CN217782116U - Single-pile foundation supported by inclined piles - Google Patents

Single-pile foundation supported by inclined piles Download PDF

Info

Publication number
CN217782116U
CN217782116U CN202122113561.0U CN202122113561U CN217782116U CN 217782116 U CN217782116 U CN 217782116U CN 202122113561 U CN202122113561 U CN 202122113561U CN 217782116 U CN217782116 U CN 217782116U
Authority
CN
China
Prior art keywords
pile
piles
mono
oblique
platform
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
CN202122113561.0U
Other languages
Chinese (zh)
Inventor
何奔
高鹏
戚海峰
罗金平
王淡善
姜贞强
李炜
陈法波
吕娜
石锐龙
吕君
张学栋
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
PowerChina Huadong Engineering Corp Ltd
Original Assignee
PowerChina Huadong Engineering Corp Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by PowerChina Huadong Engineering Corp Ltd filed Critical PowerChina Huadong Engineering Corp Ltd
Priority to CN202122113561.0U priority Critical patent/CN217782116U/en
Application granted granted Critical
Publication of CN217782116U publication Critical patent/CN217782116U/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/70Wind energy
    • Y02E10/727Offshore wind turbines

Landscapes

  • Piles And Underground Anchors (AREA)

Abstract

The utility model discloses an use single pile basis that batter pile supported, including major diameter single pile, batter pile, cushion cap and strutting arrangement. The major diameter single pile and 6 batter piles are circular tubular piles, and 6 batter piles are evenly arranged along the cushion cap at 60-degree intervals. The bearing platform is of a cast-in-place reinforced concrete structure and is used for connecting and fixing the large-diameter single pile and 6 inclined piles. The supporting device is used for further enhancing the connection between the large-diameter single pile and the inclined pile and mainly comprises a large-diameter single pile casing pipe, an inclined pile casing pipe, a single pile hinge, an inclined pile hinge and a rigid connecting rod. After the large-diameter single pile and the inclined pile are sunk, pile body sleeves are sleeved along the pile bodies, the large-diameter single pile and the inclined pile are respectively provided with an annular supporting platform which plays a role of a limiting supporting device, then high-strength grouting material is injected into a gap between the inner wall of the sleeve and the pile to ensure that the sleeves are firmly bonded, and the single pile hinges and the inclined pile hinges are hinged and connected in a one-to-one corresponding mode through rigid connecting rods. And finally, laying bearing platform reinforcing steel bars, and pouring bearing platform concrete in two layers.

