专利摘要:
The invention relates to a floating photovoltaic panel support device (1), comprising: - a structure (2) comprising coupling elements (3) to other floating devices so as to allow the formation of a network (R) floating devices, - one or more floats (4), intended (s) to ensure the flotation of the device, secured (s) to said structure (2), - holding elements of at least one photovoltaic panel (P), and wherein said structure (2) is a separate element of said one or more floats (4) so as to allow the transmission of forces between the floating devices (1,7) of the network (R), without transmitting the network efforts at (s) said (s) floats (4).
公开号:FR3014830A1
申请号:FR1362700
申请日:2013-12-16
公开日:2015-06-19
发明作者:Alexis Gaveau
申请人:CIEL ET TERRE INTERNAT;
IPC主号:
专利说明:

[0001] The invention relates to a floating device, support panel (x) photovoltaic (s), and a floating system resulting from the assembly of floating devices. The field of the invention is that of floating photovoltaic installations, and more particularly floating photovoltaic installations resulting from the assembly of floating devices, panel support (x), of modular design. Such devices, modular, can be assembled on site, quickly, aligning the photovoltaic panels of the same row, and often constituting several rows of photovoltaic panels.
[0002] The state of the art knows, for example, US 2008/0029148 A1 an installation resulting from the assembly of floating panel support devices, modular design. Each modular floating device, as illustrated in FIG. 1 of this prior art, comprises two elongated, cylindrical floats and a self-supporting structure resulting from an assembly of tubes welded together. Four tubes of the structure extend longitudinally, respectively, in the extension of the ends of the floats, the end ends of these tubes being provided with end rings. The assembly of the floating photovoltaic installation is obtained, in the direction of the elongated floats, by the direct coupling of the end rings of a floating device to the end rings of an adjacent modular device. The floating device comprises four additional additional lateral coupling rings to ensure the assembly of neighboring floating devices in the perpendicular direction.
[0003] The assembly of the floating photovoltaic installation is obtained, in the direction perpendicular to the elongate floats, by the coupling of the lateral rings of a floating device to the side rings of an adjacent modular device, via connection pieces. . This structure allows the support of two photovoltaic panels, rotatably mounted relative to the structure.
[0004] The manufacture of such modular devices, taught by this prior art, requires the realization of a structure resulting from the assembly of tubes, typically a welded-welded. According to the findings of the inventor, such a design is not economically interesting, because of its high manufacturing cost.
[0005] Those skilled in the art also know from document WO2012 / 139998 an installation resulting from the assembly of floating devices, panel supports, modular design and connection elements, themselves in the form of floats. The support devices and the connecting elements are intended to be assembled to form a network of floats.
[0006] According to this modular design, each modular panel support device consists essentially of a plastic envelope which carries several functions and, in particular: a float function: the plastic envelope sealingly encloses a volume of air allowing to ensure the flotation of the device, - optionally, an element function for tilting the photovoltaic panel: its upper wall is inclined relative to its lower wall so as to ensure the inclination of the photovoltaic panel relative to the body of water and a structural element function: the plastic envelope constitutes the structure through which the forces of the network of floats transit.
[0007] The multifunctional plastic envelope of this modular device is typically obtained by roto-molding or extrusion-blow molding, in one piece, which reduces the costs compared to the welded structure of the device of US 2008/0029148 A1. Those skilled in the art still know, from WO2011 / 094803, an installation resulting from the assembly of floating devices, panel supports, modular design, assembled directly between them to form a network of floats. According to this modular design, each device comprises a float, it seems to be constituted by an envelope, and supports for tilting the photovoltaic panel relative to the float.
[0008] The envelope forms coupling elements, marked 16 to 22 which allow the assembly of floats between them. The envelope carries several functions, namely: a float function and an intermediate structure function: the envelope constitutes the structure through which the forces of the network of floats transit. The function of tilting the panel relative to the surface of the water is provided by separate elements of the floats. In the documents W02012 / 139998 or W02011 / 094803, the envelope must be strong enough to resist the efforts of the network. According to the findings of the inventor, it is necessary, in practice, to increase the resistance of this element by providing a wall thickness greater than that which would be necessary to ensure only the float function. The extrusion blow molding of a plastic envelope, of complex shape, as taught by WO2012 / 139998 is feasible and was manufactured by the applicant. However, it requires the extruder manufacturer important know-how, to obtain a relatively uniform wall thickness over the entire surface of the envelope, while limiting the consumption of plastic. The object of the present invention is to provide a panel support device, of modular design, mastered manufacturing cost and simplified manufacturing. Another object of the present invention is to provide a system resulting from the assembly of devices according to the invention, and possibly connection elements themselves floating.
