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US3687204A - Curved offshore well conductors - Google Patents

Curved offshore well conductors
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US3687204A
US3687204AUS70101AUS3687204DAUS3687204AUS 3687204 AUS3687204 AUS 3687204AUS 70101 AUS70101 AUS 70101AUS 3687204D AUS3687204D AUS 3687204DAUS 3687204 AUS3687204 AUS 3687204A
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conductor
platform structure
conductors
respect
downwardly
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US70101A
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Peter W Marshall
Peter Arnold
Francis P Dunn
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Shell USA Inc
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Shell Oil Co
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Abstract

Apparatus and method for producing hydrocarbons from a subterranean hydrocarbon-bearing formation located beneath the floor of a body of water. A platform structure is installed on the floor over the formation and well conductors are extended down the structure and penetrate into the floor of the body of water. The conductors may include an upper vertical portion, then continually curve downwardly and outwardly through the structure above the floor in a manner maintaining a relatively smooth bore throughout the entire extent of the conductors. The conductors are extended into the floor of the body of water and wells are drilled, via the conductors, down into communication with the formation. Formation fluids are then produced from the formation via the conductors.

Description

United States ?atent Marshall et al. Aug. 29, 1972 [54] CURVED OFFSHORE WELL 3,542,125 11/1970 Sizer ..166/0.6
CONDUCTORS 3,595 ,312 7/ 1 971 Matthews 166/0.5
[72] Inventors: Peter W. Marshall, New Orleans,
La. 70112; Peter Arnold, Kenner, La. 70121; Francis P. Dunn, New Orleans, La. 70114 AssigneezShell Oil Company, New York,
Primary Examiner-Marvin A. Champion Assistant Examiner-Richard E. Favreau Attorney-Harold L. Denkler and Theodore E. Bieber ABSTRACT Apparatus and method for producing hydrocarbons from a subterranean hydrocarbon-bearing formation located beneath the floor of a body of water. A platform structure is installed on the floor over the formation and well conductors are extended down the structure and penetrate into the floor of the body of water. The conductors may include an upper vertical portion, then continually curve downwardly and outwardly through the structure above the floor in a manner maintaining a relatively smooth bore throughout the entire extent of the conductors. The conductors are extended into the floor of the body of water and wells are drilled, via the conductors, down into communication with the formation. Formation fluids are then produced from the formation via the conductors.
12 Claims, 3 Drawing Figures PATENTEflIIuszs I972 3.687. 204
\ l50' CONDUCTOR PENETRATIoN WELL WITH CURVEDCONDUCTOR 24 FIG. 3 WELL WITH STRAIGHT VERTICAL CONDUCTOR INVENTOR PETER w. MARSHALL BY PETER ARNOLD 26 FRANCIS P. DUNN L IM,
ATTORNEY 1 CURVED OFFSHORE WELL CONDUCTORS BACKGROUND OF THE INVENTION 1. Field of the Invention The invention relates to the drilling of wells ofi'shore; and, more particularly, to a method and apparatus for producing hydrocarbons from subterranean formations under the ocean floor.
2. Description of the Prior Art In an attempt to locate new oil fields, an increasing amount of well drilling has been conducted at offshore locations, such, for example, as off the coasts of California, Louisiana and Texas, and, more recently, off the coast of Alaska and in the North Sea. Generally, platform structures are installed on the ocean floor and straight well conductors are extended from the platform structure some distance below the ocean floor, providing guidance and support for wells drilled into hydrocarbon-bearing reservoirs.
In order to increase the lateral reach of such well conductors, these conductors have been slanted from the vertical, as for example, in a U.S. Pat. No. 3,451,493 to Storm. Such conductors are usually extended laterally beyond the perimeter of a conventional platform structure at a considerable distance above the mudline (e.g., about 100 to 150 feet in 250- foot water depth). This condition is undesirable since it results in long spans of well conductors which are unsupported or which require fabrication of conductor guides outside of the main framework of the platform structure. Such an arrangement is both costly and complicated. Further, if such well conductors are to perform as a portion of the platform structure foundation by providing resistance to lateral movement, the cost of the outrigged framework is considerably increased.
An alternate type of arrangement in applying such straight-slant type conductors to deep water conditions is to keep the portion of the conductor which is above the mudline inside the framework of the platform by crisscrossing them in a vertical plane. The wellhead for each well conductor is located at the top of the platform structure on one side thereof and the bottom well conductor platform support is located at the mudline near the opposite side of the pladorm structure. Such an arrangement requires that a large part of the deck area of the platform structure be designed to accommodate the required slant drilling rig since the wellheads are not located together. Unless the layout of the platform structure is axisymmetric, this latter technique may result in an undesirable well conductor reach pattern. Moreover, a special slant drilling rig must be used rather than the conventional straight rig.
Thus, the disadvantages of such prior art arrangements for increasing horizontal reach are conductor guides external of the platform structure, possible interference of conductors with the platform structure foundation, non-centrally located wellheads, possibly undesirable well conductor reach patterns, and the need for a special rig. These disadvantages become especially significant in water deeper than 200 feet.
SUMMARY OF THE INVENTION It is an object of this invention to provide apparatus and method for drilling offshore wells using well conductors having increased lateral reach from platform structures installed on the floor of a body of water.
