US1708316A - Blow-out preventer - Google Patents

Blow-out preventer Download PDF

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US1708316A
US1708316A US134391A US13439126A US1708316A US 1708316 A US1708316 A US 1708316A US 134391 A US134391 A US 134391A US 13439126 A US13439126 A US 13439126A US 1708316 A US1708316 A US 1708316A
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packing
shell
rotatable
drill pipe
sleeve
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US134391A
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John W Macclatchie
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    • EFIXED CONSTRUCTIONS
    • E21EARTH DRILLING; MINING
    • E21BEARTH DRILLING, e.g. DEEP DRILLING; OBTAINING OIL, GAS, WATER, SOLUBLE OR MELTABLE MATERIALS OR A SLURRY OF MINERALS FROM WELLS
    • E21B33/00Sealing or packing boreholes or wells
    • E21B33/02Surface sealing or packing
    • E21B33/03Well heads; Setting-up thereof
    • E21B33/06Blow-out preventers, i.e. apparatus closing around a drill pipe, e.g. annular blow-out preventers

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  • This invention is a means for preventing blowing-out of wells by providing'for usual operation of a rotary drill pipe While positively packing-0E between the drill pipe and the well casing; and it is the object of the invention to conserve the packing 1ne ⁇ dium by relieving it of the weight of the string of drill pipe, andrto expand the packing to operative position by any excessive pressure which might develop inthe well.
  • lIt is a still further object of the invention to positively retain the drill pipe and its associated rotatable elements in packed-off relation to the well casing, and to secure and release the retaining means with minimum effort and expenditure of time.
  • Fig. 1 is a front elevation of the blow-out preventer, partly in axial section, and showing the same in ⁇ operative position with relation to a well rig.
  • Fig. 2 is a top view of the blow-out preventer.
  • Fig. 3 is a transverse section on the line 3-3 of Fig. 1.
  • Fig. 4 is a diagrammatic showing of the 'cam operating means.
  • Fig. 5 is a front elevation, partly in axial section, showing the .use of the device as a packing head.
  • Fig. 6 is a transverse section on the line 6-6 of Fig. 5.
  • Fig 7 is a view similar to use of the device as a spider.
  • Fig. 8 is a transverse section on the line 8 8 of Fig. 7.
  • connection Fig. 5 showing 9, 1926.
  • Drill pipe 3 in the well casing 4 projects upwardly from the casing through the derrick fioor and is engaged by the usual rotary table 5.
  • One of the cat-heads of the draw Works for the rotary table is Shown at 6, the draw works and the rotary table having the usual driving connections (not shown).
  • the blow-out preventer is mounted in the cellar 2 beneath the derrick i'loor, and comprises an annula'r shell 10 threaded onto' the upper end of well casing 4 and surrounding the d ⁇ rill pipe 3.
  • the shell is provided with T-couplings 11 for connecting the usual circulating pipes 12, and above the couplings 11 the shell flares to an increased diameter forming an end seat 13 and a lateral bearing surface 14.
  • the packing means which has a bore adapted to lit snugly on the drill pipe, comprises an expandible sleeve 17 of rubber or the like' provided with end rings 18 of wear resisting material such as a suitable metal, and the packing means is preferably diametrically split as shown at 19 so that it may be readily mounted on the drill pipe.
  • he outer periphery of the packing is spaced from bearing surface 14, and a sleeve 21 is mounted in this space with the packing 17 expandible against its inner periphery and its outer periphery flanged as shown at 22 to form retaining means for roller bearings 23 which provide an antifrictional engagement between sleeve 21 and the bearing surface 14.
  • axial compression o the packing 17-18 against the ball race 16 is adapted to radially expand the packing so that it tightly engages the drill pipe 3 and the ⁇ sleeve 21, thereby providing a fluid tight connection between the pipe and sleeve, and causing rotation of the sleeve with the pipe and packing, with the rotating elements provided with both end and lateral antiirictional bearings by means of ball race 16 and roller bearings 23.
  • the sleeve is packed-oit relative to the stationis adapted to lock Y on a flange 41 of sleeve vhorizontally as shown at 44.
  • ary shell 10 to provide an absolutely fluid tight closure between the drill pipe and the well casing.; and in order to eliminate excessive wear of this additional packing medium which is between rotating and nonrotating elements, the packing is only expanded into fluid tight engagement with said ⁇ elements when the pressure in the well is such as to tend to cause a blow-out.
  • the packing is shown as cup packing 24 fixed to the ends of sleeve 21 by retaining rings 25 which may be bolted to the sleeve as shown at 26; and the sleeve 21 and its associated parts may be retained in shell 10 by a ring 27 bolted to the upper end of the shell as shown at 28, and overlying the upper retaining ring 25 at its inner periphery.
  • the cup-shaped peripheral flanges 30 of the packing extend downwardly along the bearing surface 14 and are expanded to tight packing engagement therewith by the pressure in the well casing; and as a consequence the assembled structure completely packs-0E between the well casing ⁇ and the drill pipe, while permitting usual operation of the drill pipe and eliminating excessive wear of the parts.
