[0001] This invention relates to a system for transferring pipe laterally between a pipe
rack and a pipe handling apparatus of the kind defined in the first part of claim
1.
[0002] A system is known from US Patent N° 3.810.553 which enables to transfer tubes laterally
from two magazines or racks, situated on either side of a pipe handling apparatus
transporting the pipes towards a drilling platform.
[0003] This system comprises
an elongated main support frame adapted to be positioned in proximity to a pipe rack,
a first trough of said pipe handling apparatus positioned on said support frame and
located along the pipe rack and
a pipe transferring lift assembly positioned on opposite sides of said support frame.
[0004] In the cited document, the tubes are moved from the magazine or rack, by means of
bars, along an inclined plane to said first trough of said pipe handling apparatus
which is designed to transport them to the platform.
[0005] This action often causes excessive wear on pipe especially the threaded ends which
must be protected from such wear.
[0006] This necessary care of the threads and pipe ends creates an extra step in the installation
of the pipe or other tubular in the hole resulting in a longer cycle time.
[0007] Accordingly, it is the principal object of the present invention to provide a system
for transferring pipes laterally between a pipe rack and a pipe handling apparatus,
that system being able to handle pipe without damaging the pin ends thereof and not
requiring that protective caps remain or be placed on the pipe ends.
[0008] According to the present invention, the system comprises:
two spaced apart pivotally supported arms located on said one side of said frame next
to said pipe rack,
each arm having on end pivotally coupled to support means such that its opposite end
may move upward and downward,
said two arms being located generally in line with each other for pivotal movement
about generally parallel pivot axes respectively,
a trough pivotally coupled to said arms at said opposite ends such that said trough
will move upward and downward with said opposite ends of said arms,
said trough being capable of supporting a length of pipe,
means for tilting said trough laterally in opposite directions and
means for moving said trough laterally in opposite directions and
means for moving said arms about their axes respectively for moving said opposite
ends of said arms and said trough upward and downward.
[0009] The invention is described in detail with reference to the accompanying drawings
in which preferred embodiments are shown by way of example.
Figure 1 is a perspective view of a pipe handling apparatus with the pipe transfer
system of the present invention located on one side of the apparatus next to a pipe
rack.
Figure 2 is a side view of the pipe transfer system of Figure 1.
Figure 3 is an enlarged end view of the tilting mechanism for the stacking and unstacking
trough of the pipe transfer system of Figures 1 and 2.
Figure 4 is an enlarged side view of the tilting mechanism for the stacking and unstacking
trough of the pipe transfer system of Figures 1 and 2.
Figure 5 is an end view of the pipe transfer system of Figures 1 and 2 with its stacking
and unstacking trough shown at different elevations and positions.
Figure 6 illustrates a hydraulic system for operating the pipe transfer system of
Figures 1-5.
Figure 7 is a top view of the vertical, pivoted trough of the pipe handling apparatus
of Figure 1.
Figure 8 is a side view of the vertically pivoted trough of the pipe handling apparatus
of Figure 1.
Figure 9 is a side view of the vertically pivoted trough of the pipe handling apparatus
of Figure 1 showing the trough pivoted to an inclined position by hydraulic cylinders.
Figure 10 is a cross-section of Figure 8 taken along the lines 10-10 thereof.
Figure 11 -is a cross-section of Figure 8 taken along the lines 11-11 thereof.
Figure 12 is a cross-section of Figure 8 taken along the lines 12-12 thereof.
Figure 13 is a cross-section of Figure 8 taken along the lines 13-13 thereof.
Figure 14 is a top view of a slidable apron attachable to the pipe moving device of
the pipe handling apparatus of Figure 1.
Figure 15 is a side view of the apron and pipe moving device of Figure 14.
Figure 16 is an end view of the pipe moving device of Figures 14 and 15.