Description

Single pile foundation supported by inclined piles
Technical Field
The utility model belongs to the technical field of marine pile foundation, especially, relate to an use single pile basis and strutting arrangement that batter pile supported, the device can strengthen single pile basis's intensity and rigidity.
Background
Offshore wind power is an important renewable energy source, and at present, china is vigorously developing offshore wind power in southeast coastal areas. In a plurality of offshore wind turbine foundation forms, the single-pile foundation is simple in structural form and clear in stress, has high construction speed on the premise of having the capabilities of piling and hoisting equipment, is widely used in offshore wind farms at home and abroad, and occupies most market shares.
The Fujian sea area covering layer is thin, the driving depth of the offshore wind power single pile is limited, the pile body is often required to be embedded into a rock stratum to meet the bearing capacity requirement, the offshore construction cost is huge, and the construction risk is extremely high. During the piling of embedded rock (embedding weathered rock), if high-strength rock is met, the continuous penetration is easy to fail. In addition, as for the non-rock-socketed single pile, due to complex geological conditions, even in a common soil layer, adverse geological conditions such as boulders are often met, so that a hole is collapsed in a drilling hole, a pile body is curled, and the pile body cannot be driven continuously. Because the pile body does not reach the target depth, the bearing capacity can not meet the requirement, and a new scheme needs to be searched at the moment, so that the bearing capacity of the pile body can meet the design requirement.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a solution to shallow overburden or there are complicated geological conditions sea areas such as boulder, single pile basis can't directly squeeze into, bearing capacity can't satisfy the requirement, the rock-socketed construction cost and the extremely high problem of risk, improves single pile basis bearing capacity and global stiffness to the construction cost and the construction risk of weathering rock in can avoiding imbedding. In order to achieve the above object, the utility model adopts the following technical scheme:
a single pile foundation supported by inclined piles is characterized by comprising single piles, inclined piles, a bearing platform and a supporting device;
the middle part of the underwater part of the single pile is provided with a single-pile annular support platform, the single-pile annular support platform is welded on the single pile along the periphery of the pile, the lower part of the single pile annular support platform is supported by a first inclined strut, and the single-pile annular support platform is used for limiting the support device; the inclined piles are provided with more than 3 round tubular piles, the tubular piles are uniformly arranged by taking the single pile as a center, each inclined pile is provided with an inclined pile annular supporting platform, the inclined pile supporting platforms are perpendicular to the central axis of the inclined pile, and the lower parts of the inclined pile annular supporting platforms are provided with second inclined struts for supporting;
the bearing platform is used for connecting and fixing the single pile and the inclined pile, the single pile vertically penetrates through the center of the bearing platform, and the top of the inclined pile is connected to the bearing platform;
and connecting devices are respectively arranged between each single pile and the single pile, each connecting device comprises a first connecting structure arranged on the single-pile annular supporting platform and a second connecting structure arranged on the inclined-pile annular supporting platform, and a support structure is hinged between the first connecting structure and the connecting structure.
On the basis of adopting above-mentioned technical scheme, the utility model discloses still can adopt following further technical scheme, or to these further technical scheme combined use:
each inclined pile is provided with an inclined pile annular supporting platform at a position slightly higher than the single pile annular supporting platform; the first connecting structure adopts a single-pile casing pipe, the second connecting structure adopts an inclined-pile casing pipe, and the supporting device further comprises a single-pile hinge, an inclined-pile hinge and a rigid connecting rod; the inner diameters of the single-pile sleeve and the inclined-pile sleeve are respectively slightly larger than the outer diameters of the single pile and the inclined pile, rubber buffer pads are arranged at the bottoms of the single-pile sleeve and the inclined-pile sleeve, and the rubber buffer pads are just respectively arranged on the single-pile annular supporting platform and the inclined-pile supporting step; the single pile hinge corresponding to the inclined pile is welded in the middle of the outer side of the single pile sleeve, and the inclined pile hinge is welded in the middle of the outer side of the inclined pile sleeve; and filling high-strength grouting material into gaps between the inner wall of the sleeve of the single-pile sleeve and the single pile and between the inner wall of the sleeve of the inclined-pile sleeve and the inclined pile to firmly bond the single-pile sleeve and the inclined pile, and correspondingly hinging the single-pile hinge and the inclined-pile hinge through the rigid connecting rod.
The single pile is circular tubular pile, and inside is equipped with horizontal stiffening rib and vertical stiffening rib to improve the bulk rigidity and the intensity of pile foundation.
The inclined piles are 6 in number and are uniformly arranged along the bearing platform at 60-degree intervals.
The diameter of the single pile is 5-8m.
The bearing platform is formed by two layers of cast-in-place after the pile sinking and the supporting device are installed.
The length of the single-pile sleeve is half of the diameter of the single-pile, and the length of the inclined-pile sleeve is half of the diameter of the inclined-pile.
The rigid connecting rod is arranged obliquely, the end of the rigid connecting rod hinged with the oblique pile is high, and the end hinged with the single pile is low.
The utility model has the advantages that:
the single pile foundation supported by the inclined piles and the supporting device thereof are provided, the inclined piles are used for strengthening the strength and the rigidity of the single pile, and the problem of insufficient bearing capacity of the single pile under the condition of a shallow covering layer is solved; in order to further improve the integrity and coordination of the deformation of the single piles and the inclined piles, a set of supporting device is provided, and the comprehensive bearing capacity of the foundation can be further enhanced.
Drawings
Fig. 1 is a front view of an embodiment of the present invention;
fig. 2 is a front view of a single pile according to an embodiment of the present invention;
fig. 3 is a top view of a single pile according to an embodiment of the present invention;
fig. 4 is a front view of the batter pile according to the embodiment of the present invention;
fig. 5 is a cross-sectional view of the batter pile according to the embodiment of the present invention;
