Solar soundproof barrier
The solar noise barrier system addresses the high costs and limited functionality of conventional soundproof walls by integrating solar power generation into the soundproofing structure, achieving efficient energy collection and reduced facility costs through a vertically installed solar panel design.
Patent Information
- Application Number
- PCT/KR2024/006837
- Authority / Receiving Office
- WO · WO
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2023-12-19
- Filing Date
- 2024-05-21
- Publication Date
- 2025-06-26
AI Technical Summary
Conventional soundproof walls require high installation costs and lack additional functionality beyond soundproofing, necessitating a solution that integrates multiple functions while minimizing costs.
A solar noise barrier system that combines soundproofing with solar power generation by installing solar panels vertically between pillars along roads, utilizing support frames, load distribution members, and sagging prevention mechanisms to ensure structural integrity and efficiency.
The solar noise barrier system generates electricity using solar energy while reducing facility costs, and its vertical installation enhances solar energy collection efficiency compared to ground-based installations, providing a dual function of soundproofing and renewable energy production.
Smart Images

Figure KR2024006837_26062025_PF_FP_ABST
Abstract
Description
Solar sound barrier
[0001] The present invention relates to a solar noise barrier, and more specifically, to a solar noise barrier structure installed around a road to block the noise of a driving vehicle, in which solar panels of a solar power generation device are installed, so that both a soundproofing function and a solar power generation function can be implemented simultaneously.
[0002] In general, noise barriers and tunnels are installed along roads and railroad tracks where vehicles or trains run to prevent noise and fine dust generated by vehicles or trains from being transmitted to surrounding residential areas or commercial facilities, thereby providing a pleasant urban living environment. This trend is increasing due to the expansion of roads and railroads.
[0003] The above soundproof walls and soundproof tunnels are constructed by erecting a plurality of vertical beams at regular intervals on a concrete block foundation poured along the perimeter of a road and a railroad track, and continuously installing soundproof panels having a roughly square shape between each vertical beam and between each other or between roof beams extending from each vertical beam and between each other.
[0004] Meanwhile, research is actively underway on solar-powered soundproof panels that can generate and supply energy in addition to their original function of blocking noise and fine dust, as well as soundproof walls and soundproof tunnels installed along roads and railways.
[0005] However, since conventional soundproof walls require a lot of installation costs and cannot be used for any other function other than soundproofing, it has been pointed out that additional usability is needed.
[0006] The purpose of the present invention is to combine a sound barrier and solar power generation, and to enable the production of necessary electricity using a sound barrier installed on a road without separate land costs and civil engineering costs.
[0007] The problems to be solved by the present invention are not limited to the problems described above, and other technical problems not mentioned will be clearly understood by those skilled in the art to which the present invention pertains from the contents described below.
[0008] An embodiment of the present invention for achieving the above purpose is a solar noise barrier comprising a plurality of pillars installed at regular intervals and a plurality of solar panels stacked in a vertical structure between neighboring pillars.
[0009] The above-mentioned support is a pair of support frames with receiving grooves formed on the inside so that the side of the solar panel can be fitted and connected symmetrically.
[0010] A solar noise barrier is provided, which is equipped with a load distribution member that distributes the load of solar panels between adjacent solar panels vertically.
[0011] Meanwhile, the load distribution member is used for the purpose of distributing the load of the solar panels between the vertically adjacent solar panels, and provides a solar noise barrier comprising a horizontal frame having a vertical cross-section of a square shape and a hollow interior, which is arranged between the upper and lower solar panels and has a length corresponding to the length of the posts, that is, a horizontal length corresponding to the horizontal length between the inner ends of the support frame receiving grooves of the posts facing each other on both sides of the solar panels, a “ㄱ” shaped support portion in which horizontal plates are fixedly joined to the lower surfaces of each end of the horizontal frame and vertical plates bent and connected to the ends of the horizontal plates are fixedly joined to the inner sides of the receiving grooves of the support frame, and a pressurized fastening means comprising a bolt hole formed on the rear surface of the support frame where the support portion is located, a forward bolt passing through the bolt hole, and a nut connected to the rear surface of the horizontal frame corresponding to the position of the bolt hole formed on the rear surface of the support frame so as to pressurize the horizontal frame forward toward the front inner surface of the support frame by being fastened to the forward bolt.
