concentrated solar power

11
SINDHURA COLLEGE OF ENGG & TECH

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Page 1: Concentrated solar power

SINDHURACOLLEGE OF ENGG & TECH

Page 2: Concentrated solar power

CONCENTRATED SOLAR POWER

Page 3: Concentrated solar power

INTRODUCTION:

Concentrated Solar Power is a technology which produces electricity by concentrating solar energy in a single focal point.

This concentrated energy is then used to heat up a fluid , produce steam and activate turbines that produce electricity.

Page 4: Concentrated solar power

TYPES :

The 3 main types of concentrating solar power systems are,

1. Linear concentrator,

2. Dish/engine &

3. Power tower systems.

Page 5: Concentrated solar power

1. Linear concentrator Collects the sun's energy using long rectangular, curved (U-shaped) mirrors.

The reflected sunlight heats a fluid flowing through the tubes.

The hot fluid then is used to boil water in a conventional steam-turbine generator to produce electricity.

There are two major types of linear concentrator Systems : 

>> Parabolic trough systems and

>> Linear Fresnel reflector systems.

Page 6: Concentrated solar power

2. Dish/engine  Uses a mirrored dish similar to a very large satellite dish.

The dish-shaped surface directs and concentrates sunlight onto a thermal receiver, which absorbs and collects the heat and transfers it to the engine generator.

The most common type of heat engine used today in dish/engine systems is the Stirling engine.

The mechanical power is then used to run a generator or alternator to produce electricity.

Page 7: Concentrated solar power

Uses a large field of flat, sun-tracking mirrors known as heliostats to focus and concentrate sunlight onto a receiver on the top of a tower.

A heat-transfer fluid heated in the receiver is used to generate steam.

Some power towers use The energy-storage capability, or thermal storage, allows the system to continue to dispatch electricity during cloudy weather or at night.

3. Power tower systems 

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WORKING 

Page 9: Concentrated solar power

ADVANTAGES :

Simple and non-polluting.

Potentially displaces the use of fossil fuel plants, that emit the greenhouse gases that cause climate change.

They prove to be efficient and cost-effective. Can be deployed relatively quickly and can contribute substantially to reducing carbon dioxide emissions

Provides emissions reductions compared to natural gas counterpart.

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The desert regions of Australia and Africa.

Mediterranean regions, with frequent sunshine.

In INDIA, places like Gujarat & rajasthan etc..,

IDEAL PLACES FOR CSP :

Page 11: Concentrated solar power

Thank you

By-A.PRADEEP(3RD EEE)