  • Means are provided for locking the parts in assembled relation and axially compressing the packing 17 for radial expansion to operative position; and forv thisfpurpose a sleeve 31 is threaded onto the upper end o shell 10, and is provided 4with circumferentially spaced pairs of bell-crank levers are pivoted on pins 34. Arms 35 of the bell-crank levers curve inwardly over the upper end of shell 10 and sleeve 21 into axial alinement with the packing 17-18, and rollers 3G journaled in the ends of the arms provide anti-frictional contact with the upper ring of the packing.
  • the opposite ends 37 of the bell-crank levers project radially and are adapted to be dependently swung for shifting arms 35 so as to'release packing 17-18 or axially compress it against the ball race ⁇ 16 and the means for dependently swinging the levers the arms 35 in either their engaged or released position.
  • annulus 40 is rotatable 31, and the inner periphery of the annulus forms cam surfaces cooperating with the respective arms 37.
  • the cams foreach arm comprise cam surfaces vertically spaced to receive the arm between the same, and the cain surfaces extend horizontally as shown at 42, and are then inclined as shown at 43 to terminate Rotation of annulusv 40 in opposite directions willthus cause the arms 37 to ride up or down the inclined surfaces 43 for swinging the bellcrank levers to raise or lower arms 35; and the arms l37 are held between the horizontal lugs 32 between which of a. well which packing medium 17-18 being mounted on surfaces 42 or 44 to lock the bell-crank levers when arms 35 are either raised or lowered.
  • Abutments 45 are provided at the ends of the cams, so that when annulus 40 has been rotated until the arms 37 engage one or the other of their end abutments, continued turning of the annulus will correspondingly rotate sleeve 31 and will thus screw the latter up or down at its threaded connection with shell 10.
  • the clamping engagement of rollers 36 against the packing 17--13l may thus be tightened, or the sleeve 31 may be disengaged from shell 10 to permit disassembly of the device.
  • the annulus 40 is preferably adapted to be rot-ated by thepowery drive of the well drilling apparatus; and for thisl purpose the outer periphery'of the annulus forms a pair of grooves 50, and cables 51 are fixed to the annulus and extend around the same inv opposite directions in the respective grooves.
  • the ends of the cables are guided over pulleys 52 through the tion adjacent the cat-head 6 which is rotated by the drive mechanism, so that when a bight of one cable or the other, depending upon the direction in which it is desired to turn annulus 40, is snubbcd around the rotating cat-head, the annulus is turned in the desired direction by the power drive.
  • the packing 17-18 rotating with the drill pipe 3 might tend to rotate sleeve 31 after it had been screwed to the desired adjusted position, this possibility the sleeve 31 may be locked in adjusted position by, bolts 55l which are threaded througha flange 5.7 of the shell 10 so as to engage the flange 41 of sleeve 31.
  • the bolts may be held in set position by lock nuts 56. l
  • a sleeve 71 is mounted in shell 10 on seat 13 and forms an abutment 7 5 for the lower ring of packing ⁇ 17-18, and this sleeve is packed-off relative to the shell by annular packing 72 which projects beyond the lower end ofthe sleeve and is received in a groove in the seat 13.
  • Packing 17 is radially expanded to provide a fluid tight connection between-sleeve 71 and the well tubing by axially compressing the packing between coupling collar 3h and the abutment 7 5'; and the means ⁇ for axially compressing the packing also positively locks the parts in assembled lrelation and expands the packing 72.
  • a collar may be threaded onto the upper ⁇ end and to prevent derrick floor 1 to, a posithus described may be adapted lock of shell 10 with a flange 7 6 of the collar extending over the upper ends of shell 10 and sleeve 71 and abutting against the coupling collar 3b of the well tubing. Screwing the collar downwardly on shell 10 will thus axially compress packing 17-18 between coupling collar 31 and abutment 75 and will also depress sleeve 71, so that packing 17 and 72 are expanded to operative position for completely packing-off between the well casing and tubing, and all of the parts are held against displacement.
  • a device of the character described adapted for use in connection with well apparatus comprising a shell adapted for mounting on a wel-l casing, said shell forming an end bearing seat and a lateral bearing surface, packing adapted to snugly engage a drill pipe rotatable in the well casing, an anti-friet-ional axial abutmentl between the packing and the end bearing seat of the shell, a sleeve in the shell engaging the packing, roller bearings between the sleeve and the lateral bearing surface of the shell, cup-packing at the end of the sleeve expanded to operative engagement with the lateral bearing surface of the shell by pressur'e in the shell, an annulus threaded on the shell, a member pivoted to the annulus, an anti-frictional engagement between the pivoted member and theI first mentioned packing adapted to axially compress said packing so as to radially expand the same to operative position by swinging said pivoted member, a camrotatable on the annulus engaging the pivoted member
  • a device of the character described adapted for use in connection with well engage a drill pipe which is apparatus comprising a shell adapted for mounting on a well casing, packing adapted to snugly engage a drill pipe which is rotatable in the Well casing, means adapted for rotation in the shell and engagement by the packing to provide a fluid tight connection between the drill pipe and rotatable means, anti-frictional end and lateral bearings for the rotatable means in the shell, packing between the rotatable means and the shell adapted for expansion to operative position by pressure in the shell, anti-frictional contact means for compressing the lirst mentioned packing to operative position, and means for locking or releasing said compressing means adapted for actuation by the power drive of the well apparatus.
