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    华北寒武、奥陶系灰岩潮汐韵律与地月轨道参数的演化

    周瑶琪 陈海云 冀国盛

    周瑶琪, 陈海云, 冀国盛, 2002. 华北寒武、奥陶系灰岩潮汐韵律与地月轨道参数的演化. 地球科学, 27(6): 671-675.
    引用本文: 周瑶琪, 陈海云, 冀国盛, 2002. 华北寒武、奥陶系灰岩潮汐韵律与地月轨道参数的演化. 地球科学, 27(6): 671-675.
    ZHOU Yao-qi, CHEN Hai-yun, JI Guo-sheng, 2002. Tidal Rhythmites in Cambrian-Ordovician, North China and Evolution of Orbit Parameters. Earth Science, 27(6): 671-675.
    Citation: ZHOU Yao-qi, CHEN Hai-yun, JI Guo-sheng, 2002. Tidal Rhythmites in Cambrian-Ordovician, North China and Evolution of Orbit Parameters. Earth Science, 27(6): 671-675.

    华北寒武、奥陶系灰岩潮汐韵律与地月轨道参数的演化

    基金项目: 

    国家“九五”攀登计划 SSER-IV-I

    教育部骨干教师计划 K000110A

    详细信息
      作者简介:

      周瑶琪(1963-), 男, 教授, 主要从事地球动力学和地球化学的研究与教学

    • 中图分类号: P53

    Tidal Rhythmites in Cambrian-Ordovician, North China and Evolution of Orbit Parameters

    • 摘要: 通过对采自华北地区寒武、奥陶系灰岩样品进行磨光、涂漆等处理, 在放大镜下读取小层厚度数据, 进行傅立叶频谱分析, 识别出相对应于日、双周、月的潮汐周期的记录, 得到寒武、奥陶纪每个太阴月有2 9.9, 2 9.8d;参考生物化石研究成果, 对寒武、奥陶纪地月轨道参数进行计算, 得到寒武、奥陶纪每年分别有384.5, 381.7d, 每天分别有2 2.798, 2 2.96 3h;寒武、奥陶纪地月距离分别为5 8.76, 5 8.96个地球半径及月球后退速率分别为4.2 5, 4.18cm/a等地月轨道参数.研究结果表明从寒武纪到奥陶纪, 具有地球旋转速度变慢、地月距离增大、月球后退速率减小等变化趋势.

       

    • 图  1  研究剖面位置

      Fig.  1.  Location of studied sections

      图  2  秦皇岛奥陶系亮甲山组剖面[11]

      Fig.  2.  Geological section of Liangjiashan Formation, Qinhuangdao[11]

      图  3  亮甲山组灰岩小层傅氏谱

      a.灰岩小层厚度; b.傅立叶变换功率谱

      Fig.  3.  Fourier spectrum of little layers in limestone sample, Liangjiashan Formation

      图  4  馒头组灰岩小层傅氏谱

      a.灰岩小层厚度; b.傅立叶变换功率谱

      Fig.  4.  Fourier spectrum of little layers in limestone sample, Mantou Formation

      图  5  太阴月数随地质年代变化趋势

      Fig.  5.  Annual number of lunar month changed with geological age

      表  1  临朐灰岩小层厚度

      Table  1.   Statistic layer scales in limestone samples of Mantou Formation, Linqu

      表  2  寒武纪、奥陶纪、现代地月轨道参数

      Table  2.   Orbital parameters of the Earth-Moon system in Cambrian, Ordovician and modern times

    • [1] Visser M J. Neap-spring cycles reflected in Holocene subtidal large-scale bedform deposits: a preliminary note[J]. Geology, 1980, 8: 945-950.
      [2] Allen J R L. Lower Cretaceous tides revealed by cross-bedding with mud drapes[J]. Nature, 1981, 284: 579-581.
      [3] Allen J R L. Palaeotidal speed and ranges estimated from crossbedding sets with mud drapes[J]. Nature, 1981, 293: 63- 81.
      [4] Yang C S. The estimation of palaeo-hydrodynamic processes from subtidal deposits using time series analysis methods[J]. Sedimentology, 1985, 32: 41 -57. doi: 10.1111/j.1365-3091.1985.tb00491.x
      [5] Kreisa R D, Moiola R J. Sigmodal tidal bundle and other tidalgenerated sedimentary structures of the Curtis Formation[J]. Utah Vull Geol Soc Am, 1986, 97: 381-387.
      [6] Smith D G. Tidal bundles and mud couplets in the McMurray Formation, Northeastern Alberta, Canada[J]. Bull of Canadian Petroleum Geology, 1988, 36: 216 -219.
      [7] Kuecher G J, Woodland B G, Broasthust F M. Evidence of deposition from individual tides and of tides and of tidal cycles from the Grancis Creek shale (host rock to the Mazon Creek Biota)[J]. Sedimentary Geology, 1990, 71: 213 -230.
      [8] Williams G E. Sunspot periods in the late Precambrian glacial climate and solar-planetary relation[J]. Nature, 1981, 291: 624 -628.
      [9] Williams G E. Precambrian tidal sedimentary cudles and Earth's paleorotation[M]. [s. L. ]: EOS Trans Am Geophys, 1989.
      [10] 刘群. 华北早寒武世岩相古地理与膏盐沉积[M]. 北京: 地质出版社, 1994.

      LIU Q. Lithofacies paleogeography and gypsum sedimentation in Early Cambrian era, North China[M]. Beijing: Geological Publishing House, 1994.
      [11] 西北大学地质学系. 秦皇岛地区地质实习指导书[M]. 西安: 西北大学出版社, 1999.

      Geology Department of Northwest University. Geological instructor of Qinhuangdao[M]. Xi'an: Northwest University Press, 1999.
      [12] 河北省地质矿产局. 河北省岩石地层[M]. 武汉: 中国地质大学出版社, 1996.

      Geological Mineral Resources Bureau of Hebei Province. Rock and stratum of Hebei Province[M]. Wuhan: China University of Geosciences Press, 1996.
      [13] Williams G E. Late Precambrian tidal rhythmites in South Australia and the history of the Earth's rotation[J]. Journal of the Geological Society, 1989, 146: 91 -111.
      [14] Thurman H V. Introductory oceanography[M]. New York: Macmillian Publishing Company, 1991.242 -268.
      [15] James C G, Zahnle W K J. Lunar nodal tide and distance to the moon during the Precambrian[J]. Nature, 1986, 320: 600 -602.
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    出版历程
    • 收稿日期:  2002-08-12
    • 刊出日期:  2002-11-25

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