摘要:
An efficient solar panel system is mounted to a roof using various attachments and supports for solar panel modules (32) including elastic solar panel couplings (173), laterally fluidically constrained channels (5), solar panel roof mount brackets (130) having raised surfaces (21), suspended substantially rigid hollow rail components (63), and solar panel electrical penetration connectors (25) on solar panel roof mount constraints (101) in the various embodiments.
摘要:
The present invention provides a solar cell module securing structure capable of securing solar cell modules without any trouble even when there is a change in temperature or the like, and also provides frames and securing members for the solar cell modules. A contact portion (12e) of each of the first frames (12) of solar cell modules (10) engaged on the opposite side of a shaft portion (22) of each securing member (20) securing a solar cell module (10) to a supporting member (2) from securing units (21a) can be fastened to the shaft portion (22) with engaging screws (4) through a void (24b) from the side of the securing units (21a). The contact portion (12e) of each of the first frames (12) engaged on the side of the securing units (21a) are brought into contact with the outer end portion (24a) of each inner protrusion (24), to restrict impaction of the first frames (12). With this arrangement, a predetermined amount of space is formed between the contact portions (12e) and the shaft portions (22), and a predetermined amount of space is formed between the facing upper side faces (12a) of the first frames (12) engaged with both sides of each of the shaft portions (22).
摘要:
A node for connecting together at least a first support element, a second support element and a third support element of a support frame such as a solar frame which supports solar reflectors. A method for connecting together at least a first support element, a second support element and a third support element of a solar frame which supports solar reflectors. A system for supporting solar reflectors includes a first support frame upon which the solar reflectors are disposed. A method for forming a support frame for solar reflectors. A system for constructing a support frame from parts, including chords, for solar reflectors. A method for constructing a support frame for solar reflectors. A support frame for solar reflectors.
摘要:
Herein described is a photovoltaic module (30) that comprises a rectangular module body (61) and a frame (61) secured to the sides of the body. The frame is composed of an upper bar (63), a lower bar (64) and a pair of side bars (65 and 66). The upper bar (63) has an insertion projection (71) projecting from a part which is middle in thickness direction of the upper bar. The projection (71) is thinner than the upper bar (63).
摘要:
A solar cell device (X) includes a first solar cell array (1) and a second solar cell array (2) disposed side by side in one direction and each including a plurality of solar cell modules (10) disposed side by side along a direction inclined with respect to an installation surface (P) and a holding member (22) holding an outer circumference of each of the solar cell modules (10). The solar cell device (X) also includes a support member (21) disposed between the first solar cell array (1) and the ground (P) and extending from the first solar cell array (1) to the ground (P). According to the present invention, in the first solar cell array (1), a part of the holding member (22) positioned on the upper side in the inclined direction is fixed to the top portion (211) of the support member (21), and in the second solar cell array (2), a part of the holding member (22) positioned on the lower side in the inclined direction is fixed to a side portion (212) of the support member (21).
摘要:
[Object] To provide a photovoltaic cell device with good construction efficiency. [Solution] A photovoltaic cell device 1 includes a pole member 22 which stands on an installation surface P, a connecting support member 25 disposed on an upper end section 22b of the pole member 22, a rail member 23 supported by the connecting support member 25, and a photovoltaic cell module 2 disposed on the rail member, wherein the pole supporting member 25 includes a lower section that covers at least a portion of an outer peripheral surface of the upper end section 22b of the pole member 22.
摘要:
A dish assembly is disclosed which has a central hub, an outer rim member, and a plurality of concentric arcuate structural members comprising at least an inner and an outer arcuate structural members extending from the central hub to the outer rim member, each of the arcuate structural members having an upper channel member, a lower channel member, an inner arcuate surface and an outer arcuate surface which cooperate to constitute a box section configuration and wherein said each upper and lower channel member comprises a channel base and a pair of channel flanges, and the inner and outer arcuate surfaces of each of the arcuate structural members are abutted such that a gravitational or wind load is transferred from the outer arcuate structural member to the adjoining inner arcuate structural member via a fin disposed on the inner arcuate surface of each of the arcuate structural members.
摘要:
The present invention relates to the field of sensor manufacturing technology, particularly disloses a method for manufacturing a micro-sensor body, compriseing the steps of S1: applying a wet colloidal material on a substrate to form a colloidal layer, and covering a layer of one-dimensional nanowire film on the surface of the colloidal layer to form a sensor embryo; S2: drying the colloidal layer of the sensor embryo to an extent that the colloidal layer cracks into a plurality of colloidal islands, a portion of the one-dimensional nanowire film contracting into a contraction diaphragm adhered to the surface of the colloidal islands while the other portion of the one-dimensional nanowire film being stretched into a connection structure connected between the adjacent contraction diaphragms. By the method for manufacturing a micro-sensor body of the present invention, the contraction diaphragms and connection structures formed by stretching the one-dimensional nanowire film are connected stably, which enhances the stability of the sensor devices; and the cracking manner renders it easy to obtain a large-scale of sensor bodies with connection structure arrays in stable suspension.
摘要:
An auxiliary member which is inserted into between a roof material and a fixing member including a base portion which is placed on the roof material and has a placement portion on which a first frame of a solar cell module is placed, a fixing portion which is formed on the lower side with respect to the placement portion and fixes the fixing member onto the roof material, and a concave groove portion which is formed on a lower surface of the fixing portion, an erected portion which extends to the upper side from the base portion, and a blocking portion which extends from an upper end of the erected portion to both sides so as to be in parallel with the placement portion and blocks the first frame from being moved to the upper side, includes an engagement convex portion which engages with the groove portion of the fixing member, a main body on which the engagement convex portion is formed on an upper surface, and a concave engagement concave portion which is formed on a lower surface of the main body and is engageable with the engagement convex portion.
摘要:
An object is to provide a photovoltaic system that realizes resource saving, high load-bearing capacity, and an increase in the area of a light-receiving surface. To achieve the object, the photovoltaic system includes a solar cell module including first and second ends and first and second main surfaces, a first holder including a first groove portion, and a second holder including a second groove portion. The first groove portion includes a first front portion facing the first main surface, a first back portion facing the second main surface, and a first side portion connecting the first front portion and the first back portion to each other. The second insertion groove portion includes a second front portion facing the first main surface, a second back portion facing the second main surface, and a second side portion connecting the second front portion and the second back portion to each other. The first groove portion has a first gap and a second gap, the first gap being a gap between the first back portion and an end of the first front portion on the second holder side, and the second gap being a gap that is nearer to the first side portion than the first gap. The second gap is larger than at least one of the first gap and a third gap, the third gap being a gap between an imaginary surface extending from the first front portion toward the second holder and the first back portion. The distance between the first end and the second end is larger than the distance between the second side portion and the end of the first front portion on the second holder side and is smaller than the distance between the first side portion and an end of the second front portion on the first holder side.