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System for acoustic caliper measurements

  • US 4,665,511 A
  • Filed: 03/30/1984
  • Issued: 05/12/1987
  • Est. Priority Date: 03/30/1984
  • Status: Expired due to Term
First Claim
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1. A method of calipering a borehole through the propagation of acoustic energy from a measurement device suspended within the borehole, comprising the steps of:

  • providing a first acoustic pulse transceiver disposed within a housing, said transceiver comprising a first transmitter and adjacent first receiver;

    providing a second acoustic pulse receiver within said housing and spaced longitudinally from said first receiver a known distance;

    generating a first acoustic pulse directed toward the side wall of said borehole with said first transmitter;

    receiving a first reflected portion of said first acoustic pulse with said first acoustic pulse receiver, said first reflected portion having been reflected from the surface of said borehole without having been refracted therein;

    receiving a second reflected portion of said first acoustic pulse with said longitudinally spaced second acoustic pulse receiver, said second reflected portion having been reflected from the surface of said borehole without having been refracted therein;

    providing a second acoustic pulse transceiver comprising a second transmitter and an adjacent third receiver within said housing, said second transceiver azimuthally disposed from said first transceiver;

    generating a second acoustic pulse directed toward the side wall of said borehole with said second transmitter at the same time said first transmitter is generating said first acoustic pulse;

    receiving a reflected portion of said second acoustic pulse with said third acoustic pulse receiver, said reflected portion of said second acoustic pulse having been reflected from the surface of said borehole without having been refracted therein;

    measuring the time interval for pulse propagation of said first reflected portion between said first transmitter, said borehole wall and said first acoustic pulse receiver;

    measuring the time interval for pulse propagation of said first reflected portion between said first transmitter, said borehole wall and said second acoustic pulse receiver;

    measuring the time interval for pulse propagation of said reflected portion of said second acoustic pulse between said second transmitter, said borehole wall and said third receiver; and

    determining distances within said borehole as a function of said measured time intervals and said known distance between said first acoustic pulse receiver and said second acoustic pulse receiver.

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