Patent classifications
E04F10/10
Louver roof structure
A louver roof system having a simplified assembly and installation methods. The louver roof system is constructed with multi-functional mechanical components by means of pre-molded parts to reduce skilled installation time. Louvers of the roof system each include a louver body defining an integrally formed channel configured to direct water internally from the louver body, through the integrally formed channel of the respective louver, within a frame, and out of the louver roof system when the louvers are in a closed position. The louver body of each of the louvers includes a top surface with an uppermost portion of the top surface that defines, when in the closed position, a non-perpendicular angle relative to the vertical direction such that water is directed to the integrally formed channel of the respective louver Thus, a water drainage path is an integral part of the main structural assembly.
Louver roof structure
A louver roof system having a simplified assembly and installation methods. The louver roof system is constructed with multi-functional mechanical components by means of pre-molded parts to reduce skilled installation time. Louvers of the roof system each include a louver body defining an integrally formed channel configured to direct water internally from the louver body, through the integrally formed channel of the respective louver, within a frame, and out of the louver roof system when the louvers are in a closed position. The louver body of each of the louvers includes a top surface with an uppermost portion of the top surface that defines, when in the closed position, a non-perpendicular angle relative to the vertical direction such that water is directed to the integrally formed channel of the respective louver Thus, a water drainage path is an integral part of the main structural assembly.
Devices for internal daylighting with IR rejection
A device for day lighting the interior of structure deploys reflective louvers that are spaced apart in stacks. The louvers include a coating or multilayer structure that is operative to reflect visible light but transmit IR light through the louver. The louvers also have a retro-reflective structure to return the IR light by reverse reflection in the opposite direction of the incident light, which is back toward the sun. The interior of the structure is more uniformly illuminated with visible light while the louvers and interior are not heated by IR light or radiation from the sun.
Devices for internal daylighting with IR rejection
A device for day lighting the interior of structure deploys reflective louvers that are spaced apart in stacks. The louvers include a coating or multilayer structure that is operative to reflect visible light but transmit IR light through the louver. The louvers also have a retro-reflective structure to return the IR light by reverse reflection in the opposite direction of the incident light, which is back toward the sun. The interior of the structure is more uniformly illuminated with visible light while the louvers and interior are not heated by IR light or radiation from the sun.
LOUVER ROOF STRUCTURE
A louver roof system having a simplified assembly and installation methods. The louver roof system is constructed with multi-functional mechanical components by means of pre-molded parts to reduce skilled installation time. Louvers of the roof system each include a louver body defining an integrally formed channel configured to direct water internally from the louver body, through the integrally formed channel of the respective louver, within a frame, and out of the louver roof system when the louvers are in a closed position. The louver body of each of the louvers includes a top surface with an uppermost portion of the top surface that defines, when in the closed position, a non-perpendicular angle relative to the vertical direction such that water is directed to the integrally formed channel of the respective louver Thus, a water drainage path is an integral part of the main structural assembly.
LOUVER ROOF STRUCTURE
A louver roof system having a simplified assembly and installation methods. The louver roof system is constructed with multi-functional mechanical components by means of pre-molded parts to reduce skilled installation time. Louvers of the roof system each include a louver body defining an integrally formed channel configured to direct water internally from the louver body, through the integrally formed channel of the respective louver, within a frame, and out of the louver roof system when the louvers are in a closed position. The louver body of each of the louvers includes a top surface with an uppermost portion of the top surface that defines, when in the closed position, a non-perpendicular angle relative to the vertical direction such that water is directed to the integrally formed channel of the respective louver Thus, a water drainage path is an integral part of the main structural assembly.
FOLDABLE ROOF
A foldable roof, including a plurality of elongated plates, for being disposed one aside the other, and a plurality of supporting members each for supporting one of the elongated plates, where each two adjacent supporting members of the supporting members are pivotally connected to one another, thereby allowing deploying and folding the elongated plates, and for each of the plates and its supporting member, gravity disposition elements configured to allow perpendicular displacement between the plate and the supporting member while limiting parallel displacement therebetween, thereby at any state of the foldable roof except for a folded state, each plate is connected to the supporting member thereof by gravity only.
LOUVER AWNING WITH HIDDEN LOUVER OPENING AND CLOSING DRIVING STRUCTURE
A louver awning with a hidden louver opening and closing driving structure includes an awning frame assembly, a plurality of louvers rotatably mounted on a top portion of the awning frame assembly, linkage bars for linking the louvers, and a louver opening and closing driving structure. The awning frame assembly includes a plurality of columns and ring beams fitted together. The louver opening and closing driving structure comprises a hand-operated mechanism, a transmission assembly and a louver transmission mechanism. The transmission assembly is used to transmit power input by the hand-operated mechanism to the louver transmission mechanism, and the louver transmission mechanism is used to drive the louvers to rotate so as to realize opening and closing of the louvers.
LOUVER AWNING WITH HIDDEN LOUVER OPENING AND CLOSING DRIVING STRUCTURE
A louver awning with a hidden louver opening and closing driving structure includes an awning frame assembly, a plurality of louvers rotatably mounted on a top portion of the awning frame assembly, linkage bars for linking the louvers, and a louver opening and closing driving structure. The awning frame assembly includes a plurality of columns and ring beams fitted together. The louver opening and closing driving structure comprises a hand-operated mechanism, a transmission assembly and a louver transmission mechanism. The transmission assembly is used to transmit power input by the hand-operated mechanism to the louver transmission mechanism, and the louver transmission mechanism is used to drive the louvers to rotate so as to realize opening and closing of the louvers.
SYSTEMS AND METHODS FOR SUNSHADE ADJUSTMENT
The present disclosure is directed to a sunshade system that monitors a position of the sun and adjusts a position of a frame and/or blades based on a position of the sun. For example, a heating, ventilation, and air conditioning (HVAC) unit of an HVAC system may be exposed to adverse, external weather conditions, such as sunlight, which may heat up components of the HVAC unit and decrease an efficiency of the HVAC system. Accordingly, a control system of the sunshade system may monitor the position of the sun and adjust the position of the frame and/or the blades to provide adequate shading for the HVAC unit.