2022 Vol. 31, No. 4
Article Contents

QIAN Cheng, CUI Tian-ri, TANG Zhen, JIANG Bin, ZHANG Chao, CHEN Hui-jun, WU Tong. COVERED DEPTH OF SUPERFICIAL MAGMA CHAMBER ON THE NORTHERN SLOPE OF TIANCHI VOLCANO IN CHANGBAI MOUNTAIN BASED ON BOREHOLE TEMPERATURE[J]. Geology and Resources, 2022, 31(4): 553-562. doi: 10.13686/j.cnki.dzyzy.2022.04.013
Citation: QIAN Cheng, CUI Tian-ri, TANG Zhen, JIANG Bin, ZHANG Chao, CHEN Hui-jun, WU Tong. COVERED DEPTH OF SUPERFICIAL MAGMA CHAMBER ON THE NORTHERN SLOPE OF TIANCHI VOLCANO IN CHANGBAI MOUNTAIN BASED ON BOREHOLE TEMPERATURE[J]. Geology and Resources, 2022, 31(4): 553-562. doi: 10.13686/j.cnki.dzyzy.2022.04.013

COVERED DEPTH OF SUPERFICIAL MAGMA CHAMBER ON THE NORTHERN SLOPE OF TIANCHI VOLCANO IN CHANGBAI MOUNTAIN BASED ON BOREHOLE TEMPERATURE

  • The crustal thermal structure in Changbaishan volcanic area has not been established yet and there are differences about the covered depth of superficial magma chamber in Tianchi Volcano by means of geophysical exploration. The covered depth of superficial magma chamber on the northern slope of Tianchi Volcano is estimated through the temperature measurement of CZK07 borehole, data evaluation and geothermal gradient calculation, combined with the temperature data of Holocene magma chamber. The CZK07 borehole is located right above the superficial magma chamber speculated by geophysical exploration, close to the historic crater of volcanic eruption, with relatively high and stable temperature (102.5-106.8℃) at the depth about 610 m. The continuous temperature measurement data indicates that the borehole temperature shows a positive correlation with depth, with the geothermal gradient ranging from 134 to 178℃/km (averagely 153℃/km), roughly representing the geothermal gradient of the overlying crust of superficial magma chamber. Based on previous temperature studies of superficial magma chamber, the covered depth of superficial magma chamber on the northern slope of Tianchi Volcano is estimated to be 5.25-7.21 km below the surface of Tianchi Lake, which is similar to the inversion results of geophysical exploration.

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  • [1] 刘若新, 李继泰, 魏海泉, 等. 长白山天池火山——一座具潜在喷发危险的近代火山[J]. 地球物理学报, 1992, 35(5): 661-665. doi: 10.3321/j.issn:0001-5733.1992.05.016

    CrossRef Google Scholar

    Liu R X, Li J T, Wei H Q, et al. Volcano at Tianchi Lake, Changbaishan Mt. : A modern volcano with potential danger of eruption [J]. Acta Geophysica Sinica, 1992, 35(5): 661-665. doi: 10.3321/j.issn:0001-5733.1992.05.016

    CrossRef Google Scholar

    [2] 刘若新, 魏海泉, 李继泰. 长白山天池火山近代喷发[M]. 北京: 科学出版社, 1998: 1-157.

    Google Scholar

    Liu R X, Wei H Q, Li J T. Changbai Mountain Tianchi volcano eruption in modern times[M]. Beijing: Science Press, 1998: 1-157. (in Chinese)

    Google Scholar

    [3] 樊祺诚, 隋建立, 王团华, 等. 长白山天池火山粗面玄武岩的喷发历史与演化[J]. 岩石学报, 2006, 22(6): 1449-1457.

    Google Scholar

    Fan Q C, Sui J L, Wang T H, et al. Eruption history and magma evolution of the trachybasalt in the Tianchi volcano, Changbaishan[J]. Acta Petrologica Sinica, 2006, 22(6): 1449-1457.

