Wind generator
11530686 · 2022-12-20
Assignee
Inventors
Cpc classification
F05B2240/313
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/913
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D7/0268
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02T70/00
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
B63H9/08
PERFORMING OPERATIONS; TRANSPORTING
B63B15/0083
PERFORMING OPERATIONS; TRANSPORTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
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
F03D9/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03D9/25
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B63B15/00
PERFORMING OPERATIONS; TRANSPORTING
B63H9/08
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A wind generator for sailboats including a mast (A) provided with crosstrees (C), including: at least one wind generator (1) provided with a distribution of blades (2) arranged to rotate integrally with a shaft (6) of axis (a) in response to receiving a wind flow in an active direction (v) incident to the blades distribution; an electric generator (3) operatively connected to the generator (1) for converting the rotation of the blades (2) into electricity, comprising structure (22, 41) for fixing the generator (1) to a crosstree (C), and with the blades (2) being movable from an open operating position (P1) of maximum incidence of wind flow (F) to a closed non-operating position (P2) of minimum obstruction.
Claims
1. A wind generator for sailboats comprising a mast provided with at least one crosstree, the wind generator comprising: at least one wind generator structure provided with a distribution of blades arranged to rotate integrally with a rotation shaft of axis in response to receiving a wind flow in an active direction incident to the blade distribution; an electrical generator operatively connected to the at least one generator structure for converting a rotation of the blades into electricity; a means for fixing the generator to the mast of the boat; a folding means for moving the blades from an open operating position of maximum incidence of wind flow in which the axis of the rotation shaft is parallel to a longitudinal axis of the boat, to a closed non-operating position of minimum obstruction in which the blades are substantially orthogonal to the longitudinal axis of the boat laterally to the boat mast, the folding means comprising; a first folding means for moving the blades from the position of maximum incidence in which the rotation shaft is parallel to the longitudinal axis of the boat, to an intermediate gathered position, in alignment of the blades with the direction of the rotation shaft; and a second folding means for moving the blades from the intermediate position to the closed position of minimum obstruction in which the blades are substantially orthogonal to the longitudinal axis of the boat laterally to the boat mast.
2. The generator according to claim 1, wherein the first folding means comprises an umbrella closing mechanism of the blades from the open operating position to an intermediate gathered position around the axis of the shaft.
3. The generator according to claim 2, wherein the second folding means comprises a blade lowering closing mechanism from the intermediate gathered position to a position of minimum obstruction substantially orthogonal to the longitudinal axis of the boat laterally to the boat mast.
4. The generator according to claim 1, wherein the first folding means and the second folding means are actuated by a single actuator element.
5. The generator according to claim 4, wherein the single actuator element is a tie rod operable by a crew or by automated servomotors by returns to an easily accessible maneuvering point.
6. The generator according to claim 1, wherein the first folding means and the second folding means are actuated by respective actuators.
7. The generator according to claim 1, wherein in the closed non-operating position of minimum obstruction the blades are enclosed in a compartment of the crosstree.
8. The generator according to claim 1, wherein in the closed non-operating position of minimum obstruction the blades are enclosed in a nacelle applicable to the crosstree through fixing means.
9. A crosstree structure for a mast of sailboats, provided with a generator comprising at least one wind generator structure provided with a distribution of blades arranged to rotate integrally with a rotation shaft of axis in response to receiving a wind flow in an active direction incident to the blade distribution; an electrical generator operatively connected to the at least one generator structure for converting a rotation of the blades into electricity; a means for fixing the generator to the mast of the boat; and a folding means for moving the blades from an open operating position of maximum incidence of wind flow in which the axis of the rotation shaft is parallel to a longitudinal axis of the boat, to a closed non-operating position of minimum obstruction in which the blades are substantially orthogonal to the longitudinal axis of the boat laterally to the boat mast, the folding means comprising: a first folding means for moving the blades from the position of maximum incidence in which the rotation shaft is parallel to the longitudinal axis of the boat, to an intermediate gathered position, in alignment of the blades with the direction of the rotation shaft, a second folding means for moving the blades from the intermediate position to the closed position of minimum obstruction in which the blades are substantially orthogonal to the longitudinal axis of the boat laterally to the boat mast.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) In the drawings:
(2)
(3)
(4)
(5)
(6)
(7)
(8)
(9)
(10)
(11)
(12)
(13)
(14)
(15)
(16)
(17)
(18)
(19)
(20)
(21)
(22)
(23)
(24)
(25)
(26)
DESCRIPTION OF THE PREFERRED EMBODIMENTS
(27) With reference to the attached drawings, a preferred embodiment of a wind generator according to the invention is described.
