DEVICE FOR PRODUCING HYDRO-ELECTRIC POWER
20200232438 ยท 2020-07-23
Inventors
Cpc classification
F03B17/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/30
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
F03B13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B11/002
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F03B11/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B13/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
The device for producing hydro-electric power includes at least one water wheel rigidly connected to at least one platform, at least one upper face of which is above water. The water wheel is formed by a plurality of blades extending the free ends of arms distributed around a hub, and is intended to be set into rotation under the effect of the flow of the water from a water course about an axis with a horizontal aspect, perpendicular to the direction of flow of said water course, in order to activate a turbine and to produce electricity through a generator. The device includes an activator for a liquid compressor for a fluid intended to supply the turbine under the effect of the rotation of the water wheel.
Claims
1. A device for producing hydroelectric power, comprising: at least one water wheel connected to at least one platform, at least one upper face of which is above water, said water wheel being comprised of a plurality of blades extending the free ends of arms distributed around a hub, and being intended to be set into rotation under the effect of the flow of a water course about an axis with a horizontal aspect, perpendicular to the direction of flow of said water course, in order to activate a turbine and to produce electricity through a generator; and means for activating, under the effect of the rotation of the water wheel, at least one means for compressing a fluid intended to supply said turbine.
2. The device according to claim 1, wherein said means for compressing a fluid comprises at least one air compressor having an enclosure provided with at least one air inlet orifice, and at least one compressed air outlet orifice communicating with said turbine, said chamber being delimited by a bottom, an upper flap, and a peripheral wall whereof at least a portion is deformable, said bottom or said upper flap being movable between an inactive state in which said bottom and said upper flap together form an acute angle 0 and an active state in which they together form an acute angle 1 of less than 0, while said activating means include at least one rotary bar, with axis parallel to the plane formed by said water wheel, said rotary bar being rotated about said axis by said water wheel through a shaft coupled to said hub, and including at least one free end secured to a member designed to be capable of acting on the upper flap or the bottom of said enclosure to cause it to move from its inactive state to its active state.
3. The device according to claim 2, wherein said member is comprised of a caster mounted rotating on the free end of the rotary bar, about an axis parallel to the axis X, said caster being designed able to exert, on the upper flap, an action having a component with a vertical aspect oriented toward the water course, during the rotation of the rotary bar.
4. The device according to claim 2, wherein said member is comprised of a connecting rod, wherein a first end is secured to the free end of the rotary bar and a second end is mounted rotating about an axis parallel to the axis on an arm extending in the extension of the upper flap or of the bottom of said enclosure, parallel to the plane formed by the latter.
5. The device according to claim 2, wherein said enclosure contains at least one resilient return means extending between said bottom and said upper flap, and against which the movement of said upper flap toward its active state takes place.
6. The device according to claim 2, wherein said upper flap is mounted rotating relative to said bottom and is connected to rotational guide means.
7. The device according to claim 2, wherein the peripheral wall is folded in an accordion while forming horizontal folds and is movable between a stretched position and a gathered position.
8. The device according to claim 7, wherein the peripheral wall is at least partially made from a deformable material, while the upper flap and/or the bottom is/are made from a rigid material.
9. The device according to claim 2, further comprising: a compressed air reservoir connected to the compressed air outlet orifice of said enclosure by a first channel and a compressed air inlet orifice of said turbine by a second channel.
10. The device according to claim 9, wherein the opening and closing of said first and second channels are controlled by first and second solenoid valves.
11. The device according to claim 2, wherein said enclosure comprises a compressed air outlet orifice connected with said turbine via a channel configured to emerge into said water course.
12. The device according to claim 11, wherein the channel is configured to circulate on the path followed by the compressed air after it is injected into said turbine through its compressed air inlet orifice.
13. The device according to claim 2, wherein said means for compressing a fluid comprises at least a hydraulic jack or a hydrostatic motor extending in said enclosure between said bottom and said upper flap.
14. The device according to claim 13, wherein said hydraulic jack or a hydrostatic motor is connected to said turbine using channels between which at least one compressed oil reservoir is placed.
15. The device according to claim 1, wherein said platform is provided with floats.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0029] Other features and advantages of the invention will emerge from the following detailed description relative to two exemplary embodiments of the device for the production of hydroelectric power, provided solely for information and non-limitingly.
[0030] The understanding of this description will be facilitated in reference to the attached drawings.
[0031]
[0032]
[0033]
[0034]
[0035]
[0036]
[0037]
DETAILED DESCRIPTION OF THE INVENTION
[0038] In the embodiment variants illustrated in
[0039] The produced mechanical power makes it possible to drive a turbine 20 connected to an electrical power generator 21. It should be noted that in the illustrated examples, the water wheel 2 has a diameter d of about 5 m, and is provided with blades 3 whereof each flap 3a has a height h (cf.
