Nova Patents
CA2971159C

Downhole activation of seismic tools

Abstract

A well tool for sensing seismic activity at a downhole location has an anchoring mechanism for mechanically coupling the tool to a formation by contact engagement with a wall of a subterranean cavity in which the well tool is located. The anchoring mechanism is deployable by a pressure-triggered hydraulic actuator incorporated in the tool. The actuator is configured for pressure-triggered activation and for hydraulic actuation by agency of borehole fluids (e.g., drilling mud). The actuator can provide a persistent contacting force urging the anchoring mechanism into contact with the cavity wall, to promote firm coupling with the formation for seismic sensoring purposes.

CA2971159C, drawing sheet 1
Sheet 1 of 18

Term

Projected expiry 26 February 2035.

  1. Priority and filed
  2. Granted
  3. Today
  4. Projected expiry

20 claims: 3 independent, 17 dependent

  1. 1
    Claims What is claimed is:1. An apparatus comprising: a tool body configured for location in a subterranean cavity bordered by a cavity wall and defined within a borehole extending in a formation;a seismic sensor connected to the tool body and configured for detecting seismic activity in the formation;an anchoring mechanism connected to the tool body and configured for disposal between a dormant mode in which the tool body is decoupled from the cavity wall, and an activated mode in which the anchoring mechanism is in physical contact engagement for enabling reception of seismic signals at the cavity wall for detection by the seismic sensor;an actuator configured to actuate deployment of the anchoring mechanism from the dormant mode to the activated mode;and a pressure-activated trigger mechanism configured to allow wireless operator control of activation of the actuator by agency of ambient borehole fluid pressure.
  2. 17
    A method comprising:locating a sensor tool In a subterranean cavity defined within a borehole extending in a formation, the sensor tool being exposed to ambient borehole fluid;causing predefined activation conditions in the ambient borehole fluid to which the sensor tool is exposed, thereby to trigger actuated activation of an anchoring mechanism forming part of the sensor tool, the activated anchoring mechanism being mechanically coupled with a wall of the cavity to secure the sensor tool in position within the cavity;and detecting seismic activity within the formation by operation of a seismic sensor that forms part of the sensor tool and that is mechanically coupled to the formation via the anchoring mechanism.
  3. 19
    The method of daim 18, further comprising:locating a plurality of sensor tools in the annular space about the casing;and causing pressure-triggered hydraulic actuation of the respective anchoring mechanisms of the plurality of sensor tools, thereby securing each sensor tool in a respective position such that the plurality of sensor tools are arranged in an array of sensor tools about the casing, each of the secured sensor tools providing for a mechanical contact link between the formation and a respective seismic sensor incorporated in the sensor tool.