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黄土塬区高精度重力勘探的校正技术
引用本文:冀连胜,郑莉.黄土塬区高精度重力勘探的校正技术[J].应用地球物理,2007,4(2).
作者姓名:冀连胜  郑莉
作者单位:东方地球物理公司综合物化探事业部 河北省诼州市072751
摘    要:黄土塬区地形起伏大,地表黄土切割剧烈。地形起伏导致黄土厚度巨大变化,由于黄土密度与下伏地层之间存在较大的密度差异,由此产生了具有一定幅值的高频重力异常,并给重力勘探资料的处理、解释带来了困难。在SHJZ构造带高精度重力勘探中,综合运用了地形校正和黄土校正技术,有效地克服了由于地形起伏和黄土厚度变化对重力勘探产生的不利影响,取得了精确的重力资料。并将该重力异常,结合其它物探资料进行综合解释,对圈定局部构造发挥了积极的作用。

关 键 词:高精度重力  重力异常密度  黄土校正  地形校正

High-precision gravity correction methods for loess, plateau areas, a case study
Ji Liansheng,Zheng Li.High-precision gravity correction methods for loess, plateau areas, a case study[J].Applied Geophysics,2007,4(2).
Authors:Ji Liansheng  Zheng Li
Abstract:The loess plateau is featured by a sharply undulated and remarkably incised surface. The sharp surface undulation means great variation of loess thickness. Since the loess layer exhibits significant density contrast with the underlying formation, a high frequency gravity anomaly with a certain magnitude will appear. The high frequency gravity anomaly can result in some difficulties for processing and interpreting the gravity data, thereby reducing the usefulness of gravity surveys in loess plateau areas. We carried out a high precision gravity survey in the SHJZ structural zone. During data processing, we applied terrain and loess corrections to effectively remove or suppress the gravity effect resulting from surface undulation and variation of loess thickness. We obtained high precision gravity data which matches well with other geophysical data. The comprehensive interpretation based on the final gravity data help to study local structure integrated with other published geophysical data.
Keywords:high precision gravity survey  gravity anomaly  density  loess correction  terrain correction
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