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1 Nuclear Fusion Class : Nuclear Physics 1 2005. 12. 7 K.-U.Choi.

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Presentation on theme: "1 Nuclear Fusion Class : Nuclear Physics 1 2005. 12. 7 K.-U.Choi."— Presentation transcript:

1 1 Nuclear Fusion Class : Nuclear Physics 1 2005. 12. 7 K.-U.Choi

2 2 Outline  Introduction  Theoretical Background  Instruments, Experiments  Data review & Present Status  Summary

3 3 Introduction

4 4 Nuclear Binding Energy

5 5Plasma SolidLiquidPlasmaGas ; Freely moving charged particle : ions, electrons.

6 6 Conditions for Fusion 1) Low Temperature 2) High Temperature HeatGarbage Coloumb Foce !!

7 7 Conditions for Fusion 1)Lawson’s criterion for Fusion ( Deuterium-Tritium fusion) 2) Creating the conditions for Fusion n : ion density, τ : confinement time

8 8 Inertial Confinement Fusion This is why we call this as “Inertial Confinement Fusion” Δt ~ 10^-11 to 10^-9 s

9 9 Heating (Neutron beam) hydrogen gas Magnetic Confinement Fusion

10 10 hydrogen plasma heating

11 11 hydrogen plasma hot HIGH heating

12 12 problem: wall contact! HIGH heating hydrogen plasma hot

13 13 HIGH heating avoidwall contact with magnetic field hydrogen plasma hot

14 14 HIGH heating avoidwall contact with magnetic field hydrogen plasma hot

15 15 problem: end losses HIGH heating hydrogen plasma hot

16 16 end losses avoid: torus ! Magnetic Confinement Simulation

17 17 ITER ( International Thermonuclear Experimental Reactor ) Launcher Magnets Vacuum Vessel Thermal Shield

18 18

19 19

20 20 Data review 197019751980198519901995 2000 2005 10 -6 10 -4 10 -2 10 0 10 2 10 4 10 6 10 810 fusion power [Watt] 20102015 ITER JET D-T D-D Power station

21 21 Summary & Outlook WWWWe can expect Nuclear fusion Reactor WWWWe can research Ion Beam nuclear fusion reactor


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