[0012] Meanwhile, when a pair of solar panels arranged horizontally on both sides between the horizontal frames are connected between the posts, a central frame formed in a hollow shape inside is installed while being formed with a vertical length corresponding to the height of the solar panels between the solar panels, and a solar soundproof panel is provided in which a connecting plate is connected to the upper and lower front sides of the central frame, respectively, and the connecting plate is extended and fixed to the horizontal frame by a fastening means selected from bolts, rivets, or pieces.
[0013] Meanwhile, the lower part of the solar panel is installed vertically between the center of the horizontal frame and the ground to support the lower part of the solar panel placed between the above-mentioned supports.
[0014] A solar noise barrier is provided, which further includes a sagging prevention member that constitutes an “L”-shaped support portion composed of a base plate fixed to the ground, a reinforcing member connected to the lower part of the upper center of the base plate so that the upper part is close to the lower surface of the horizontal frame, a horizontal support plate connected to the upper part of the reinforcing member so that the lower surface of the horizontal frame is in contact with the upper surface, and a vertical support plate connected to the rear end of the horizontal support plate to support the rear surface of the horizontal frame.
[0015] Meanwhile, a solar noise barrier is provided, which further includes a horizontal reinforcing beam positioned at the rear side of a horizontal frame installed to support the upper portion of the uppermost solar panel arranged between the above-mentioned supports and fixed to the upper rear side of the support frame at both ends of the horizontal frame.
[0016] The solar noise barrier according to the present invention, which is constructed in this manner, has the effect of obtaining electric energy using solar energy while reducing facility costs by installing solar panels on a road noise barrier, and in particular, since the solar panels are installed on a noise barrier installed vertically at a certain height, it shows the advantage of improving solar energy collection efficiency compared to installing them on the ground.
[0017] Figure 1 is a perspective view of a solar sound barrier according to an embodiment of the present invention.
[0018] Figure 2 is an exploded view of a soundproof panel and a fixing member located at the bottom between the supports in a solar soundproof wall according to an embodiment of the present invention.
[0019] Figure 3 is an exploded view of the side supports and load distribution members in a solar noise barrier according to an embodiment of the present invention.
[0020] Figure 4 is a perspective view (a) of a support member in a solar noise barrier according to an embodiment of the present invention, an exploded view (b) of a support member, and a planar cross-sectional view (c) of a support member.
[0021] FIG. 5 is a front perspective view (a), a rear perspective view (b), a plan view (c), and a front view (d) of a support frame and a load distribution member coupled to the support frame in a solar noise barrier according to an embodiment of the present invention.
[0022] Figure 6 is an exploded view of a support frame and a load distribution member connected to the support frame in a solar noise barrier according to an embodiment of the present invention.
[0023] Figure 7 is a perspective view (a) and a side view (b) of a central frame in a solar noise barrier according to an embodiment of the present invention.
[0024] Fig. 8 is a perspective view of a sagging prevention member in a solar noise barrier according to an embodiment of the present invention.
[0025] Figure 9 is an exploded view of a support frame, a load distribution member coupled to the support frame, and a reinforcing support member coupled to the load distribution member in a solar noise barrier according to an embodiment of the present invention.
[0026] Figure 10 is a perspective view (a), a front view (b), a plan view (c), and a perspective view (d) of a solar noise barrier according to an embodiment of the present invention, including a support frame, a load distribution member coupled to the support frame, and a reinforcing support member coupled to the load distribution member.
[0027] FIG. 11 is a structural drawing (a) of a solar noise barrier according to an embodiment of the present invention in which a load distribution reinforcing member is installed on a support frame, and an enlarged view of the “A” portion in (a) of FIG. 11.
[0028] Figure 12 is an exploded view of the rear of the support frame and the load distribution reinforcing member in a solar noise barrier according to an embodiment of the present invention.
[0029] Figure 13 is a joint structure diagram of a panel reinforcement member that is connected to a load distribution reinforcement member and fixes a solar panel in a solar noise barrier according to an embodiment of the present invention.
[0030] Hereinafter, some embodiments of the present invention will be described in detail with reference to exemplary drawings. When designating components in each drawing, it should be noted that, where possible, identical components are given the same reference numerals, even if they appear in different drawings. Furthermore, when describing the present invention, detailed descriptions of known related components or functions will be omitted if they are deemed to obscure the gist of the present invention.
[0031] Additionally, terms such as first, second, etc. may be used to describe components of the present invention. These terms are merely intended to distinguish the components from other components, and do not limit the nature, order, or sequence of the components. When a component is described as being "connected," "coupled," or "connected" to another component, it should be understood that the component may be directly connected or connected to the other component, but that another component may also be "connected," "coupled," or "connected" between the components.
