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Telemetry system for wireless electro-acoustical transmission of data along a wellbore

  • US 9,759,062 B2
  • Filed: 12/18/2013
  • Issued: 09/12/2017
  • Est. Priority Date: 12/19/2012
  • Status: Active Grant
First Claim
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1. An electro-acoustic system for wireless telemetry along a tubular body, comprising:

  • a tubular body fabricated from steel;

    at least one sensor disposed along the tubular body;

    a sensor communications node placed along the tubular body and connected to a wall of the tubular body, the sensor communications node being in electrical communication with the at least one sensor and configured to receive signals from the at least one sensor, the signals representing a parameter associated with a subsurface location along the tubular body;

    a topside communications node placed proximate a surface;

    a plurality of intermediate communications nodes spaced along the tubular body and attached to an outer wall of the tubular body, the intermediate communications nodes configured to transmit acoustic waves from the sensor communications node to the topside communications node in node-to-node arrangement; and

    a receiver at the surface configured to receive signals from the topside communications node;

    wherein each of the intermediate communications nodes comprises;

    a sealed housing;

    an independent power source residing within the housing;

    an electro-acoustic transducer and associated transceiver also residing within the housing designed to receive and re-transmit the acoustic waves, thereby providing communications telemetry;

    wherein each of the acoustic waves represents a packet of information comprising a plurality of separate tones; and

    wherein at least one of (i) the sensor communications node and (ii) at least one of the plurality of intermediate communications node, is configured to;

    (a) transmit a first acoustic tone at a selected frequency at a frequency in a range of from 50-500 kHz for a first transmission time,(b) receive the transmitted acoustic tone for a first reverberation listening time that is greater than the first transmission time,(c) transmit another acoustic tone at another selected frequency at a frequency in a range of from 50-500 kHz for at least one of the first transmission time and another transmission time,(d) receive the another transmitted acoustic tone for at least one of the first reverberation listening time and another reverberation listening time, greater than the another transmission time,(e) determine a dominant received frequency based on the received acoustic tone for the first reverberation listening time and the received another acoustic tone for at least one of the first reverberation listening time and the another reverberation listening time, and(f) transmit subsequent acoustic waves from the sensor communications node to the topside communications node in node-to-node arrangement using the dominant frequency,wherein each intermediate communications node listens for the acoustic waves generated for a longer time than the time for which the acoustic waves were generated by a previous intermediate communications node.

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