FIELD: machines with nonvolumetric expulsion. SUBSTANCE: given turbine can be used on stationary and mobile objects. Turbine is made of vacuum- treated stator part of which in the form of disc is placed in space of vacuum-tight rotor manufactured in the form of rotor of centrifugal machine with working conduits formed by blades arranged near axis in space of rotor. Working conduits formed by blades are also located on disc, in disc conduits are arranged over arc and their outlets are brought outside center of disc to create vortex movement of heat transfer agent in central space of disc. Heat is supplied to center of vortex from heat-emitting member placed in center of space of rotor and from tube with hot heat transfer agent that is placed uniaxially with disc and rotor. Supply of heat to center of rotating and expanding vortex from heat transfer agent converts supplied heat to work most effectively, closed toroidal-vortex movement of heat transfer agent is transformed into acceleration field of rotating rotor and is making it possible to store heat energy in circulating heat transfer agent and to rise energy of rotation of rotor to design limit. All losses of dynamic motion of heat transfer agent for friction and removal of motion ( execution of work ) are restored thanks to supply of heat that increases speed of motion of vortex at moment of its supply. All losses of dynamic motion of heat transfer agent for friction transformed to heat remain in rotor due to its arrangement in vacuum. EFFECT: capability of collection of heat energy in circulating heat transfer agent and of increase of rotation energy of rotor to design limit. 3 dwg
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Authors
Dates
1999-11-27—Published
1997-01-24—Filed