[0032]
[0033] Referring to the drawings of FIGS. 1 to 3, an embodiment of the present invention is a solar soundproof wall (1) composed of a plurality of pillars (10) installed at regular intervals and a plurality of solar panels (20) stacked in a vertical structure between neighboring pillars (10).
[0034] The above-mentioned support (10) is a pair of support frames (10a) having a receiving groove (11) formed on the inside so that the side of the solar panel (20) can be fitted and connected symmetrically.
[0035] A solar noise barrier (1) is provided, which is provided with a load distribution member (100) that distributes the load of a solar panel (20) between vertically adjacent solar panels (20).
[0036] The solar noise barrier (1) of the present invention is configured by stacking and connecting a plurality of conventional solar panels (20) that can produce electricity through solar energy in vertical lengths while sealing the space between the plurality of supports (10) installed at regular intervals and the space between the supports (10), and also by stacking a plurality of horizontal array units of a pair of solar panels (20) arranged horizontally on both sides between the supports (10) and the supports (10).
[0037] And, as shown in Fig. 4, the support (10) used in the present invention is formed with a receiving groove (11) that is opened inwardly so that the side of the solar panel (20) can be inserted in the center of one side facing the side of the solar panel (20), and a pair of C-shaped support frames (10a) having a horizontal cross-section in the shape of a rectangular steel are joined symmetrically to each other, and one side of the support (10) is formed with a receiving groove (11) that is formed by cutting a vertical length in the center and a step (12) that protrudes toward the location of the receiving groove (11).
[0038] The side end of the solar panel (20) is inserted into the receiving groove (11) of the one side of the supporting frame (10a) and the other side of the supporting frame (10a) that are symmetrically connected to form the above-mentioned support (10), and at this time, a fastening means such as a bolt, rivet or piece is fastened to the receiving groove (11) of the other side of the supporting frame (10a) corresponding to the side of the solar panel (20), so that the side end of the solar panel (20) located in the receiving groove (11) of the one side of the supporting frame (10a) is coupled and fixed, while at the same time, the one side of the supporting frame (10a) and the other side of the supporting frame (10a) that are symmetrically connected to each other are coupled and fixed.
[0039]
[0040] And, as shown in Fig. 3, the solar panel (20) may preferably be formed into a rectangle with a length greater than its height, and a border frame (21) may be installed at the top, bottom, and both sides of the solar panel (20).
[0041] In addition, a solar panel (20) may be placed on the upper portion between the pillars (10) and the pillars (10), and a transparent structure with a transparent plate that allows an outside view or a sound-absorbing structure with sound-absorbing material filled inside may be installed on the lower or lower portion.
[0042] And, as shown in Fig. 2, a fixing member (40) is installed between the bottom of the soundproof panel (30) or solar panel (20) located at the lowest end of the solar soundproof wall (1) and the ground, and the fixing member (40) is composed of a support frame (42) having a width corresponding to the front-to-back width of the soundproof panel (30) and a width corresponding to the left-to-right width of the soundproof panel (30) and a vertical cross-section of a rectangular shape, and a blocking tab (41-1) that is formed vertically on the front and rear sides of the upper surface to accommodate the lower portion of the support frame (42) and a fixing frame (41) having a fixing tab (41-2) that is formed horizontally on the front and rear sides by a predetermined length so as to be fixed to the ground with an anchor or the like.
[0043] And, as shown in FIGS. 3, 5 and 6, the load distribution member (100) is used for the purpose of distributing the load of the solar panel (20) between the solar panels (20) that are vertically adjacent, and is arranged between the upper and lower solar panels (20), and has a length corresponding to the length of the support (10) and the support (10), that is, a horizontal length corresponding to the horizontal length between the inner ends of the receiving grooves (11) of the support frames (10a) of the support (10) facing each other on both sides of the solar panel (20), and has a horizontal frame (110) having a hollow vertical cross-section in a rectangular shape inside, and a horizontal plate (121) is fixedly joined to the lower surface of both ends of the horizontal frame (110), and a vertical plate (122) that is bent and connected to the end of the horizontal plate (121) is fixedly joined to the inner side of the receiving groove (11) of the support frame (10a) in the shape of an “ㄱ”. A solar noise barrier (1) is provided, which comprises a support member (120) and a pressurized fastening means (130) including a bolt hole (13) formed on the rear surface of a support frame (10a) where the support member (120) is positioned, a forward bolt (131) passing through the bolt hole (13), and a fastening nut (132) connected to the rear surface of the horizontal frame (110) corresponding to the position of the bolt hole (13) formed on the rear surface of the support frame (10a) so as to pressurize the horizontal frame (110) forward toward the front inner surface of the support frame (10a).