[0010] Referring to the drawings, there will be described first the pipe handling apparatus
21 for raising pipe P such as casing, drill pipe, collars, or tubing up to a derrick
floor 25 of a drilling rig (not shown) and for removing the pipe P from the derrick
floor 25. The pipe P is stored in racks 27 on both sides of the apparatus 21. The
apparatus 21 comprises an elongated frame 29 which supports a trough 31 which may
be pivoted upward to an inclined position in alignment with a fixed trough 33 as shown
in Figures 1 and 9 or downward to a horizontal position as shown in Figures 5 and
10-13. Hydraulic cylinders 34 are provided for pivoting the trough 31 upward or downward.
The cylinders are pivotally attached to the frame 29 and their pistons are pivotally
attached to the trough 31. The rear end of the trough 31 is pivotally coupled to the
frame 29 at 35. The fixed trough 33 is supported in an inclined position by the derrick
floor 25 and support structure 36. The trough 31 comprises elongated frame members
37A-37D which support a V-shaped floor 39 along which the pipe P slides. An intermediate
portion 39A of the V-shaped floor 39 is tiltable laterally in either direction when
the trough 31 is horizontal, to dump pipe on either side of the apparatus 21 for storage
in the racks 27. The intermediate position 39A is tiltable by hydraulic cylinders
41. The cylinders 41 have their lower ends pivotally coupled to structure 43 which
is connected to frame members 37A and 37B and their pistons 41A pivotally coupled
to the intermediate portion 39A. Figure 12 illustrates the intermediate portion 39A
being tilted laterally to the left. The cylinders 49 move up and down with the trough
31 as it is pivoted up and down.
[0011] Also provided is a movable member 49 driven by an endless chain 51 for movement along
trough 31 in either direction between its ends 31A and 31 B. The bottom 53 of the
movable member 49 is V-shaped and slides along the floor 39. The bottom of the floor
39 has an elongated slot 53 formed therethrough. A lug 55 having a thin neck 56 extends
from the bottom of the movable member 49. The neck 56 extends through the slot 53
and the lug 55 is connected to the chain 51 below the floor 39. Means, not shown,
is provided for driving the chain 51 in either direction.
[0012] When it is desired to move pipe from either of the racks 27 upward to the derrick
floor, the following operations take place. The trough 31 is located in its horizontal
position and the movable member 49 is located at the rear end 31A of the trough 31.
A length of pipe is transferred from one of the racks 27 into the trough 31 where
it rests on the V-shaped floor 39. Trough 31 next is pivoted upward to be in alignment
with the fixed trough 33. The endless chain 51 is driven to move member 49 up the
trough 31 to its end 31 B. The front end 49A of member 49 engages the lower end of
the pipe P and pushes the pipe P upward in the troughs 31 and 33 until the pipe overlies
the derrick floor. The pipe then is lifted into the derrick by cable hoists and/or
elevators. The member 49 is retracted to the rear end 31A of the trough . 31; the
trough 31 is lowered to a horizontal position, and the process is repeated.
[0013] In moving pipe downward from the derrick floor 25, the trough 31 is raised to be
in alignment with the fixed trough 33 and member 49 moved to an upward position along
trough 31. The cable hoist locates a length of pipe in troughs 33 and 31 and member
49 is moved downward to the lower end of trough 31 to allow the pipe to slide downward
in the trough 31 to position the pipe on the intermediate portion 39A of the floor
39. The trough 31 then is lowered to a horizontal position and intermediate position
39A is tilted laterally to dump the pipe on either side of the apparatus 21 for storage
in one of the racks 27.
[0014] The pipe transfer system for transferring pipe between the racks 27 and the pipe
handling apparatus 21 comprises a pair of aligned arms 61 and 63 located on the side
of the pipe handling apparatus 21 and next to one of the pipe racks 27. In Figure
1, one pair of arms 61 and 63 are shown on the right of the apparatus 21 next to the
right rack 27. The ends 61A and 63A of arms 61 and 63 are pivotally coupled to the
frame 29 at 65 and 67. The opposite ends 61 B and 63B or arms 61 and 63 may move to
an upper position above the catwalk 69 and to a lower position below the catwalk 69
as shown in Figures 1, 2 and 5. In Figure 2 the arms 61 and 63 are shown in dashed
form in their upper position.
