Apparatus and methods for deploying sensor in downhole tool
A downhole assembly includes a tubular body having a bore and a downhole tool connected to the tubular body. The downhole assembly also includes a sensor assembly having a carrier and a sensor. A sensor adapter is used to couple the sensor assembly to the tubular body. The sensor adapter includes an adapter body disposed in the bore of the tubular body; an adapter shaft for connection with the carrier; and a plurality of channels formed between the adapter shaft and the adapter body.
1 . A downhole assembly, comprising:
a tubular body defining a bore therethrough and having a wall, the bore defining a diameter, the tubular body defining a hole in the wall of the tubular body, the hole being defined at an angle relative to a vertical plane intersecting a central axis of the tubular body;
a downhole tool connected to the tubular body and disposed in communication with the bore;
a sensor having a longitudinal length, the sensor disposed in the hole at the angle relative to the vertical plane intersecting the central axis of the tubular body such that the longitudinal length fits entirely across the diameter of the bore; and
a carrier affixed in the hole and retaining the sensor in the hole of the tubular body.
2 . The downhole assembly of claim 1 , wherein the angle is defined from about 15 degrees to about 45 degrees relative to the vertical plane intersecting the central axis.
3 . The downhole assembly of claim 1 , wherein the hole defines first thread therein; and wherein the carrier comprises second thread disposed on the carrier, the second thread of the carrier mating with the first thread defined in the hole.
4 . The downhole assembly of claim 3 , wherein the second thread of the carrier is NPT thread.
5 . The downhole assembly of claim 1 , wherein one of:
the hole is defined parallel to a horizontal plane intersecting a central axis of the tubular body; and
the hole is defined within a 15 -degree angle relative to the horizontal plane intersecting the central axis of the tubular body.
6 . The downhole assembly of claim 1 , wherein the carrier defines a cavity; and wherein the sensor is disposed in the cavity.
7 . The downhole assembly of claim 6 , wherein the carrier comprises a sidewall, an open distal end, and a closed proximal end, the sidewall and the closed proximal end enclosing the cavity, the sensor disposed in cavity through the open distal end, the sidewall substantially conforming to the hole.
8 . The downhole assembly of claim 1 , wherein the sensor in the hole is separated by a section of the wall from the bore in the tubular body.
9 . The downhole assembly of claim 1 , wherein the tubular body has an uphole end and a downhole end, the downhole tool connected to the downhole end; and wherein the hole having the sensor is disposed toward the downhole end.
10 . The downhole assembly of claim 1 , wherein the downhole tool is a milling tool.
11 . The downhole assembly of claim 1 , wherein the sensor includes at least one of a magnetometer, a micro electro-mechanical systems (“MEMS”)-based sensor, a gyrometer, a Geiger-Müller tube sensor, and an accelerometer.
12 . The downhole assembly of claim 1 , wherein the hole formed in the wall of the tubular body is entirely enclosed by the wall of the tubular body and defines an opening exposed at an exterior surface of the tubular body.
13 . A downhole assembly, comprising:
a tubular body defining a bore therethrough and having a wall, the bore defining a diameter, the tubular body having a hole formed in the wall, the hole being formed at an angle relative to a vertical plane intersecting a central axis of the tubular body;
a downhole tool connected to the tubular body and disposed in communication with the bore; and
a sensor assembly disposed in the hole and having a carrier and a sensor, the carrier retaining the sensor in the hole, the sensor having a longitudinal length, the sensor disposed in the hole at the angle relative to the vertical plane intersecting the central axis of the tubular body such that the longitudinal length fits entirely across the diameter of the bore.
14 . The downhole assembly of claim 13 , wherein one of:
the hole is formed parallel to a horizontal plane intersecting the central axis of the tubular body; and
the hole is defined within a 15-degree angle relative to the horizontal plane intersecting the central axis of the tubular body.
15 . The downhole assembly of claim 13 , wherein the hole is formed at the angle from about 15 degrees to about 45 degrees relative to the vertical plane.
16 . The downhole assembly of claim 13 , wherein the carrier includes first threads mating with second threads in the hole.
17 . The downhole assembly of claim 13 , wherein the carrier comprises a sidewall, an open distal end, and a closed proximal end, the sidewall and the closed proximal end enclosing a cavity, the sensor disposed in cavity through the open distal end, the sidewall substantially conforming to the hole.
18 . The downhole assembly of claim 13 , wherein the tubular body has an uphole end and a downhole end, the downhole tool connected to the downhole end; and wherein the hole having the sensor assembly is disposed toward the downhole end.
19 . The downhole assembly of claim 13 , wherein the sensor includes at least one of a magnetometer, a micro electro-mechanical systems (“MEMS”)-based sensor, a gyrometer, a Geiger-Müller tube sensor, and an accelerometer.
20 . The downhole assembly of claim 13 , wherein the hole formed in the wall of the tubular body is entirely enclosed by the wall of the tubular body and defines an opening exposed at an exterior surface of the tubular body.