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Patent · US9790761B2 · B2 · US

Boltless ram blowout preventer bonnet

(11) Publication number
US9790761B2
(21) Application number
14/753,721
(22) Filing date
2015-06-29
(30) Priority date
2015-06-29
(43) Publication date
2017-10-17
(45) Date of grant
2017-10-17
(51) IPC
E21B 33/06; F16B 35/00; F16K 27/04; F16K 43/00; F16L 25/06
(52) CPC
  • E21B Earth or rock drilling; obtaining oil, gas, water, soluble or meltable materials or a slurry of minerals from wells: 33/063, 33/061, 33/062
  • F16B Devices for fastening or securing constructional elements or machine parts together, e.g. nails, bolts, circlips, clamps, clips or wedges; joints or jointing: 35/005
  • F16K Valves; taps; cocks; actuating-floats; devices for venting or aerating {}: 27/047, 43/00
  • F16L Pipes; joints or fittings for pipes; supports for pipes, cables or protective tubing; means for thermal insulation in general: 25/065
  • Y10T Technical subjects covered by former us classification: 137/0491, 137/6065
(73) Assignee
HYDRIL USA DISTRIB LLC
(72) Inventors
Prabhakaran Surendran; BOSE MAREESAN; Jayaprakasam Premkumar; JEEVAGAN ARUN; Kumar Sandhya Asok; KRISHNASAMY KATHIRESAN; MUNISWAMY RAGHAVENDRA; Shenbagalingam Manikandan
(54) Title
Boltless ram blowout preventer bonnet
(57) Abstract

The present invention relates to a boltless bonnet assembly for use in a blowout preventer (BOP). In some embodiments, the boltless bonnet assembly includes a bonnet having a forward end facing a ram body of the BOP stack, and a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet. The boltless bonnet assembly further includes a bonnet positioning mechanism in communication with the bonnet latch to move the bonnet latch into and out of engagement with the ram body.

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Claims (17)

  1. A boltless bonnet assembly for use in a blowout preventer (BOP), the boltless bonnet assembly comprising: a bonnet having a forward end facing a ram body of the BOP, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis; a body latch comprising a plurality of body latch teeth and attached to the ram body, the body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet and having a plurality of bonnet latch teeth; and a plurality of fasteners of a bonnet positioning mechanism that is in communication with the bonnet latch to move the bonnet latch in the first direction so that the body latch teeth engage and disengage the bonnet latch teeth.
  2. The boltless bonnet assembly of claim 1, wherein the bonnet positioning mechanism is selected from the group consisting of threadless mechanical fittings, hydraulic fittings, pressed fittings, and flange fittings.
  3. The boltless bonnet assembly of claim 1, further comprising the body latch fixedly attached to the ram body and positioned for engagement with the bonnet latch.
  4. The boltless bonnet assembly of claim 3, wherein the plurality of body latch teeth are attached to and extend from the surface of the body latch.
  5. The boltless bonnet assembly of claim 4, wherein the plurality of bonnet latch teeth and the plurality of body latch teeth have variable cross-sectional areas.
  6. A boltless bonnet assembly for use in a blowout preventer (BOP), the boltless bonnet assembly comprising: a bonnet having a forward end facing a ram body of the BOP, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis; a body latch comprising a plurality of body latch teeth and attached to the ram body, the body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet and having a plurality of bonnet latch teeth; and a plurality of a screws operably attached to the bonnet and bonnet latch for driving the bonnet latch in the first direction so that the body latch teeth selectively engage and disengage the bonnet latch teeth.
  7. The boltless bonnet assembly of claim 6, wherein the screws are attached to the bonnet and the bonnet latch is moveable relative to the bonnet between a first position and a second position, wherein when in the first position, the bonnet latch teeth engage the body latch teeth, and when in the second position, the bonnet latch teeth disengage the body latch teeth.
  8. The boltless bonnet assembly of claim 6, wherein the screws extend through the bonnet from the bonnet latch to an outside surface of the bonnet.
  9. The boltless bonnet assembly of claim 6, further comprising the body latch fixedly attached to the ram body and positioned for engagement with the bonnet latch.
  10. The boltless bonnet assembly of claim 9, wherein the plurality of body latch teeth are attached to and extend from the surface of the body latch.
  11. The boltless bonnet assembly of claim 10, wherein the plurality of bonnet latch teeth and the plurality of body latch teeth have variable cross-sectional areas.
  12. The boltless bonnet assembly of claim 6, wherein the screws comprise two or more screws attached to the bonnet and the bonnet latch to move the bonnet latch into and out of engagement with the ram body.
  13. The boltless bonnet assembly of claim 12, wherein the two or more screws extend through the bonnet and attach to the bonnet latch.
  14. A method for attaching a bonnet to a ram body of a blowout preventer (BOP), the method comprising: a) positioning the bonnet adjacent the ram body, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis, the ram body further having a body latch comprising a plurality of body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; and b) rotating engagement/disengagement screws attached to a bonnet latch having a plurality of bonnet latch teeth to drive a bonnet latch teeth in the first direction and into engagement with the body latch teeth.
  15. The method of claim 14, further comprising: rotating the engagement/disengagement screws to release the bonnet latch teeth from engagement with the body latch teeth.
  16. The method of claim 14, further comprising: with the bonnet latch teeth disengaged from the body latch teeth, sliding the bonnet away from the ram body until BOP rams in the ram body are accessible for repair or replacement.
  17. The method of claim 16, further comprising: rotating the bonnet and the BOP rams relative to the ram body to improve accessibility of the BOP rams.

