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Apparatus and method for gravity correction in borehole survey systems

  • US 4,783,742 A
  • Filed: 12/31/1986
  • Issued: 11/08/1988
  • Est. Priority Date: 12/31/1986
  • Status: Expired due to Term
First Claim
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1. A gravity-compensated borehole survey system comprising:

  • a probe configured and arranged for passage along said borehole, said probe including acceleration sensing means for supplying acceleration signals representative of the specific force asserted on said probe and angular rate sensing means for supplying angular rate signals representative of angular rotation of said probe about predetermined axes;

    a cable affixed to said probe for raising and lowering said probe through said borehole;

    cable control means for paying out and retrieving said cable to lower said cable into and retrieve said probe from said borehole; and

    signal processing means connected for receiving said acceleration signals and said angular rate signals from said probe, said signal processing means providing;

    (a) means for processing said acceleration signals and said angular rate signals during a series of repeated signal processing cycles to supply probe position signals representative of the position of said probe during each of said signal processing cycles, each of said probe position signals including a depth signal representative of the current vertical depth of said probe, said means for processing said acceleration signals and said angular rate signals being responsive to a gravity correction for correcting said acceleration signals relative to signal components that are attributable to gravitational force;

    (b) means responsive to said depth signal for supplying a gravity gradient signal, said means for supplying said gravity gradient signal further being responsive to a signal representative of the density of the geological formations penetrated by said borehole at a depth corresponding to said current depth signal and being responsive to a signal representative of the gravitational force asserted on said probe when said probe is positioned at the surface of the earth near said borehole, said means for supplying said gravity gradient signal being configured and arranged so that the value of said gravity gradient signal is in substantial correspondence with the mathematical expression;

    ##EQU15## where fo represents the gravitational force asserted on said object when said object is located on the surface of the earth and Δ

    f is a change in the gravitational force asserted on the probe as its vertical depth changes,Ro represents the radius of the earth,ρ

    (H) represents the density of the geological formation surrounding said object during the current signal processing cycle,ρ

    ave represents the average density of the earth, andΔ

    H represents a vertical displacement of the probe upwards;

    (c) means responsive to said gravity gradient signal for supplying said gravity correction signal, said means for supplying said gravity correction signal being configured and arranged to supply said gravity correction signal in substantial accordance with the mathematical expression;

    ##EQU16## where f(H) represents the gravity correction signal and the indicated summation represents accumulation of the product of the displacement, Δ

    H, and the gravity gradient signal for each signal processing cycle.

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