Solar thermal electric power plant

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Inventors

Smith, Otto J. M.

Application #

717641

Filed

Aug-25-1976

Published

Aug-14-1979

Current US Class

060/641.11
060/659
126/684
165/10

International Classes

F03G 007/02

Field of Search

60/653 60/641 60/667 60/670 60/659 126/270 126/271 165/104

Examiners

Ostrager; Allen M.

Attorney, Agent or Firm

Flehr, Hohbach, Test, Albritton & Herbert

US Patent References

3951129   Solar energy absor...
3965683   Solar electrical gen...
3979597   Solar power plant
3985116   High efficiency sol...
4002158   Support structure fo...
4004574   Solar energy conce...
4071079   Heat-storage unit a...

Referenced by:

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Citation

Cite This Patent

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Abstract
A solar thermal electric energy system utilizes a solar receptor having a double paned glass window with cooling liquid circulating therethrough. This serves as a window for a solar heat receptor cavity having a number of water or steam carrying tubes therein. A portion of the tubes operate at a temperature range suitable for heating boiler water and another portion of the tubes is at a higher temperature which serves as steam superheat. The liquid flowing through a pair of window panes is triethylene glycol and in addition to cooling the window has an index of refraction which matches the window to provide the most efficient conduction of solar energy to the heat recepting tubes behind the window. The power plant itself includes heat saving jackets around the steam headers to provide for boiler feed water preheat and has both high pressure and low pressure turbines to utilize most efficiently the water being heated by the solar receptors.
 
Claims
What is claimed is:

1. A solar energy system comprising solar collector means consisting of a plurality of controllable mirrors, solar receptor means including thermally insulated cavity forming means with a light entrance facing downward and away from the equator and including double paned window means across said entrance, where the outermost pane is exposed to the environment, with a flow space between major surfaces of said panes and positioned to receive solar energy from said solar collector means means for providing for the flow of a cooling liquid in thermal contact with substantially all of one major surface of each of said panes said flow providing a significant transfer of thermal energy from said panes to said liquid for minimizing heat loss from said outermost pane to the environment, antireflection means consisting of a tranparent antireflection coating on each air-to-pane interface of said planes, tube means consisting of a plurality of fluid carrying tubes within said cavity heated by the solar energy passing through said entrance, a power plant with a working fluid driving a thermodynamic prime mover, means for pumping said cooling liquid to said power plant and through heat exchanger means to deliver thermal energy to said working fluid, and means for pumping a heat transfer fluid through said tubes and to said power plant and through second heat exchanger means to deliver thermal energy to said working fluid.



Description
BACKGROUND OF THE INVENTION

The present invention is directed to a solar thermal electric power plant. Such a power plant normally includes a solar collector, such as heliostatic mirrors, which concentrates the reflected sunlight on a number of receptors mounted on towers. Some type of fluid is heated in the receptor and connected to a steam turbine type power plant.

Prior designs of solar electric plants have been of a relatively small scale and have not been competitive with either large scale fossil fuel or nuclear fuel power plants. Solar power has, of course, obvious advantages over fossil fuel plants in that there is no depletion of nonrenewable resources and over nuclear power plants from both contamination and safety aspects.

OBJECTS AND SUMMARY OF THE INVENTION

It is, therefore, a general object of the present invention to provide an improved solar thermal electric power plant.

It is another object of the invention to provide a power plant which can be built at reasonable costs with available materials and conventional engineering design techniques.
 
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