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[[Image:Solar_Two_Heliostat.jpg|thumb|right|300px|A photo of one of Solar Two's heliostats taken in 2003. The [[solar power tower]] can be seen in the background.]]
[[Image:Solar_Two_Heliostat.jpg|thumb|right|300px|A photo of one of Solar Two's heliostats taken in 2003. The [[solar power tower]] can be seen in the background.]]
Using the experience from [[Solar One]] and [[Solar Two]], the [http://www.solarpaces.org/SOLARTRES.HTM Solar Tres project] in Spain is building a 15-HI! I'm Jordan solar power plant with a 16 hour, 600 MWh thermal power storage system based on molten [[sodium nitrate]] salt. Some have criticized the use of this salt because of its safety and environmental hazards. Others believe that it is relatively safe compared to the other chemicals used in the electrical industry, especially if handled properly.
Using the experience from [[Solar One]] and [[Solar Two]], the [http://www.solarpaces.org/SOLARTRES.HTM Solar Tres project] in Spain is building a 15MW solar power plant with a 16 hour, 600 MWh thermal power storage system based on molten [[sodium nitrate]] salt. Some have criticized the use of this salt because of its safety and environmental hazards. Others believe that it is relatively safe compared to the other chemicals used in the electrical industry, especially if handled properly.


[[Sandia National Laboratory]] also has heliostat array. It is used for experiments in electricity production, industrial processes requiring high temperatures and waste disposal.
[[Sandia National Laboratory]] also has heliostat array. It is used for experiments in electricity production, industrial processes requiring high temperatures and waste disposal.

Revision as of 22:28, 13 December 2005

A Heliostat is a device that tracks the movement of the sun. It is typically used to orient a mirror, throughout the day, to reflect sunlight in a consistent direction. When coupled together in sufficient quantities, the reflected sunlight from the heliostats can generate an enormous amount of heat if all are oriented towards the same target. It was originally developed as an instrument for use in surveying, allowing the accurate observation of a known point from a distance.

Heliostats have been used for sunlight-powered interior lighting, solar observatories, and solar power generation. Mirrors and reflective surfaces used in solar power that do not track the sun are not heliostats.

The simplest heliostat devices use a clockwork mechanism to turn the mirror in synchronisation with the rotation of the Earth. More complex devices need to compensate for the changing elevation of the Sun throughout a Solar year. Even more advanced heliostats track the sun directly by sensing its position throughout the day.

Use in power production

A photo of one of Solar Two's heliostats taken in 2003. The solar power tower can be seen in the background.

Using the experience from Solar One and Solar Two, the Solar Tres project in Spain is building a 15MW solar power plant with a 16 hour, 600 MWh thermal power storage system based on molten sodium nitrate salt. Some have criticized the use of this salt because of its safety and environmental hazards. Others believe that it is relatively safe compared to the other chemicals used in the electrical industry, especially if handled properly.

Sandia National Laboratory also has heliostat array. It is used for experiments in electricity production, industrial processes requiring high temperatures and waste disposal.

Use in interior lighting

The heliostat reflects the sunlight onto the transmission system. This is typically a set of mirrors that direct the reflected sunlight into the building. Fiber optic cabling has also been used as a transfer mechanism. Various forms of commercial products have been designed for the point of termination (the "light bulb").

Calculating the position of the sun in an "open loop" heliostat

Main article: Sun, Calculating the position of the Sun

Since the path of the sun across the sky varies through the year, a completely automatic heliostat must be guided by continuous calculations. The National Renewable Energy Laboratory has released its Solar Position Algorithm (SPA) with complete documentation.

See also