F24S25/70

Systems and methods for weight-based repositioning of solar energy collection devices
10158322 · 2018-12-18 · ·

Systems and methods for positioning solar energy collection devices are disclosed. In one embodiment, an integrated unit combines the necessity of solar panel repositioning with water filtration. While also providing clean water for the end user, the integrated unit uses controlled weight displacement to rotate a solar panel to follow the sun from east to westa process also known as horizontal (azimuth) solar tracking.

Systems and methods for weight-based repositioning of solar energy collection devices
10158322 · 2018-12-18 · ·

Systems and methods for positioning solar energy collection devices are disclosed. In one embodiment, an integrated unit combines the necessity of solar panel repositioning with water filtration. While also providing clean water for the end user, the integrated unit uses controlled weight displacement to rotate a solar panel to follow the sun from east to westa process also known as horizontal (azimuth) solar tracking.

Thermal integration of a catalytic burner and a carbon dioxide removal unit

In accordance with exemplary inventive practice, a catalytic system and a temperature swing adsorption system are thermally integrated. The temperature range of the adsorption system is lower than the catalyst operating temperature. Benefits of inventive practice include reduction of total energy consumption and of generated waste-heat. Total energy consumption is reduced by transferring some of the waste-heat generated by the catalytic system into the adsorption system during the sorbent heat-up portion of the sorbent regeneration cycle. The heat is transferred using a thermal reservoir, which accumulates heat from the catalytic apparatus and transfers it to the adsorption apparatus at a later time, and which is repeatedly cycled as the sorbent is cycled. The catalytic system and the adsorption system can be inventively integrated in various ways to reduce the total energy consumed, and/or to modify the sorbent regeneration temperature profile, and/or to obtain an optimum power load profile.

Height-Adjustable Solar Panel Mounting Device
20180342974 · 2018-11-29 ·

A solar panel mounting device that allows for position adjustment along a base mountable to a roof surface and height-adjustment relative to the roof surface. The solar panel mounting device includes a height-adjuster and a dual-locking mechanism separate from the height-adjuster. The dual-locking mechanism acts as a guide surface during level adjustment and can separately lock the position adjustment and height-adjustment upper limit.

Sensing, interlocking solar module system and installation method

A solar module system is coupled directly to a fixed structure either individually or collectively as an array. Universal mounting brackets attached to the back of each solar panel module each connect to one or more other brackets of adjacent solar panels and/or to mounting feet that anchor to the fixed structure. Mounting brackets interlock with mounting brackets on adjacent solar modules and include a flexible snap coupling mechanism including a locking feature to selectively flexibly connect to and disconnect from other mounting brackets of adjacent solar panels.

Support Assembly For Photovoltaic Modules And Mounting System Using The Same
20180323742 · 2018-11-08 ·

A support assembly for mounting photovoltaic modules on a support surface and a mounting system including the same are disclosed herein. The support assembly may comprise a the body portion including a base portion and at least one upright support member coupled to the base portion, the at least one upright support member comprising an integrally formed ballast tray slot in one side thereof for receiving an upturned edge of a ballast tray; and at least one clamp subassembly coupled to the at least one upright support member of the body portion, the at least one clamp subassembly configured to be coupled to one or more photovoltaic modules. In addition to a plurality of support assemblies, the mounting system may further comprise at least one ballast tray support bracket, the ballast tray support bracket supporting a portion of a ballast tray on the support surface.

Support Assembly For Photovoltaic Modules And Mounting System Using The Same
20180323742 · 2018-11-08 ·

A support assembly for mounting photovoltaic modules on a support surface and a mounting system including the same are disclosed herein. The support assembly may comprise a the body portion including a base portion and at least one upright support member coupled to the base portion, the at least one upright support member comprising an integrally formed ballast tray slot in one side thereof for receiving an upturned edge of a ballast tray; and at least one clamp subassembly coupled to the at least one upright support member of the body portion, the at least one clamp subassembly configured to be coupled to one or more photovoltaic modules. In addition to a plurality of support assemblies, the mounting system may further comprise at least one ballast tray support bracket, the ballast tray support bracket supporting a portion of a ballast tray on the support surface.

COUPLING ASSEMBLY AND METHOD OF COUPLING SOLAR MODULES TOGETHER IN AN ARRAY
20180323744 · 2018-11-08 ·

A coupling assembly for coupling solar photovoltaic modules together in an array includes a base portion including a base surface for operatively engaging a bottom surface of at least one of the solar photovoltaic modules. The coupling assembly also includes a cap portion including a clamping surface located opposite the base surface for operatively engaging a top surface of at least one of the solar photovoltaic modules. The coupling assembly further includes a spacer slidably mounted to one of the base portion or the cap portion and having first and second abutment sides each configured to operatively engage a side surface of at least one of the solar photovoltaic modules. The base surface and the clamping surface are moveable relative to each other such that movement of the clamping surface toward the base surface provides a clamping action on at least one of the solar photovoltaic modules positioned therebetween.

SNAP-ON RAIL ASSEMBLY
20180316300 · 2018-11-01 · ·

A mounting assembly to mount frames on a mounting surface, the mounting assembly having rails that supports the frames, each rail having an internal side adjacent with an internal recess, and an external side opposite to the internal side with lip; and roof mounting assemblies to affix the rails onto the mounting surface. Each mounting assembly having a mounting block that is fixable to the mounting surface, a mounting plate that is fixable to the mounting block, and a pair rail snap brackets formed at extremities of the mounting plate that receives and locks the rails in place, each rail snap bracket of the pair of rail snap brackets having a pair of notches that lodges in the internal recess of the rail to lock the rail in place and a hook that receives the lip.