Thermally regulated photovoltaic roofing assembly

5505788
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Inventors

Dinwoodie, Thomas L.

Application #

267499

Filed

Jun-29-1994

Published

Apr-9-1996

Current US Class

052/173.3
136/244
136/246
136/251
136/291

International Classes

E04D 013/18; H01L 031/052

Field of Search

136/244 136/246 136/251 136/291 52/173.3

Examiners

Weisstuch; Aaron

Attorney, Agent or Firm

Townsend and Townsend and Crew

US Patent References

4040867   Solar cell shingle
4189881   Photovoltaic roof co...
4321416   Photovoltaic power...
4389533   Photovoltaic device...
4674244   Roof construction h...
4677248   Apparatus for mou...
4835918   Device for shading...
4860509   Photovoltaic cells i...
4886554   Solar roofing asse...
5092393   Process for produci...
5112408   Roofing tile assem...
5316592   Solar cell roofing a...
5338369   Roof-integratable p...
 

Referenced by:

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Citation

Cite This Patent

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Abstract
A photovoltaic roofing assembly comprises a roofing membrane (102), a plurality of photovoltaic modules (104, 106, 108, 110) disposed as a layer on top of the roofing membrane (102), and a plurality of pre-formed spacers, pedestals or supports (112, 114, 116, 118, 120, 122) which are respectively disposed below the plurality of photovoltaic modules (104, 106, 108, 110) and integral therewith, or fixed thereto. Spacers (112, 114, 116, 118, 120, 122) are disposed on top of roofing membrane (102). Membrane (102) is supported on conventional roof framing, and attached thereto by conventional methods. In an alternative embodiment, the roofing assembly may have a tapered profile for orienting modules (204, 206, 208, 210) in a direction of increased sun exposure. Other embodiments include the use of phase change material for temperature regulation, and incorporating an insulation block into the assembly as a means of spacing and of building thermal control. Such construction results in a simple, readily assembled roofing assembly which regulates the temperature of the photovoltaic module and roofing membrane and avoids the need for rooting penetrations for hold-down to the building rooftop. Photovoltaic modules (104, 106, 108, 110) serve the purpose of electric generator, and in addition, the multiple purposes of ballast, UV block, and weather protector for the insulation block and roofing membrane below. A fluid convects within the passageways created by the spacers, transferring heat from the backside of the photovoltaic modules. Rainwater drains through the joints between the integral modules, onto and over the roofing membrane below.
 
Claims
I claim:

1. A photovoltaic roofing assembly, comprising:

a roofing membrane;

a plurality of photovoltaic modules disposed as a layer on top of said roofing membrane, and

means for regulating the temperature of said photovoltaic modules.

2. The assembly of claim 1 wherein said means of temperature regulation includes a plurality of pre-formed spacers located below said photovoltaic modules, whereby said photovoltaic modules are separated from said roofing membrane by a pre-determined distance, thus enabling heat transfer from the backside of said photovoltaic modules to a convecting fluid.

3. The assembly of claim 2 wherein said spacers have a top surface which is joined to said photovoltaic modules, forming integral units.



Description
FIELD OF THE INVENTION

This invention generally relates to a photovoltaic roofing assembly, and in particular to a photovoltaic roofing assembly which can regulate the temperatures experienced by the solar, cells and requires no roof penetrations for hold-down to the roof surface.

DESCRIPTION OF THE PRIOR ART

As the cost of solar cells declines, the non-solar cell components necessary for a functioning photovoltaic system begin to dominate the overall system costs. For this reason, there is a growing trend to develop photovoltaic assemblies which eliminate or reduce non-solar cell components, and where the photovoltaic cell displaces conventional building components. An integral photovoltaic roofing assembly can avoid the cost of purchasing or renting land, and/or constructing a support structure for the photovoltaic array. A further savings is achieved when the photovoltaic roofing assembly displaces the cost of purchasing and installing conventional roofing materials. Due to the extreme sensitivity of future photovoltaic markets to photovoltaic system costs, a key objective in developing a photovoltaic roofing assembly is to eliminate non-essential costs and components, in part by designing components to perform multiple functions.