    Google Scholar

    [4] 樊祺诚, 隋建立, 王团华, 等. 长白山火山活动历史、岩浆演化与喷发机制探讨[J]. 高校地质学报, 2007, 13(2): 175-190. doi: 10.3969/j.issn.1006-7493.2007.02.004

    CrossRef Google Scholar

    Fan Q C, Sui J L, Wang T H, et al. History of volcanic activity, magma evolution and eruptive mechanisms of the Changbai volcanic province[J]. Geological Journal of China Universities, 2007, 13(2): 175-190. doi: 10.3969/j.issn.1006-7493.2007.02.004

    CrossRef Google Scholar

    [5] 樊祺诚. 长白山火山的历史与演化[J]. 资源调查与环境, 2008, 29 (3): 196-203. doi: 10.3969/j.issn.1671-4814.2008.03.006

    CrossRef Google Scholar

    Fan Q C. History and evolution of Changbaishan volcano[J]. Resources Survey & Environment, 2008, 29(3): 196-203. doi: 10.3969/j.issn.1671-4814.2008.03.006

    CrossRef Google Scholar

    [6] 潘波, 樊祺诚, 许建东, 等. 长白山天池火山千年大喷发的岩浆过程[J]. 岩石学报, 2017, 33(1): 163-172.

    Google Scholar

    Pan B, Fan Q C, Xu J D, et al. Magmatic processes of the Millennium eruption at Changbiashan Tianchi volcano, China/North Korea[J]. Acta Petrologica Sinica, 2017, 33(1): 163-172.

    Google Scholar

    [7] 魏海泉. 长白山火山岩浆柱岩浆上升作用过程[J]. 地学前缘, 2010, 17(1): 11-23.

    Google Scholar

    Wei H Q. Magma up-moving process within the magma prism beneath the Changbaishan volcanoes[J]. Earth Science Frontiers, 2010, 17 (1): 11-23.

    Google Scholar

    [8] Hetland E A, Wu F T, Song J L. Crustal structure in the Changbaishan volcanic area, China, determined by modeling receiver functions[J]. Tectonophysics, 2004, 386(3/4): 157-175.

    Google Scholar

    [9] Xu J D, Liu G M, Wu J P, et al. Recent unrest of Changbaishan volcano, Northeast China: A precursor of a future eruption?[J]. Geophysical Research Letters, 2012, 39(16): L16305.

    Google Scholar

    [10] 仇根根, 裴发根, 方慧, 等. 长白山天池火山岩浆系统分析[J]. 地球物理学报, 2014, 57(10): 3466-3477. doi: 10.6038/cjg20141032

    CrossRef Google Scholar

    Qiu G G, Pei F G, Fang H, et al. Analysis of magma chamber at the Tianchi volcano area in Changbai Mountain[J]. Chinese Journal of Geophysics, 2014, 57(10): 3466-3477. doi: 10.6038/cjg20141032

    CrossRef Google Scholar

    [11] 段永红, 张先康, 刘志, 等. 长白山-镜泊湖火山区地壳结构接收函数研究[J]. 地球物理学报, 2005, 48(2): 352-358. doi: 10.3321/j.issn:0001-5733.2005.02.017

    CrossRef Google Scholar

    Duan Y H, Zhang X K, Liu Z, et al. A study on crustal structures of Changbaishan-Jingpohu volcanic area using receiver functions[J]. Chinese Journal of Geophysics, 2005, 48(2): 352-358. doi: 10.3321/j.issn:0001-5733.2005.02.017

    CrossRef Google Scholar

    [12] 刘志, 张先康, 王夫运, 等. 用地震走时反演计算长白山天池火山区二维地壳泊松比[J]. 地震学报, 2005, 27(3): 324-331. doi: 10.3321/j.issn:0253-3782.2005.03.011

    CrossRef Google Scholar

    Liu Z, Zhang X K, Wang F Y, et al. 2-D crustal Poisson's ratio from seismic travel time inversion in Changbaishan Tianchi volcanic region[J]. Acta Seismologica Sinica, 2005, 27(3): 324-331. doi: 10.3321/j.issn:0253-3782.2005.03.011

    CrossRef Google Scholar

    [13] 汤吉, 邓前辉, 赵国泽, 等. 长白山天池火山区电性结构和岩浆系统[J]. 地震地质, 2001, 23(2): 191-200.

