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Heat gas ammonia out to turbine generator or condenser poor mixture water/ ammonia rich mixture water/ ammonia Gas Assisted Solar Absorption Heat Engine.

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Presentation on theme: "Heat gas ammonia out to turbine generator or condenser poor mixture water/ ammonia rich mixture water/ ammonia Gas Assisted Solar Absorption Heat Engine."— Presentation transcript:

1 heat gas ammonia out to turbine generator or condenser poor mixture water/ ammonia rich mixture water/ ammonia Gas Assisted Solar Absorption Heat Engine GASAHE

2 2.6 m vertical bundle of tubing 0,25 m D = 0,05 m Total area = 0,2 m2

3 power generator ammonia gas turbine water- ammonia absorber water or air cooled restriction valve liquid jet compressor rich mixture ammonia pump heat hot gas ammonia gas ammonia rich mixture solution- ammonia/water poor mixture solution- water mixture-gas ammonia and poor water solution 1 cylindrical transparent envelope, airtight vertical bundle of tubing 1 Refrigeration exchanger 3 Counter flow heat exchanger 2 2

4 1 m 3 m cylindrical envelope, air tight, vacuumed for insulation and with refractive lens to concentrate the solar energy into the bundle biconvex lens top view

5 1 2 3 4 5 6 7 8 1-Gas turbine 2-Electric generator 3-Liquid jet compressor 4-Counter flow heat exchanger 5-Liquid pump 6-Atmofesric heat exchanger/ absorber 7-Rectifier, separator of liquid and gas 8-solar energy receiver 9- auxiliary LPG burner 10- refrigeration exchanger 9 10 Rich solution Gas goes up Weak liquid solution goes down Multiple array of mirrors If we use, in the floor array of mirrors, we can use a long tubing as the collector

6 1 2 3 4 5 6 7 8 9 10 cold water hot water warm water Air or liquid drinking water coolant liquid (glycol) 1-absorber 2-condenser 3-evaporator 4-heat exchanger -rich liquid mixture-water 5 heat exchange - air-water 6-coolant dist. box 7-atmospheric water maker 8-air compressor or fan 9-drinking water storage 10-gas burner for night operation 11-air circulator 12-liquid pumps 11 12

7

8 top view small mirrors individual oriented to reflect the sun energy into the tubing bundle. 3 m

9 small mirrors individual oriented to reflect the sun energy into the tubing bundle. The orientation of the mirrors can be achieved with infrared and the movement can be done using magnetic liquid or using air pressure actuators. The air pressure is needed on the atmospheric water maker.


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