It is a further object of this invention to provide such well conductors wherein the conductors and guides are framed inside of the main framework of the platform structure.
It is a still further object of this invention to increase the lateral reach of such conductors with the ability to provide any desired pattern with respect to the platform structure, depending upon the reservoir.
It is an even further object of this invention to carry out the techniques disclosed herein without significantly altering the design or operation of conventional platform structures and drilling rigs.
These and other objects may be accomplished by installing a platform structure on the floor of a body of water over a subterranean hydrocarbon-bearing formation below the floor and extending well conductors down the structure and beneath the floor of the body of water. The conductors may include an upper vertical portion, then continually curve downwardly and outwardly through the structure above the floor in a manner maintaining a relatively smooth bore throughout the entire extent of the conductors. The conductors are extended into the floor beneath the structure and wells are drilled via the conductors down into the formation. Formation fluids are then produced from the formation via the conductors.
In addition to the above mentioned objects, a further purpose in employing curved conductors is to minimize the possibility of inadvertently drilling into a previously drilled well. The further apart the conductors are spread at the bottom of the structure, the less likelihood there is of drilling into one wellbore while drilling another well.
BRIEF DESCRIPTION OF THE DRAWING FIG. 1 is a vertical view of a platform structure resting on the floor of a body of water and having well conductors installed thereon in accordance with the teachings of our invention;
FIG. 2 is a perspective view of the platform structure of FIG. 1 showing well conductor guides on the structure for accommodating the curvature of the well conductors in accordance with the teachings of our invention; and
FIG. 3 is a vertical, partly graphic, view showing the advantages of the teachings of our invention over conventional prior art vertical riggings.
DESCRIPTION OF THE PREFERRED EMBODIMENT Referring to both FIGS. 1 and 2, aconventional platform structure 10 is shown resting on the floor 11 of a body ofwater 12.Structure 10 includes a generallyhorizontal work platform 13 thereon supported above thewater surface 14 bysuitable framework 15. Framework 15 preferably includes a plurality oflegs 16 interconnected by a network ofcross-bracing members 17. The lower ends oflegs 16 extend into the floor 11 and are anchored therein bysuitable piles 18. It is to be understood that conventional well equipment, such as derricks, draw works, engines, etc., (not shown) may be installed onwork platform 13.
In accordance with our invention, a plurality of well conductors are extended fromplatform 13 alongframework 15 to the floor 11 of the body ofwater 12.
For example, sixsuch conductors 19 through 24 are shown in FIGS. 1 and 2 (conductor 22 not being visible in FIG. 1). Thus,conductor 22 may extend substantially vertical with respect toplatform structure 10. However, conductors i9, 20, 21, 23 and 24 extend first vertically downwardly with respect to platform structure then continually curve downwardly and outwardly in any desired pattern as illustrated in FIGS. 1 and 2.
Although only six such well conductors are shown extending fromplatform 13, obviously a plurality of such conductors may be provided, so arranged with respect toplatform structure 10 so as to provide an optimum lateral reach in the desired directions from thestructure 10. I
The curvature applied toconductors 19, 20, 21, 23 and 24 may be constant or varying; however, in either case, a smooth bore is provided throughout substantially the entire extent of the conductors thereby permitting sharper curvatures than may normally be permitted when drilling into the floor 11. In this manner, the early attainment of high angles of deviation increases the lateral reach of the well conductors while retention of conventional vertical drilling techniques is permitted by having the curved conductors vertical at their top ends.
Preferably, the conductors are supported at intervals alongplatform structure 10 by conductor guides 25 (FIG. 2) built into theplatform structure 10 so as to accommodate the curvature of the conductors. Theseguides 25 have been omitted in FIG. 1 for convenience of illustration. As shown in FIG. 2,guides 25 may take the form of ring elements or the like secured to thelegs 16 or framework ofplatform structure 10 at a plurality of staggered offset locations. Theseguides 25 provide guidance and support for the conductors. Curvature may be imparted to the conductors by performing the conductors and/or by elastically bending the conductors during installation through the series of slightlyoffset guides 25. The preformed or plasticallybent conductors may be used to continue building angle below the bottom conductor guides 25 (generally at the mudline or floor 11). Conventional drilling, jetting, driving, or a combination of these techniques may be used to install the conductors through floor 11. Further, the curved well conductor provides continu ous support for casing and tubing which can be conventionally drilled into communication withsubterranean reservoir 26 shown schematically in FIG. 3. Additionally,conductors 19 through 24 may or may not double as piling, as is well known in the drilling art, to support platform structure l0.
ductor of FIG. 3 which is shown as having been driven to 150 foot penetration with the wellbore deviated horizontally from that point,curved conductor 24, having a moderate curvature of, for example, six degrees every 100 feet or so, nearly doubles the acreage that can be reached from thesingle platform structure 10.
Thus, in drilling wells in accordance with the techniques of our invention, a slant rig is not required since the wells may be drilled using conventional vertical-type equipment. Additional deck space onplatform 13 which may be necessary to move and operate a slant rig is not required nor is special designing ofplatform 13 to accommodate such a rig necessary. Finally, as shown in FIG. 1,conventional wellhead equipment 27 through 31 may be associated withconductors 19, 20, 21, 23 and 24 (the equipment associated withconductor 22 not being visible in FIG. 1) for recovering formation fluids produced from thereservoir 26 of FIG. 3.
