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System and method for damping vibration in a drill string using a magnetorheological damper

  • US 9,976,360 B2
  • Filed: 09/08/2011
  • Issued: 05/22/2018
  • Est. Priority Date: 03/05/2009
  • Status: Active Grant
First Claim
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1. A method of damping vibration in a downhole portion of a drill string drilling into an earthen formation, comprising the steps of:

  • a) rotating at least the drill string to form a borehole into the earthen formation;

    b) causing a magnetorheological (MR) fluid to flow through a passage in an MR valve, the MR valve having at least one coil, the MR valve having associated therewith a limiting hysteresis loop relating a strength of the magnetic field in said MR valve to a current supplied to said coil;

    c) supplying a varying current to said coil so as to subject said MR fluid in said MR valve to a varying magnetic field created by said coil;

    d) determining a magnetization history of said MR valve as said current supplied to said coil varies, the magnetization history being based on a measurement of the varying current and a determination of the strength of said magnetic field created by said varying current, said strength of said magnetic field based on information representative of said limiting hysteresis loop associated with said MR valve;

    e) determining the current to be supplied to said coil that will result in a desired magnetic field using said magnetization history of said MR valve determined in step d); and

    f) supplying said current determined in step e) to said coil so as to substantially obtain said desired magnetic field to dampen vibration of the downhole portion of the drill string, wherein said magnetization history of said MR valve determined in step d) comprises a first stack of first sets of data points, each of said first sets of data points comprising a first data point that is representative of a current that was supplied to said coil and a second data point that is representative of the magnetic field that resulted from the supply of said current, and wherein determining said current to be supplied to said coil in step e) further comprises the steps of;

    g) copying said first stack of first data points so as to create a second stack of data points;

    h) adding one or more second sets of data points to said second stack of data points, each of said second sets of data points added to said second stack of data points comprising a selected test current and the magnetization expected to result if said test current were supplied to said coil; and

    i) performing a binary search of said data points in said second stack after said one or more second sets of data points have been added to said second stack so as to determine the current to be supplied to said coil that will result in said desired magnetic field.

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