Solar collector thermostat

4063545
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Inventors

Hapgood, William H.

Application #

737879

Filed

Nov-1-1976

Published

Dec-20-1977

Current US Class

126/585
126/640
165/11.1
237/1R

International Classes

F24J 003/02

Field of Search

126/270 126/271 237/1 219/449 219/450 219/546 165/18 165/11 165/39 165/107 73/362.1 73/362.3 73/431 73/343

Assignee

Raytheon Company (Lexington, MA)

Examiners

Sprague; Kenneth W.

Attorney, Agent or Firm

Murphy; Harold A., Pannone; Joseph D., Meaney; John T.

US Patent References

3996919   System for collectin...

Referenced by:

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Citation

Cite This Patent

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Abstract
A solar energy collector having therein a solar energy-absorbing panel in thermally-conductive relation to fluid conduits through which fluid is urged by an electrically controlled pump, and a thermostat associated with the collector and arranged to detect panel temperature as unaffected by the temperature of the fluid and operable to control activation of the pump in response to variations in temperature of the unaffected panel.
 
Claims
What is claimed is:

1. In a solar radiation collector having a radiationabsorbing panel with predetermined absorbing characteristics and piping means in thermally conductive relation with the panel for conducting fluid to be heated by thermal conduction from the panel, the combination therewith of a thermostat device comprising a thermostat having a surface area which possesses the same thermal absorpiton characteristics as the panel unaffected by the temperature of the fluid in the piping means.

2. In the combination set forth in claim 1, said thermostat being positioned within an opening in said panel with said surface area disposed substantially coplanar with the adjacent surrounding surface of the panel.



Description
BACKGROUND OF THE INVENTION

Solar energy collectors of one conventional type are provided with solar energy absorbing panels disposed to be impinged by solar radiation and to absorb heat therefrom. Such heat is transferred to a fluid such as water which is circulated through piping located in thermally conductive relation to the panels. The fluid is conveniently forced through the piping circuit by an electrically controlled pump and thus the heat from the panels is absorbed by the fluid and eventually stored within a suitable storage tank into which the heated fluid is conveniently directed.

It is undesirable, of course, that the pump be used to pump fluid through the system when the panels are not heated such as, for example, at night or in daytime when solar radiation is unable to reach the panels in sufficient quantity to adequately raise their temperature. Accordingly, thermostats have been employed to detect the temperature of the collector and to turn the pump on and off in response to the collector temperature. Thus the pump can be made to operate only when heat is available from the collector. This is a function of the incident solar energy and the outdoor ambient temperature, and whenever these two parameters are such that the collector is substantially above the temperature of thermal storage, then useful heat is available.
 
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