Thus, as can be seen in FIG. 3, one of the curved conductors (e.g., conductor 24) is shown adjacent a conventional prior art straight vertical conductor. As can be seen, the lateral reach capability of the well conductors is increased when such conductors are continually curved when drilled with respect to asingle platform structure 10. The techniques of our invention are particularly well suited for combined conditions of deep water (i.e., a water depth or W.D. of between 200 and 400 feet or so) and shallow reservoir depth (i.e., a reservoir depth or RD. of about 5,000 feet more or less). When compared with known prior art techniques, as, for example, the straight vertical con- This equipment may be clustered in a central location on theplatform 13 ofplatform structure 10 of the same spacing and shape as is conventionally required for producing formation fluids from Straight" vertical conductors.
In summary, the curved conductors of our invention may be designed to nearly match or exceed (depending on water depth) the reach capability of conventional slant conductors without the inherent disadvantages of the latter, i.e., the conductors and guides may be framed inside the platform structure, the framing at the mudline may economically be designed to enable the curved conductor to function as part of the platform foundation system and so as not to interfere with the installation, the well head equipment may be centrally located, and any desired reach pattern may be achieved. Further, the curved conductors may be installed and wells may be drilled using conventional vertical-type equipment and techniques. For deep watershallow reservoir conditions, the curved conductor may be installed and operated without significantly altering the design or operation of the platform from that which is conventionally used for straight-vertical conductors. The curved conductors of our invention may be used in combination with straight vertical conductors to greatly increase the number of wells which can be drilled from a single platform structure.
We claim as our invention:
1. A method for producing hydrocarbons from a subterranean hydrocarbon-bearing formation located beneath the floor of a body of water, said method comprising the steps of:
installing a platform structure on the floor of said body of water above said formation;
extending at least one well conductor downwardly with respect to said platform structure, then curving said conductor outwardly and downwardly through said platform structure above the floor of said body of water in a manner maintaining a relatively smooth bore throughout substantially the entire extent of said conductor;
drilling via said conductor down through said floor and into fluid communication with said formation; and
producing formation fluids from said formation via said conductor.
2. The method of claim 1 wherein the step of curving said conductor includes the steps of:
providing guide means at a plurality of vertically spaced locations on said platform structure adapted to curve said conductor; and
extending said conductor into communication with said guide means thereby curving said conductor through said guide means.
3. The method of claim 1 wherein the step of extending at least one well conductor downwardly with respect to said platform structure includes the step of extending a plurality of well conductors downwardly with respect to said platform, at least some of said well conductors being extended outwardly and downwardly with respect to said platform structure in a direction different from that of an adjacent well conductor in a predetermined pattern with respect to said platform structure.
4. The method of claim 1 wherein the step of curving said conductor includes the step of continually curving said conductor up to approximately 6 every 100 feet.
5. The method of claim 1 wherein the step of curving said conductor includes the step of pre-forming the desired curvature in said conductor prior to the step of extending said conductor downwardly with respect to said platform structure.
6. The method of claim 1 wherein the step of extending said well conductor downwardly with respect to said platform structure includes the step of extending the upper portion of said conductor first vertically downwardly with respect to said platform structure, then curving said conductor.
7. Apparatus for producing hydrocarbons from a subterranean hydrocarbon-bearing formation located beneath the floor of a body of water, said apparatus comprising:
a platform structure disposed on the floor of said body of water;
at least one well conductor extending downwardly with respect to said platform structure, then curved outwardly and downwardly through said platform structure above the floor of said body of water, said conductor having a relatively smooth bore throughout substantially the entire extent thereof;
a drilled well communicating with both said conductor and said formation; and
formation fluids recovery means associated with said conductor for recovering formation fluids produced from said formation via said conductor.
8. The apparatus of claim 7 wherein said platform structure includes a plurality of conductor guide means disposed vertically thereof for curving said conductor and said conductor engages said guide means in a manner curving said conductor.
9. The apparatus of claim 7 including a plurality of said conductors extending downwardly with respect to said platform structure, at least some of said conductors extending outwardly and downwardly with respect to said platform structure in a direction different from that of an adjacent well conductor in a predetermined pattern with respect to said platform structure.
10. The apparatus of claim 7 wherein said conductor continually curves approximately up to 6 every feet.
11. The apparatus of claim 7, wherein said well conductor extends first vertically downwardly with respect to said platform structure, then curves outwardly and i if l l i pparatus of claim 7 wherein said conductors extending downwardly with respect to said platform structure extend below said platform structure and into the floor of said body of water.

