Guiding device for assembling wind turbine towers
10669736 · 2020-06-02
Assignee
Inventors
Cpc classification
E04H12/34
FIXED CONSTRUCTIONS
F03D13/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D1/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/728
GENERAL 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
E04H12/18
FIXED CONSTRUCTIONS
E04H5/02
FIXED CONSTRUCTIONS
Y02E10/72
GENERAL 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
International classification
E04H12/34
FIXED CONSTRUCTIONS
E04H5/02
FIXED CONSTRUCTIONS
F03D13/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
E04H12/18
FIXED CONSTRUCTIONS
Abstract
The invention relates to a guiding device for assembling towers and/or foundations for wind turbines, intended to enable and/or facilitate relative movement between a mobile element and a support element, at least one of said elements being a section and/or part of the shaft of a wind turbine tower or foundation. The guiding device comprises: sliding means that are in contact with the mobile element and allow the relative movement thereof with respect to the guiding device; securing means that connect the guiding device to the support element; and means for geometric adaptation disposed between the sliding means and the securing means, which allow load transmission between the sliding means and the securing means while at the same time also allowing relative movement between the two.
Claims
1. A guiding device configured to enable and/or facilitate relative movement between a mobile element and a support element of a wind turbine tower or a foundation for a wind turbine tower, wherein the guiding device comprises: sliding means configured to contact with the mobile element and configured to allow a substantially vertical relative movement of the mobile element with respect to the guiding device; securing means configured to connect the guiding device to the support element; means for geometric adaptation disposed between the sliding means and the securing means and configured to allow load transmission between the sliding means and the securing means while and further to allow relative movement between the two sliding means and the securing means; reaction or stop means comprising mortises and/or contact plates, the reaction or stop means configured to enable direct load transmission between the sliding means and the securing means, wherein the guiding device is anchored to a substantially horizontal surface of a top portion or a bottom portion of the support element.
2. The guiding device according to claim 1, wherein the means for geometric adaptation are arranged inside the mortises by way of a piston configured to allow relative movement between the sliding means and the securing means in a direction that is essentially perpendicular to the contact plane between the guiding device and the mobile element.
3. The guiding device according to claim 1, wherein the sliding means comprise a low friction surface configured to contact with the mobile element or a bearing system configured to contact with the mobile element.
4. The guiding device according to claim 1, wherein the means for geometric adaptation comprise a deformable and essentially elastic element in the form of a part or spring.
5. The guiding device according to claim 1, wherein the means for geometric adaptation comprise a hydraulic or pneumatic element configured to regulate a distance between the sliding means and the securing means.
6. The guiding device according to claim 1, wherein the securing means comprise a metal element fastened to the support element.
7. The guiding device according to claim 1, wherein the reaction or stop means are arranged to allow load transmission in a direction that is essentially perpendicular to a contact plane of the guiding device with the mobile element, only as of a threshold level of deformation of the means for geometric adaptation and/or a threshold level of relative movement between the securing means and the sliding means.
8. The guiding device according to claim 1, wherein said device comprises means for pre-adjustment of the geometry of the means for geometric adaptation, arranged such that a threshold level of deformation is generated on the means for geometric adaptation when there is no external load.
9. The guiding device according to claim 1, wherein the means for pre-adjustment is configured to generate a force on the mobile element in a direction that is essentially perpendicular to the contact surface.
10. The guiding device according to claim 1, wherein said guiding device comprises a space configured to house a hydraulic element configured to generate a force on the mobile element in a direction that is essentially perpendicular to the contact surface.
11. The guiding device according to claim 1, wherein said guiding device is completely or partially recoverable and/or reusable for more than one phase of assembling a wind turbine tower.
12. The guiding device according to claim 1, wherein said guiding device comprises reaction or stop means comprising external elements interposed between the mobile element and the support element, and in that said external elements comprise two parts facing each other and wedge-shaped.
13. The guiding device according to claim 1, wherein the means for geometric adaptation comprise a ball joint configured to allow a pivoting movement between the sliding means and the securing means.
14. A kit for wind turbine towers that comprises a guiding device according to claim 1 and at least one means for hoisting wind turbine towers.