  • a device of the character described adapted to pack-off between a well casing and a rotatable drill pipe, comprising a shell on the Well casing, packing on the drill pipe, a cooperating abutment for the packing rotatable in the shell, and means for packing-off between said abutment and the shell adapted for expansion to operative position by pressure in the shell.
  • a device of the character described comprising a shell adapted for mounting on a well casing, packing adapted to snugly engage a drill pipe which is rotatable in the well casing, means engagcable by the packing and rotatable in the shell, a member pivoted relative to the she-ll and adapted to engage the packing for axially compressing the same to radially expanded operative position by swinging the pivoted member, and a cam adapted to engage the pivoted member for swinging and locking the same in operative position.
  • a device of the character comprising a shell adapted for mounting on a Wellcasing, packing adapted to snugly engage a drill pipe which is rotatable in the Well casing, means enga-geable by the packing and rotatable in the shell, and a member mounted on the shell and having an antifrictional engagement with the packing for axially compressing the same to radially expanded operative position.
  • a device of the character described a well casing, packing adapted to snugly rotatable in the Well casing, means engageable by the packing and rotatable in the shell, an annulus threaded on the shell, a member' pivoted to the annulus adapted to engage the packing for axially compressing the same to radially expanded operative position by swinging movement of the pivoted member, a cam rotatable on the annulus engaging the pivoted member for swinging the same, and an end abutmentbetween the cam and the pivoted member adapted to rotate the annulns with the cam vafter the pivoted member is swung, said rotation ot the annulus adjusting its threaded connection on the shell.
  • a device of the character described adapted for mounting on a well casing, packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable retaining means for the packing, non-rotatable means for compressing the packing and locking the same relative to the rotatable drill pipe and retaining means, and anti-frictional means between the rotatable and non-rotatable means.
  • a device of th'e character described comprising a shell adapted for mounting on well casing, a rotatable retaining means in the shell, packing between the rotatable retainingv means and a drill pipe which is rotatable in the well casing, anti-rictional end and lateral bearings between the rotatable retaining means and the shell, and packing between the rotatable retaining means and the shell.
  • a device of the character described adapted for mounting on well casing and comprising packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable lateral retaining means tor thc packing, non-rotatable means independent ot the lateral retaining means for compressing the packing, and anti-frictional means bctween the rotatable-and non-rotatable means.
  • a device of the character described adapted for mounting on well casing and packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable retaining means for the packing.l non-rotatable means for compressing the packing, and anti-rictional means between the rotatable and non-rotatable means.
  • a device of the character described adapted for mounting on well casing and comprising packing adapted to engage a drill pipe which is rotatable in the well casing, means-for compressing the packing, and a cam rotatable to shift the compression means to operative or inoperative position.
  • a device of the character described adapted for use in connection with well ap paratus and comprising packing adapted to engage a drill pipe which is rotatable in well casing, a pivoted member adapted to engage the packing t'or compressing the, same, and means for swinging the pivoted member to operative or inoperative position adapted for actuation by the power drive ot the well apparatus.

Description

April 9, 1929. W- MacCLATCHlE 1,708,316
BLOW-OUT PREVENTER Filed Sept. 9. 1926 2 Sheets-Sheet I 'il HW -42 43 44 INVENTOR.
A TTORNE Y.
Cil
Patented Apr. 9, 1929.
- UNITED STATES JOHN W. MACCLATCHIE, OF COMPTON, CALIFORNIA.
BLOW-OUT PREVEN TER.
Application filed September This invention is a means for preventing blowing-out of wells by providing'for usual operation of a rotary drill pipe While positively packing-0E between the drill pipe and the well casing; and it is the object of the invention to conserve the packing 1ne` dium by relieving it of the weight of the string of drill pipe, andrto expand the packing to operative position by any excessive pressure which might develop inthe well.
It is a further object of the invention to provide anti-frictional means between the rotating and the stationary elements of the device, and to arrange the anti-fiictional means so as to adequately provide for both end andy lateral thrust and thereby insure operation with minimum frictional resistanice and provide an extremely durable construction.
lIt is a still further object of the invention to positively retain the drill pipe and its associated rotatable elements in packed-off relation to the well casing, and to secure and release the retaining means with minimum effort and expenditure of time.