[0009] Other aims and advantages will appear during the description which is given for information only and which is not intended to limit it. The invention relates first of all to a floating photovoltaic panel support device, comprising: a structure comprising coupling elements to other floating devices so as to allow the formation of a network of floating devices, one or several floats, designed to ensure the flotation of the device, secured to said structure, elements for holding at least one photovoltaic panel, and wherein said structure is a separate element of said float or floats so as to allow the transmission of forces between the floating devices of the network, without transmitting the efforts of the network to said float (s). The support device according to the invention finds a particular application as a modular element. According to the invention, the float function, on the one hand, and the structure function making it possible to transmit the forces of the network, on the other hand, are provided by dissociated elements, namely the floats and said structure. It is thus possible to dimension the or each of said floats, preferably made of plastic, formed by an envelope of relatively small wall thickness, for example, less than or equal to 2 mm.
[0010] Said structure intended to ensure the transmission of the forces of the network may be a plastic element, for example in one piece. This structure can be manufactured by molding, in particular injection molding, or other plastic processing methods. This structure must withstand the forces of the network, the wall thickness may be greater than or equal to 3 mm, preferably greater than 10 mm, at least at the level of the coupling elements. According to one embodiment, the plastic element of the structure is a hollow body, preferably waterproof. Alternatively or additionally, the plastic element is a perforated body, for example a wire mesh. Such a design of the hollow element and / openwork, allows to limit the consumption of plastic and thus to limit the cost of the device, or even to stiffen. According to another embodiment, said structure results from the assembly of several elements, preferably removably. Said elements are preferably assembled by a screw system, a clipping system, or a webbing system or any other system for rapid assembly of the elements to achieve said structure.
[0011] According to one embodiment, the structure and the float or floats are mutually secured by a screw system, a strap system, or a clipping system. The fastening systems ensure quick assembly, removably and preferably without tools between the structure and the float or floats are preferred. According to one embodiment, said coupling elements to other floating devices may be protruding ears, preferably substantially horizontal. In the case where said structure results from the assembly of several elements, these ears can accumulate, in addition to their function as elements for assembling the support device to other floating devices, an element function for the assembly of all or part of the elements of the structure. For this purpose all or part of said elements of said structure comprise said lugs, all or part of the elements being joined to one another by means of lugs, facing each other, belonging to at least two distinct elements of said elements of the structure, and via locking member, such as a bolt, passing through said ears. According to optional features of the invention, taken alone or in combination: the structure is provided overflowing, laterally, with respect to said float (s); the device has one or more support elements for inclining said at least one photovoltaic panel with respect to the surface of the water, for example with an inclination of between 10 ° and 30 °, the or each of said floats is constituted by a plastic envelope, enclosing a volume of air, or alternatively, the or each of said floats is an inflatable element. According to an advantageous embodiment, the support device is designed to maintain a single photovoltaic panel, said holding elements being arranged to allow the mounting of the photovoltaic panel projecting laterally, in particular on both sides of said device. again, to reduce the consumption of material including plastic, necessary for the manufacture of the device, and thus to limit its cost. The invention also relates to an equipment for producing a photovoltaic installation comprising a plurality of said modular panel support devices according to the invention. The device's modular panel support devices are intended to be assembled together to form a network of floating devices, either directly by assembling their coupling elements, or indirectly via their coupling elements. connecting elements, intermediate. According to optional characteristics of the equipment, taken alone or in combination: the equipment further comprises modular, floating connection elements, said equipment having coupling elements distributed between said connection elements and said support devices allowing the assembly of said connecting elements and said support devices; each floating connection element is in the form of a plastic envelope having an internal volume making it possible to ensure the floatation of said connecting element, said plastic envelope having said coupling elements, or alternatively; each connecting element comprises, on the one hand, a structure comprising said coupling elements to the floating devices so as to allow the formation of an array of floating devices and, on the other hand, one or more floats, intended (s) to ensure the flotation of the device, secured to said structure: said structure is then a separate element of said float or floats so as to allow the transmission of forces between the floating devices of the network, without transmitting the efforts of the network to ( x) said floaters; - The coupling elements are projecting ears, said equipment comprising locking members such as pins or bolts, each locking member being intended to pass through several ears facing to ensure the locking of the assembly.
