Nuclear and Atomic Physics

   

Small Non-Expensive Electric Cumulative Thermonuclear Reactors

Authors: Alexander Bolonkin

Small Non-Expensive Electric Cumulative Thermonuclear Reactors Alexander Bolonkin ISBN 978-1-365-79783-5 The author offers the new, small cheap electric impulse and cumulative thermonuclear reactors, which increases the temperature and pressure of its nuclear fuel by millions of times, reaches the required ignition stage and, ultimately, constant contained thermonuclear reaction. Electric Impulse and Cumulative AB Reactors contain several innovations to achieve its product. Chief among them in version one the electric thermonuclear reactors are using electric field voltage 50 ÷ 1000 kV (an electric condenser discharge), which allows to heat the primary compressed fuel in special pellet by electric impulse up hundreds millions degrees of temperature. In electric impulse and cumulative versions of AB thermonuclear reactors the fuel nucleus are heated by high electric voltage (50 ÷ 1000 kV) up the hundreds millions degree and cumulative compressed into center of the special cylindrical or spherical fuel cartridge. The additional compressing and combustion time the fuel nucleus may have from electric pinch-effect and heavy nucleus of the fuel cartridge cover. The main advantages of the offered method are very small electric fuel cartridge (11-18 mm) and small of the full reactor installation (reactor has the spherical diameter 0.3 - 3 m), using the many thermonuclear fuels at room temperature and possibility of using the offered thermonuclear reactor for transportation (ships, trains, aircrafts, rockets, etc.). Author gives theory and estimations of the suggested reactors. Author also is discussing the problems of converting the received thermonuclear energy into mechanical (electrical) energy and into rocket thrust. Offered small micro-reactors may be used as heaves (ignition, fuse) for small artillery nuclear projectiles and bombs. Copyright @ author – Luly. Publisher: USA, LULU, www.lulu.com, 2017

Comments: 143 Pages.

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Submission history

[v1] 2017-03-20 19:13:23

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