It is a still further object of the invention to provide a blow-out preventer which by substitution of interchangeable parts will readily form either a spider for use in pulling strings of drill pipe or a packing head for use on a well which is on production.
Further objects of the invention will be readily understood from the following description of the accompanying drawings, in which:
Fig. 1 is a front elevation of the blow-out preventer, partly in axial section, and showing the same in `operative position with relation to a well rig.
Fig. 2 is a top view of the blow-out preventer.
Fig. 3 is a transverse section on the line 3-3 of Fig. 1.
Fig. 4 is a diagrammatic showing of the 'cam operating means.
Fig. 5 is a front elevation, partly in axial section, showing the .use of the device as a packing head.
Fig. 6 is a transverse section on the line 6-6 of Fig. 5.
Fig 7 is a view similar to use of the device as a spider.
Fig. 8 is a transverse section on the line 8 8 of Fig. 7.
The invention is illustrated in connection Fig. 5 showing 9, 1926. Serial No. 134,391.
with a usual rotary drilling apparatus which is mounted in a well rig including derrick floor 1 and the usualcellar 2. Drill pipe 3 in the well casing 4 projects upwardly from the casing through the derrick fioor and is engaged by the usual rotary table 5. One of the cat-heads of the draw Works for the rotary table is Shown at 6, the draw works and the rotary table having the usual driving connections (not shown). A
The blow-out preventer is mounted in the cellar 2 beneath the derrick i'loor, and comprises an annula'r shell 10 threaded onto' the upper end of well casing 4 and surrounding the d\rill pipe 3. The shell is provided with T-couplings 11 for connecting the usual circulating pipes 12, and above the couplings 11 the shell flares to an increased diameter forming an end seat 13 and a lateral bearing surface 14.
A ball race 16 1's mounted in shell 10 on the seat 13, and packing means which is mounted on the drillpipe 3 abuts against the upper cage of the ball race. The packing means, which has a bore adapted to lit snugly on the drill pipe, comprises an expandible sleeve 17 of rubber or the like' provided with end rings 18 of wear resisting material such as a suitable metal, and the packing means is preferably diametrically split as shown at 19 so that it may be readily mounted on the drill pipe.
he outer periphery of the packing is spaced from bearing surface 14, and a sleeve 21 is mounted in this space with the packing 17 expandible against its inner periphery and its outer periphery flanged as shown at 22 to form retaining means for roller bearings 23 which provide an antifrictional engagement between sleeve 21 and the bearing surface 14. By this arrangement, axial compression o the packing 17-18 against the ball race 16 is adapted to radially expand the packing so that it tightly engages the drill pipe 3 and the` sleeve 21, thereby providing a fluid tight connection between the pipe and sleeve, and causing rotation of the sleeve with the pipe and packing, with the rotating elements provided with both end and lateral antiirictional bearings by means of ball race 16 and roller bearings 23. v
In addition to the packing rbetween the rotatable sleeve and the drill pipe, the sleeve is packed-oit relative to the stationis adapted to lock Y on a flange 41 of sleeve vhorizontally as shown at 44.
ary shell 10 to provide an absolutely fluid tight closure between the drill pipe and the well casing.; and in order to eliminate excessive wear of this additional packing medium which is between rotating and nonrotating elements, the packing is only expanded into fluid tight engagement with said\elements when the pressure in the well is such as to tend to cause a blow-out.
As .an instance of this arrangement the packing is shown as cup packing 24 fixed to the ends of sleeve 21 by retaining rings 25 which may be bolted to the sleeve as shown at 26; and the sleeve 21 and its associated parts may be retained in shell 10 by a ring 27 bolted to the upper end of the shell as shown at 28, and overlying the upper retaining ring 25 at its inner periphery. The cup-shaped peripheral flanges 30 of the packing extend downwardly along the bearing surface 14 and are expanded to tight packing engagement therewith by the pressure in the well casing; and as a consequence the assembled structure completely packs-0E between the well casing` and the drill pipe, while permitting usual operation of the drill pipe and eliminating excessive wear of the parts.
Means are provided for locking the parts in assembled relation and axially compressing the packing 17 for radial expansion to operative position; and forv thisfpurpose a sleeve 31 is threaded onto the upper end o shell 10, and is provided 4with circumferentially spaced pairs of bell-crank levers are pivoted on pins 34. Arms 35 of the bell-crank levers curve inwardly over the upper end of shell 10 and sleeve 21 into axial alinement with the packing 17-18, and rollers 3G journaled in the ends of the arms provide anti-frictional contact with the upper ring of the packing.