[0015] A hydraulic system is employed for moving the ends 61 B and 63B of arms 61 and 63
together to upward or downward positions or to any level in between. The hydraulic
system comprises a pair of cylinders 71 and 73 having their ends pivotally coupled
to the frame 29 at 75 and 77. The pistons 81 and 83 of the cylinders 71 and 73 are
pivotally coupled to arms 61 and 63. In Figure 2, the pistons 81 and 83 are shown
pivotally coupled at 85 and 87 to ears 89 and 91 which are connected to arms 61 and
63 respectively. When the pistons 81 and 83 are forced outward of their cylinders,
the ends 61 B and 63B of arms 61 and 63 are moved upward and when the pistons 81 and
83 are moved inside of their cylinders, the ends 61B and 63B of arms 61 and 63 are
moved downward. Referring to Figure 6, the hydraulic system for operating the cylinders
71 and 73 comprises an oil reservoir 93, a pump 95, a four-way directional control
valve 97 and appropriate flow lines.
[0016] Pivotally coupled to the ends 61B and 63B of arms 61 and 63 is a stacking and unstacking
trough 101 for carrying pipe between the rack 21 and the pipe handling apparatus 21.
The trough 101 can be pivoted laterally in either direction to allow pipe to be loaded
onto and from the trough 101. Referring to Figures 2-6, the mechanisms for coupling
the trough 101 to the ends 61 B and 63B of the arms 61 and 63 and for tilting the
trough 101 will be described. Tilting mechanisms 103 and 105 are provided at each
end of the trough 101. The ends 61 Band 63B of arms 61 and 63 have lugs 107 and 108
secured thereto respectively and which extend laterally outward. The lugs 107 and
108 are rotatably coupled to tilting mechanisms 103 and 105 respectively allowing
the arms 61 and 63 to move up or down together carrying the length of the trough 101
in a horizontal position. Each of tilting mechanisms 103 and 105 is the same. Tilting
mechanism 103 will be described in detail. The lug 107 is rotatably located in an
aperture 109 formed through a bearing member 111. Member 111 is rotatably mounted
on an upper shaft 113 which is supported by two mounts 115 and 117 fixedly secured
to the trough 101. The shaft 113 freely extends through apertures 115A and 117A formed
through mounts 115 and 117 and through aperture 111A formed through member 111 whereby
the mounts 115 and 117 can rotate about the shaft 113 and the shaft 113 can rotate
relative to member 111. A rotary actuator 121 is fixedly secured to the trough 191
by way of a plate 123 which is secured to the actuator 121 and to the trough 101.
The actuator 121 has a lower shaft 125 which can be rotated in opposite directions.
The lower shaft 125 is fixedly secured to a linkage 127 which is coupled to the shaft
113. The linkage 127 has an aperture 127A which freely receives the shaft 113 whereby
the linkage can rotate about the shaft 113. When the actuator 121 rotates its shaft
125 in one direction, the linkage 127 is rotated causing the linkage to turn about
the shaft 113 and hence tilt the actuator 121 and the trough 101. In Figure 3, the
trough 101 is shown in dotted lines tilted laterally in opposite directions. In Figure
3, the actuator 121 is not shown tilting with the trough for purposes of clarity.
[0017] The rotary actuator 121 is a commercially available actuator hydraulically actuated.
Referring to Figure 6, it comprises a cylinder 129 having two pistons 131 and 133,
with a rack 135 connected between the pistons. The rack 133 engages a pinion 139.
The shaft 125 is an extension of the pinion 139. When pressure is imposed on one side
of the cylinder 129 is drives the piston and the rack in one direction to rotate the
pinion 139 and hence the shaft 125. On the opposite side of the cylinder the pressure
is released. In Figure 6, member 140 is the cylinder for the rotary actuator 141 for
the tilting mechanism 105. Actuator 141 is the same as actuator 121. The cylinder
140 has two pistons 142 and 142 and a rack 145 connected between the pistons for rotating
a pinion 146 from which extends a shaft similar to shaft 107. Both actuators of mechanisms
103 and 105 are operated simultaneously by hydraulic fluid from reservoir 93 and pump
95 for driving their shafts in the same direction for tilting the trough 101. Four
way valve 143 is employed for controlling the direction in which the two actuators
121 and 141 rotate their shafts and hence the direction in which the trough 121 is
tilted.
