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APPLIED GEOPHYSICS  2009, Vol. 6 Issue (3): 205-216    DOI: 10.1007/s11770-009-0032-z
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A-E equation of potential field transformations in the wavenumber domain and its application
Chai Yu-pu1
1. Bureau of Geophysical Prospecting, CNPC, Zhuozhou, 072751, China.
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Abstract A shift sampling theory established by author (1997a) is a generalization of Fourier transform computation theory. Based on this theory, I develop an Algorithm-Error (A-E) equation of potential field transformations in the wavenumber domain, which not only gives a more flexible algorithm of potential field transformations, but also reveals the law of error of potential field transformations in the wavenumber domain. The DFT0η η?(0.5,?0.5) reduction-to-pole (RTP) technique derived from the A-E equation significantly improves the resolution and accuracy of RTP anomalies at low magnetic latitudes, including the magnetic equator. The law (origin, form mechanism, and essential properties) of the edge oscillation revealed by the A-E equation points out theoretically a way of improving the effect of existing padding methods in high-pass transformations in the wavenumber domain.
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CHAI Yu-Pu
Key wordsPotential field transformation   Fourier transform   shift sampling theory   A-E equation, DFT0&eta   &eta   (0.5, 0.5) algorithm     
Received: 2009-06-23;
Cite this article:   
CHAI Yu-Pu. A-E equation of potential field transformations in the wavenumber domain and its application[J]. APPLIED GEOPHYSICS, 2009, 6(3): 205-216.
 
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