The opposite ends 37 of the bell-crank levers project radially and are adapted to be dependently swung for shifting arms 35 so as to'release packing 17-18 or axially compress it against the ball race`16 and the means for dependently swinging the levers the arms 35 in either their engaged or released position. Y
For this purpose an annulus 40 is rotatable 31, and the inner periphery of the annulus forms cam surfaces cooperating with the respective arms 37. The cams foreach arm comprise cam surfaces vertically spaced to receive the arm between the same, and the cain surfaces extend horizontally as shown at 42, and are then inclined as shown at 43 to terminate Rotation of annulusv 40 in opposite directions willthus cause the arms 37 to ride up or down the inclined surfaces 43 for swinging the bellcrank levers to raise or lower arms 35; and the arms l37 are held between the horizontal lugs 32 between which of a. well which packing medium 17-18 being mounted on surfaces 42 or 44 to lock the bell-crank levers when arms 35 are either raised or lowered.
Abutments 45 areprovided at the ends of the cams, so that when annulus 40 has been rotated until the arms 37 engage one or the other of their end abutments, continued turning of the annulus will correspondingly rotate sleeve 31 and will thus screw the latter up or down at its threaded connection with shell 10. The clamping engagement of rollers 36 against the packing 17--13l may thus be tightened, or the sleeve 31 may be disengaged from shell 10 to permit disassembly of the device.
The annulus 40 is preferably adapted to be rot-ated by thepowery drive of the well drilling apparatus; and for thisl purpose the outer periphery'of the annulus forms a pair of grooves 50, and cables 51 are fixed to the annulus and extend around the same inv opposite directions in the respective grooves. The ends of the cables are guided over pulleys 52 through the tion adjacent the cat-head 6 which is rotated by the drive mechanism, so that when a bight of one cable or the other, depending upon the direction in which it is desired to turn annulus 40, is snubbcd around the rotating cat-head, the annulus is turned in the desired direction by the power drive.
- In operation, the packing 17-18 rotating with the drill pipe 3 might tend to rotate sleeve 31 after it had been screwed to the desired adjusted position, this possibility the sleeve 31 may be locked in adjusted position by, bolts 55l which are threaded througha flange 5.7 of the shell 10 so as to engage the flange 41 of sleeve 31.
The bolts may be held in set position by lock nuts 56. l
By substituting interchangeable parts, the structure as for use as a packing head for the casing is on production, the
the well tubing 3a beneath one of the tubing couplings 3", and the sleeves 21 and 31 and their associated parts being removed from the shell 10. A sleeve 71 is mounted in shell 10 on seat 13 and forms an abutment 7 5 for the lower ring of packing `17-18, and this sleeve is packed-off relative to the shell by annular packing 72 which projects beyond the lower end ofthe sleeve and is received in a groove in the seat 13. Packing 17 is radially expanded to provide a fluid tight connection between-sleeve 71 and the well tubing by axially compressing the packing between coupling collar 3h and the abutment 7 5'; and the means`for axially compressing the packing also positively locks the parts in assembled lrelation and expands the packing 72.
As an instance of this arrangement a collar may be threaded onto the upper` end and to prevent derrick floor 1 to, a posithus described may be adapted lock of shell 10 with a flange 7 6 of the collar extending over the upper ends of shell 10 and sleeve 71 and abutting against the coupling collar 3b of the well tubing. Screwing the collar downwardly on shell 10 will thus axially compress packing 17-18 between coupling collar 31 and abutment 75 and will also depress sleeve 71, so that packing 17 and 72 are expanded to operative position for completely packing-off between the well casing and tubing, and all of the parts are held against displacement.
By further substitution of interchangeable parts the shell 10 may form a spider for drill pipe 3; and in this case an annulus 81 having a downwardly converging tapering bore is mounted in shell 10 on seat 13, and-slips 82 are adapted to be wedged in the bore of the annulus so that the teeth of the slips engage the drill pipe for supporting the same in usual manner. The a'nnulus 81 may be ixed in the shell 10 by a collar 80 which is threaded on the upper end of the shell and forms a iange 83 which overlies the upper end of the annulus for abutment therewith.
I claim:
1. A device of the character described adapted for use in connection with well apparatus, comprising a shell adapted for mounting on a wel-l casing, said shell forming an end bearing seat and a lateral bearing surface, packing adapted to snugly engage a drill pipe rotatable in the well casing, an anti-friet-ional axial abutmentl between the packing and the end bearing seat of the shell, a sleeve in the shell engaging the packing, roller bearings between the sleeve and the lateral bearing surface of the shell, cup-packing at the end of the sleeve expanded to operative engagement with the lateral bearing surface of the shell by pressur'e in the shell, an annulus threaded on the shell, a member pivoted to the annulus, an anti-frictional engagement between the pivoted member and theI first mentioned packing adapted to axially compress said packing so as to radially expand the same to operative position by swinging said pivoted member, a camrotatable on the annulus engaging the pivoted member to swing and the same in operative or inoperative position, a cable for rotating the cam adapted for operative engagement by the power drive of the well apparatus, an end abutment between the cam and the pivoted member adapted to rotate the annulus with the cam after the pivoted member is locked in operative or inoperative position, said rotation of the annulus adjusting its threaded connection on the shell, and means for locking the annulus in threaded adjusted position relative to the shell.