[0012] The invention also relates to a system resulting from the assembly of support devices of the equipment according to the invention, directly via their coupling elements, or indirectly via their coupling elements and connecting elements, spacers obtaining a floating device network. According to one embodiment, said system comprises said connecting elements, said system having at least two rows of panel support devices according to the invention, said two rows being held by means of a row of connecting elements, interlayer this row of connecting elements can optionally constitute a maintenance corridor, continuous or discontinuous. According to one embodiment, two consecutive support devices belonging to one and the same row are separated and mutually separated by means of a connecting element, or even two connection elements in parallel, bridging said consecutive devices. Alternatively or additionally, according to one embodiment, two consecutive support devices belonging to the same row can be spaced apart and mutually separated by means of at least one support device of an adjacent row, bridging the two consecutive devices. Such a configuration of the device network makes it possible to maintain two consecutive remote panel bearer devices. This advantageously allows the mounting of the overflowing panel relative to the device, in the direction of said row.
[0013] The invention will be better understood from the description accompanied by the appended figures, in which: FIG. 1 illustrates a system resulting from the assembly of panel support devices according to the invention and connection elements. FIG. 2 is a detail view of FIG. 1. FIG. 3 illustrates a second embodiment of the invention FIG. 4 illustrates a third embodiment of the invention for which the structure of the device results of the assembly of several elements, - Figure 5 is a variant of the embodiment of Figure 4, - Figure 6 illustrates a fourth embodiment for which each connecting element comprises, on the one hand, a bearing structure the coupling elements (ie the ears) and, on the other hand, a float ensuring the floating of said connecting element, - Figure 7 illustrates a system according to the invention according to one embodiment, resulting from the assembly of support devices according to the invention, directly via their coupling elements (non-visible panels), - Figure 8 is a view of the system of Figure 7, the photovoltaic panels being shown. - Figure 9 shows yet another embodiment of the system according to the invention.
[0014] Also, the invention relates to a device 1 floating photovoltaic panel support, comprising: - a structure 2 having coupling elements 3 to other floating devices so as to allow the formation of a network R of floating devices one or more floats 4 intended to ensure the flotation of the device, secured to said structure 2, elements for holding at least one photovoltaic panel P. According to the invention, said structure 2 is a separate element of said one or more floats 4 so as to allow the transmission of the forces between the floating devices 1,7 (or, 1,7 ') of the network R, without transmitting the forces of the network R to (x) ( s) floats 4. This support device 1 finds a particular application as a modular element. According to the invention, the float function, on the one hand, and the structure function making it possible to transmit the forces of the network, along the two directions of the network R, are provided by dissociated elements.
[0015] It is thus possible to size the float or floats 4, preferably made of plastic with a small thickness of material. The or each of the floats 4 may be formed by a plastic envelope of relatively small wall thickness, for example, less than or equal to 2 mm. The float or floats, semi-rigid (s) can be obtained by extrusion blow molding, rotational molding or other. According to another variant (not shown) the or each of the floats may be an inflatable element. Said structure 2 intended to ensure the transmission of network forces, having said coupling elements, may be a particular plastic element, preferably in one piece. Such an embodiment is illustrated, by way of non-limiting example, for the embodiments of Figures 1 to 3 and 6. This structure can be manufactured by molding, in particular rotomoulding, extrusion blow molding or other plastic processing processes. This structure must withstand the forces of the network, the wall thickness may be greater than or equal to 3 mm and preferably greater than or equal to at least 10 mm at the coupling elements 3. In order to limit the consumption of material, said structure may be a hollow body 20, for example as illustrated without limitation in Figure 2. Alternatively or additionally, the plastic element may be a perforated body 21, for example mesh, for example as illustrated without limitation to the figure 3.
