUAKE IN 2020 [J]. SEISMOLOGY AND GEOLOGY, 2023, 45(1): 269-285. |
[3] | LI Zhao, FU Bi-hong. QUANTITATIVE ANALYSES OF GEOMORPHOLOGIC FEATURES IN RESPONSE TO LATE QUATERNARY TECTONIC ACTI-VITIES ALONG THE MAQIN-MAQU SEGMENT, EAST KUNLUN FAULT ZONE [J]. SEISMOLOGY AND GEOLOGY, 2022, 44(6): 1421-1447. |
[4] | WEN Xiang, ZHOU Bin, SHI Shui-ping, QIN Jian, LI Jia-ning, HE Yan, YAN Chun-heng, LUO Yuan-peng. COMPREHENSIVE ANALYSIS OF RECENT GRAVITY AND CRUSTAL DEFORMATION IN NORTHWESTERN GUANGXI [J]. SEISMOLOGY AND GEOLOGY, 2019, 41(4): 927-943. |
[5] | XIONG Cheng, XIE Zu-jun, ZHENG Yong, XIONG Xiong, AI San-xi, XIE Ren-xian. RAYLEIGH WAVE TOMOGRAPHY IN THE CRUST AND UPPER MANTLE OF THE DABIE-TANLU OROGENIC ZONE [J]. SEISMOLOGY AND GEOLOGY, 2019, 41(1): 1-20. |
[6] | XU Yue-ren, ZHANG Wei-heng, LI Wen-qiao, HE Hong-lin, TIAN Qin-jian. DISTRIBUTION CHARACTERISTICS OF THE AD 1556 HUAXIAN EARTHQUAKE TRIGGERED DISASTERS AND ITS IMPLICATIONS [J]. SEISMOLOGY AND GEOLOGY, 2018, 40(4): 721-737. |
[7] | GAO Shuai-po, RAN Yong-kang, WU Fu-yao, XU Liang-xin, WANG Hu, LIANG Ming-jian. USING UAV PHOTOGRAMMETRY TECHNOLOGY TO EXTRACT INFORMATION OF TECTONIC ACTIVITY OF COMPLEX ALLUVIAL FAN——A CASE STUDY OF AN ALLUVIAL FAN IN THE SOUTHERN MARGIN OF BARKOL BASIN [J]. SEISMOLOGY AND GEOLOGY, 2017, 39(4): 793-804. |
[8] | ZHU Yi-qing, LIANG Wei-feng, HAO Ming, ZHAO Ling-qiang, HAO Qing-hua, ZHANG Guo-qing, LIU Lian. THE COMPREHENSIVE ANALYSIS AND RESEARCH OF RECENT GRAVITY AND CRUSTAL DEFORMATION IN NORTHEASTERN EDGE OF THE TIBETAN PLATEAU [J]. SEISMOLOGY AND GEOLOGY, 2017, 39(4): 768-780. |
[9] | XU Wei, YANG Yuan-yuan, YUAN Zhao-de, LIU Zhi-cheng, GAO Zhan-wu. LATE QUATERNARY FAULTED LANDFORMS AND FAULT ACTIVITY OF THE HUASHAN PIEDMONT FAULT [J]. SEISMOLOGY AND GEOLOGY, 2017, 39(3): 587-604. |
[10] | SHI Feng, HE Hong-lin, Alexander L Densmore, BI Li-si, WEI Zhan-yu. RESEARCH ON THE RELATIONSHIP BETWEEN FRACTAL FACTORS AND TECTONIC ACTIVITY——A CASE STUDY OF SOUTHWESTERN YUNNAN BLOCK [J]. SEISMOLOGY AND GEOLOGY, 2016, 38(4): 862-873. |
[11] | SU Qi, YUAN Dao-yang, XIE Hong. GEOMORPHIC FEATURES OF THE HEIHE RIVER DRAINAGE BASIN IN WESTERN QILIAN SHAN-HEXI CORRIDOR AND ITS TECTONIC IMPLICATIONS [J]. SEISMOLOGY AND GEOLOGY, 2016, 38(3): 560-581. |
[12] | SU Peng, TIAN Qin-jian, LIANG Peng, LI Wen-qiao, WANG Lin. USING DEFORMED FLUVIALTERRACES OF THE QINGYIJIANG RIVER TO STUDY THE TECTONIC ACTIVITY OF THE SOUTHERN SEGMENT OF LONGMENSHAN FAULT ZONE [J]. SEISMOLOGY AND GEOLOGY, 2016, 38(3): 523-545. |
[13] | ZHU Yi-qing, FU Guang-yu, LIANG Wei-feng, XU Yun-ma. EARTHQUAKE PREDICTIONS: SPATIAL-TEMPORAL GRAVITY CHANGES BEFORE THE LUDIAN MS6.5, LUSHAN MS7.0 AND WENCHUAN MS8.0 EARTHQUAKES [J]. SEISMOLOGY AND GEOLOGY, 2015, 37(1): 319-330. |
[14] | CHEN Shun-yun, MA Jin, LIU Pei-xun, LIU Li-qiang, HU Xiao-yan, REN Ya-qiong. EXPLORING THE CURRENT TECTONIC ACTIVITY WITH SATELLITE REMOTE SENSING THERMAL INFORMATION:A CASE OF THE WENCHUAN EARTHQUAKE [J]. SEISMOLOGY AND GEOLOGY, 2014, 36(3): 775-793. |
[15] | ZHU Yi-qing, ZHAO Yun-feng, LI Tie-ming, LIANG Wei-feng, XU Yun-ma, GUO Shu-song. DYNAMIC VARIATION OF GRAVITY FIELD BEFORE AND AFTER THE MINXIAN-ZHANGXIAN MS6.6 EARTHQUAKE ON JULY 22, 2013, GANSU, CHINA [J]. SEISMOLOGY AND GEOLOGY, 2014, 36(3): 667-676. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||