Not applicable.
Not applicable.
Not applicable.
1. Field of the Invention
The invention relates to a method for trimming a building frontage, including a wall.
The invention also relates to a kit for trimming a frontage, designed capable of being placed onto a wall or an insulation said frontage includes, and including, from said frontage to an external environment:
The invention is related to the field of trimming of building frontages in order to provide them with particular functions, essentially an energy-exchange function, and, in particular, the recovery of energy available in an environment external to the building, namely solar energy.
2. Description of Related Art Including Information Disclosed Under 37 CFR 1.97 and 37 CFR 1.98.
Though the design of new buildings integrates the notion of energy recovery, this is not the case for old buildings for which nothing was thought of to this end. It is known to adapt, especially on the roof, solar panels or photovoltaic panels as in FR 2 876 840. Such adaptations are either voluminous and heavy, in the case of the solar panels, or of a high purchase cost, in the case of the photovoltaic panels, and are also not aesthetical. Also known is to equip frontages with water circulation heated by solar radiation, in the case of FR 2 579 303. Such installations for solar radiation exchange with a liquid fluid are long and expensive to implement.
The invention is aimed at coping with the problem of the state of the art by providing a method and means for trimming a frontage, which are very easy to be implemented by staff without any particular qualification, and using a large number of components easily available on the market at any place.
To this end, the invention relates to a method for trimming a building frontage including a wall,
wherein, from said wall outwardly, the level of insulation of said wall is measured and an eventual complementary layer of insulation is determined, depending on the specifications;
wherein, should the case arise, at least one said complementary layer of insulation is arranged onto said wall;
wherein at least one solar receptor is arranged on said wall or on said complementary layer of insulation farthest away from said wall;
wherein, beyond said most external solar receptor is formed, there is at least one channel between said solar receptor and a rigid external layer;
wherein, in at least one such channel, there is arranged at least one partially transparent or/and cut-out or/and perforated internal flexible strip;
wherein said internal flexible strip is arranged over the full height of a module forming an element of the building frontage, or over the full height of said building, hooked on an upper bearing surface and tensioned by tensioning means; and
wherein each channel is closed by said rigid external strip including at least either transparent or translucent protection means over at least 90% of their surface, or at least one external strip having a light-transmission coefficient higher than 25%, made in the form of a textile or a grid maintained tensioned within a frame.
The invention also relates to a trimming kit for a frontage, designed capable of being applied onto a wall or onto an insulation said frontage includes, and including, from said wall to an external environment:
wherein said channel contains, between said solar receptor and said rigid external layer, at least one internal flexible strip, which is partially transparent or/and cut-out or/and perforated, and said rigid external layer includes at least either one transparent or/and cut-out or/and perforated external strip having a light-transmission coefficient higher than 25%, or transparent or translucent protection means over at least 90% of their surface.
Further features and advantages of the invention will become clear from the following detailed description of non-restrictive embodiments of the invention, with reference to the attached figures.
The invention is related to the field of trimming for building frontages. This trimming is designed so as to permit to recover the energy available in the environment E external to the building, namely the solar energy, through exchange and concentration on a receptor. It is also designed to add value to the building by using particular materials, and to serve as a communication medium, and namely an advertisement medium. The invention uses components available on the market, permits a very easy placing by staff without any particular qualification, and does not require removing the frontage protection elements already installed, in particular the paneling panels the frontages of the industrial buildings are usually trimmed with.
The invention implements a method for trimming, according to customer specifications, a building frontage, or a frontage portion, including a wall 2 oriented towards the exterior E. According to this method, from this wall 2 towards the exterior E:
According to the invention, this rigid external layer 7 includes at least either transparent or translucent protection means 20 over at least 90% of their surface, or at least one external strip 19 having a light-transmission coefficient higher than 25%, made in the form of a textile or a grid maintained tensioned within a frame.
Of course, the rigid external layer 7 can include both such protection means 20 and one or several such external strips 19.