Claims (11)

US70101A1970-09-081970-09-08Curved offshore well conductorsExpired - LifetimeUS3687204A (en)

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US7010170A1970-09-081970-09-08

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JP (1)JPS5529235B1 (en)
CA (1)CA953519A (en)
DE (1)DE2144570C3 (en)
ES (1)ES200818Y (en)
FR (1)FR2107299A5 (en)
GB (1)GB1360101A (en)
NL (1)NL171181C (en)
NO (1)NO132766C (en)
OA (1)OA03787A (en)

Cited By (19)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3899032A (en)*1974-03-151975-08-12Cities Service Oil CoMethod and apparatus for deviating conductor casing
US3987639A (en)*1975-06-261976-10-26Brown & Root, Inc.Methods and apparatus for installing a drill conductor from an offshore tower
US4027734A (en)*1975-12-111977-06-07Hebert & Co., Inc. GurtlerDeviated conductor driving system
US4339005A (en)*1980-07-101982-07-13Atlantic Richfield CompanyCurved well conductors for offshore platform
US4773488A (en)*1984-08-081988-09-27Atlantic Richfield CompanyDevelopment well drilling
EP1546505A2 (en)*2002-08-222005-06-29CDX Gas, LLCSystem and method for subterranean access
US7207395B2 (en)2004-01-302007-04-24Cdx Gas, LlcMethod and system for testing a partially formed hydrocarbon well for evaluation and well planning refinement
US7222670B2 (en)2004-02-272007-05-29Cdx Gas, LlcSystem and method for multiple wells from a common surface location
US7264048B2 (en)2003-04-212007-09-04Cdx Gas, LlcSlot cavity
US7360595B2 (en)2002-05-082008-04-22Cdx Gas, LlcMethod and system for underground treatment of materials
US7571771B2 (en)2005-05-312009-08-11Cdx Gas, LlcCavity well system
US20100258320A1 (en)*2009-04-142010-10-14Shnell James HOcean floor deep-sea submerged deck
US8291974B2 (en)1998-11-202012-10-23Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8297350B2 (en)1998-11-202012-10-30Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface
US8333245B2 (en)2002-09-172012-12-18Vitruvian Exploration, LlcAccelerated production of gas from a subterranean zone
US8376039B2 (en)1998-11-202013-02-19Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8376052B2 (en)1998-11-202013-02-19Vitruvian Exploration, LlcMethod and system for surface production of gas from a subterranean zone
US8434568B2 (en)1998-11-202013-05-07Vitruvian Exploration, LlcMethod and system for circulating fluid in a well system
CN111188596A (en)*2019-12-302020-05-22中海石油(中国)有限公司Offshore oil platform riser centralizing hole arrangement method

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
CA1114624A (en)*1977-06-091981-12-22Michael G. SchaafsmaOffshore structure carrying a plurality of curved conductor casings and method of installing a curved conductor casing on an offshore structure