FIG. 6 is a top view of a platform according to an embodiment of the present invention;
fig. 7 is an expanded plan view of the supporting device 4 according to the embodiment of the present invention.
Detailed Description
In a certain offshore wind farm in the Fujian sea area in China, a wind turbine with the single machine capacity of 7MW is adopted in the wind farm, the water depth of the field area is 20-28 m, the thickness of the site covering layer is 26-32 m, and bedrock geology is arranged below the covering layer. If a single-pile foundation or high-pile cap foundation scheme is adopted, due to the fact that the thickness of a covering layer is thin, drilling holes are needed for rock embedding (embedding weathered rock) at the pile bottom. In addition, the possibility of local weathered rock stratums and boulders is high in the site, and the risks of hole collapse during drilling and steel plate edge curling during pile foundation driving are easy to occur in site construction. Adopt the utility model provides an use single pile foundation (containing strutting arrangement) that batter pile supported then need not weathering rock in the embedding, this scheme and its concrete implementation are:
the large-diameter single pile 1 adopts a steel pipe pile with the diameter of 5-8m, and a transverse stiffening rib 5 and a longitudinal stiffening rib 6 are arranged inside the steel pipe pile to enhance the rigidity and the strength of the steel pipe pile. The single pile 1 can be directly driven into a weathered rock stratum by 1-2 m without embedding weathered rocks, an annular supporting platform 7 is welded on the outer wall of the pile at the position of half of the water depth, the lower part of the annular supporting platform 7 is supported through a first inclined strut 81, and the first inclined strut 81 is welded with the annular supporting platform 7 and the large-diameter single pile 1. The annular support base 7 is used for limiting the support device.
The periphery of the single pile is supported and reinforced by 6 inclined piles 2, the pile diameter of each inclined pile is generally 1.8-2.5 m, and the spatial inclination is 5:1, pile tops are uniformly distributed around the center of a single pile in a circumferential manner. The oblique pile 2 can be directly driven into the weathered rock stratum for 1-2 m without subsequent embedding weathered rock construction. Each inclined pile 2 is provided with an inclined pile annular supporting platform 9 which is vertical to the axis of the inclined pile at a position slightly higher than the single pile annular supporting platform 7, the lower part of each inclined pile is supported by a second inclined strut 82, and the second inclined strut 82 is welded with the inclined pile annular supporting platform 9 and the inclined pile 2. The inclined pile annular supporting platform 9 is used for limiting the supporting device.
The bearing platform 3 is of a reinforced concrete structure, is used for connecting and fixing the large-diameter single pile 1 and the 6 inclined piles 2, and is formed by casting in situ. The bearing platform 3 is poured in two layers, and the lower layer concrete is used as a construction platform.
The connection between the mono-piles 1 and the 6 batter piles 2 is further reinforced with bracing means. The supporting device consists of a single pile casing pipe 11, an inclined pile casing pipe 12, a single pile hinge 13, an inclined pile hinge 14 and a rigid connecting rod 15. The inner diameters of the single pile and the inclined pile casing pipes 11 and 12 are slightly larger than the outer diameter of the pile, the length of the single pile and the inclined pile casing pipes is about half of the diameter of the pile (to ensure the grouting thickness), and the single pile 1 and the inclined pile 2 with large diameters are respectively sleeved in the single pile and the inclined pile after pile sinking is completed. 6 single pile hinge 13 is the annular and evenly welds in single pile sleeve pipe 11's outside middle part, and 6 batter pile hinge 14 welds respectively in 6 batter pile sleeve pipe 12's outside middle part. And (5) installing a supporting device after the single pile and the inclined pile are sunk. Rubber buffer pads 10 are pasted at the bottoms of the single-pile sleeve 11 and the inclined-pile sleeve 12 in advance, and after the steel pipe pile is sleeved, the rubber buffer pads 10 are just padded on the annular supporting table 7 and the inclined-pile annular supporting table 9, so that the installation buffering effect is achieved, and the bottom sealing effect is achieved. Then, high-strength grouting material 16 is poured into the gap between the inner wall of the casing and the pile to firmly bond the casing and the pile. And finally, the single-pile hinges 13 and the inclined-pile hinges 14 are hinged and connected in a one-to-one corresponding mode through rigid connecting rods 15, and the length of the rigid connecting rods 15 is determined according to the pile sinking condition on site.
The installation process of the single pile foundation supported by the inclined piles and the supporting device thereof comprises four processes of positioning and driving the single pile 1, positioning and driving the inclined pile 2, positioning and mounting the supporting device, pouring the bearing platform 3 and the like, and the concrete construction process comprises the following steps:
1) Hoisting the large-diameter single pile 1 to a specified construction position, slowly drawing the large-diameter single pile to contact the seabed, preparing for single pile driving, and driving the single pile to a specified depth;
2) And hoisting the batter pile 2 to a specified construction position, and carrying out the following steps of 5:1, slowly drawing the inclined pile to contact the seabed to prepare for driving the inclined pile, and driving the inclined pile to a specified depth;
3) The installation of the supporting device in place comprises the steps that a single pile casing pipe 11 and an inclined pile casing pipe 12 are respectively installed on a single pile 1 and an inclined pile 2 through hoisting, then a gap between the single pile casing pipe and the inclined pile casing pipe is grouted for firm connection, and finally a single pile hinge 13 and an inclined pile hinge 14 are hinged and connected in a one-to-one correspondence mode through a rigid connecting rod 15;
4) Laying bearing platform reinforcing steel bars, casting a bearing platform 3 in situ, and fixedly connecting the tops of the single piles 1 and the inclined piles 2 together.
Through the utility model provides an use single pile basis that batter pile supported and strutting arrangement scheme thereof has improved the bearing capacity on fan basis greatly, has solved this project and has adopted conventional single pile or high pile cap basis to need the difficult problem of rock-socketed (weathering rock in the embedding) construction. The supporting device further ensures the integrity and coordination of the deformation of the single pile 1 and the inclined pile 2, and enhances the strength and rigidity of the structure.
The above embodiments are merely preferred technical solutions of the present invention, and it should be understood by those skilled in the art that modifications or substitutions of technical solutions or parameters in the embodiments can be made without departing from the principles and essential conditions of the present invention, and all the modifications or substitutions should be covered within the protection scope of the present invention.