[0044] The above load distribution member (100) includes a horizontal frame (110), a support member (120) that is fixed by connecting the lower ends of the horizontal frame (110) and the support frame (10a), and a pressure fastening means (130) that allows the horizontal frame (110) to be fixed to the support frame (10a) in a pressurized state by being pressed against the front inner side of the support frame (10a).
[0045] And, the horizontal frame (110) is placed between the solar panels (20) that are adjacent to each other on the upper / lower sides, and is formed with a horizontal length corresponding to the horizontal length from the inner side of the other side of the support frame (10a) facing one end of the horizontal frame (110) to the inner side of the other side of the support frame (10a) facing the other end of the horizontal frame (110), and a hollow vertical cross-section is formed in a square shape inside.
[0046] And, the support part (120) is formed in an “ㄱ” shape by being composed of an upper horizontal plate (121) and a lower vertical plate (122) that is bent and connected to the end of the horizontal plate (121), and the horizontal plate (121) is fastened and fixed to the lower end of the horizontal frame (110) with a bolt or rivet, and the vertical plate (122) is fastened and fixed to the inner surface of the other side of the support frame (10a) with a bolt and a nut, and the support part (120) located on the inner surface of the other side of the support frame (10a) that is symmetrical to the one side of the support frame (10a) can be fastened together with a bolt and a nut.
[0047] And, before fixing the support part (120) fixed to the lower end of the horizontal frame (110) to the support frame (10a), the horizontal frame (110) is supported by applying pressure to the inner front side of the support frame (10a) using a pressure fastening means (130), and then the support part (120) is fastened to the support frame (10a).
[0048] In addition, as shown in FIG. 5, instead of fixing the support part (120) to the lower end of the horizontal frame (110), the vertical plate (122) of the support part (120) is first fixed to the inside of the receiving groove (111) of the support frame (10a), and then the horizontal frame (110) is fixed by fixing it to the horizontal plate (121) of the support part (120), but one bolt hole (121-1) formed in the horizontal plate (121) may be a bolt hole (121-1) cut to a predetermined horizontal length rather than a circle.
[0049] And, the above-mentioned pressurized fastening means (130) is composed of a forward bolt (131) and a fastening nut (132) connected to the end of the horizontal frame (110), and the forward bolt (131) is formed in a bolt hole (13) on the rear side (B) of the support frame (10a) located at the rear side of the end of the horizontal frame (110) coupled to the support member (120), and passes through the bolt hole (13) to be located on the lower side of the end of the horizontal frame (110), and at this time, a fastening nut (132) is connected to the rear side of the horizontal frame (110) corresponding to the position of the bolt hole (13) formed on the rear side of the support frame (10a) so as to be fastened to the forward bolt (131) close to the rear side of the horizontal frame (110), and thus the forward bolt (131) is fastened to the fastening nut (132) to support the horizontal frame (110) or to support the horizontal frame (110). The front inner side of the support frame (10a) is pressed forward.
[0050] In addition, the above fastening nut (132) may be connected to the rear end of the horizontal frame (110) by welding or the like, or when a bolt hole (111) is formed on the rear end of the horizontal frame (110), the fastening nut (132) may be connected to the rear end of the horizontal frame (110) by welding or the like so as to be in communication with the bolt hole (111).
[0051] In addition, a support nut (not shown) is connected to the bolt hole (13) position formed on the rear side (B) of the support frame (10a), and a forward bolt (131) is fastened to the support nut so that it passes through the bolt hole (13) and is fastened and fixed with a fastening nut (132) connected to the rear side of the end of the horizontal frame (110). At this time, the rotation of the forward bolt (131) presses the horizontal frame (110) against the front inner side of the support frame (10a), thereby reinforcing the pressing force or supporting force applied to the forward bolt (131) and reinforcing the rigidity of the bolt hole (13) located on the rear side (B) of the support frame (10a).