    Google Scholar

    Tang J, Deng Q H, Zhao G Z, et al. Electric conductivity and magma chamber at the Tianchi volcano area in Changbaishan Mountain[J]. Seismology and Geology, 2001, 23(2): 191-200.

    Google Scholar

    [14] 汤吉, 赵国泽, 王继军, 等. 基于地下电性结构探讨中国东北活动火山形成机制[J]. 岩石学报, 2006, 22(6): 1503-1510.

    Google Scholar

    Tang J, Zhao G Z, Wang J J, et al. Study of the formation mechanism for volcanism in Northeast China based on deep electric structure[J]. Acta Petrologica Sinica, 2006, 22(6): 1503-1510.

    Google Scholar

    [15] 杨卓欣, 张先康, 赵金仁, 等. 长白山天池火山区三维地壳结构层析成像[J]. 地球物理学报, 2005, 48(1): 107-115.

    Google Scholar

    Yang Z X, Zhang X K, Zhao J R, et al. Tomographic imaging of 3-D crustal structure beneath Changbaishan-Tianchi volcano region[J]. Chinese Journal of Geophysics, 2005, 48(1): 107-115.

    Google Scholar

    [16] 张先康, 张成科, 赵金仁, 等. 长白山天池火山区岩浆系统深部结构的深地震测深研究[J]. 地震学报, 2002, 24(2): 135-143.

    Google Scholar

    Zhang X K, Zhang C K, Zhao J R, et al. Deep seismic sounding investigation into the deep structure of the magma system in Changbaishan-Tianchi volconic region[J]. Acta Seismologica Sinica, 2002, 24(2): 135-143.

    Google Scholar

    [17] 赵大鹏, 雷建设, 唐荣余. 中国东北长白山火山的起源: 地震层析成像证据[J]. 科学通报, 2004, 49(14): 1439-1446.

    Google Scholar

    Zhao D P, Lei J S, Tang R Y. Origin of the Changbai intraplate volcanism in Northeast China: Evidence from seismic tomography[J]. Chinese Science Bulletin, 2004, 49(13): 1401-1408.

    Google Scholar

    [18] 崔天日, 钱程, 江斌, 等. 长白山天池火山CZK07钻所揭示的火山地层层序和火山作用特征[J]. 地质学报, 2017, 91(11): 2409- 2422.

    Google Scholar

    Cui T R, Qian C, Jiang B, et al. Volcanic stratigraphic sequence and volcanism revealed by CZK07 drill core at Tianchi volcano, Changbai Mountain[J]. Acta Geologica Sinica, 2017, 91(11): 2409-2422.

    Google Scholar

    [19] 钱程, 崔天日, 江斌, 等. 长白山地区晚新生代火山地貌形态研究及其地质应用[J]. 第四纪研究, 2014, 34(2): 312-324.

    Google Scholar

    Qian C, Cui T R, Jiang B, et al. A study on the characteristics of Late Cenozoic volcanic terrain in Changbaishan Mountain and its geological application[J]. Quaternary Sciences, 2014, 34(2): 312- 324.

    Google Scholar

    [20] 张丽红, 刘永顺, 彭年, 等. 长白山火山区放射状水系分形特征研究[J]. 首都师范大学学报(自然科学版), 2011, 32(3): 83-88.

    Google Scholar

    Zhang L H, Liu Y S, Peng N, et al. Researches of fractal features of radial river system in the Changbaishan volcanic area[J]. Journal of Capital Normal University (Natural Science Edition), 2011, 32(3): 83-88.

