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NIE FengJun, JIANG MeiZhu, WU HeYong, LIU WenLong. Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei[J]. Acta Sedimentologica Sinica, 2002, 20(2): 255-260.
Citation: NIE FengJun, JIANG MeiZhu, WU HeYong, LIU WenLong. Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei[J]. Acta Sedimentologica Sinica, 2002, 20(2): 255-260.

Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei

  • Received Date: 2001-03-22
  • Rev Recd Date: 2001-07-11
  • Publish Date: 2002-04-10
  • Since the 1970~s, sedimentology has entered into a quantitative study era. The Europe an sedimentologist creatively did a lot of quantitative study on ancient ripple marks in the marine sediments in Alps and lacustrine sediments in Shedland of England in the 1980s. A series of mathematical formulae have been established. A number of physical parameters of sedimentary environments of Changchengian quartz sandstones A, B, and C in the Xuanhua area, northwest Hebei are estimated based on the mathematical formula in this study. The calculation results show the velocities of water particles of sedimentary environments from sandstones A via B to C becom smaller, then bigger; the motion periods for water particles become shorter, then longer; the water depths of environments become shallower, then deeper; the wave heights of waters become lower, then higher; the energy of waters becomes smaller, then larger. These estimations are in fair harmony with the observations in the field. The grain size analyses demonstrate the jumping population of sandstones dominated in sedimentary environments and the suspension population at 20~40% of the total grains. No tractive population is present in the analyzed samples. So,the grains are transport in the form of jumping and suspension. in shallower water bodies.
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    4. Homewood P,Allen P A.Wave-tide-and current-controlled sandbodies of Miocene Molasse,western Switzerland[J].Bull.Am.Ass.Petrol.Geol.,1981,65: 2 534~2 545

    5. Allen P A.Reconstruction of ancient sea conditions with an example from the Swiss Molasse[J].Mar.Geol.,1984,60: 455~473

    6. 王鸿祯等。中国古地理图集[M].北京:地图出版社,1985 [Wang Hongzhen,et al.Atlas of the palaeogeography of China[M].Beijing:Cartographic Publishing House,1985]

    7. 叶连俊。华北地台沉积建造[M].北京:地质出版社,1983[Ye Lianjun.Sedimentary Formation of the North China Platform[M].Beijing:Geological Publishing House,1983]

    8. 聂逢君。碎屑岩的物质成分、物质来源与大地构造关系[J].华东地质学院学报,1996,19(4):363~369 [Nie Fengiun.Relation of clastic materal and provenance to tectonics--analyses of Changchengian Changzhougou-Chuanlinggou Formations in Xuanlong in-land sea,west Hebei[J].Journal of East China Geological Institute,1996,19(4):363~369]

    9. 聂逢君。宣龙地区中元古代铁岩建造成因探讨[J].华东地质学院学报,1997,20(1):9~16 [Nie Fengjun.Discussion on the genesis of the Middle Proterozoic lronstone formation,Xuanlong area,west Hebei[J].Journal of East China Geological Institute,1997,20(1):9~16]

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    12. Komar P D,Miller M C.The threshold of sediment movement under oscillatory water waves[J].J.Sedim.Petrol.,1973,43: 1101~1110

    13. Airy G G.Tides and waves[J].Encycl.Metrop.Art.,1845,192: 241~369
    [2] Komar P D.Oscillatory ripple marks and the evaluation of ancient wave conditions and environment [J].J.Sedim.Petrol.,1974,44: 169~180
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  • Received:  2001-03-22
  • Revised:  2001-07-11
  • Published:  2002-04-10

Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei

Abstract: Since the 1970~s, sedimentology has entered into a quantitative study era. The Europe an sedimentologist creatively did a lot of quantitative study on ancient ripple marks in the marine sediments in Alps and lacustrine sediments in Shedland of England in the 1980s. A series of mathematical formulae have been established. A number of physical parameters of sedimentary environments of Changchengian quartz sandstones A, B, and C in the Xuanhua area, northwest Hebei are estimated based on the mathematical formula in this study. The calculation results show the velocities of water particles of sedimentary environments from sandstones A via B to C becom smaller, then bigger; the motion periods for water particles become shorter, then longer; the water depths of environments become shallower, then deeper; the wave heights of waters become lower, then higher; the energy of waters becomes smaller, then larger. These estimations are in fair harmony with the observations in the field. The grain size analyses demonstrate the jumping population of sandstones dominated in sedimentary environments and the suspension population at 20~40% of the total grains. No tractive population is present in the analyzed samples. So,the grains are transport in the form of jumping and suspension. in shallower water bodies.

NIE FengJun, JIANG MeiZhu, WU HeYong, LIU WenLong. Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei[J]. Acta Sedimentologica Sinica, 2002, 20(2): 255-260.
Citation: NIE FengJun, JIANG MeiZhu, WU HeYong, LIU WenLong. Estimates of Physical Parameters in Sedimentary Environments by Means of Ancient Ripple Marks--Case of Changchengian quartz sandstones in Xuanhua Area, Northwest Hebei[J]. Acta Sedimentologica Sinica, 2002, 20(2): 255-260.
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