FIELD: machine building.
SUBSTANCE: invention relates to machine building, in particular to cryogenic liquids supply systems into the internal combustion engine, and can be used to create new types of engines without the harmful substances emission. Engine operation method, based on the alternating combustion mode, movable element movement in the opposite direction due to the dry heated air introduction into the chamber with the cryogenic liquid simultaneous supply and dispersion, at that, as the combustion mode gaseous oxygen and hydrogen mixtures are used, produced by the separately stored liquid oxygen and hydrogen evaporation, evaporated hydrogen transfer into a gas container with intermetallides hydrides, filling the mixing chamber with gaseous oxygen, followed by the gaseous hydrogen dosed supply to the mixer and following alternate directing of the hydrogen and oxygen mixture into the combustion chamber with the alternate cryogenic liquid input to the opposite direction and dispersing. Disclosed is engine comprising combustion chamber alternately connected to fuel tank and cryogenic liquid tank and movable member, at that, the fuel tanks and the cryogenic liquid tanks are made in the form of enclosed into each other tanks in the form of spheres, wherein the liquid hydrogen tank is surrounded by the liquid oxygen tank, and the liquid oxygen tank is surrounded by the liquid air or nitrogen tank, each of tanks has independent branch pipes, branch pipe from the liquid hydrogen tank is in series connected to the container with intermetallides hydrides and gas dispenser, gas branch pipe from the container and the branch pipe from the liquid oxygen tank are provided with heaters, electrically connected to the superconducting storage battery in the form of a superconducting ring located in the liquid air or nitrogen tank, and the tanks are connected to mixer, which in turn is alternately connected to the opposite combustion chambers.
EFFECT: invention provides increase in the environmental friendly engine efficiency.
7 cl, 3 dwg
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Authors
Dates
2018-05-21—Published
2016-04-29—Filed