2. A device of the character described adapted for use in connection with well engage a drill pipe which is apparatus, comprising a shell adapted for mounting on a well casing, packing adapted to snugly engage a drill pipe which is rotatable in the Well casing, means adapted for rotation in the shell and engagement by the packing to provide a fluid tight connection between the drill pipe and rotatable means, anti-frictional end and lateral bearings for the rotatable means in the shell, packing between the rotatable means and the shell adapted for expansion to operative position by pressure in the shell, anti-frictional contact means for compressing the lirst mentioned packing to operative position, and means for locking or releasing said compressing means adapted for actuation by the power drive of the well apparatus.
3. A device of the character described comprising a shell adapted for mounting on a well casing, said shell forming an end bearing seat and a lateral bearing surface, means rotatable with a drill pipe in the well casing for packing-off between the drill pipe and the shell, and anti-frictional bearings between said rotatable means and the end bearing seat and the lateral bearing Surface of the shell.
4. A device of the character described adapted to pack-off between a well casing and a rotatable drill pipe, comprising a shell on the Well casing, packing on the drill pipe, a cooperating abutment for the packing rotatable in the shell, and means for packing-off between said abutment and the shell adapted for expansion to operative position by pressure in the shell.
5. A device of the character described comprising a shell adapted for mounting on a well casing, packing adapted to snugly engage a drill pipe which is rotatable in the well casing, means engagcable by the packing and rotatable in the shell, a member pivoted relative to the she-ll and adapted to engage the packing for axially compressing the same to radially expanded operative position by swinging the pivoted member, and a cam adapted to engage the pivoted member for swinging and locking the same in operative position.
6. A device of the character, described comprising a shell adapted for mounting on a Wellcasing, packing adapted to snugly engage a drill pipe which is rotatable in the Well casing, means enga-geable by the packing and rotatable in the shell, and a member mounted on the shell and having an antifrictional engagement with the packing for axially compressing the same to radially expanded operative position.
7. A device of the character described a well casing, packing adapted to snugly rotatable in the Well casing, means engageable by the packing and rotatable in the shell, an annulus threaded on the shell, a member' pivoted to the annulus adapted to engage the packing for axially compressing the same to radially expanded operative position by swinging movement of the pivoted member, a cam rotatable on the annulus engaging the pivoted member for swinging the same, and an end abutmentbetween the cam and the pivoted member adapted to rotate the annulns with the cam vafter the pivoted member is swung, said rotation ot the annulus adjusting its threaded connection on the shell.
8. A device of the character described adapted for mounting on a well casing, packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable retaining means for the packing, non-rotatable means for compressing the packing and locking the same relative to the rotatable drill pipe and retaining means, and anti-frictional means between the rotatable and non-rotatable means.
9. A device of the character described adapted for mounting on a well casing, packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable retaining means for the packing, means independent of the rotatable retaining means i` or compressing the packing and locking the same relative to the rotatable drill pipe and retaining means, and anti-frictional meansI between said rotatable retaining means and said independent means.
10. A device of th'e character described comprising a shell adapted for mounting on well casing, a rotatable retaining means in the shell, packing between the rotatable retainingv means and a drill pipe which is rotatable in the well casing, anti-rictional end and lateral bearings between the rotatable retaining means and the shell, and packing between the rotatable retaining means and the shell.
11. A device of the character described comprising a shell adapted for mounting on well Icasing, a rotatable retaining means in the shell, packing between the rotatable re taining means and a drill pipe which is rotatable in the well casing, anti-frictional end and lateral bearings between the Vrotatable. retaining means and the shell, and packing between the rotatable retaining means and the comprising shell adapted for expansion by pressure in I the shell.
12. A device of the character described adapted for mounting on well casing and comprising packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable lateral retaining means tor thc packing, non-rotatable means independent ot the lateral retaining means for compressing the packing, and anti-frictional means bctween the rotatable-and non-rotatable means.
13. A device of the character described adapted for mounting on well casing and packing adapted to engage a drill pipe which is rotatable in the well casing, rotatable retaining means for the packing.l non-rotatable means for compressing the packing, and anti-rictional means between the rotatable and non-rotatable means.
14. A device of the character described adapted for mounting on well casing and comprising packing adapted to engage a drill pipe which is rotatable in the well casing, means-for compressing the packing, and a cam rotatable to shift the compression means to operative or inoperative position.
15. A device of the character described adapted for use in connection with well ap paratus and comprising packing adapted to engage a drill pipe which is rotatable in well casing, a pivoted member adapted to engage the packing t'or compressing the, same, and means for swinging the pivoted member to operative or inoperative position adapted for actuation by the power drive ot the well apparatus.
` 16. A device of the cha 'acter described comprising a shell adapted t'or mounting on vell casing, packing adapted to engage drill pipe which is rotatable in the well easing, means for compressing the packing, an annulus threadedon the shell, a cam rotatable on the annulus for actuating the compression means, and an vend abutment between the cam and the compression means adapted to rotate the annulus after the compression means has been moved to operative position, said rotation of the annulus adjusting its threaded connection on the shell.v
In testimony whereof he has atiixed his signature to tthis specitication.