[0052] And, as shown in FIGS. 2 and 7, when a pair of solar panels (20) arranged horizontally on both sides between the horizontal frames (110) and the horizontal frames (110) are connected between the posts (10) and the posts (10), a central frame (200) formed in a hollow shape inside while being formed with a vertical length corresponding to the height of the solar panels (20) between the solar panels (20) is installed, and a connecting plate (210) is connected to the upper and lower front sides of the central frame (200) and extended, and the connecting plate (210) is fastened to the horizontal frame (110) by a fastening means selected from bolts, rivets, or pieces, thereby providing a solar soundproof panel (1).
[0053] The central frame (200) is installed so that the solar panels (20) on both sides are mutually connected and fixed, and the connecting plate parts (210) are connected to the upper and lower sides of the front to form a protrusion, and at this time, the horizontal frame (110) positioned corresponding to the connecting plate parts (210) is fixed by fastening using a fastening means such as a bolt, rivet or piece, and the fastening means described above may include a fastening means such as welding in addition to the fastening means selected from among the bolts, rivets or pieces, but is not limited thereto.
[0054] And, as shown in FIG. 2, FIG. 3 and FIG. 8, it is installed vertically between the center of the horizontal frame (110) and the ground to support the lower part of the lowest solar panel (20) arranged between the pillars (10).
[0055] A solar noise barrier (1) is provided, which further includes a sagging prevention member (300) that constitutes an “L”-shaped support member (330) composed of a base plate (310) fixed to the ground, a reinforcing member (320) connected to the lower part of the upper center of the base plate (310) so that the upper part is close to the lower surface of the horizontal frame (110), a horizontal support plate (331) connected to the upper part of the reinforcing member (320) so that the lower surface of the horizontal frame (110) is in contact with the upper surface, and a vertical support plate (332) connected to the rear end of the horizontal support plate (331) so as to support the rear surface of the horizontal frame (110).
[0056] The above-mentioned sagging prevention member (300) is composed of a base plate (310) fixed to the ground or a foundation block, a reinforcing support (320) connected to the base plate (310) and erected vertically, and a support member (330) connected to the upper end of the reinforcing support (320) to fix and connect a horizontal frame (110).
[0057] The above base plate (310) is a horizontal plate type and is fixed to the ground or to a foundation block such as concrete.
[0058] The above reinforcing support (320) may be formed in a horizontal cross-section of a hollow square or an “H” shape, and is not limited to the horizontal cross-section shapes mentioned above. It can support a load and have rigidity, and can be formed in various shapes, such as a round bar, for example.
[0059] The above-mentioned support member (330) is composed of a horizontal support plate (331) that is connected to the upper end of the reinforcing column (320) and supports the lower surface of the horizontal frame (110), and a vertical support plate (332) that is connected to the end of the horizontal support plate (331) and supports the rear surface of the horizontal frame (110).
[0060] And, as shown in FIGS. 2 and 3, transparent or sound-absorbing soundproof panels (30) are mounted on both sides of the reinforcing support (320) of the sagging prevention member (300). At this time, one side of the soundproof panel (30) is connected to the support frame (10a) of the support (10), while the other side is connected and fixed to the reinforcing support (320). The fixing structure of the other side of the soundproof panel (30) and the reinforcing support (320) is applied in the same manner as the structure of connecting and fixing the soundproof panel (30) to a conventional H-shaped support.
[0061] And, as shown in FIGS. 1 to 4, a solar noise barrier (1) is provided, which further includes a horizontal reinforcing beam (400) positioned on the rear side of a horizontal frame (110) installed to support the upper portion of the uppermost solar panel (20) arranged between the supporters (10) and the supporters (10), and both ends of which are fastened and fixed to the upper rear side of a support frame (10a) positioned at both ends of the horizontal frame (110).
[0062] The above horizontal reinforcing beam (400) is provided for the purpose of supporting the gap between the supports (10) and the load of the solar panels (20) stacked between the supports (10), and is located at the rear side of the horizontal frame (110) installed to support the upper part of the solar panels (20) arranged at the highest point between the supports (10), and has a vertical cross-section in the shape of a “ㄷ” with a horizontal length corresponding to the length of the horizontal frame (110) and an open rear side, and the sealed front side of the horizontal reinforcing beam (400) is arranged to face the rear side of the horizontal frame (110), and at this time, both ends of the horizontal reinforcing beam (400) are fastened and fixed to the rear side of the support frame (10a) through a fastening means.
