Background of the Invention
Various apparatus has been provided for making use of solar energy to do useful work. The patents to Green, Jr., U.S. Pat. No. 3,203,167, and Kyryluk, U.S. Pat. No. 3,514,942, show two such systems. Conventional attic ventilation systems make use of electrical power to run fans for removing hot air from the attic. In turn, cool outside air is drawn in through vents to replace the air removed by the attic fan.
Brief Summary of the Invention
According to this invention, a system is provided for removing heat from an attic with the use of solar radiation. A finned radiant heat absorbing apparatus is provided on the roof of a building. Solar radiation absorbed by the vaned radiant energy absorbing body is transferred by conduction and convection to air in contact with the vanes in a first flow channel. The unrestrained air expands causing a flow out through an ejector nozzle to entrain secondary air in a second flow channel. The air in the second flow channel is drawn through a turbine device and is further heated by heat transfer from the wall holding the vaned radiant energy absorbing body. The turbine device includes a radial compressor which raises the pressure in the first flow channel. The higher pressure plus heat in the first flow channel increases the exhaust velocity through the injector nozzle thus increasing the air flow through the turbine device. This continues until an equilibrium condition is reached.
In the Drawings
FIG. 1 is an isometric view of an attic evacuation system according to the invention.
FIG. 2 is an enlarged sectional view taken along the line 2--2 of FIG. 1.
FIG. 3 is an enlarged sectional view taken along the line 3--3 of FIG. 1.
FIG. 4 is an enlarged top view of one turbine device which may be used with the device of FIG. 1.
FIG. 5 is a sectional view of the device of FIG. 4 taken along the line 5--5.
Detailed Description of the Invention
Reference is now made to FIGS. 1, 2 and 3 of the drawing which show an attic evacuation system 10 having an attic exhaust section 12, a solar energy transfer section 14 and a nozzle section 16. The solar energy transfer section 14 is supported on the roof 18 on a support block 20. A first flow path from the attic is provided through attic vent opening 21, through turbine 22, through flow channel 24 and through the diffuser nozzle 26. A second flow path is provided from attic vent opening 21 through compressor 28, through flow channel 30, through ejector nozzle 32 into the diffuser nozzle 26. One turbine and compressor configuration which may be used is shown in greater detail in FIGS. 4 and 5.
A plurality of radiation absorbing vanes 34 are positioned in the flow channel 30 beneath a transparent window 36 in the energy transfer section 14. The vanes 34 are coated with an energy absorbing lampblock layer, not shown. The vanes 34 contact a wall 40 between channels 24 and 30 to provide energy transfer to air in channel 24. Since only low temperatures are present in most of the system, all parts, except the vanes 34 and wall 40, may be made of plastic or other low cost material. The blades 34 and wall 40 could be made of a metal, such as aluminum.
In the operation of the device, radiant energy passing through window 36 is absorbed by vanes 34 to heat up the vanes and also transfer some heat to wall 40. Air in channels 24 and 30 is heated and moves upward through diffuser nozzle 26 and ejector nozzle 32. Air leaving nozzle 32 entrains additional air from channel 24 and thus increases the flow through channel 24. The flow through channel 24 provides a flow through turbine 22 to operate compressor 28 to increase the pressure in flow channel 30. This increases the flow through ejector nozzle 26 to further increase the flow in channel 24 and also to increase the flow through turbine 22. This increases the flow through the compressor to further increase the pressure in flow channel 30. This continues until an equilibrium condition has been reached. Air removed from the attic by the evacuation system 10 will be replaced in a conventional manner by cool air through vents, not shown.
There is thus provided an attic evacuation system which requires no electrical power.