OHN WV. MACCLATCHIE.
(itl
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Cited By (23)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3052300A (en) * 1959-02-06 1962-09-04 Donald M Hampton Well head for air drilling apparatus
US5647444A (en) * 1992-09-18 1997-07-15 Williams; John R. Rotating blowout preventor
US5662181A (en) * 1992-09-30 1997-09-02 Williams; John R. Rotating blowout preventer
US6138774A (en) * 1998-03-02 2000-10-31 Weatherford Holding U.S., Inc. Method and apparatus for drilling a borehole into a subsea abnormal pore pressure environment
US6263982B1 (en) 1998-03-02 2001-07-24 Weatherford Holding U.S., Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US6470975B1 (en) 1999-03-02 2002-10-29 Weatherford/Lamb, Inc. Internal riser rotating control head
US20040178001A1 (en) * 1998-03-02 2004-09-16 Weatherford/Lamb, Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US20050061546A1 (en) * 2003-09-19 2005-03-24 Weatherford/Lamb, Inc. Method for pressurized mud cap and reverse circulation drilling from a floating drilling rig using a sealed marine riser
US20060108119A1 (en) * 2004-11-23 2006-05-25 Weatherford/Lamb, Inc. Riser rotating control device
US20060144622A1 (en) * 2002-10-31 2006-07-06 Weatherford/Lamb, Inc. Rotating control head radial seal protection and leak detection systems
US7159669B2 (en) 1999-03-02 2007-01-09 Weatherford/Lamb, Inc. Internal riser rotating control head
US7926593B2 (en) 2004-11-23 2011-04-19 Weatherford/Lamb, Inc. Rotating control device docking station
US7997345B2 (en) 2007-10-19 2011-08-16 Weatherford/Lamb, Inc. Universal marine diverter converter
US8286734B2 (en) 2007-10-23 2012-10-16 Weatherford/Lamb, Inc. Low profile rotating control device
US8322432B2 (en) 2009-01-15 2012-12-04 Weatherford/Lamb, Inc. Subsea internal riser rotating control device system and method
US8347982B2 (en) 2010-04-16 2013-01-08 Weatherford/Lamb, Inc. System and method for managing heave pressure from a floating rig
US8347983B2 (en) 2009-07-31 2013-01-08 Weatherford/Lamb, Inc. Drilling with a high pressure rotating control device
US8826988B2 (en) 2004-11-23 2014-09-09 Weatherford/Lamb, Inc. Latch position indicator system and method
US8844652B2 (en) 2007-10-23 2014-09-30 Weatherford/Lamb, Inc. Interlocking low profile rotating control device
US9175542B2 (en) 2010-06-28 2015-11-03 Weatherford/Lamb, Inc. Lubricating seal for use with a tubular
US9359853B2 (en) 2009-01-15 2016-06-07 Weatherford Technology Holdings, Llc Acoustically controlled subsea latching and sealing system and method for an oilfield device
US10041335B2 (en) 2008-03-07 2018-08-07 Weatherford Technology Holdings, Llc Switching device for, and a method of switching, a downhole tool
US11299952B2 (en) * 2006-05-08 2022-04-12 Mako Rentals, Inc. Rotating and reciprocating swivel apparatus and method

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3052300A (en) * 1959-02-06 1962-09-04 Donald M Hampton Well head for air drilling apparatus
US5647444A (en) * 1992-09-18 1997-07-15 Williams; John R. Rotating blowout preventor
US5662181A (en) * 1992-09-30 1997-09-02 Williams; John R. Rotating blowout preventer
US6138774A (en) * 1998-03-02 2000-10-31 Weatherford Holding U.S., Inc. Method and apparatus for drilling a borehole into a subsea abnormal pore pressure environment
US6263982B1 (en) 1998-03-02 2001-07-24 Weatherford Holding U.S., Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US20040178001A1 (en) * 1998-03-02 2004-09-16 Weatherford/Lamb, Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US6913092B2 (en) 1998-03-02 2005-07-05 Weatherford/Lamb, Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US7448454B2 (en) 1998-03-02 2008-11-11 Weatherford/Lamb, Inc. Method and system for return of drilling fluid from a sealed marine riser to a floating drilling rig while drilling
US7159669B2 (en) 1999-03-02 2007-01-09 Weatherford/Lamb, Inc. Internal riser rotating control head
US6470975B1 (en) 1999-03-02 2002-10-29 Weatherford/Lamb, Inc. Internal riser rotating control head
US7258171B2 (en) 1999-03-02 2007-08-21 Weatherford/Lamb, Inc. Internal riser rotating control head
US7836946B2 (en) 2002-10-31 2010-11-23 Weatherford/Lamb, Inc. Rotating control head radial seal protection and leak detection systems