[0016] According to one embodiment, said coupling elements 3 may be projecting lugs 32. The coupling elements 3, in particular said lugs 32 may be provided at the four corners of the structure 2. The structure 2 may be, seen from above, of substantially rectangular shape as illustrated in the figures. The float or floats 4 are subject to the lower part of the structure 2 by any suitable means. However, fastening systems for rapid assembly of the structure with the float or floats, preferably in a removable manner, and preferably without tools, are preferred. These systems can be chosen from a screwing system 5, a strap system, or a clipping system. According to the illustrated examples, two screws 5 of the screwing system pass through two bores of the structure 2 and engage with threads of the float 4.
[0017] Alternatively, and according to an embodiment illustrated in non-limiting manner in FIGS. 4 and 5, said structure 2 results from the assembly of several elements 22, 23, 24, 25, 26, 27. These elements 22, 23, 24, 25, 26 , 27 may be plastic, for example obtained by molding, in particular injection molding.
[0018] Said elements 22, 23, 24, 25 can be assembled by screwing system, a clipping system, or a webbing system or any other system allowing rapid assembly on site. The embodiments of FIGS. 4 and 5 use a screwing system (bolts 34) to enable the elements 22, 23, 24 and 25 or even 26 and 27 of the structure 2 to be assembled. According to this advantageous embodiment, locking members 34 such as bolts not only allow the elements 22, 23, 24, 25 or even 26, 27 of the structure 2 to be assembled, but also cooperate with the lugs 32 of neighboring floating devices to ensure the coupling of the support device 1 with the neighboring floating devices of the network R. Generally, all or part of said elements 22, 23, 24, 25 of said structure 2 may comprise said lugs 3, all or part of the elements 22, 23, 24 25 being connected together by means of lugs 32 facing each other belonging to at least two distinct elements 22,25; 23,25; 23,24; 22,24 and via a locking member 34, such as a bolt, traversing the 32. In particular, the structure 2 of the embodiment of FIG. 4 comprises four elements 22, 23, 24, 25. The four elements 22, 23, 24, 25 each comprise two lugs 32. The elements are assembled between they, two by two, by comparing two ears 32 belonging to two distinct elements 22,25; 23.25; 23.24; 22,24 and by the establishment of the locking member 34, such as a bolt 34, passing through the two lugs 32. According to the illustrated embodiment, the elements 22 and 23 are V-shaped, seen from above, arranged head to tail so as to form an X and are respectively fixed to the float 4, in particular by screwing, at their middle part. The ends of the V are provided respectively with said ears 32.
[0019] The other two elements 24 and 25 are elongated elements each provided with lugs 32 at their two ends. Each element 24 or 25 connects the two V-shaped elements, 22 and 23, the two lugs of each element 24 and 25 being respectively facing two lugs 32 belonging to the elements 22 and 23 and connected thereto by means of locking members 34 such as bolts. This same locking member 34 passes through and holds an ear 32 of a neighboring floating device, marked 7. The assembly elements of the structure 2 preferably extend in a plane above the float or floats.
[0020] According to one embodiment, the float 4 may be unique, in particular of parallelepipedal shape. The structure 2 is then secured preferably on the upper face of this float. According to one embodiment, the structure 2 is provided projecting, laterally, with respect to said float (s) 2.
[0021] Providing the structure 2 protruding laterally relative to (x) said float (s) can protect the float or floats in the event of a collision. For example in the figures, the structure 2 protrudes laterally from the four sides of the float 4. According to one embodiment, said device has one or more support members 60, 61 for tilting said at least one photovoltaic panel P with respect to the surface of the the water. This element makes it possible to incline the photovoltaic panel with respect to the body of water, in particular at an angle of between 10 ° and 30 °. This support element 60 can comprise, be constituted by, or comprise, said element forming said structure 2. or consist of one or more distinct elements.