(28) In the described example, the generator is applied to a sailboat provided with a mast A provided with crosstrees C.
(29) Reference will be made herein to crosstrees C of the type used in conjunction with mast support stays S, but it is understood that the generator of the invention may be applied to any type of crosstree, to be understood as a structure protruding from the mast.
(30) In an example implementation, the same generator body can be fixed to the boat's mast A and form a protruding structure itself.
(31) Referring to the embodiment illustrated in
(32) The general operation of the generator for the conversion of wind energy into electricity is of a conventional type per se and is therefore not described in detail.
(33) It is understood that the generator 2 will be equipped with electrical connections to transmit the collected energy, for example to batteries of the boat.
(34) According to the invention the blades 2 are movable from an open operating position P1 of maximum wind flow incidence to a closed non-operating position P2 of minimum obstruction.
(35) Advantageously, the operating position of the blades 2 will be activated in mooring conditions of the boat, typically mooring with the anchor, and is therefore an alternative to the maneuvering configuration of the equipment of the boat.
(36) Likewise, when the boat is sailing, the blades will be in the position of minimum obstruction, thus causing no or minimum disturbance to the manoeuvres and wind flow destined for the sails.
(37) In different preferred embodiments, the generator may be fixed to a specially designed crosstree or applied to a pre-existing crosstree.
(38) In addition, in the position of minimum obstruction P2 the blades 2 can be gathered close to the crosstree, or enclosed in a compartment 8 integral with the crosstree C, for example realized in a single profile having both a structural function as a crosstree and a housing of the folded blades 2, or still they can be enclosed inside a nacelle which is applied but separable from the crosstree as shown by way of example in
(39) Referring to the embodiments shown in
(40) In order to allow the movement of the blades 2 from the operating position P1 to the position of minimum obstruction P2, first folding means 5 of the blades are provided to rotate the individual blades 2 from the position P1 of maximum incidence to an intermediate gathered position P3 in which the blades are substantially aligned with the axis (a) of rotation of the shaft 6 and second folding means 7 to move the set of gathered blades 2 from the intermediate position P3 to the closed position P2 of minimum obstruction, in which the blades are substantially lowered on and aligned with the crosstree C.
(41) Preferably, the first folding means 5 comprise an “umbrella” kinematic mechanism in which each blade 2 is articulated in a rotation pin 25 integral with the shaft 6 and a connecting rod 10 is provided for each blade 2, hinged at one end at a point 11 of the blade and at the second end 12 to a stem 13 slidable inside the shaft 6 against the action of an antagonistic spring 21, preferably a compression spring arranged between an abutment 17 integral with the stem 13 and a stop bracket 24 integral with the electric generator 3.
(42) In this example embodiment, the shaft 6 of the wind generator 1 is distinct from the rotor axis of the electric generator and the conversion of wind energy into electricity takes place thanks to the rotational movement of the shaft 6, integral with the rotation of the blades 2, which drags a gear 14 connected in turn to the rotor 15 of the electric generator 3.
(43) The abutment 17 of the stem 13 is further engaged with an arm 19 rotating about a rotation pin 22 integral with the crosstree C and is rotatably operable by a tie rod 18 against the action of an antagonist spring 20, preferably a coil spring wrapped around the pin 22.
(44) Advantageously, the pin 22 also serves for fixing the generator 1 to the structure of the crosstree C, possibly in cooperation with a reinforcing structure 45, for example a box structure applicable to the crosstree.