Description

1. Field of the Invention This technology relates to oil and gas wells, and in particular to a boltless bonnet assembly for a blowout preventer (BOP) for use in wellbore operations. 2. Brief Description of Related Art The existing technologies for extracting fossil fuels use components such as a blowout preventer (BOP) for preventing well blowouts. A typical BOP includes a bore that runs through the BOP and connects to a wellbore. Due to the physical and mechanical demands placed on BOPs in the field, the components of a BOP assembly, such as the BOP rams, need to be examined, adjusted, machined and/or replaced periodically. The BOP bonnet assembly typically must be separated from the ram body of the BOP to allow access to serviceable components such as the ram block. The operation of disengaging the BOP bonnets from the ram body can be very laborious, typically requiring specialized tools designed to accommodate connectors such as the large diameter bolts employed in these systems, and therefore requires appreciable time, effort and cost for the technicians and engineers charged with separating the bonnets. In addition, there is a significant concern related to the amount of down time for the rig, which requires the BOP for operation, and the potential millions of dollars that may be lost while the wellbore equipment is idle. Moreover, a wellbore may be located in an environment that may be difficult to access, such as a deep water wellbore, where even greater costs, time, and associated operator safety concerns must be addressed.

Citations (8)

  • US2002162981A1
  • US2003085040A1
  • US2013264502A1
  • US3345087A
  • US4253638A
  • US6328343B1
  • US8316948B2
  • US8408514B2
Record as JSON
{
  "publication_number": "US9790761B2",
  "country": "US",
  "kind": "B2",
  "title": "Boltless ram blowout preventer bonnet",
  "abstract": "The present invention relates to a boltless bonnet assembly for use in a blowout preventer (BOP). In some embodiments, the boltless bonnet assembly includes a bonnet having a forward end facing a ram body of the BOP stack, and a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet. The boltless bonnet assembly further includes a bonnet positioning mechanism in communication with the bonnet latch to move the bonnet latch into and out of engagement with the ram body.",
  "claims": [
    "1. A boltless bonnet assembly for use in a blowout preventer (BOP), the boltless bonnet assembly comprising: a bonnet having a forward end facing a ram body of the BOP, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis; a body latch comprising a plurality of body latch teeth and attached to the ram body, the body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet and having a plurality of bonnet latch teeth; and a plurality of fasteners of a bonnet positioning mechanism that is in communication with the bonnet latch to move the bonnet latch in the first direction so that the body latch teeth engage and disengage the bonnet latch teeth.",
    "2. The boltless bonnet assembly of claim 1, wherein the bonnet positioning mechanism is selected from the group consisting of threadless mechanical fittings, hydraulic fittings, pressed fittings, and flange fittings.",
    "3. The boltless bonnet assembly of claim 1, further comprising the body latch fixedly attached to the ram body and positioned for engagement with the bonnet latch.",
    "4. The boltless bonnet assembly of claim 3, wherein the plurality of body latch teeth are attached to and extend from the surface of the body latch.",
    "5. The boltless bonnet assembly of claim 4, wherein the plurality of bonnet latch teeth and the plurality of body latch teeth have variable cross-sectional areas.",
    "6. A boltless bonnet assembly for use in a blowout preventer (BOP), the boltless bonnet assembly comprising: a bonnet having a forward end facing a ram body of the BOP, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis; a body latch comprising a plurality of body latch teeth and attached to the ram body, the body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; a bonnet latch disposed within the bonnet, the bonnet latch attached to the forward end of the bonnet and having a plurality of bonnet latch teeth; and a plurality of a screws operably attached to the bonnet and bonnet latch for driving the bonnet latch in the first direction so that the body latch teeth selectively engage and disengage the bonnet latch teeth.",
    "7. The boltless bonnet assembly of claim 6, wherein the screws are attached to the bonnet and the bonnet latch is moveable relative to the bonnet between a first position and a second position, wherein when in the first position, the bonnet latch teeth engage the body latch teeth, and when in the second position, the bonnet latch teeth disengage the body latch teeth.",
    "8. The boltless bonnet assembly of claim 6, wherein the screws extend through the bonnet from the bonnet latch to an outside surface of the bonnet.",