[0022] For example, according to the embodiment of FIGS. 1 and 2, said structure 2, formed by an integral plastic element, has at least one fixing rib 10, which is low, and at least one fixing rib 11, which is high. , at a higher level, which will allow the inclination of the photovoltaic panel P. According to another embodiment illustrated in Figure 3 the structure 2 has at least one fixing rib 10, low. At least one high fixing rib 11 is provided on a support element 61, distinct from the structure 2, at a higher level. These ribs 10 and 11 allow the inclination of the photovoltaic panel P. These fixing ribs 10, 11 allow the establishment of holding elements of the photovoltaic panel fixing device, taught by the document WO2013 / 153329, of the present applicant by threading said ribs 10 and 11, respectively, into complementary securing grooves of said holding members. The holding element threaded on the low rib 10 keeps the panel by one of its sides and the holding element threaded on the high rib 11 keeps the panel of the other of its sides.
[0023] Also, in general, the holding elements can be those described in the fixing device of WO2013 / 153329A, which is incorporated by reference. Such elements advantageously make it possible to maintain the photovoltaic panel P only by its two sides, and allow a mounting of the photovoltaic panel, protruding with respect to the support device 1.
[0024] According to the embodiment of FIG. 5, the structure 2 results from the assembly of several elements 22, 23, 24, 25, 26, 27, in particular by means of their lugs 32 and locking members 34 such that bolts. Some of the elements may have ribs for the establishment of holding elements of the device of document WO2013 / 153329A. For example, the element 26 has at least one rib 12, for the establishment of a holding member for holding one side of a panel. Another element 27, opposite, has a rib 12 for the establishment of a holding member for holding the other side of the panel.
[0025] However, the holding elements may take other forms known to those skilled in the art. According to an advantageous embodiment, said holding elements are arranged to allow the mounting of the photovoltaic panel P protruding laterally on both sides of said device 1. The invention also relates to an equipment for the realization of a photovoltaic installation comprising a plurality said modular panel support devices 1 in accordance with the invention.
[0026] The modular, panel-mounting devices 1 of the equipment are intended to be assembled together to form a floating device network R 1.7 (or 1.7 '), either directly by their coupling elements (not shown). or indirectly via their coupling elements and connecting elements 7 or 7 '. The 1.7 (or 1.7 ') devices of the network extend along the two directions of the body of water. According to one embodiment, the equipment thus comprises modular connecting elements 7, and preferably, floating.
[0027] For example, each connecting element may be in the form of a plastic envelope. This envelope encloses an interior volume to ensure the floating of said connecting element. This plastic envelope of said connecting element may have a bottom wall, an upper wall and four side walls. The sealed envelope of said connecting element 7 may have an opening, closed by a plug. The plastic shell, semi-rigid, of said connecting element 7 can be obtained by extrusion blow molding, roto molding. Alternatively and according to an embodiment illustrated in FIG. 6, each connecting element 7 'comprises: a structure 70 comprising said coupling elements 3 to the floating devices 1 so as to allow the formation of a network R of floating devices, one or more floats 71 intended to ensure the flotation of the device, secured to said structure 70. Said structure 70 is advantageously a separate element from said one or more floats 71 so as to allow the transmission of the forces between the floating devices 1.7 'of the network R without transmitting the forces of the network to (x) says (s) floats 71. The structure 70 may be a preferably plastic element and preferably integrally. This structure can be manufactured by molding, rotational molding, extrusion blow molding or other plastic processing processes. This structure must withstand the forces of the network, the wall thickness may be greater than or equal to 3 mm and preferably greater than or equal to at least 10 mm at the level of the coupling elements 3. In order to limit the consumption of material, said structure may be a hollow body, for example as illustrated without limitation in Figure 6. Alternatively or additionally, the plastic element may be a perforated body, for example mesh. Alternatively, the structure 70 may result from the assembly of several elements (not shown), in particular by a screw system, a strap system or a clipping system. According to one embodiment, said coupling elements 3 may be protruding lugs 32. The or each of the floats 71 of said connecting element 7 'may be a plastic envelope, semi-rigid or be an inflatable element. The equipment furthermore has coupling elements 3 distributed between said connecting elements 7 and said support devices 1 enabling the connection of said connection elements 7 and said support devices 1 together.