[0063] And, as shown in FIGS. 9 and 10, a solar noise barrier (1) is provided, which further includes a reinforcing support member (500) composed of a horizontal connecting plate (510) positioned below a horizontal plate (121) so as to be fixedly coupled with the horizontal plate (121) of the support member (120) by being coupled to the support member (120) and supporting a forward bolt (131), and a vertical connecting plate (520) having a support groove (521) formed in the center of the upper portion so as to be connected to the end of the horizontal connecting plate (510) and to be coupled to a forward bolt (131) positioned in a receiving groove (11) of a support frame (10a).
[0064] The above reinforcing support member (500) is a single body connected by a lower horizontal connecting plate (510) and an upper vertical connecting plate (510), and has a vertical cross-section in the shape of an “L”, and the horizontal connecting plate (510) is in the form of a horizontal plate, and when the upper surface of the horizontal connecting plate (510) is in contact with the lower surface of the horizontal plate (521) of the support member (120), a bolt hole (511) is formed corresponding to the position of the bolt hole (121-1) formed in the horizontal plate (121) of the support member (120), so that the horizontal plate (121) of the support member (120) is simultaneously fastened and fixed to the lower surface of the end of the horizontal frame (110) by means of a fastening means such as a bolt.
[0065] And, the vertical connecting plate (520) of the reinforcing support member (500) is a vertical plate shape that is connected at the lower end to the end of the horizontal connecting plate (510) and extends upwards to a predetermined vertical length, and a support groove (521) is formed at the center of the upper end of the vertical connecting plate (520) so that one side of the forward bolt (131) is secured between the rear end of the horizontal frame (110) connected to the support member (120) and the rear end of the support frame (10a) corresponding to the rear end of the horizontal frame (110), thereby supporting the forward bolt (131).
[0066] And, as shown in FIGS. 11 and 12, a load distribution reinforcing member (600) is further included, which is installed to be positioned in the receiving groove (11) of the support frame (10a) while forming a vertical length connection between the ends of the horizontal frame (110) located at the upper and lower portions of the solar panel (20), respectively.
[0067] The above load distribution reinforcing member (600) comprises a plate-shaped connecting plate (610) formed with a predetermined vertical length and having a connecting hole (611) formed therein to be connected to a forward bolt (131) located at the rear side of the horizontal frame (110), a connecting nut (620) connected to one side of the connecting plate (610) so as to be connected to each of the connecting holes (612) while a plurality of through holes (612) are formed on one side of the connecting plate (610) located between the horizontal frames (110) and facing the rear side of the support frame (10a), a first support bolt (630) that is screw-connected to each of the connecting nuts (620) through the through holes (612) of the other side of the connecting plate (610) and moves toward the rear side inward of the support frame (10a), and an end of the first support bolt (630) that protrudes toward the rear side of the support frame (10a) while being connected to each of the ends of the first support bolts (630) that protrude from the rear side of the support frame (10a). A solar noise barrier (1) is provided, which comprises a disconnected nut (640) having a support tab (641) formed in a cylindrical shape at the rear outer circumference facing the rear of a support frame (10a), and an elastic body (650) which is connected to a first support bolt (630) between the connecting nut (620) and the disconnected nut (640) and is connected to the connecting nut (620) and the disconnected nut (640).
[0068] The above load distribution reinforcing member (600) includes a vertical plate-shaped joining plate (610), a joining nut (620) connected to one surface of the joining plate (610) through a through-hole (612) formed on one surface of the joining plate (610), a first support bolt (630) that is screw-connected to the joining nut (620) through the through-hole (612) of the other surface of the joining plate (610), an interrupted nut (640) that is fastened and fixed to an end of the first support bolt (630) that protrudes toward the rear of the joining nut (620), and a spring-type elastic body (650) that is connected to the first support bolt (630) and is interrupted while being positioned between the joining nut (620) and the interrupted nut (640).
[0069] The above-mentioned connecting plate (610) has a connecting hole (611) formed on one surface to be connected to a forward bolt (131) located between the rear of the horizontal frame (110) and the rear of the support frame (10a). At this time, when the forward bolt (131) moves to the rear of the horizontal frame (110) through the rear bolt hole (13) of the support frame (10a), the forward bolt (131) passes through the connecting hole (611) of the connecting plate (610) to secure the connecting plate (610) to the forward bolt (131).
[0070] The above first support bolt (630) is moved through a through-hole (612) formed on the other surface of the joining plate (610) and is screw-connected to a joining nut (620) connected to one surface of the joining plate (610) that is connected to the through-hole (612). At this time, an elastic body (650) is connected to the first support bolt (630) moved to the rear of the joining nut (620). An interlocking nut (640) is fastened and fixed to the end of the first support bolt (630) that has the elastic body (650) connected. At this time, the interlocking nut (640) is pressed against the rear inner surface of the support frame (10a), and the support tab (641) formed on the rear surface of the interlocking nut (640) supports the rear inner surface of the support frame (10a) over a wide area.