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US1900163A (en)*1931-05-021933-03-07Dana DrexlerMethod and apparatus for drilling oil wells
US3004612A (en)*1956-11-051961-10-17Richfield Oil CorpSubmerged elevated well head structure
US3380520A (en)*1966-02-081968-04-30Offshore CoDrilling and production platform
US3451493A (en)*1967-03-291969-06-24James C StormDrilling apparatus and method
US3390531A (en)*1967-04-141968-07-02Shell Oil CoOffshore drilling platform
US3542125A (en)*1968-11-121970-11-24Otis Eng CorpWell apparatus
US3595312A (en)*1969-09-181971-07-27Exxon Production Research CoMethod and apparatus for installing offshore flow lines

Cited By (30)

* Cited by examiner, † Cited by third party
Publication numberPriority datePublication dateAssigneeTitle
US3899032A (en)*1974-03-151975-08-12Cities Service Oil CoMethod and apparatus for deviating conductor casing
US3987639A (en)*1975-06-261976-10-26Brown & Root, Inc.Methods and apparatus for installing a drill conductor from an offshore tower
US4027734A (en)*1975-12-111977-06-07Hebert & Co., Inc. GurtlerDeviated conductor driving system
USRE29929E (en)*1975-12-111979-03-13Gurtler, Hebert & Co., Inc.Deviated conductor driving system
US4339005A (en)*1980-07-101982-07-13Atlantic Richfield CompanyCurved well conductors for offshore platform
US4773488A (en)*1984-08-081988-09-27Atlantic Richfield CompanyDevelopment well drilling
US8434568B2 (en)1998-11-202013-05-07Vitruvian Exploration, LlcMethod and system for circulating fluid in a well system
US8297350B2 (en)1998-11-202012-10-30Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface
US9551209B2 (en)1998-11-202017-01-24Effective Exploration, LLCSystem and method for accessing subterranean deposits
US8813840B2 (en)1998-11-202014-08-26Efective Exploration, LLCMethod and system for accessing subterranean deposits from the surface and tools therefor
US8464784B2 (en)1998-11-202013-06-18Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8511372B2 (en)1998-11-202013-08-20Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface
US8505620B2 (en)1998-11-202013-08-13Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8291974B2 (en)1998-11-202012-10-23Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8297377B2 (en)1998-11-202012-10-30Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8469119B2 (en)1998-11-202013-06-25Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8316966B2 (en)1998-11-202012-11-27Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8479812B2 (en)1998-11-202013-07-09Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8371399B2 (en)1998-11-202013-02-12Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8376039B2 (en)1998-11-202013-02-19Vitruvian Exploration, LlcMethod and system for accessing subterranean deposits from the surface and tools therefor
US8376052B2 (en)1998-11-202013-02-19Vitruvian Exploration, LlcMethod and system for surface production of gas from a subterranean zone
US7360595B2 (en)2002-05-082008-04-22Cdx Gas, LlcMethod and system for underground treatment of materials
EP1546505A2 (en)*2002-08-222005-06-29CDX Gas, LLCSystem and method for subterranean access
US8333245B2 (en)2002-09-172012-12-18Vitruvian Exploration, LlcAccelerated production of gas from a subterranean zone
US7264048B2 (en)2003-04-212007-09-04Cdx Gas, LlcSlot cavity
US7207395B2 (en)2004-01-302007-04-24Cdx Gas, LlcMethod and system for testing a partially formed hydrocarbon well for evaluation and well planning refinement
US7222670B2 (en)2004-02-272007-05-29Cdx Gas, LlcSystem and method for multiple wells from a common surface location
US7571771B2 (en)2005-05-312009-08-11Cdx Gas, LlcCavity well system
US20100258320A1 (en)*2009-04-142010-10-14Shnell James HOcean floor deep-sea submerged deck
CN111188596A (en)*2019-12-302020-05-22中海石油(中国)有限公司Offshore oil platform riser centralizing hole arrangement method

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Publication numberPublication date
NL171181B (en)1982-09-16
NO132766B (en)1975-09-22
ES200818Y (en)1976-02-16
NL171181C (en)1983-02-16
CA953519A (en)1974-08-27
NO132766C (en)1976-01-07
NL7112219A (en)1972-03-10
FR2107299A5 (en)1972-05-05
JPS5529235B1 (en)1980-08-01
DE2144570B2 (en)1980-07-24
GB1360101A (en)1974-07-17
OA03787A (en)1971-12-24
DE2144570A1 (en)1972-03-16
DE2144570C3 (en)1981-06-25
ES200818U (en)1975-11-01

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