[0028] For example, the coupling elements 3 are projecting lugs 32 of the devices 1 and lugs 32 protruding from the connecting elements. Said equipment comprises the locking members 34 (bolts), each member being intended to pass through several ears facing to ensure the locking of the assembly. The lugs 32 are preferably provided at the four corners of said connecting element 7 or 7 '. Optionally, elastomeric pads may be sandwiched between the lugs traversed by the same locking member 34. The system resulting from the assembly of the modular elements of the equipment may have at least two rows R1, R2 of devices 1 supports compliant to the invention, said two rows possibly being held by means of a row R3 of connecting elements 7, inserted. This connection element row R3 possibly makes it possible to constitute a maintenance corridor, continuous or discontinuous. The connecting elements 7 (or 7 '), floating, can be put end-to-end thus form a maintenance corridor, continuous, on which an operator can move. The upper surface of the connecting elements 7 (or 7 '), intended to be trampled may be striated, embossed or have any other relief promoting attachment. Alternatively, the connecting elements 7 (or 7 ') of the row R3 may be spaced from each other, for example to form a discontinuous maintenance corridor.
[0029] According to an embodiment illustrated in FIG. 1, two consecutive support devices 1 belonging to one and the same row R1 may be spaced mutually apart by means of a connecting element 7, or even two connection elements 7 in parallel, bridging said devices 1 consecutive. For this purpose, for example, a connection element has a coupling element fixed to a coupling element of a support device of the row R1 and a coupling element fixed to a coupling element of the consecutive support device, on the same row Rl. The free space between the two devices 1 consecutive supports, allows the mounting of the photovoltaic panel P overflowing, as described above, in the direction of the row Rl. Alternatively or additionally, and for the same purpose, two consecutive support devices 1 belonging to the same row R4 may be spaced apart by means of a support device 1, an adjacent row of support devices R5, bridging said devices 1 consecutive.
[0030] FIG. 1 illustrates, according to a nonlimiting exemplary embodiment, two consecutive support devices 1, of the row R1 spaced apart and distant by means of two connecting elements 7, bracing the support devices 1. FIG. 7 illustrates, according to FIG. another non-limiting example of embodiment, two consecutive support devices 1 of the same row spaced apart and distant using two support devices 1 of the two adjacent rows. FIG. 9 illustrates, according to another nonlimiting exemplary embodiment, two consecutive support devices 1 of the same row spaced apart and apart by means of a connecting element and a support device, each bridging the two consecutive devices.
[0031] According to the example of FIGS. 7 and 8, the support devices 1 are assembled directly by their coupling elements (i.e. their ears), for example in a checkerboard configuration. The panels of the same row of support devices are preferably parallel, having the same inclination with respect to the surface of the water. The panels of the adjacent row of devices may be parallel of the same inclination, or oriented at an opposite inclination angle, according to Figure 8. Preferably, the coupling elements 3 of the support devices 1 and connecting elements are configured to allow, on the one hand, an assembly of the connecting element in correspondence of the support device, and on the other hand, an assembly of the connecting element bridging two support devices. For a matching assembly; two coupling elements, in particular two lugs of the support device, are respectively assembled with two coupling elements, in particular two lugs of said connecting element 7.
[0032] For a bridging assembly, one of the coupling elements of the connecting element 7 is connected to a coupling element of a first device 1 and another coupling element of said connecting element 7 is assembled to an element of coupling of a second support device 1. Optionally, these two types of assembly can be combined, as illustrated in FIG.
[0033] In a general manner, said structure 2 and the floats 4 and possibly the elements 60, 61 permitting the inclination of the panel are made of plastic, as well as said connection elements 7. These various elements are intended to be assembled on site, quickly, like a building game and preferably without tools. These elements are preferably removable easily, so, during maintenance, can change only the damaged element, quickly. Naturally, other embodiments could have been envisaged by those skilled in the art without departing from the scope of the invention as defined below.
[0034] NOMENCLATURE 1. Floating device panel support, 2. Structure for transmission of network forces, 20. Hollow body (Structure), 21. Hollow body, in particular added (Structure), 22.23.24, 25,26 Elements (Structure) , 3. Coupling elements, 30. Coupling element (Device 1), 31. Coupling element (Connecting element 7), 32. Ears, 34. Locking members, 4. Float, 5. Screwing system, 60, 61. Elements for tilting the photovoltaic panel, 7. Connecting elements (in one piece), 7 'Connection element (in several parts), 70. Structure for transmitting mains forces (Element 7'), 71 Float ( Element 7 '), 10. Fixing rib (low), 11. Fixing rib (high), 12. Fixing ribs, P. Photovoltaic panel, R. Network of floating devices, R1, R2; R4, R5. Rows of panel support devices, R3. Intermediate row of connecting elements.
