Abstract:
A mounting system for mounting energy modules (30) to the exterior of a roofing panel (20), the roofing panel for assembly in an array of roofing panels to form a roof structure. The roofing panel (20) has a weather proof sheet (22) having inner and outer faces and a sheet profile that comprises a raised ridge (18) having sides (35,36) and a crown (37). A mounting trim (1) having a base portion (2), a leg (3) depending from the base portion and adapted to run down one side of the ridge (18), and an upstanding portion (4) adapted to support energy modules (30) on opposing sides thereof is provided. The mounting trim with other trims (40,50) is used to frame and mount an energy panel (30) to the roof.
Abstract:
Ce dispositif est prévu pour la fixation d'un module (10) de récupération d'énergie issue du rayonnement solaire sur une structure (30), telle qu'un toit, une façade ou une structure porteuse en plein champ, où le module (10) est pourvu sur sa face arrière (10A) d'au moins un profilé de renfort (20). Ce dispositif comprend au moins un support (40) solidaire de la structure (30), qui comporte des moyens (48) d'encliquetage par rapport au profilé de renfort (20) du module, ces moyens d'encliquetage (48) étant aptes à être activés par l'application d'un effort unidirectionnel (F 1 ) de poussée du module (10) en direction de la structure (30).
Abstract:
L'invention concerne un Capteur Solaire Modulaire (CSM) destiné à produire l'eau chaude par l'énergie solaire, comportant un à plusieurs Capteurs Solaires Plans (Cn) auto-stockeur, compacts, interchangeables disposés verticalement, lui permettant de se réaliser en versions: Unitaire (individuel portable), mais aussi collectif Linéaire ou en Etoile. Selon la figure ci-jointe, un capteur Etoile comportant trois capteurs plans (C1, C2, C3) disposés selon un angle de 120°, à leur base un disque miroir (M) permettant la réflexion sur leur vitre les rayons solaires directs (R) en rayons réfléchis (F) pour améliorer le rendement thermique de l'appareil. Le Capteur Etoile capte tout le flux solaire diffus et direct, sans orientation au Sud, pourvu d'une sortie d'eau chaude (21) et d'une entrée d'eau froide (20), est bordé d'une ceinture souple (23) faisant office d'amortisseur de chocs ainsi qu'un support à pieds fixes ou sur roulettes pour faciliter son transport et sa maniabilité.
Abstract:
A support system for solar panels (1), comprises at least one support section (2), which in cross-section defines an undercut cavity (6) having a narrowed opening (7), at least one fixing means (3), which comprise (5) screw means, a nut plate (14) that interacts with the screw thread (11) of the screw means (10), and a clamping plate (15), such that the nut plate (14) can be inserted through the opening (7) in the support section (2) and, by then turning it, can be hooked into the undercut cavity (6), the clamping plate (15) can be placed on the side of the panel (1) facing away from the support section (2) and the panel (1) can be clamped firmly on the support section (2) by tightening the screw means (10). The fixing means (3) comprise an auxiliary support (22) that is pushed onto the screw means (10) and is located between the nut plate (14) and the clamping plate (15), which auxiliary support (22) can be fastened to the support section.
Abstract:
The invention relates to a solar element fixing device (1) for mounting at least one solar element (2, 3) above a roof covering (4, 5). The solar element fixing device (1) comprises a clip (20) which projects from the roof covering (4, 5) and whose one clip end can be fastened to the roof covering (4, 5). A holding device (26) which transversally extends in relation to the clip (20) can be detachably fastened to the other clip end with the assistance of a fastening means. An element edge (6, 7) of the solar element (2, 3) can be wedged in a positionally fixed manner between the upper side (18, 19) of the roofing tile of the roof covering (4, 5) and the underside of the holding device (26). A solar element fixing device is developed which can be easily mounted and economically produced and which is provided for mounting solar elements on a roof covering without causing damage.
Abstract:
A building construction comprises at least two square shaped building construction elements (3a). Each of these elements comprises a plate (5a) with at least a layer of thermally insulating material. The construction elements further comprise a PV converter module (11a). The construction elements (3a) are mounted on a support structure (13a) side by side along neighboring parts. There are provided inlays (17a, 47a) between neighboring construction elements and/or such construction element and the support structure, which has a material compressibility which is larger than material compressibility of members upon which the inlays (47a), (17a) rest.
Abstract:
A solar power system can include a rail and a solar module disposed on the rail. A clamp assembly can couple the solar module to the rail. The clamp assembly can have a clamped configuration in which the solar module is secured to the rail and an undamped configuration. The clamp assembly can comprise an upper clamp member, a lower clamp member coupled to the rail, and a stabilization member mechanically engaging the upper clamp member and the lower clamp member. The stabilization member can prevent rotation of the lower clamp member relative to the rail when the clamp assembly is in the clamped and undamped configurations. In the undamped configuration, the stabilization member can be biased such that the upper clamp member is disposed at a sufficient clearance above the rail to permit the insertion of the solar module between the upper clamp member and the rail.
Abstract:
Um eine Halte- und Befestigungsvorrichtung (1) mit Mitteln zur Halterung mindestens eines Photovoltaikmoduls und/oder Sonnenkollektormoduls in einer zum bestimmungsgemäßen Gebrauch geeigneten Ausrichtung und mit Befestigungsmitteln zur Befestigung auf einer Dachfläche anzugeben, die eine einfache und sichere Anbringung von Solarmodulen und/oder Sonnenkollektoren auch an Flachdächern unter Schonung der Dachstruktur und ohne Beeinträchtigung der Dichtigkeit des Daches ermöglicht, wird vorgeschlagen, dass die Befestigungsmittel mindestens einen flächigen Auflageabschnitt (7) mit einer Auflagefläche zur planparallelen Auflage auf die Dachfläche aufweisen.
Abstract:
Beschrieben wird eine besonders wirtschaftlich zu betreibende Solaranlage mit aneinander gereihten, vorzugsweise niedrig-fokussierenden Reflektormodulen, einer sich im Fokus der Reflektormodule erstreckenden linearen Energiewandleranordnung, und einer die Reflektormodule entsprechend dem Sonnenstand positionierenden Nachführvorrichtung. Sie zeichnet sich dadurch aus, dass die Eneregiewandleranordnung von Photovoltaikelementen gebildet ist, die vorzugsweise hinsichtlich einer Beaufschlagung mit 4- bis 20-facher Lichtintensität optimiert sind, und dass die Reflektormodule und die Photovoltaikelemente von einer Spann-Seilanordnung getragen und stabilisiert sind. Die Spann-Seilanordnung weist zumindest zwei im Wesentlichen parallel zueinander verlaufende Spannseilzüge auf, welche randseitig durch senkrecht zur Seilanordnung angeordnete Führungskörper verlaufen, die zur Nachführung der Reflektormodule und der Photovoltaikelemente synchron antreibbar sind.