• The Core Journal of China
  • Included in Chinese Science Citation Database
  • The Key Magazine of China technology
  • Frontrunner 5000—Top Articles in Outstanding S&T Journals of China
  • Included in Scopus
  • Included in Chemical Abstracts (CA)
  • Included in Russian Abstract Journal (AJ)
Advanced Search
HE Bi-zhu, JIAO Cun-li, CAI Zhi-hui, ZHANG Miao, GAO Ai-rong. A new interpretation of the high aeromagnetic anomaly zone in central Tarim Basin[J]. GEOLOGY IN CHINA, 2011, 38(4): 961-969.
Citation: HE Bi-zhu, JIAO Cun-li, CAI Zhi-hui, ZHANG Miao, GAO Ai-rong. A new interpretation of the high aeromagnetic anomaly zone in central Tarim Basin[J]. GEOLOGY IN CHINA, 2011, 38(4): 961-969.

A new interpretation of the high aeromagnetic anomaly zone in central Tarim Basin

More Information
  • Abstract:The ΔTa high aeromagnetic anomaly zone lying in the central part of Tarim Basin has been a focus in discussing the composition and structure of Tarim basin and its basement. Based on a comprehensive analysis of borehole and seismic data, the authors have found that there exist large-scale seismic reflection anomaly bodies in Middle-Upper Ordovician strata of Manjiaer depression, which are related closely to the Central High Aeromagnetic Anomalies Zone (CHAAZ) and constituted mainly by eight nearly EW-trending seismic reflection anomaly bodies. The stratigraphic and seismic facies analysis shows that these seismic anomaly bodies should be igneous rocks. The anomaly bodies have vertical downward channels in seismic profiles, which are related to faults and magmatic activity channels. The CHAAZ of the basin is a product of multi episodes tectonic activities, suggesting the development of Manjiaer depression in an extensional tectonic setting in Sinian and Late Ordovician.
  • Related Articles

    [1]DING Jianhua, ZHANG Yong, LI Lixing, LI Houmin. Metallogenic geological characteristics and titanium resources potential in China[J]. GEOLOGY IN CHINA, 2020, 47(3): 627-644. DOI: 10.12029/gc20200305
    [2]GAO Lan, WANG Deng-hong, XIONG Xiao-yun, QI Shuai-jun, YI Cheng-wei, JIA Shao-hui. Minerogenetic characteristics and resource potential analysis of bauxite in China[J]. GEOLOGY IN CHINA, 2015, 42(4): 853-863. DOI: 10.12029/gc20150405
    [3]YIN Jiang-ning, XIAO Ke-yan. Resources potential analysis and metallogenic prospect of Mn resources in China[J]. GEOLOGY IN CHINA, 2014, 41(5): 1424-1437. DOI: 10.12029/gc20140502
    [4]Ding Jian-hua, Chen Zheng-hai, Yang Guo-jun, Deng Fan, Lou De-bo. Metallogeny and resource potential of magnesite deposits in China[J]. GEOLOGY IN CHINA, 2013, 40(6): 1712-1711. DOI: 10.12029/gc20130602
    [5]DING Jian-hua, YANG Yi-heng, DENG Fan. Resource potential and metallogenic prognosis of antimony deposits in China[J]. GEOLOGY IN CHINA, 2013, 40(3): 846-858. DOI: 10.12029/gc20130316
    [6]NIU Cui-yi, WAND Ke-qiang, LI Shao-ru. Prediction and evaluation of gold resources in the Yunnan-Guizhou-Guangxi metallogenic area[J]. GEOLOGY IN CHINA, 2011, 38(6): 1576-1583. DOI: 10.12029/gc20110617
    [7]ZHANG Yi-jun, XU Yi-ming, LEI Ze-heng. The prediction of total tin resources in the central part of Nanling region[J]. GEOLOGY IN CHINA, 2009, 36(2): 436-443. DOI: 10.12029/gc20090217
    [8]CHEN Yong, CHEN Jian-ping, ZHAO Jie, DONG Qing-ji. Quantitative prediction and evaluation of gold resources in Chifeng[J]. GEOLOGY IN CHINA, 2008, 35(3): 551-556. DOI: 10.12029/gc20080320
    [9]CHENG Zhi-zhong, XIE Xue-jing. Influence of variation in element background values in rocks on metallogenic prognosis in geochemical maps[J]. GEOLOGY IN CHINA, 2006, 33(2): 411-417. DOI: 10.12029/gc20060220
    [10]LI Tong-guo, LI Wen-sheng, LIU Jian-hong, ZHAO Yan-qing, BEI Yun-lai. Geochemical prognosis method of mineral deposits: A case study of the geochemical block in Gansu[J]. GEOLOGY IN CHINA, 2003, 30(2): 192-198. DOI: 10.12029/gc20030213
  • Cited by

    Periodical cited type(11)

    1. 李海滨,钟德君,朱娘金,赖金娣,谢思璐,吴林芳,黄晓晶,梅启明. 3种森林植被演替后的土壤养分变化——以广东惠东莲花山白盆珠省级自然保护区为例. 林业科技通讯. 2024(05): 38-41 .
    2. 张修杰,程小勇. 鸿图特长隧道高压涌水成因分析. 岩土工程技术. 2024(06): 725-731 .
    3. 张涛,潘家永,夏菲,黄宏业,蔡松锋,张文高,李勇,钟福军,谭双,陈正乐. 桂北摩天岭西段高堤地区脆韧性变形特征与铀成矿关系. 大地构造与成矿学. 2024(06): 1240-1257 .
    4. 徐力峰. 广东省深汕合作区赤石镇地热资源特征及成因. 四川有色金属. 2024(04): 1-4 .
    5. 王平,王贤能,赖安锋. 莲花山断裂带汕尾段韧性剪切带浅层滑塌特征与成因机制. 热带地理. 2023(01): 88-102 .
    6. 张光明. 五台山地区太古界韧性剪切带地层特征研究. 铁道勘察. 2023(01): 47-52 .
    7. Jun WANG,Liming WANG,Shuang YAN,Yong MA,Diankui XU. Mineralization of the Lianhuashan Sn-polymetallic deposits associated with dynamic metamorphism: Constraints from cassiterite geochemistry and U-Pb geochronology. Science China(Earth Sciences). 2023(07): 1664-1677 .
    8. 王军,汪礼明,严爽,马勇,许典葵. 粤东莲花山成矿带锡多金属矿床的动力变质成矿作用——来自锡石元素地球化学和U-Pb年代学的约束. 中国科学:地球科学. 2023(07): 1679-1693 .
    9. 王军,黄嘉坚,鄢圣武,汪礼明,熊子良,钱龙兵,徐日邓,卜安,朱沛云. 粤东莲花山断裂带水系沉积物地球化学特征及锡多金属找矿预测. 地球化学. 2023(03): 331-343 .
    10. 许典葵,朱沛云,汪礼明,卜安,廖静,颜伦明,柯琳. 广东莲花山锡铜多金属矿整装勘查区成矿地质特征及找矿潜力分析. 矿产勘查. 2023(12): 2328-2340 .
    11. 周先平,程小勇,傅鹤林,安鹏涛. 深大断裂构造带对隧道地下水环境的控制作用. 地下空间与工程学报. 2022(S2): 903-909 .

    Other cited types(1)

Catalog

    Article views (3241) PDF downloads (3166) Cited by(12)

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return