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Correction of seabed layer thickness in processing subbottom profile data 被引量:1
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作者 王方旗 亓发庆 +2 位作者 胡光海 董立峰 陶常飞 《Marine Science Bulletin》 2012年第2期83-96,共14页
The subbottom profiling is an important means of marine engineering survey, hazardous geology study and continental shelf scientific research. The accuracy of subbottom profile data interpretation has a direct impact ... The subbottom profiling is an important means of marine engineering survey, hazardous geology study and continental shelf scientific research. The accuracy of subbottom profile data interpretation has a direct impact on the research and investigation results. Because some of profilers’ transducer and hydrophone are separately installed, when the survey area is very shallow, distortion of shallow layers will be caused if it is seen as a self-excited and self-collected single-channel seismic system. According to the principle of subbottom profiler, the distortion correction formula is deduced and analyzed, providing actual value to using C-View software to interpret such subbottom profile data more accurately. In addition, the seabed sediments sound velocity is one of the key parameters when acquiring and processing the subbottom profile data. On the basis of comparing some sound velocity forecasting empirical equations, the LU Bo’s equation was considered the most appropriate to predict the seabed sediments, sound velocity at near-shore of China. In a survey of an artificial island site, the LU Bo’s equation and the porosity data obtained from geological drilling were utilized to predict the sediments sound velocity, and the sound velocity structure profile was plotted, which was applied in processing the subbottom profile data of the artificial island investigation. The method of using porosity data to predict sediments sound velocity in processing subbottom profile data can improve the interpretation accuracy and it’s of practical significance. 展开更多
关键词 subbottom profile layer thickness correction sound velocity forecasting equation POROSITY
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地层视垂直厚度分析在油田小层对比中的应用 被引量:8
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作者 李振鹏 马存飞 +2 位作者 刘春艳 刘洪洲 刘建国 《断块油气田》 CAS 北大核心 2018年第5期626-630,634,共6页
随着油田综合调整措施的不断实施,油田井型逐渐多样,油层段内开发井井斜角差异较大。受地层倾角及井斜角影响,小层对比过程中,不同井型之间地层视垂直厚度存在的差异不仅影响了小层划分及对比结果的准确性,同时也制约了后续注采调控及... 随着油田综合调整措施的不断实施,油田井型逐渐多样,油层段内开发井井斜角差异较大。受地层倾角及井斜角影响,小层对比过程中,不同井型之间地层视垂直厚度存在的差异不仅影响了小层划分及对比结果的准确性,同时也制约了后续注采调控及随钻预测的实施效果。文中结合渤海海域典型油田的钻井、测井及地震资料,建立了7种地层视垂直厚度差模型,并对视垂直厚度差进行了量化。结果表明:当地层产状水平或所钻井均为直井时,钻井揭示的地层视垂直厚度基本一致;当地层产状倾斜且所钻井中包含斜井时,钻井的地层视垂直厚度存在差别,地层视垂直厚度差与地层真厚度、地层倾角及井斜角有关。利用地层视垂直厚度校正方法,对油田小层对比结果进行校正,并取得了较好的开发效果。 展开更多
关键词 小层对比 钻井地层厚度 地层视垂直厚度校正 渤海海域
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