权利要求:
Claims (25)
[0001]
REVENDICATIONS1. A floating photovoltaic panel support device (1) comprising: - a structure (2) having coupling elements (3) to other floating devices so as to allow the formation of a network (R) of floating devices, one or more floats (4) intended to ensure the flotation of the device, secured to said structure (2), elements for holding at least one photovoltaic panel (P), and in which said structure (2) is a separate element of said one or more floats (4) so as to allow the transmission of forces between the floating devices (1,7) of the network (R), without transmitting the network forces to (x) said float (4).
[0002]
2. Device according to claim 1, wherein said structure (2) is an integral plastic element.
[0003]
3. Device according to claim 2, wherein the plastic element is a hollow body (20), preferably sealed.
[0004]
4. Device according to claim 3 wherein the plastic element is a perforated body (21), for example mesh.
[0005]
5. Device according to claim 1, wherein said structure (2) result from the assembly of several elements (22, 23, 24, 25, 26), preferably removably.
[0006]
6. Device according to claim 5, wherein said elements (22, 23, 24, 25, 26) are assembled by screwing system, a strap system, or a clipping system.
[0007]
7. Device according to one of claims 1 to 6, wherein said coupling elements (3) comprise ears (32) protruding.
[0008]
8. Device according to claim 5 or 6 and 7, wherein all or part of said elements (22, 23, 24, 25, 26, 27) of said structure (2) comprise said ears (32), all or part of the elements (22, 23, 24, 25, 26, 27) being connected to each other by means of lugs (32), opposite, belonging to at least two distinct, said elements (22,25; 23,25; 23,24; 22,24 ...), and via a locking member (34), such as a bolt, passing through said lugs (32).
[0009]
9. Device according to one of claims 1 to 8, wherein the structure (2) is provided projecting, laterally, with respect to (s) said (s) floats (4).
[0010]
10. Device according to one of claims 1 to 9, wherein the structure (2) and the float or floats are interconnected by a screw system (5), a webbing system, or a clipping system.
[0011]
11. Device according to one of claims 1 to 10, having one or more support members (60, 61) for tilting said at least one photovoltaic panel (P) relative to the surface of the water.
[0012]
12. Device according to one of claims 1 to 11, wherein said holding elements are arranged to allow the mounting of photovoltaic panel protruding laterally on both sides of said device (1).
[0013]
13. Device according to one of claims 1 to 12, wherein the or each of said floats (4) is constituted by a plastic envelope, enclosing a volume of air.
[0014]
14. Device according to one of claims 1 to 12, wherein the or each of said floats is an inflatable element.
[0015]
15. An assembly comprising a support device (1) according to claim 12 and a photovoltaic panel (P) held by said device (1), said panel being provided projecting laterally with respect to said device (1).
[0016]
16. Equipment for the realization of a photovoltaic installation comprising a plurality of said devices (1) modular panel supports according to one of claims 1 to 14, able to be assembled to form a network of floating devices.
[0017]
Equipment according to claim 16, further comprising modular, floating connection elements (7), said equipment having coupling elements (3) distributed between said connecting elements (7; 7 ') and said support devices. (1) allowing the assembly of said connecting elements (1) and said support devices (1).
[0018]
18. Equipment according to claim 17, wherein each floating connecting element (7) is in the form of a plastic envelope having an interior volume for flotation of said connecting element (7), said envelope having said elements of coupling (3).
[0019]
Equipment according to claim 17, wherein each connecting element (7) comprises - a structure (70) comprising said coupling elements (3) to the floating devices (1) so as to allow the formation of a network (R). ) floating devices, - one or more floats (71), intended (s) to ensure the flotation of the device, secured (s) to said structure (70), and wherein said structure (70) is a separate element of or said floats (71) so as to allow the transmission of the forces between the floating devices (1,7) of the network (R), without transmitting the forces of the network to said floaters (71).
[0020]
20. Equipment according to claim 17, 18 or 19, wherein the coupling elements (3) are projecting ears, said equipment comprising locking members such as pins or bolts, intended to pass through several ears facing to ensure the locking the assembly.