US8113291B2 (en) 2002-10-31 2012-02-14 Weatherford/Lamb, Inc. Leak detection method for a rotating control head bearing assembly and its latch assembly using a comparator
US20060144622A1 (en) * 2002-10-31 2006-07-06 Weatherford/Lamb, Inc. Rotating control head radial seal protection and leak detection systems
US8714240B2 (en) 2002-10-31 2014-05-06 Weatherford/Lamb, Inc. Method for cooling a rotating control device
US8353337B2 (en) 2002-10-31 2013-01-15 Weatherford/Lamb, Inc. Method for cooling a rotating control head
US7934545B2 (en) 2002-10-31 2011-05-03 Weatherford/Lamb, Inc. Rotating control head leak detection systems
US20050061546A1 (en) * 2003-09-19 2005-03-24 Weatherford/Lamb, Inc. Method for pressurized mud cap and reverse circulation drilling from a floating drilling rig using a sealed marine riser
US7237623B2 (en) 2003-09-19 2007-07-03 Weatherford/Lamb, Inc. Method for pressurized mud cap and reverse circulation drilling from a floating drilling rig using a sealed marine riser
US7926593B2 (en) 2004-11-23 2011-04-19 Weatherford/Lamb, Inc. Rotating control device docking station
US20110168392A1 (en) * 2004-11-23 2011-07-14 Weatherford/Lamb, Inc. Remote Operation of an Oilfield Device
US8826988B2 (en) 2004-11-23 2014-09-09 Weatherford/Lamb, Inc. Latch position indicator system and method
US10024154B2 (en) 2004-11-23 2018-07-17 Weatherford Technology Holdings, Llc Latch position indicator system and method
US9784073B2 (en) 2004-11-23 2017-10-10 Weatherford Technology Holdings, Llc Rotating control device docking station
US7487837B2 (en) 2004-11-23 2009-02-10 Weatherford/Lamb, Inc. Riser rotating control device
US8408297B2 (en) 2004-11-23 2013-04-02 Weatherford/Lamb, Inc. Remote operation of an oilfield device
US9404346B2 (en) 2004-11-23 2016-08-02 Weatherford Technology Holdings, Llc Latch position indicator system and method
US8701796B2 (en) 2004-11-23 2014-04-22 Weatherford/Lamb, Inc. System for drilling a borehole
US20060108119A1 (en) * 2004-11-23 2006-05-25 Weatherford/Lamb, Inc. Riser rotating control device
US8939235B2 (en) 2004-11-23 2015-01-27 Weatherford/Lamb, Inc. Rotating control device docking station
US11299952B2 (en) * 2006-05-08 2022-04-12 Mako Rentals, Inc. Rotating and reciprocating swivel apparatus and method
US7997345B2 (en) 2007-10-19 2011-08-16 Weatherford/Lamb, Inc. Universal marine diverter converter
US8286734B2 (en) 2007-10-23 2012-10-16 Weatherford/Lamb, Inc. Low profile rotating control device
US9004181B2 (en) 2007-10-23 2015-04-14 Weatherford/Lamb, Inc. Low profile rotating control device
US10087701B2 (en) 2007-10-23 2018-10-02 Weatherford Technology Holdings, Llc Low profile rotating control device
US8844652B2 (en) 2007-10-23 2014-09-30 Weatherford/Lamb, Inc. Interlocking low profile rotating control device
US10041335B2 (en) 2008-03-07 2018-08-07 Weatherford Technology Holdings, Llc Switching device for, and a method of switching, a downhole tool
US9359853B2 (en) 2009-01-15 2016-06-07 Weatherford Technology Holdings, Llc Acoustically controlled subsea latching and sealing system and method for an oilfield device
US8322432B2 (en) 2009-01-15 2012-12-04 Weatherford/Lamb, Inc. Subsea internal riser rotating control device system and method
US8770297B2 (en) 2009-01-15 2014-07-08 Weatherford/Lamb, Inc. Subsea internal riser rotating control head seal assembly
US9334711B2 (en) 2009-07-31 2016-05-10 Weatherford Technology Holdings, Llc System and method for cooling a rotating control device
US8636087B2 (en) 2009-07-31 2014-01-28 Weatherford/Lamb, Inc. Rotating control system and method for providing a differential pressure
US8347983B2 (en) 2009-07-31 2013-01-08 Weatherford/Lamb, Inc. Drilling with a high pressure rotating control device
US8347982B2 (en) 2010-04-16 2013-01-08 Weatherford/Lamb, Inc. System and method for managing heave pressure from a floating rig
US9260927B2 (en) 2010-04-16 2016-02-16 Weatherford Technology Holdings, Llc System and method for managing heave pressure from a floating rig
US8863858B2 (en) 2010-04-16 2014-10-21 Weatherford/Lamb, Inc. System and method for managing heave pressure from a floating rig
US9175542B2 (en) 2010-06-28 2015-11-03 Weatherford/Lamb, Inc. Lubricating seal for use with a tubular

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