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Using DCT to Calculate Normalized Full Gradient of Gravity Anomalies

ZHANG Feng-qin1, ZHANG Feng-xu2, LIU Cai2, XU Dong-hai3, LIN Ze-fu3   

  1. 1.College of Physics, Jilin University, Changchun 130023, China;2.College of GeoExploration Science and Technology, Jilin University, Changchun 130026, China;3.GeoInvestigation Academy of Heilongjiang, Harbin 150080, China
  • Received:2006-08-27 Revised:1900-01-01 Online:2007-07-26 Published:2007-07-26
  • Contact: ZHANG Feng-qin

Abstract: Normalized full gradient of gravity anomalies can be used to find the location of source and inspect hydrocarbon structure because of its characteristic of “one less value between two high values”. Traditionally, В. М. Березкин method and Fourier transform were used primarily, but using DCT to calculate normalized full gradient of gravity anomalies was a new method. The authors presented gravity anomalies conversion formula based on DCT, in succession studied GH field characteristics of these models that include infinite horizontal cylinder, symmetricaldensity spherecoronal and asymmetricdensity oil storage spherecoronal. These experiments had proved that the more was the depth, the smaller was the harmonic wave member, at the same time the singular point Maximum moved downwards and had linear attenuation. GH field contour line of asymmetricdensity oil storage spherecoronal had presented typical characteristic of “one less value between two high values”. GH field calculated by DCT has excellent stability and could enhanced the depth of downward continuation.

Key words: normalized full gradient of gravity anomalies, DCT, harmonic wave member, location of source, hydrocarbon structure

CLC Number: 

  • P631.22
[1] ZHANG Feng-xu, MENG Ling-shun, WANG Shi-yu, ZHANG Feng-qin. Study on Characteristics of Gravity Field of Line DB1 in Periphery of Daqing Prospect Area by Discrete Cosine Transform [J]. J4, 2007, 37(5): 1009-1015.
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