[0018] The arms 61 and 63 and trough 101 operate in the following manner to transfer pipe
between the rack 27 and the pipe handling apparatus 21. Assume that pipe is to be
transferred from apparatus 21 upward to the rack 27. The arms 61 and 63 will be located
such that the trough 101 will be just below the catwalk 69 in a non-tilted position
whereby the V of the trough 101 will be straight up. In this position, the upper edge
of the trough 101 is located close to the catwalk 69 with very little space between
the trough edge and the catwalk 69 such that pipe rolling outward on the catwalk 69
will roll into the trough 101. The intermediate position 39A of the floor 39 of the
trough 31 is tilted laterally to dump a length of pipe onto the catwalk 69. From the
catwalk, the pipe will roll into the trough 101. The arms 61 and 63 then are raised
simultaneously to raise the trough 101 with the trough held in a non-tilted position.
As the trough is raised, its length will be held horizontal. The trough thus will
cradle and carry the pipe upward with no longitudinal movement of the pipe in the
trough 101. Thus the pipe cannot roll off of the trough, nor can it slide off of the
trough longitudinally. When the trough 101 reaches the top of the rack 27, upward
movement of the arms 61 and 63 will be terminated and the trough 101 will be tilted
laterally in a direction to dump the length of pipe onto the top of the rack 27. The
trough 101 will be moved to a non-tilted position and the arms 61 and 63 and trough
101 moved downward to repeat the process.
[0019] For transferring pipe from the rack 27 to the pipe handling apparatus 21, the arms
61 and 63 and trough 101 operate in the following manner. Assume that pipe is to be
transferred from an upper row of pipe on the track 27 to the pipe handling apparatus
21. The arms 61 and 63 will be located such that the trough 101 will be just below
the top row of the pipe on the rack 27 with the trough 101 in a non-tilted position
whereby the V of the trough 101 will be straight up. A length of pipe will be pushed
into the trough 101. The arms 61 and 63 will then be lowered simultaneously with the
trough 101 carrying the length of pipe downward in a horizontal position. When the
trough 101 reaches the level of the catwalk 69, downward movement of the arms 61 and
63 will be terminated and the trough 101 will be tilted laterally in a direction to
dump the length of pipe into the catwalk 69 where it will roll into the trough 31.
The trough 101 will be moved to a non-tilted position and the arms 61 and 63 and trough
101 moved upward to repeat the process.
[0020] A pair of arms 61 and 63 and a laterally tiltable trough 101 as described above will
be located on both sides of the apparatus 21 for transferring pipe between either
rack 27 and the apparatus 21.
[0021] When the incline of the troughs 31 and 33 is small, the pipe may not slide down the
trough from the derrick floor by gravity. Referring now to Figures 1, 7, 8, 11, 12,
and 14-16, there will be described in slidable apron 151 removably attachable to the
pipe moving device 49 of the pipe handling apparatus 21 for carrying pipe from the
derrick floor 25 down the troughs 33 and 31 when there is little or no height differential
between the derrick floor 25 and the frame 29 of the pipe handling apparatus 21. The
apron 151 comprises a V-shaped member slidable on the floor 39 of the trough 31. An
aperture 153 is formed close to the rear end 151Aofthe apron 151 into which is fitted
a triangular shaped securing member 155 which projects upward from a forward extension
of the neck 56 of member 49. The aperture 153 does not extend all of the way to the
rear end 151A of the apron 151 but is spaced therefrom a short distance. The member
153 slants downward toward its forward end whereby the member 155 may be inserted
into the aperture 153 by moving the member 49 forward while the apron 151 will ride
upward on the member 155 as it moves forward until it reaches full length of the aperture
153 at which time the apron will drop down with the member 155 located in the aperture
153. When the member 49 is moved forward by the chain, its front end 49A will engage
the rear end 151A of the apron and push the apron 151 forward along the trough 31.
