26,99 €
inkl. MwSt.
Versandkostenfrei*
Versandfertig in 6-10 Tagen
  • Broschiertes Buch

Fusion Reactor to produce energy without nuclear waste. The total energy release in the (D, T) reaction is 17.6 MeV. A 100% interaction of deuterium and tritium nuclei in the target ensures the energy release DeltaW = 17.6 106 1.5 1014 = 3.5 1021 eV or approximately 560 J. Assuming that one gram of TNT releases 4 kJ of energy, the energy of a microburst in this case will be equal to 140 mg of TNT. When the accelerator is operated in the continuous mode, f 0in = 2.4 107 tube segments can be accelerated per one second. If each segment releases 560 J of energy during the interaction with the…mehr

Produktbeschreibung
Fusion Reactor to produce energy without nuclear waste. The total energy release in the (D, T) reaction is 17.6 MeV. A 100% interaction of deuterium and tritium nuclei in the target ensures the energy release DeltaW = 17.6 106 1.5 1014 = 3.5 1021 eV or approximately 560 J. Assuming that one gram of TNT releases 4 kJ of energy, the energy of a microburst in this case will be equal to 140 mg of TNT. When the accelerator is operated in the continuous mode, f 0in = 2.4 107 tube segments can be accelerated per one second. If each segment releases 560 J of energy during the interaction with the deuterium-tritium target, the total energy release will be greater than 13 GJ / s or 13 GW.
Autorenporträt
DOLYA, SERGEY NIKOLAYEVICH, was born in Kharkov, Ukraine on June 12, 1950. In 1967 he entered the Kharkov State University and graduated in 1973 with a degree in physics, specialization ¿ Accelerator Physics. In 1972 he started working at the Department of New Methods of Particle Acceleration of the Joint Institute for Nuclear Research (JINR).