[0071] Accordingly, the first support bolt (630) is screw-connected through the coupling nut (620) so that the interrupted nut (640) fixedly connected to the end of the first support bolt (630) is pressed against the inner surface of the rear surface of the support frame (10a), and at this time, the elastic body (650) controls the loosening of the first support bolt (630), and the pressure applied to the inner surface of the rear surface of the support frame (10a) by the interrupted nut (640) by the first support bolt (630) and the coupling plate (610) in this state supports the support frame (10a) while distributing the load generated in the horizontal frame (110) or the forward bolt (131).
[0072] In addition, a stop nut (640) can be connected to the rear inner surface of the support frame (10a) corresponding to the position of the joining nut (620) connected to one surface of the above-mentioned joining plate (610) by welding or the like.
[0073] And, as shown in Fig. 13, a panel joining member (700) is installed to pressurize and fix the side end of the solar panel (20) or soundproof panel (30) by joining to the load distribution reinforcing member (600).
[0074] The above panel joining member (700) provides a solar soundproof wall (1) comprising a first plate (710) in the form of a vertical plate facing the rear surface of a frame (21) located at the side end of a solar panel (20) while forming a through hole (not shown) corresponding to the position of the through hole (612) of the joining plate (610), a second plate (720) in the form of a vertical plate bent and connected to the end of the first plate (710) so as to face the side end surface of the frame frame (21) located at the side end of the solar panel (20), and a third plate (730) in the form of a vertical plate bent and connected to the end of the second plate (720) so as to face the front surface of the frame frame (21) located at the side end of the solar panel (20), and having a sharp pressure protrusion (731) formed on the inner surface thereof.
[0075] As described above, the solar panel (20) refers to an integral panel structure in which a solar panel (not shown) is mounted and fixed on the inside of the frame (21) while forming a square frame (21), and the panel connecting member (700) is connected to the load dispersing reinforcing member (600) to support the load applied to the side of the solar panel (20) and distribute the load to the load dispersing reinforcing member (600) and the support frame (10a).
[0076] The above panel joining member (700) is composed of a first plate (710) that is fixedly fastened to the first support bolt (630) of the load distribution reinforcing member (600) and contacts one side of the joining plate (610) and is adjacent to the rear side of the edge frame (21) located at the side end of the solar panel (20), a second plate (720) that is bent and connected to the first plate (710) and contacts the side surface of the edge frame (21) located at the side end of the solar panel (20), and a third plate (730) that is connected to the second plate (720) and contacts and presses the front side of the edge frame (21).
[0077] The first plate (710) is formed with a through hole (not shown) on one side corresponding to the position of the through hole (612) of the connecting plate (610) so as to be coupled with the first support bolt (630), and the third plate (730) is formed with a number of sharp pressure protrusions (731) on the inner side facing the front of the frame (21) to pressurize and support the front of the frame (21).
[0078] This specification and drawings disclose preferred embodiments of the present invention. Although specific terms are used, they are used in a general sense only to easily explain the technical content of the present invention and to aid in understanding the invention, and are not intended to limit the scope of the present invention. It will be apparent to those skilled in the art that other modifications based on the technical concept of the present invention are possible in addition to the embodiments disclosed herein.
Claims
1. In a solar noise barrier (1) composed of a plurality of pillars (10) installed at regular intervals and a plurality of solar panels (20) stacked in a vertical structure between neighboring pillars (10), The above-mentioned support (10) is a pair of support frames (10a) that are symmetrically connected to each other, each having a receiving groove (11) formed on the inside so that the side of the solar panel (20) can be fitted. A solar noise barrier characterized by having a load distribution member (100) that distributes the load of a solar panel (20) between vertically adjacent solar panels (20).
