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Magnetohydrodynamic Power Generation

Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

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Page 1: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

MagnetohydrodynamicPower Generation

Page 2: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Learning Objectives

1) The operating principle of Magnetohydrodynamic power generation

2) Indicate the different modes in which it can be implemented

3) Indicate the challenges posed by this technology

Page 3: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,
Page 4: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Hot GasThermal

Plant

Thermal power plant

= 1 −𝑇2𝑇1

Page 5: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Hot Gas MHDThermal

Plant

Topping Cycle Bottoming Cycle

Combined cycle power plant

Page 6: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Plasma

Fourth state of matter Ionized Gas Low ionization energy elements can be used

Cs, K have relatively low ionization energy

Page 7: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Electrons and ions deflected in opposite directions, generating voltage

Page 8: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

RL

Cs and K added to the gas. The temperature should be high enough to ionize these. Called Seeding

Page 9: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Hot Gas MHDThermal

Plant

Topping Cycle Bottoming Cycle

Combined cycle power plant

Seeding

Page 10: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Movement of electrons and ions will depend on charge as well as mass

Page 11: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

RL

Faradaic Generator

Page 12: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Segmented Faraday Generator

RL

Page 13: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

RL

Hall Generator

Page 14: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Conclusions

1) Magnetohydrodynamic power generation, enables generation of power from hot gases, without moving parts

2) It requires high temperatures3) Usually combined with a regular thermal plant, but

appears at the top end of the stream4) Can have toxic implications based on implementation

strategy

Page 15: Magnetohydrodynamic Power Generation · 2019. 2. 21. · Faradaic Generator. Segmented Faraday Generator R L. R L Hall Generator. Conclusions 1)Magnetohydrodynamic power generation,

Course Summary:

1) Usage of energy around the world – Nation, per capita, by sector2) Impact on Environment3) Solar Energy4) Wind5) OTEC6) Geothermal7) Biomass8) Battery9) Fuel cells10)Supercapacitors11)Flywheels12)Magnetohydrodynamic power generation