(45) In operation, when the tie rod 18 is not in tension the coil spring 20 tends to detach the arm 28 from the abutment 17 which is then pushed together with the stem 13 by the compression spring 21 away from the second ends 12 of the connecting rods 10 from the rotation pins 25 of the blades 2 with respect to the shaft 6.
(46) As a result of the thrust of the spring 21, the stem 13 slides along the shaft 6 and the connecting rods 10 close the blades 2 until they are brought to a position substantially parallel to the axis (a).
(47) The “umbrella” kinematic mechanism has been described as a preferred embodiment, but it is understood that the first folding can also be achieved with different mechanisms, for example by providing blades which are radially foldable instead of in the umbrella mode.
(48) In this position, the second folding means 7 intervene to move the set of folded blades 2 from the intermediate position P3 to the closed position P2.
(49) The second means 7 perform the function of lowering the blades 2, already gathered in a bundle, along the crosstree.
(50) In the described example, the second means 7 comprise the arm 19 abutting a further pin 27 integral with a plate 29 hinged on the pin 22 of the arm 19 on which the generator 3 is mounted.
(51) In this configuration, the arm 19 driven by the spring 20 pushes on the abutment pin 27, rotating the plate 29 together with the electric generator 3 and the set of blades 2 aligned with the axis of rotation (a) around the pin 22.
(52) At the end of the rotation around the pin 22, the generator 1 is in the position of minimum obstruction P2 (
(53) Advantageously, in this embodiment the first and second folding means are actuated by a single actuator element, consisting of the tie rod 18.
(54) Preferably the tie rod 18 may be operated by the crew by means of returns 43 to an easily accessible maneuvering point 44.
(55)
(56) In this case, instead of the tie rod 18 and the antagonist spring 21, the movement of the stem 13, already described above, is obtained by means of a linear actuator 33, for example a remotely actuatable electro-pneumatic actuator.
(57)
(58) In this case, instead of the tie rod 18 associated with the abutment 19 and the antagonist spring 20, a second linear actuator 30 is provided, for example a remotely operable electro-pneumatic actuator, fixed at one end 31 to the crosstree and with the movable end 32 fixed to a plate 39 integral with the generator 3 and hinged at a fulcrum point 34 on the crosstree C.
(59) In this embodiment, in order to obtain the lowering of the blades 2 from the intermediate position P3 to the position of minimum obstruction P2, the actuator 30 pushes on the plate 39, rotating it together with the generator 3 and the blades 2 around the fulcrum 34 until the lowering of the blades 2 on the crosstree C inside the compartment 8.
(60) With reference to
(61) The operation is similar to that which has already been described, providing also in this case a first umbrella-like movement of closing the blades 2 around the axis of the shaft 6 and a second movement of lowering the gathered blades that rotate about the rotation pin 22 until they align with the crosstree.
(62) Unlike that which was previously described, in the position P2 of minimum obstruction the blades are substantially parallel to the crosstree C but arranged inside the nacelle 40 rather than inside the compartment 8 of the crosstree. Advantageously, in this embodiment the generator can be applied to already existing crosstree structures.
(63) The invention has been described with reference to a wind generator in which the rotation axis “a” is parallel to the incident direction “v” of the wind, but the generator may also be of the type with a rotation axis orthogonal to the incident direction of the wind and with the blades arranged along the crosstree.
(64) With reference to
(65) In this embodiment, in the operating position P1 the generator is fixed and protruding orthogonally to the must A, with the blades 2 arranged in the position of maximum incidence of the wind flow F and with the axis of the rotation shaft of the blades 2 parallel to the longitudinal axis of the boat, oriented with the wind.
(66) In the P2 non-operative position the generator blades 2 are instead folded first with an umbrella closing movement (position P3) then arranged vertically and parallel to the must, preferably alongside the must itself inside a nacelle 40.
(67) The invention has been described with reference to a preferred embodiment, but it is intended that equivalent modifications can be made without however departing from the scope of the present industrial property right.
(68) While specific embodiments of the invention have been shown and described in detail to illustrate the application of the principles of the invention, it will be understood that the invention may be embodied otherwise without departing from such principles.