2. In paragraph 1, The above load distribution member (100) is It is used for the purpose of distributing the load of the solar panel (20) between the upper and lower adjacent solar panels (20), and is a horizontal frame (110) having a length corresponding to the length of the support (10) and the support frame (10a) receiving groove (11) of the support (10) facing each other on both sides of the solar panel (20), and having a horizontal length corresponding to the horizontal length between the inner ends of the support frame (10a) receiving grooves (11) of the support (10) facing each other on both sides of the solar panel (20), and having a hollow vertical cross-section in the shape of a square inside; and, A “ㄱ” shaped support member (120) in which a horizontal plate (121) is fixedly joined to the lower surface of each end of the horizontal frame (110) and a vertical plate (122) bent and connected to the end of the horizontal plate (121) is fixedly joined to the inside of the receiving groove (11) of the support frame (10a); and, A solar noise barrier characterized by comprising: a pressurized fastening means (130) comprising a bolt hole (13) formed on the rear of a support frame (10a) where the support member (120) is positioned, a forward bolt (131) passing through the bolt hole (13), and a fastening nut (132) connected to the rear of the horizontal frame (110) corresponding to the position of the bolt hole (13) formed on the rear of the support frame (10a) so as to pressurize the horizontal frame (110) forward toward the front inner side of the support frame (10a).
3. In paragraph 2, A solar noise barrier characterized in that when a pair of solar panels (20) arranged horizontally on both sides between the horizontal frames (110) and the horizontal frames (110) are connected between the supports (10) and the supports (10), a central frame (200) formed in a hollow shape inside while being formed with a vertical length corresponding to the height of the solar panels (20) between the solar panels (20) is installed, and a connecting plate (210) is connected to the upper and lower front sides of the central frame (200) and extended, and the connecting plate (210) is fastened and fixed to the horizontal frame (110) by a fastening means selected from bolts, rivets or pieces.
4. In paragraph 2, It is installed vertically between the center of the horizontal frame (110) and the ground to support the lower part of the lowest solar panel (20) placed between the above-mentioned supports (10). A solar noise barrier characterized in that it further includes a sagging prevention member (300) that constitutes an “L”-shaped support member (330) composed of a base plate (310) fixed to the ground, a reinforcing member (320) connected to the upper center of the base plate (310) at the lower end so that the upper end is close to the lower surface of the horizontal frame (110), a horizontal support plate (331) connected to the upper end of the reinforcing member (320) so that the lower surface of the horizontal frame (110) is in contact with the upper surface, and a vertical support plate (332) connected to the rear end of the horizontal support plate (331) to support the rear surface of the horizontal frame (110).
5. In paragraph 2, A solar noise barrier characterized in that it further includes a horizontal reinforcing beam (400) that is positioned at the rear side of a horizontal frame (110) installed to support the upper portion of the uppermost solar panel (20) arranged between the above-mentioned supports (10) and the supports (10), and is fastened and fixed to the upper rear side of a support frame (10a) located at both ends of the horizontal frame (110).
6. In paragraph 2, A solar noise barrier characterized in that it further includes a reinforcing support member (500) composed of a horizontal connecting plate (510) positioned below a horizontal plate (121) so as to be fixedly joined with the horizontal plate (121) of the supporting member (120) by being connected to the support member (120) of the load distributing member (100) to support a forward bolt (131), and a vertical connecting plate (520) having a support groove (521) formed at the center of the upper end so as to be connected to the end of the horizontal connecting plate (510) and to fasten a forward bolt (131) positioned in the receiving groove (11) of the support frame (10a).
7. In paragraph 2, A load distribution reinforcing member (600) is further included, which is installed to be positioned in the receiving groove (11) of the support frame (10a) while forming a vertical connection between the ends of the horizontal frame (110) located at the upper and lower portions of the solar panel (20), respectively. The above load distribution reinforcing member (600) comprises a plate-shaped joining plate (610) formed with a predetermined vertical length and having a joining hole (611) formed to be joined to a forward bolt (131) located at the rear side of the horizontal frame (110), a joining plate (610) positioned between the horizontal frames (110) and facing the rear side of the support frame (10a) with a plurality of through holes (612) formed on one side of the joining plate (610) so as to be connected to each of the through holes (612), a first support bolt (630) that is screw-connected to each of the joining nuts (620) through the through holes (612) of the other side of the joining plate (610) and moves toward the rear inner side of the support frame (10a), and a first support bolt (630) that is respectively connected to the end of the first support bolt (630) protruding from the rear side of the support frame (10a). A solar noise barrier characterized by comprising: a discontinuous nut (640) having a support tab (641) formed in a cylindrical shape at the rear outer circumference facing the rear of a support frame (10a); and an elastic body (650) connected to a first support bolt (630) between the connecting nut (620) and the discontinuous nut (640) and connected to the connecting nut (620) and the discontinuous nut (640).
Citation Information
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