Claims (8)

1. A single pile foundation supported by inclined piles is characterized by comprising single piles (1), inclined piles (2), a bearing platform (3) and a supporting device;
the middle part of the underwater part of the single pile is provided with a single-pile annular support platform (7), the annular support platform (7) is welded on the single pile along the periphery of the pile, the lower part of the annular support platform is supported by a first inclined strut (81), and the single-pile annular support platform (7) has the function of limiting the support device (4); the inclined piles (2) are provided with more than 3 round tubular piles, the round tubular piles are uniformly arranged by taking the single pile as a center, each inclined pile (2) is provided with an inclined pile annular supporting platform (9), the inclined pile annular supporting platform (9) is vertical to the central axis of the inclined pile, and the lower part of the inclined pile annular supporting platform is provided with a second inclined strut (82) for supporting;
the bearing platform (3) is used for connecting and fixing the single pile (1) and the inclined pile (2), the single pile (1) vertically penetrates through the center of the bearing platform, and the top of the inclined pile (2) is connected to the bearing platform;
and connecting devices are respectively arranged between each single pile and the single pile, each connecting device comprises a first connecting structure arranged on the single-pile annular supporting platform and a second connecting structure arranged on the inclined-pile annular supporting platform, and a support structure is hinged between the first connecting structure and the connecting structure.
2. A mono-pile foundation supported by oblique piles according to claim 1, wherein each oblique pile (2) is provided with said oblique pile annular support platform (9) at a position slightly higher than the mono-pile annular support platform (7); the first connecting structure adopts a single-pile casing pipe (11), the second connecting structure adopts an inclined-pile casing pipe (12), and the supporting device further comprises a single-pile hinge (13), an inclined-pile hinge (14) and a rigid connecting rod (15); the inner diameters of the single-pile sleeve (11) and the inclined-pile sleeve (12) are respectively slightly larger than the outer diameters of the single pile and the inclined pile, rubber buffer pads (10) are arranged at the bottoms of the single-pile sleeve (11) and the inclined-pile sleeve (12), and the rubber buffer pads (10) are just respectively padded on the single-pile annular supporting platform (7) and the inclined-pile annular supporting platform (9); the single-pile hinge (13) is welded in the middle of the outer side of the single-pile casing pipe (11) corresponding to the inclined pile, and the inclined-pile hinge (14) is welded in the middle of the outer side of the inclined-pile casing pipe (12); high-strength grouting materials (16) are filled into gaps between the inner wall of the sleeve of the single-pile sleeve (11) and the single pile and between the inner wall of the sleeve of the inclined-pile sleeve (12) and the inclined pile to firmly bond the single-pile sleeve and the inclined pile, and the single-pile hinge (13) and the inclined-pile hinge (14) are correspondingly hinged and connected through a rigid connecting rod (15).
3. A mono pile foundation supported by oblique piles according to claim 1, wherein said mono pile (1) is a circular pile with internal transverse (5) and longitudinal (6) stiffening ribs to improve the overall stiffness and strength of the pile foundation.
4. A mono-pile foundation supported by oblique piles according to claim 1, wherein the oblique piles (2) are arranged at 60 ° intervals along the cap (3) for a total of 6.
5. A mono-pile foundation supported by oblique piles according to claim 1, wherein said mono-pile has a diameter of 5-8m.
6. A mono-pile foundation supported by oblique piles according to claim 1, wherein the cap (3) is cast in place in two layers after the pile sinking and supporting means are installed.
7. A mono pile foundation supported by oblique piles according to claim 2, wherein the length of the mono pile casing (11) is half of the diameter of the mono pile and the length of the oblique pile casing (12) is half of the diameter of the oblique pile.
8. A mono-pile foundation supported by oblique piles according to claim 2, wherein said rigid connecting rods (15) are arranged obliquely with the end connected to the oblique pile hinge (14) being higher and the end connected to the mono-pile hinge being lower.
CN202122113561.0U 2021-09-02 2021-09-02 Single-pile foundation supported by inclined piles Active CN217782116U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202122113561.0U CN217782116U (en) 2021-09-02 2021-09-02 Single-pile foundation supported by inclined piles