15. A method of assembling a wind turbine tower or a foundation for a wind turbine tower, wherein the method comprising: hoisting a section of tower using the guiding device according to claim 1; and anchoring or sinking a foundation and/or tower using the guiding device according to claim 1.
16. A wind turbine tower or foundation assembled with the method according to claim 15.
17. A wind turbine supported on the wind turbine tower or foundation according to claim 16.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The previous advantages and characteristics, in addition to others, shall be understood more fully in light of the following detailed description of exemplary embodiments, with reference to the drawings attached, which must be taken by way of illustration and not limitation, wherein:
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PREFERRED EMBODIMENT OF THE INVENTION
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(26) This case shows, by way of example, the hoisting of a wind turbine tower (100), and specifically, the hoisting of a telescopic tower (101), made up of different sections (110).
(27) Preferably, the guiding devices (1) are arranged in the two elements or structures (110, 110) that are involved in the movement, but they can also be solely located in one of said elements or structures (110, 110).
(28) Moreover, in this embodiment, in the case of guiding devices (1), the section of telescopic tower (110) acts as a mobile element (200) and the section (110) acts as a support element (300), while in the guiding devices (1), the section (110) acts as a support element (200) and the section (110) acts as a mobile element (300).
(29) Preferably, the guiding elements (1, 1) are arranged in the upper and/or lower portion of the elements or structures (110, 110), but they can also be arranged on the side faces of the elements or structures (110, 110), being in the middle thereof.
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(31) This case shows, by way of example, the hoisting of a wind turbine tower (100), and specifically, the hoisting of a telescopic tower (101).
(32) Preferably, there are three or more devices (1, 1) for the hoisting and/or anchoring of a wind turbine tower (100). In this embodiment, there are six devices (1) on the plane for hoisting the different sections (110) of the tower.
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(35) In this embodiment, the guiding device (1) is fastened to the upper portion of the support element (300), while the latter is in contact with the mobile element (200) by means of the sliding means (2).
(36) By way of example, but the invention not being limited thereto, the sliding means (2) comprise a surface or pad with a low friction coefficient (5) and the means for geometric adaptation (3) are formed by a neoprene part (6).
(37) The guiding device (1) is fastened to the support element (300) by means of the securing means (4) that in this case comprise, but the invention not being limited thereto, bolts (7) secured to bushings (8) embedded in the support element (300) itself.
(38) Similarly, the guide device (1) according to the present invention can comprise means for assisting the sliding (50) which can consist of greases or other fluids that facilitate the sliding between the mobile element (200) and the sliding means (2), by means of reducing the friction between the two. Interspersed sheets made of low friction materials such as Teflon or other methods known in the state of the art can also be used, for example, placed in an endless chain configuration.
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(42) In this embodiment, the reaction or stop means (9) comprise a first mortise (12) connected to the securing means and inside of which the means for geometric adaptation (3) are arranged.
(43) The reaction or stop means (9) further comprise a second mortise (13) connected to the sliding means. Said second mortise (13) fits with the first mortise (12) such that relative movement between the sliding means and the securing means is allowed in the direction perpendicular to the sliding surface but prevents it if it is parallel to the sliding surface.
(44) In this way, the movement of the means for geometric adaptation (3) is allowed in the direction (A), while the movement is prevented in direction (B).
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(46) Similarly to
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(48) As for
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(53) In this embodiment, by way of example but the invention not being limited thereto, the means for geometric pre-adjustment (14) are formed by a clamping bolt (15), welded to the sliding means (2). These means for geometric pre-adjustment or pretensioning (14) enable an initial deformation or load to be applied on the device (1), as shown in
(54) These means for geometric pre-adjustment can also be used to separate the sliding means (2) and the mobile element (200) in order to remove the device (1).
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(56) Moreover, in this embodiment, the guiding device (1) comprises a space (20) intended to house a hydraulic element, preferably a hydraulic jack that is capable of generating a force on the mobile element in a direction that is essentially perpendicular to the contact surface.
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(58) Likewise, these securing means (4) can also comprise slotted holes (17) to adapt the position of the guiding device (1).
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(60) In this case,
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(64) Although the figures and above explanations particularly refer to the assembly of wind turbine towers, the guiding device according to the present invention can similarly be used for assembling the foundation or other elements of the substructure of a wind turbine, preferably those that comprise shafts or vertical walls.