    Google Scholar

    [21] Liu J Q, Han J T, Fyfe W S. Cenozoic episodic volcanism and continental rifting in Northeast China and possible link to Japan Sea development as revealed from K-Ar geochronology[J]. Tectonophysics, 2001, 339(3/4): 385-401.

    Google Scholar

    [22] Liu J Q, Chen S S, Guo Z F, et al. Geological background and geodynamic mechanism of Mt. Changbai volcanoes on the China- Korea border[J]. Lithos, 2015, 236-237: 46-73.

    Google Scholar

    [23] Wang Y, Li C F, Wei H Q, et al. Late Pliocene-recent tectonic setting for the Tianchi volcanic zone, Changbai Mountains, Northeast China[J]. Journal of Asian Earth Sciences, 2003, 21(10): 1159- 1170.

    Google Scholar

    [24] Zhang M L, Guo Z F, Cheng Z H, et al. Late Cenozoic intraplate volcanism in Changbai volcanic field, on the border of China and North Korea: Insights into deep subduction of the Pacific slab and intraplate volcanism[J]. Journal of the Geological Society, 2015, 172 (5): 648-663.

    Google Scholar

    [25] Zhang M L, Guo Z F, Liu J Q, et al. The intraplate Changbaishan volcanic field (China/North Korea): A review on eruptive history, magma genesis, geodynamic significance, recent dynamics and potential hazards[J]. Earth-Science Reviews, 2018, 187: 19-52.

    Google Scholar

    [26] Tang Y C, Obayashi M, Niu F L, et al. Changbaishan volcanism in Northeast China linked to subduction-induced mantle upwelling[J]. Nature Geoscience, 2014, 7(6): 470-475.

    Google Scholar

    [27] 郭文峰, 刘嘉麒, 郭正府. 长白山上新世以来玄武岩成分演变规律及其成因[J]. 岩石学报, 2014, 30(12): 3595-3611.

    Google Scholar

    Guo W F, Liu J Q, Guo Z F. Temporal variations and petrogenetic implications in Changbai basaltic rocks since the Pliocene[J]. Acta Petrologica Sinica, 2014, 30(12): 3595-3611.

    Google Scholar

    [28] 邵济安, 刘福田, 陈辉, 等. 大兴安岭-燕山晚中生代岩浆活动与俯冲作用关系[J]. 地质学报, 2001, 75(1): 56-63.

    Google Scholar

    Shao J A, Liu F T, Chen H, et al. Relationship between Mesozoic magmatism and subduction in Da Hinggan-Yanshan area[J]. Acta Geologica Sinica, 2001, 75(1): 56-63.

    Google Scholar

    [29] 胡亚轩, 王庆良, 崔笃信, 等. Mogi模型在长白山天池火山区的应用[J]. 地震地质, 2007, 29(1): 144-151.

    Google Scholar

    Hu Y X, Wang Q L, Cui D X, et al. Application of Mogi model at Changbaishan Tianchi volcano[J]. Seismology and Geology, 2007, 29 (1): 144-151.

    Google Scholar

    [30] 吴建平, 明跃红, 张恒荣, 等. 长白山天池火山区的震群活动研究[J]. 地球物理学报, 2007, 50(4): 1089-1096.

    Google Scholar

    Wu J P, Ming Y H, Zhang H R, et al. Earthquake swarm activity in Changbaishan Tianchi volcano[J]. Chinese Journal of Geophysics, 2007, 50(4): 1089-1096.

    Google Scholar

    [31] Castro J M, Dingwell D B. Rapid ascent of rhyolitic magma at Chaitén volcano, Chile[J]. Nature, 2009, 461(7265): 780-783.

    Google Scholar

    [32] Kyong-Song R, Hammond J O S, Chol-Nam K, et al. Evidence for partial melt in the crust beneath Mt. Paektu (Changbaishan), Democratic People's Republic of Korea and China[J]. Science Advances, 2016, 2(4): e1501513.