In a preferred embodiment, the rigid external layer 7 formed over at least 90% of its surface by at least one transparent or translucent protection means 20, such as a glass panel, a diffusing panel, or the like is chosen. Preferably, this rigid external layer 7 is air-tight and weather-tight.
It is obvious that the internal flexible strip 8 permits partial entering of the solar radiation into the channel 6 and it is preferably designed capable of impeding the transmitted energy from leaving to the external environment. For example, the internal flexible strip 8 can be metallized or include a reflecting coating on its internal face opposite the external environment E. The internal flexible strip 8 can also be formed by perforated sheet metal, a grid or the like.
In a preferred embodiment, as visible in
This internal flexible strip 8 is, in a first embodiment, hooked on an upper bearing surface 10 and tensioned by tensioning means 11 such as a weighted shaft or the like.
In a second embodiment, said internal flexible strip 8 is arranged between a lower bearing surface 9 and an upper bearing surface 10, at least one of the lower 9 and upper 10 bearing surfaces including means for tensioning 11 the internal flexible strip 8, such as an eccentric, spring, tensioner or the like. Advantageously, the tensioning means 11 are made according to the application FR 08 52144 of the same applicant.
In an advantageous variant embodiment, the protection means 20 is formed by a juxtaposition of transparent or translucent panels 21 assembled by horizontal rails 22 or/and vertical stiles 23, as visible in
In a particularly cheap embodiment permitting to use non-finished products available on the market, a solar receptor 5 is chosen, which is formed of sheet metal with a zigzag profile with alternately, on the one hand, faces arranged horizontally 13 and, on the other hand, faces arranged obliquely 14 and parallel to each other, the normal line of which protruding to the exterior E is ascending. A standard <<Hacierba 5.200.50 HB>> type product is well-suited for such a use.
From the same viewpoint of saving and easy implementation with products available on the market, at least one sandwich panel 15, the most external face of which forms the solar receptor 5, as visible in
In this embodiment, the protection means 20 is preferably fixed to the sandwich panel 15, at the level of the outermost face 16 of the latter, directly or through supporting spacers 17, so as to form at least one channel 6 between the sandwich panel 15 and the protection means 20. The use of sandwich panels including set-backs, as shown in
In an advantageous embodiment of the invention, the protection means 20 is chosen made out of transparent polycarbonate and is folded at least at one of its ends, in order to form the supporting spacer 18, as visible in
In a preferred embodiment, when the protection means 20 consists of a juxtaposition of transparent panels 21 assembled by horizontal rails 22 or/and vertical stiles 23, the internal flexible strip 8 is tensioned between horizontal rails 22.
The partially transparent or/and cut-out or/and perforated internal flexible strip 8 is preferably made removable, and is then fixed with reversible fixing means designed capable of permitting its quick exchange, made of Velcro, or by press-buttons, or by snap-on fasteners with lever effect or clamping, or by clips, or by magnets, or by screwing means, or the like. The internal flexible strip 8 can then act as communication means, and this function is conjugated with its primary solar radiation catching function.
In a variant embodiment, as visible in
The partially transparent or/and cut-out or/and perforated internal flexible strip 8 is, in a particular embodiment, applied directly onto transparent or translucent protection means 20, by gluing, or by electrostatic assembling or by magnetization or by welding, or the like.
The invention also relates to a kit for trimming a frontage on a wall 2 this frontage includes.
The trimming of a wall or a frontage by means of such a trimming kit 1 can occur according to the above-described method.
The kit for trimming a frontage, designed capable of being applied against a wall 2 or against an insulation this frontage includes, comprises, from the frontage towards the external environment E:
According to the invention, this channel 6 contains, between this solar receptor 5 and the rigid external layer 7, at least one internal flexible strip 8, which is partially transparent or/and cut-out or/and perforated.
The kit can also include, in the channel 6, further internal strips 8.
The rigid external layer 7 includes at least either at least one external strip 19 having a light-transmission coefficient higher than 25% and which is partially transparent or/and cut-out or/and perforated, or transparent or translucent protection means 20 over at least 90% of the surface of this external layer 7.