For drawing pipe from the derrick floor, the apron 151 will be pushed onto the fixed
trough 33. A length of pipe will be loaded onto the apron 151 and the member 49 will
be moved backward by the chain 51 pulling the apron 151 and hence the pipe backward
whereby the pipe may be loaded onto the rack 27. When the member 49 moves backward
the rear end 155A of the member 155 engages the rear end 153B of the aperture 153,
pulling the apron 151 backward. As seen in Figures 7, 11, and 12, the intermediate
or dump portion 39A of the floor 39 of the trough 31 has two elongated apron holding
strips 161 and 163 formed along its top outer edges. When the apron 151 is pulled
onto the intermediate portion 39A, the outer edges 151 B abd 151 C of the apron slide
under the strips 161 and 163 whereby the apron is held to the intermediate or dump
portion 39A. Thus when the trough 31 is lowered to a horizontal position and the dump
portion 39A is pivoted laterally, the apron 151 also will be tilted laterally allowing
the pipe to be dumped onto the catwalk 69 for loading onto a rack 27 next to the apparatus
21. During dumping operations by the dump portion 39A, member 49 will not be located
above the dump portion 39A. When the apron 151 is tilted laterally by the dump portion
39A, its aperture 153 is moved above the member 155. However, when the apron is moved
back in place by the dump portion 39A, the aperture 153 will fit around the member
155 whereby the movable member 49 may push the apron along the trough 31 to the fixed
trough 33.
[0022] Although the apron 151 is used primarily for drawing pipe from the derrick floor
for loading on the rack, it is to be understood that it could be used for moving pipe
from the rack 27 to the derrick floor. The apron 151 also has advantages in that it
protects the main troughs 31 and 33 from wear. A teflon like coating may be applied
to the underside of the apron 151 to minimize friction.
[0023] When the height differential between the derrick floor 25 and the frame 29 is sufficient
such that the pipe will slide down troughs 33 and 31 by gravity, the apron 151 may
be removed as well as the securing member 155. Member 155 may be removably secured
to the forward extension of the neck 56 of member 49 by bolts.
[0024] Instead of employing the strips 161 and 163 to hold the apron 151 to the dump portion
39A, the apron 151 may have a thin neck extending down from its bottom with an enlarged
lug attached to the thin neck. The thin neck will extend through the slot 53 with
the enlarged lug located below the floor 39. This arrangement allows the apron 151
to slide on the floor 39 yet holds the apron 151 to the dump portion when it is tilted
for dumping purposes. In this embodiment, the apron 151 may be coupled to the member
49 by securing member 155 to the forward extension of the neck 56 of member 49 through
the aperture 153 of the apron 151 when the aperture 153 of the apron 151 is over the
forward extension of the neck. The apron 151 may be removed by removing member 155
and by sliding the apron forward when the trough 31 is at a slightly inclined position
to remove the lower thin neck of the apron from the slot 53 at the forward end of
the trough 31.
[0025] Preferably the apron 151 will be longer than the length of pipe it will carry.
[0026] The features of the pipe handling apparatus 21 are claimed in our co-pending WO-A-82/00853.
1. A system for transferring lengths of pipe laterally, between a pipe rack (27) and
a pipe handling apparatus (21) said pipe handling apparatus comprising an elongate
frame (29), said pipe rack being located on one side of said elongate frame, the system
being characterized by
two spaced apart pivotally supported arms (61, 63) located on said one side of said
frame (29) next to said pipe rack,
each arm having one end pivotally coupled to support means such that its opposite
end may move upward and downward,
said two arms being located generally in line with each other for pivotal movement
about generally parallel pivot axes (65, 67) respectively,
a trough (101) pivotally coupled to said arms at said opposite ends such that said
trough will move upward and downward with said opposite ends of said arms
said trough being capable of supporting a length of pipe,
means (103, 105) for tilting said trough laterally in opposite directions and
means (71, 73) for moving said arms about their axes respectively for moving said
opposite ends of said arms and said trough upward and downward.