    Google Scholar

    [33] Jiang G Z, Hu S B, Cui T R, et al. Thermal structure beneath the Mt. Changbai volcanic area, northeastern Asia[J]. Journal of Geophysical Research: Solid Earth, 2021.

    Google Scholar

    [34] 上官志冠, 郑雅琴, 董继川. 长白山天池火山地热区逸出气体的物质来源[J]. 中国科学: D辑地球科学, 1997, 27(4): 318-324.

    Google Scholar

    Shangguan Z G, Zheng Y Q, Dong J C. Material sources of escaped gases from Tianchi volcanic geothermal area, Changbai Mountains[J]. Science in China Series D: Earth Sciences, 1997, 40(4): 390-397.

    Google Scholar

    [35] 李霓, 刘若新, 魏海泉, 等. 长白山天池火山近代喷发中气象站组熔岩-碎屑岩流研究[J]. 地质论评, 1999, 45(S1): 272-277.

    Google Scholar

    Li N, Liu R X, Wei H Q, et al. Study of modern erupted lava- pyroclastic flow of Qixiangzhan Formation of Tianchi volcano, Changbai Mountains[J]. Geological Review, 1999, 45(S1): 272- 277.

    Google Scholar

    [36] 潘波, 樊祺诚, 仲广培, 等. 长白山天池火山气象站期喷发类型研究[J]. 地震地质, 2013, 35(3): 542-552.

    Google Scholar

    Pan B, Fan Q C, Zhong G P, et al. A discussion on the type of the Qixiangzhan eruption of Changbaishan Tianchi volcano, Northeast China[J]. Seismology and Geology, 2013, 35(3): 542-552.

    Google Scholar

    [37] Yoshinobu A S, Okaya D A, Paterson S R. Modeling the thermal evolution of fault-controlled magma emplacement models: Implications for the solidification of granitoid plutons[J]. Journal of Structural Geology, 1998, 20(9/10): 1205-1218.

    Google Scholar

    [38] De Silva S L, Gregg P M. Thermomechanical feedbacks in magmatic systems: Implications for growth, longevity, and evolution of large caldera-forming magma reservoirs and their supereruptions[J]. Journal of Volcanology and Geothermal Research, 2014, 282: 77-91.

    Google Scholar

    [39] 刘强, 盘晓东, 魏海泉, 等. 长白山天池火山喷发序列研究[J]. 中国地震, 2008, 24(3): 235-246.

    Google Scholar

    Liu Q, Pan X D, Wei H Q, et al. A borehole study on the eruptive sequence from the Tianchi volcano, Changbai Mountain[J]. Earthquake Research in China, 2008, 24(3): 235-246.

    Google Scholar

    [40] 李霓, Métrich N, 樊祺诚. 长白山天池火山全新世3期浮岩长石斑晶中熔体包裹体高温热台实验研究[J]. 地震地质, 2007, 29(3): 459-469.

    Google Scholar

    Li N, Métrich N, Fan Q C. Heating stage experiments of melt inclusions in feldspars of pumice from three eruptions of Changbaishan Tianchi volcano in Holocene[J]. Seismology and Geology, 2007, 29 (3): 459-469.

    Google Scholar

    [41] 金伯禄, 张希友. 长白山火山地质研究[M]. 延吉: 东北朝鲜民族教育出版社, 1994: 1-223.

    Google Scholar

    Jin B L, Zhang X Y. Research on the volcanic geology in Mount Changbai[M]. Yanji: Northeast China Korean Nation Education Publishing House, 1994: 1-223. (in Chinese)

    Google Scholar

    [42] 许模, 王迪, 蒋良文, 等. 岩土体导热系数研究进展[J]. 地球科学与环境学报, 2011, 33(4): 421-427, 433.

    Google Scholar

    Xu M, Wang D, Jiang L W, et al. Review on thermal conductivity coefficient of rock and soil mass[J]. Journal of Earth Sciences and Environment, 2011, 33(4): 421-427, 433.

    Google Scholar

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