LIU Bin. CALCULATION OF DENUDED STRATA THICKNESS BY FLUID INCLUSION DATA—A CASE STUDY OF THREE DEPRESSIONS IN THE EAST CHINA SEA BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2002, 24(2): 172-176. doi: 10.11781/sysydz200202172
Citation: LIU Bin. CALCULATION OF DENUDED STRATA THICKNESS BY FLUID INCLUSION DATA—A CASE STUDY OF THREE DEPRESSIONS IN THE EAST CHINA SEA BASIN[J]. PETROLEUM GEOLOGY & EXPERIMENT, 2002, 24(2): 172-176. doi: 10.11781/sysydz200202172

CALCULATION OF DENUDED STRATA THICKNESS BY FLUID INCLUSION DATA—A CASE STUDY OF THREE DEPRESSIONS IN THE EAST CHINA SEA BASIN

doi: 10.11781/sysydz200202172
  • Received Date: 2000-08-07
  • Rev Recd Date: 2001-10-20
  • Publish Date: 2002-03-25
  • On the plotted graphs of formation temperature of fluid inclusions vs.burial depth,the point with distinct change of temperature corresponds to the erosion surface of unconformity.So,on the diagram of temperature (or pressure) vs.depth a straight line passing through the data points recording the temperature (or pressure) and the depth below the denudation surface can be constructed by the regression method.This line is then extended upward to the point with the coordinate defining the ancient surface temperature,and the corresponding depth is inferred as the ancient surface.The distance between the denudation surface and the ancient surface is the denuded strata thickness.It is essential that strata thickness is corrected by coefficient of compaction when fluid inclusions are trapped in shallow burial conditions.This method has been applied to calculate the denuded thickness of the Tertiary (E1,E2,E3 and N1) and the Cretaceous (K) strata in the three depressions of the East China Sea Basin.The results show that the burial depth of most Tertiary ( E2,E3) strata has just reached or fully entered the thresholds of main peak maturation periods of oil.In the future,the exploration work should be focused on searching for the favorable structural traps prior to the depositional break.For the strata of K,E1 and N1,however,the thermal evolution history prior to the depositional break is unknown while that after the depositional break is much clear.Therefore,attention should also be paid to the structures after the depositional break.

     

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  • [1]
    Magara K.Thickness of removed sediments,paleopore pressure and paleotemperature,southwestern part of Western Canada Basin[J].AAPG,1978,60:554-650.
    [2]
    Hubbert M K,Rubey W W.Role of fluid pressure in mechanics of overthrust faulting[J].Geol Soc Amer Bull,1959,70:115-206.
    [3]
    Dow W G.Petroleum source beds on continental slopes and rises[J].AAPG,1978,62:1 584-1 606.
    [4]
    Currie J B,Nwachukwu S O.Evidence of incipient fracture porosity in reservoir rocks at depth[J].CPG,1974,22:42-54.
    [5]
    Van Hinte J T.Geochemistory analysis-application of micropaleontology in exploration geology[J].AAPG,1978,62:201-220.
    [6]
    Hacqueberd P A.Rank of coal as an index of organic metamorphism for oil and gas in Alberta[A].McCrossan R G,Powell T G,Tissot B,et al.The Origin and Migration of Petroleum in the Western Canadian Sedimentary Basin,Alberta[C].Bulletin 262,Geological Survey of Canada,1977.136.
    [7]
    真柄钦次.石油圈闭的地质模型[M].童晓光,等译.北京:中国地质大学出版社,1991.27-98.
    [8]
    信荃麟,刘泽谷,金强.含油气盆地构造岩相分析[M].北京:地质出版社,1993.40-46.
    [9]
    Bishop R S.Calculated compaction of thick abnormally pressured shales[J].AAPG Bull,1979,63(6):918-933.
    [10]
    陆明德,田时芸.石油天然气数学地质[M],北京:中国地质大学出版社,1991.220-224.
    [11]
    王善书,钱之华,等.东海盆地第三纪沉积特征及含油气有利地质预测[A].含油气盆地沉积相与油气分布[C].北京:石油工业出版社,1989.147-160.
    [12]
    刘斌,沈昆.流体包裹体热力学[M].北京:地质出版社,1999.171-245.
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