On the side of the external environment E, the rigid external layer 7 can include:
The latter protection means 20 advantageously include at least one transparent panel 21.
When the kit includes both at least one external strip 19 and at least protection means 20, the latter can be arranged either as close as possible to the external environment E, or between the channel 6 and the external strip 19, which is then arranged as close as possible to the external environment E, as visible in
Advantageously, the internal flexible strip 8 is arranged over the full height of a module forming an element of the frontage of the building, or over the full height of the building, hooked on an upper bearing surface 10, and tensioned by tensioning means 11. More particularly, the internal flexible strip 8 is arranged between a lower bearing surface 9 and an upper bearing surface 10, at least one of the lower 9 and upper 10 bearing surfaces including means for tensioning 11 the internal flexible strip 8.
In a particular embodiment, the kit for trimming a building frontage 1 includes, on the transparent or translucent protection means 20 and on the side of the external environment E, a partially transparent or/and cut-out or/and perforated external strip 19.
In an advantageous variant embodiment, the solar receptor 5 is made out of sheet metal or the like, and incorporates bosses for supporting the external layer 7, namely protection means 20 making the use of spacers useless. In a preferred embodiment, as visible in
Preferably, in these various embodiments, when different webs interposed on the path of the solar radiation, formed, as the case may be, by one or several strips 8, one or several external strips 19, one or several protection means 20 or transparent panels 21, are juxtaposed substantially parallel to each other, it is important that the degree of opening of those webs that are perforated or cut-out are in an order with respect to each other, so as to ensure the best possible thermal yielding. To this end, it is preferred that the degree of opening of the web farthest away from the external environment E is smaller than that of the web closest to this external environment E.
Preferably, the degree of opening, i.e. the ratio between the perforated or cut-out surface and the total surface, is preferably smaller than 0.50 for an internal flexible strip 8, namely when it is made in the form of a textile.
It is also advantageous to change the degree of opening of one or several webs depending on the level of elevation with respect to the ground, so as to ensure a uniform distribution over the height of the building. As visible in
In the event the webs used, in particular the internal strip 8 or also the external strip 19, are of a large length, any crimps likely to close the air path and to create pressure drops should be avoided. To this end, it is possible to laterally guide this web by means of guides in a substantially vertical direction, or, in simpler and cheaper way, by stiffening this web or strip with stiffeners that are either applied like horizontal busks or formed by a welded or glued horizontal fold, or the like. When the web or strip unfolds away from a structure including mullions, as in the examples of
The trimming kit can also include an additional insulation 4 on the side of its placing on the frontage.
Like the frontage trimming 1, the trimming kit can be made very easy to be placed through the incorporation of one or several frames, preferably removable frames, namely for holding an internal strip 8, or also for holding an external strip 19. This frame is preferably independent from the solar receptor 5, as well as from the protection means 20. This independency permits to have a removable frame very light to be handled, and permits to very easy change the solar filtration and, of course, to change the esthetics of a so equipped frontage.
In brief, irrespective of the embodiment of the invention, the channel 6 always includes, between the solar receptor 5 and the external environment E, an internal flexible strip 8. The latter is continuous and formed, as the case may be, of an cut-out flexible film of polycarbonate or the like, or also of a textile. The degree of opening of this internal flexible strip is preferably between 10 and 50%.
The channel 6 is closed, on the side of the external environment E, by a rigid external layer 7, which is formed either by protection means 20 including at least a transparent panel 21, which is transparent or translucent over at least 90% of its surface or by an external strip 19, advantageously made in the form of a textile or a grid maintained tensioned in a frame, and having a light-transmission coefficient higher than 25%.
The various most usual alternatives relating to the constitution of this rigid external layer 7 and the arrangement and the placing of the kit, from the wall 2 towards the external environment E are:
Number | Date | Country | Kind |
---|---|---|---|
0857379 | Oct 2008 | FR | national |
Filing Document | Filing Date | Country | Kind | 371c Date |
---|---|---|---|---|
PCT/FR2009/052037 | 10/23/2009 | WO | 00 | 4/22/2011 |