[0040] The latter is also secured to a floating platform including two elements 6, at least the upper face 60 of which is above the level 51 of the water course 50. The two elements 6 are each provided with a float 7 and are moored, for example to a bank, by appropriate means, in particular a metal cable (not illustrated), or any other equivalent means.
[0041] In reference to
[0042] According to the invention, in the embodiment variants illustrated in
[0043] Each air compressor 11 includes an enclosure, overhanging the upper face 60 of an element 6. Each enclosure is delimited by a bottom 12, an upper flap 13 provided with a valve 14 for the surrounding air inlet and a peripheral wall 15.
[0044] Preferably, the upper flap 13 and/or the bottom 12 are/is made from a rigid material, in particular hard Vitrimer (registered trademark), a plastic, a metal, a composite material or any other equivalent material.
[0045] The peripheral wall 15 is deformable and to that end is accordion-folded, such that each of the folds that it includes extends in a horizontal plane. It is preferably made from a flexible material, such as flexible Vitrimer (registered trademark), or any other equivalent material.
[0046] The enclosure is also secured to a frame 16, for example made from aluminum, having a parallelepiped base 17 and including, on either side of its upstream, downstream ends, a pair of platens 18, 19 extending vertically and to which the upstream 13a and downstream 13b edges of the upper flap 13 of said enclosure (cf.
[0047] Indeed, the upper flap 13 forms, with the horizontal bottom 12 of the enclosure, an acute angle a whereof the apex A (cf.
[0048] The latter is also mounted rotatably on the platens 18 about an axis parallel to the axis X, while the downstream edge 13b is guided in rotation relative to the platens 19, which to that end each include a guiding slide 23.
[0049] The upper flap 13 of each air compressor 11 is thus movable between an inactive position in which it forms an angle 0 with the bottom 12 (
[0050] It should also be specified that the upper flap 13 of each air compressor 11 has a length L1 chosen from among the range of values from 2.5 m to 6 m for a width I chosen from among the range of values of from 1 m to 2 m, while the peripheral wall 15 has two opposite lateral walls 15a whereof the length L2 is between 1 m in 2 m and a rear wall 15b with width I between 1 m and 2 m (cf.
[0051] In the embodiment variant illustrated in
[0052] It should be noted that in the embodiment variant illustrated in
[0053] According to the invention, in both illustrated embodiment variants, the change of position of the upper flap 13 of each air compressor 11 of the device 1, 10, from its inactive state toward its active state, is done using a rotary bar 24 subject to the movement of the shaft 8, in turn rotated in the direction of the arrow F by the rotation of the water wheel 2. Each rotary bar 24 is thus coupled to the shaft 8, and engaged thereupon so as to extend perpendicular to the water wheel 2, between two pillars 9, above an upper flap 13 and such that it has two segments 24a, 24b, preferably identical in length, extending around the shaft 8. Furthermore, the length of each rotary bar 24 is chosen such that during its rotation, each of the casters 25, with which the end of each of the segments 24a, 24b is equipped, successively comes into contact with the upper flap 13 of an air compressor 11.
[0054] In other words, the passage to the active position of each upper flap 13 is done by progressive bearing, on the latter, of a caster 25 during the travel that it performs above it, during the rotation in the direction of the arrow F2, of the rotary bar 24.
[0055] Regarding the embodiment variant illustrated in
[0056] More specifically in reference to
[0057] In reference to
[0058] As already indicated above, in the embodiment variant illustrated in
[0059] The present application also intends to cover other embodiment variants of the device according to the invention, in particular the one whereof the operation is illustrated in
[0060] Thus, as illustrated in
[0061] Owing to such a structure, the passage from the inactive position of the upper flap 13 (
[0062] As clearly emerges from the preceding, the present invention makes it possible to achieve the aims set out in the preamble through a device 1, 10 for producing hydroelectric power implementing a water wheel with improved efficiency owing to the lever effect of the two rotary bars 24 making it possible to multiply the mechanical power transmitted to the turbine 20 through air compressors 11 and/or the hydraulic jack 43. It is thus conceivable to reach a power from about 50 kW/h to 250 kW/h with a current speed of 1 m/s.
[0063] Furthermore, owing to its simplified structure, the device 1, 10 according to the invention makes it possible to generate a renewable electric current with an improved efficiency without requiring substantial civil engineering work, therefore through a low investment and reduced environmental impact, and thus impact on the landscape. Furthermore, owing to significant mixing of the water accompanied by a regular injection of air into the water, the device 1, 10 according to the invention contributes to improving the quality of the water course in which it is installed and has positive effects on the entire surrounding ecosystem.