[0021]
21. System resulting from the assembly of the equipment support devices according to one of claims 16 to 20, directly via their coupling elements, or indirectly via connection elements (7, 7 '), spacers, obtaining a network of floating devices.
[0022]
22. System according to claim 21 having at least two rows (R1, R2) of device according to one of claims 1 to 14, said two rows being maintained by means of a row (R3) of said connecting elements (7). , insert. 15
[0023]
23. System according to claim 22, wherein two consecutive support devices (1) belonging to the same row (R1) are spaced mutually distant by means of a connecting element (7), or two connecting elements (7) in parallel, bridging said devices (1) consecutive. 20
[0024]
24. System according to one of claims 21 to 23, wherein two consecutive support devices (1) belonging to the same row (R4) are spaced apart by means of a device according to one of claims 1 to 14, belonging to an adjacent row (R5) of support devices, bridging said devices (1) consecutive. 25
[0025]
25. Use of the device (1) according to one of claims 1 to 14, the assembly of claim 15, the equipment according to one of claims 16 to 20 or the system according to one of claims 21 to 24 for the realization of a floating photovoltaic installation. 10
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同族专利:
公开号 | 公开日
IL246229A|2021-07-29|
PH12016501172A1|2016-08-15|
KR102283253B1|2021-07-29|
MX2016007874A|2017-02-28|
CN106061833B|2020-02-28|
IL246229D0|2016-07-31|
FR3014830B1|2017-02-17|
CA2933631A1|2015-06-25|
AU2014369622B2|2018-07-19|
PH12016501172B1|2016-08-15|
ES2689653T3|2018-11-15|
KR20160096154A|2016-08-12|
CN106061833A|2016-10-26|
WO2015092237A1|2015-06-25|
AU2014369622A1|2016-07-07|
US9849945B2|2017-12-26|
MY177841A|2020-09-23|
JP2017501079A|2017-01-12|
US20160368577A1|2016-12-22|
JP6559682B2|2019-08-14|
EP3083392A1|2016-10-26|
PT3083392T|2018-10-31|
EP3083392B1|2018-07-04|
AU2014369622B9|2018-07-26|
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法律状态:
2015-12-30| PLFP| Fee payment|Year of fee payment: 3 |
2016-12-28| PLFP| Fee payment|Year of fee payment: 4 |
2017-12-28| PLFP| Fee payment|Year of fee payment: 5 |
2018-10-30| PLFP| Fee payment|Year of fee payment: 6 |
2019-12-27| PLFP| Fee payment|Year of fee payment: 7 |
2020-12-29| PLFP| Fee payment|Year of fee payment: 8 |
2021-12-17| PLFP| Fee payment|Year of fee payment: 9 |
优先权:
申请号 | 申请日 | 专利标题
FR1362700A|FR3014830B1|2013-12-16|2013-12-16|FLOATING DEVICE PHOTOVOLTAIC PANEL SUPPORT|FR1362700A| FR3014830B1|2013-12-16|2013-12-16|FLOATING DEVICE PHOTOVOLTAIC PANEL SUPPORT|
JP2016540672A| JP6559682B2|2013-12-16|2014-12-12|Photovoltaic panel floating support device|
CA2933631A| CA2933631A1|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
ES14827508.4T| ES2689653T3|2013-12-16|2014-12-12|Floating device photovoltaic panel support|
MX2016007874A| MX2016007874A|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel.|
MYPI2016702194A| MY177841A|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
US15/104,831| US9849945B2|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
AU2014369622A| AU2014369622B9|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
PCT/FR2014/053323| WO2015092237A1|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
EP14827508.4A| EP3083392B1|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
CN201480071467.3A| CN106061833B|2013-12-16|2014-12-12|Floating support device for photovoltaic panel|
PT14827508T| PT3083392T|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
KR1020167018176A| KR102283253B1|2013-12-16|2014-12-12|Floating support device for a photovoltaic panel|
IL246229A| IL246229A|2013-12-16|2016-06-15|Floating support device for a photovoltaic panel|
PH12016501172A| PH12016501172B1|2013-12-16|2016-06-16|Floating support device for a photovoltaic panel|
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