CA2900550C

Wellbore servicing tools, systems and methods utilizing near-field communication

Abstract

A wellbore servicing system comprising a first node disposed within a wellbore, and a logging node configured for movement through the wellbore, wherein the logging node communicates with the first node via a near field communication (NFC) signal. A wellbore servicing method comprising positioning a first node within a wellbore, moving a logging node through the wellbore such that the logging node comes into communication with the first node, wherein the logging node communicates with the first node via a near field communication (NFC) signal, wherein data is transferred from the first node to the logging node via NFC.

CA2900550C, drawing sheet 1
Sheet 1 of 10

Term

7.4 yearsleft in the term

Expires 20 February 2034.

  1. Priority
  2. Filed
  3. Granted
  4. Today
  5. Expires

23 claims: 16 independent, 7 dependent

  1. 1
    CA 02900550 2017-01-26 CLAIMS What is claimed is:1. A wellbore servicing system comprising: a first node disposed within a tubular string having an axial flowbore formed therethrough to communicate formation fluids to a surface of the wellbore, wherein the first node is at a fixed location relative to the tubular string, wherein the first node comprises a processor, an antenna, a power supply, and a sensor node comprising a transducer, wherein the sensor node is configured to collect data associated with at least one wellbore parameter;and a logging node comprising a processor, an antenna and a power supply, wherein the logging node is configured to move through the axial flowbore of the tubular string in response to movement of fluid through the axial flowbore, wherein the logging node communicates with the first node via a near field communication (NFC) signal to transfer the data from the first node to the logging node.
  2. 3
    The wellbore servicing system of any one of claims 1-2, wherein the first node comprises a tool node transitionable from a first configuration to a second configuration.
  3. 5
    The wellbore servicing system of any one of claims 3-4, wherein the tool node comprises a transducer.
  4. 6
    The wellbore servicing system of any one of claims 3-5, wherein NFC communication between the tool node and the logging node is not enabled when the tool node is in the first configuration, and wherein NFC communication between the tool node and the logging node is enabled when the tool node is in the second configuration.
  5. 7
    The wellbore servicing system of any one of claims 3-6, wherein the tool node comprises, a housing comprising one or more ports and generally defining a flow passage, and a sliding CA 02900550 2017-01-26 sleeve, wherein the sliding sleeve is movable between a first position relative to the housing and a second position relative to the housing.
  6. 8
    The wellbore servicing system of any one of claims 1-7, wherein the logging node is a ball, a dart, or a wiper.
  7. 9
    The wellbore servicing system of any one of claims 1-8, further comprising a second logging node, wherein the second logging node comprises a processor, an antenna, and a power supply, and wherein the second logging node and the logging node communicate via a near field communication (NFC signal).
  8. 11
    The wellbore servicing system of any one of claims 9-10, wherein the second logging node is positioned exterior to the wellbore.
  9. 12
    The wellbore servicing system of any one of claims 1-11, wherein the first node is configured to send information via the NFC signal and to receive information via the NFC signal.
  10. 13
    The wellbore servicing system of any one of claims 1-12, wherein the logging node is configured to send information via the NFC signal and to receive information via the NFC signal.
  11. 14
    A wellbore servicing method comprising:positioning a first node comprising a processor, an antenna, a power supply, and a sensor node comprising a transducer within an axial flowbore formed through a tubular string used to communicate formation fluids to a surface of a wellbore, wherein the first node is at a fixed location relative to the tubular string, wherein the sensor node is configured to collect data associated with at least one wellbore parameter;collecting data associated with at least one wellbore parameter at the sensor node;and moving a logging node comprising a processor, an antenna, and a power supply through the axial flowbore of the tubular string in response to movement of a fluid through the axial flowbore such that the logging node comes into communication with the first node, wherein the logging node communicates with the first node via a near field communication (NFC) signal, wherein the data is transferred from the first node to the logging node via NFC. CA 02900550 2017-01-26
  12. 16
    The wellbore servicing method of any one of claims 14-15, wherein the first node comprises a tool node.
  13. 18
    The wellbore servicing method of any one of claims 16-17, wherein the data comprises data associated with the tool node.
  14. 20
    The wellbore servicing method of any one of claims 14-19, further comprising removing the logging node from the wellbore and downloading at least a portion of the data to another device.
  15. 21
    The wellbore servicing method of any one of claims 14-20, further comprising moving the logging node through the wellbore, wherein the logging node comes into communication with a second logging node comprising a processor, an antenna and a power supply located uphole from the sensor node, wherein the logging node communicates with the second logging node via NFC, wherein at least a portion of the data is transferred to the second logging node via NFC.
  16. 22
    The wellbore servicing method of any one of claims 14-20, further comprising moving the logging node through the wellbore, wherein the logging node comes into communication with a second logging node comprising a processor, an antenna and a power supply located uphole from the first node, wherein the logging node communicates with the second logging node via NFC, wherein the logging node transitions from a low-power mode to an active mode in response to communicating with the second logging node.
Independent claims16