2. The system of claim 1 characterized in that said trough is pivotally coupled to
said opposite ends of said arms such that the length of said trough is held generally
horizontal as said opposite ends of said arms are moved upward and downward.
said trough is supported to be tilted laterally in opposite directions about an axis
(113) transverse to said axes (65, 67).
1. System zum seitlichen Transportieren von Rohrstücken zwischen einem Rohrlagergestell
(27) und einem Rohrhandhabungsgerät (21), wobei das Rohrhandhabungsgerät einen länglichen
Rahmen (29) aufweist und das Rohrlagerungsgestell an einer Seite des länglichen Rahmens
angeordnet ist, gekennzeichnet durch
- zwei mit Abstand zueinander schwenkbar an der dem Rohrlagerungsgestell am nächsten
leigenden Seite des Rahmens (29) angelenkte Arme (61, 63), wobei an jedem Arm jeweils
an einem Ende ein Trägerglied schwenkbar angelenkt ist, derart, daß dessen entgegengesetztes
Ende sich auf- und abbewegen kann und wobei die beiden Arm im wesentlichen in einer
Linie zueinander angeordnet sind, um eine Schwenkbewegung um im wesentlichen parallel
Schwenkachsen (65, 67) zu ermöglichen,
- eine Rinne (101), die schwenkbar an den entgegengesetzten Enden der Arme angelenkt
ist, derart, daß sie sich mit den entgegengesetzten Enden der Arme auf- und abbewegt,
wobei die Rinne ein Rohrstück tragen kann,
- Mittel (103, 105) zum seitlichen Verschwenken der Rinne in entgegengesetzter Richtung
und
- Antriebsglieder (71, 73) zur Bewegung der Arme um deren Achsen bzw. zum Auf- und
Abbewegen der entgegengesetzten Enden dieser Arme und der Rinne.
2. System nach Anspruch 1, dadurch gekennzeichnet, daß die Rinne derart mit den entgegengesetzten
Enden der Arme gekoppelt ist, daß die Rinne im wesentlichen horizontal gehalten wird
wenn die entgegengesetzten Enden der Arme auf-und abbewegt werden, wobei die Rinne
so gehaltert ist, daß sie seitlich um eine Achse (113) in entgegengesetzter Richtung
verschwenkt werden kann, und wobei diese Achse (113) quer zu den Schwenkachsen (65,
67) verläuft.
1. Installation de transfert de tronçons de tube latéralement entre un râtelier (27)
à tubes et un appareil (21) de manutention de tube, l'appareil de manutention de tube
comprenant un châssis allongé (29), le râtelier à tubes étant placé d'un côté du châssis
allongée, l'installation étant caractérisée par:
deux bras espacés (61, 63) supportés avec articulation et placés d'un premier, côté
du châssis (29) près du râtelier à tubes,
chaque bras ayant une première extrémité articulée sur un dispositif de support de
manière que son extrémité opposée puisse se déplacer vers le haut et vers le bas,
les deux bras étant disposés de façon générale dans l'alignement l'un de l'autre afin
qu'ils pivotent autour d'axes sensiblement parallèles (65, 67),
un rigole (101) articulée sur les bras à leurs extrémités opposées de manière que
la rigole se déplace vers le haut et vers le bas avec les extrémités opposées des
bras,
la rigole pouvant supporter un tronçon de tube,
un dispositif (103, 105) destiné à faire basculer le rigole latéralement en sens opposés,
et
un dispositif (71, 73) destiné à déplacer les bras autour de leurs axes respectivement
afin que les extrémités opposées des bras et la rigole soient déplacées vers le haut
et vers le bas.
2. Installation selon la revendication 1, caractérisée en ce que la rigole est articulée
aux extrémités opposées des bras de manière que la rigole soit maintenue en direction
générale horizontale sur sa longueur lorsque les extrémités opposées des bras sont
déplacées vers le haut et vers le bas, et
la rigole est supportée afin qu'elle puisse basculer latéralement en sens opposés
autour d'un axe (113) transversal auxdits axes (65, 67).