Return exhaust assembly for a reverse circulation hammer
US-2024352796-A1 · Oct 24, 2024 · US
US2016290079A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016290079-A1 |
| Application number | US-201314382280-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 1, 2013 |
| Priority date | Aug 31, 2013 |
| Publication date | Oct 6, 2016 |
| Grant date | — |
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A deflector assembly includes an upper deflector arranged within a main bore of a wellbore, the upper deflector having first and second plates spaced apart by a distance. At least one of the first and second plates includes a ramped surface. A lower deflector is arranged within the main bore, the lower deflector defining a first conduit and a second conduit. One of the first and second conduits is in communication with a lower portion of the main bore and another of the first and second conduits is in communication with a lateral bore. The upper and lower deflectors are configured to direct a bullnose assembly into either the lateral bore or the lower portion of the main bore based on a size of a bullnose tip of the bullnose assembly.
Opening claim text (preview).
I claim: 1 . A deflector assembly, comprising: an upper deflector arranged within a main bore of a wellbore, the upper deflector having at least one plate having a ramped surface; and a lower deflector arranged within the main bore, the lower deflector defining a first conduit and a second conduit, one of the first and second conduits in communication with a lower portion of the main bore and another of the first and second conduits in communication with a lateral bore; wherein the upper and lower deflectors are configured to direct a bullnose assembly into either the lateral bore or the lower portion of the main bore based on a size of a bullnose tip of the bullnose assembly. 2 . The deflector assembly of claim 1 , wherein the upper and lower deflectors are arranged within a tubular string that extends from a surface location. 3 . The deflector assembly of claim 1 , wherein the first conduit has a diameter smaller than a diameter of the second conduit. 4 . The deflector assembly of claim 1 , wherein the ramped surface of the upper deflector is capable of diverting the bullnose assembly into a position that initially aligns the bullnose assembly with the first conduit. 5 . The deflector assembly of claim 1 , wherein the bullnose tip is coupled to a distal end of a body of the bullnose assembly, the bullnose tip having a first diameter, the body of the bullnose assembly having a second diameter smaller than the first diameter. 6 . The deflector assembly of claim 5 , wherein, when the first diameter of the bullnose tip is less than the diameter of the first conduit, the bullnose tip is configured to be received within the first conduit and the bullnose assembly is directed into the lower portion of the main bore. 7 . The deflector assembly of claim 5 , wherein, when the first diameter of the bullnose tip is greater than the diameter of the first conduit, the bullnose assembly is configured to be directed into the second conduit and the lateral bore. 8 . The deflector assembly of claim 7 , wherein, when the bullnose assembly is directed toward the second conduit, at least one of the bullnose tip and the body is received between the at least one plate and a secondary member and a distance between the at least one plate and the secondary member increases. 9 . The deflector assembly of claim 8 further comprising a biasing member to bias the at least one plate toward the secondary member. 10 . A method, comprising: introducing a bullnose assembly into a main bore of a wellbore, the bullnose assembly including a body and a bullnose tip arranged at a distal end of the body, the bullnose tip having a width; directing the bullnose assembly toward an upper deflector arranged within the main bore, the upper deflector having a ramped surface; advancing the bullnose assembly to a lower deflector arranged within the main bore, the lower deflector defining a first conduit and a second conduit, one of the first and second conduits in communication with a lower portion of the main bore and another of the first and second conduits in communication with a lateral bore; and directing the bullnose assembly into either the lateral bore or the lower portion of the main bore based on the width of the bullnose tip. 11 . The method of claim 10 , wherein directing the bullnose assembly toward the upper deflector comprises: engaging the bullnose tip on the ramped surface; and diverting the bullnose tip into a position that initially aligns the bullnose assembly with the first conduit. 12 . The method of claim 10 , wherein the width of the bullnose tip is a diameter, and the method further comprises: receiving the bullnose tip within the first conduit when the diameter of the bullnose tip is less than a diameter of the first conduit. 13 . The method of claim 10 , wherein the width of the bullnose tip is a diameter, and the method further comprises: receiving the bullnose tip within second conduit when the diameter of the bullnose tip is greater than a diameter of the first conduit. 14 . A deflector assembly comprising: a first upper deflector arranged within a main bore of a wellbore and defining first and second channels that extend longitudinally through the upper deflector, wherein the second channel exhibits a width greater than a width of the first channel; a second upper deflector arranged within a main bore of a wellbore, the upper deflector having first and second plates spaced apart by a first distance, at least one of the first and second plates having a first ramped surface; and a lower deflector arranged within the main bore and spaced from the first upper deflector by a second distance, the lower deflector defining a first conduit that communicates with a lower portion of the main bore and a second conduit that communicates with a lateral bore, wherein the first upper, second upper, and lower deflectors are configured to direct a bullnose assembly into either the lateral bore or the lower portion of the main bore based on a length of a bullnose tip of the bullnose assembly as compared to the second distance. 15 . The deflector assembly of claim 14 , wherein the first upper, second upper, and lower deflectors are arranged within a tubular string that extends from a surface location. 16 . The deflector assembly of claim 14 , wherein the first upper deflector provides a second ramped surface facing toward an uphole direction within the main bore, the ramped surface being configured to direct the bullnose assembly into the second channel. 17 . The deflector assembly of claim 14 , wherein the bullnose tip is coupled to a distal end of a body of the bullnose assembly, the bullnose tip exhibiting a first diameter and the body exhibiting a second diameter smaller than the first diameter and also smaller than the width of the first channel. 18 . The deflector assembly of claim 14 , wherein the first ramped surface of the second upper deflector biases the bullnose assembly toward the first channel of the first upper deflector. 19 . The deflector assembly of claim 14 , wherein, when the length of the bullnose tip is greater than the predetermined distance, the bullnose assembly is configured to be directed into the second conduit and the lateral bore. 20 . The deflector assembly of claim 14 , wherein, when the length of the bullnose tip is less than the predetermined distance, the bullnose assembly is configured to be directed into the first conduit and the lower portion of the main bore.
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