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202122113561.0U CN217782116U (en) 2021-09-02 2021-09-02 Single-pile foundation supported by inclined piles

Publications (1)

Publication Number Publication Date
CN217782116U true CN217782116U (en) 2022-11-11

Family

ID=83904404

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202122113561.0U Active CN217782116U (en) 2021-09-02 2021-09-02 Single-pile foundation supported by inclined piles

Country Status (1)

Country Link
CN (1) CN217782116U (en)

Similar Documents

Publication Publication Date Title
CN111827274B (en) High-strength grouting method for marine wind power weakly-weathered bedrock single-pile socketed foundation
CN107142929A (en) Sea is non-to squeeze into type large diameter single pile foundation structure and its construction method
CN110984214B (en) Marine wind power single pile-wing plate-rock-fill composite foundation and construction method thereof
CN108222049A (en) A kind of offshore wind farm combined type single-pile foundation and its construction method
CN102383431B (en) Middle pick prestressed centrifugally pile tube pile-sinking device and pile sinking method thereof
CN104389318B (en) Reinforced concrete-steel structure hybrid gravity foundation for offshore wind power and construction method thereof
CN201358456Y (en) Plastic sleeve concrete pile
WO2024007591A1 (en) Rock-socketed monopile construction method based on double-casing pile stabilizing platform
CN207749529U (en) A kind of offshore wind farm combined type single-pile foundation
CN102808407B (en) Construction method of soft-foundation reinforced concrete cast-in-place pile
CN204608815U (en) Raft plate gravity offshore wind turbine foundation
CN101392521A (en) Rock-socketed steel dock structure and construction method thereof
CN214245694U (en) Pile forming system for large-diameter cast-in-situ bored pile in karst area
CN112982472B (en) Power transmission tower foundation structure suitable for regions without bedrock and construction method
CN201943077U (en) Waterproof curtain of CT-type fore shaft steel pipe pile
CN114319412A (en) Single-pile foundation supported by inclined piles and construction method thereof
CN202969333U (en) Steel truss rock-socketed wharf structure
CN217782116U (en) Single-pile foundation supported by inclined piles
CN104674839A (en) Foundation structure for wind-driven generator
CN115305943B (en) Offshore steel tube concrete high-pile cap fan foundation and construction method thereof
CN107237342A (en) New low pile cap foundation structure and its construction method
CN111074926A (en) Offshore wind power enhanced single-pile foundation and construction method thereof
CN206956713U (en) Sea is non-to squeeze into type large diameter single pile foundation structure
CN217105183U (en) Steel open caisson construction system based on micro-jacking pipe-shaking well technology
CN102758434B (en) Middle pick prestressed centrifugally pile tube pile-sinking device and pile sinking method thereof

Legal Events

Date Code Title Description
GR01 Patent grant
GR01 Patent grant