    "9. The boltless bonnet assembly of claim 6, further comprising the body latch fixedly attached to the ram body and positioned for engagement with the bonnet latch.",
    "10. The boltless bonnet assembly of claim 9, wherein the plurality of body latch teeth are attached to and extend from the surface of the body latch.",
    "11. The boltless bonnet assembly of claim 10, wherein the plurality of bonnet latch teeth and the plurality of body latch teeth have variable cross-sectional areas.",
    "12. The boltless bonnet assembly of claim 6, wherein the screws comprise two or more screws attached to the bonnet and the bonnet latch to move the bonnet latch into and out of engagement with the ram body.",
    "13. The boltless bonnet assembly of claim 12, wherein the two or more screws extend through the bonnet and attach to the bonnet latch.",
    "14. A method for attaching a bonnet to a ram body of a blowout preventer (BOP), the method comprising: a) positioning the bonnet adjacent the ram body, the ram body defining a ram bore extending through the ram body in a first direction, and a ram cavity extending through the ram body in a second direction along a ram cavity axis, the ram body further having a body latch comprising a plurality of body latch teeth extending in a direction transverse to the ram cavity axis, at least one of the body latch teeth having opposing first and second flanks angled relative to one another from a point of the at least one of the body latch teeth toward the ram body, the first flank positioned nearer to the ram bore and having a steeper pitch relative to the ram cavity axis than the second flank; and b) rotating engagement/disengagement screws attached to a bonnet latch having a plurality of bonnet latch teeth to drive a bonnet latch teeth in the first direction and into engagement with the body latch teeth.",
    "15. The method of claim 14, further comprising: rotating the engagement/disengagement screws to release the bonnet latch teeth from engagement with the body latch teeth.",
    "16. The method of claim 14, further comprising: with the bonnet latch teeth disengaged from the body latch teeth, sliding the bonnet away from the ram body until BOP rams in the ram body are accessible for repair or replacement.",
    "17. The method of claim 16, further comprising: rotating the bonnet and the BOP rams relative to the ram body to improve accessibility of the BOP rams."
  ],
  "description_excerpt": "1. Field of the Invention This technology relates to oil and gas wells, and in particular to a boltless bonnet assembly for a blowout preventer (BOP) for use in wellbore operations. 2. Brief Description of Related Art The existing technologies for extracting fossil fuels use components such as a blowout preventer (BOP) for preventing well blowouts. A typical BOP includes a bore that runs through the BOP and connects to a wellbore. Due to the physical and mechanical demands placed on BOPs in the field, the components of a BOP assembly, such as the BOP rams, need to be examined, adjusted, machined and/or replaced periodically. The BOP bonnet assembly typically must be separated from the ram body of the BOP to allow access to serviceable components such as the ram block. The operation of disengaging the BOP bonnets from the ram body can be very laborious, typically requiring specialized tools designed to accommodate connectors such as the large diameter bolts employed in these systems, and therefore requires appreciable time, effort and cost for the technicians and engineers charged with separating the bonnets. In addition, there is a significant concern related to the amount of down time for the rig, which requires the BOP for operation, and the potential millions of dollars that may be lost while the wellbore equipment is idle. Moreover, a wellbore may be located in an environment that may be difficult to access, such as a deep water wellbore, where even greater costs, time, and associated operator safety concerns must be addressed.",
  "cpc": [
    "E21B 33/063",
    "E21B 33/061",
    "E21B 33/062",
    "F16B 35/005",
    "F16K 27/047",
    "F16K 43/00",
    "F16L 25/065",
    "Y10T 137/0491",
    "Y10T 137/6065"
  ],
  "ipc": [
    "E21B 33/06",
    "F16B 35/00",
    "F16K 27/04",
    "F16K 43/00",
    "F16L 25/06"
  ],
  "assignees": [
    "HYDRIL USA DISTRIB LLC"
  ],
  "inventors": [
    "Prabhakaran Surendran",
    "BOSE MAREESAN",
    "Jayaprakasam Premkumar",
    "JEEVAGAN ARUN",
    "Kumar Sandhya Asok",
    "KRISHNASAMY KATHIRESAN",
    "MUNISWAMY RAGHAVENDRA",
    "Shenbagalingam Manikandan"
  ],
  "filing_date": "2015-06-29",
  "publication_date": "2017-10-17",
  "grant_date": "2017-10-17",
  "priority_date": "2015-06-29",
  "application_number": "US-201514753721-A",
  "family_id": "56373158",
  "citations": [
    "US2002162981A1",
    "US2003085040A1",
    "US2013264502A1",
    "US3345087A",
    "US4253638A",
    "US6328343B1",
    "US8316948B2",
    "US8408514B2"
  ]
}

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