US2013312415A1PendingUtilityA1

Method for converting of warmth environment into mechanical energy and electricity

Assignee: DUBOVITSKIY GENNADY SERGEEVICHPriority: May 28, 2012Filed: Aug 26, 2012Published: Nov 28, 2013
Est. expiryMay 28, 2032(~5.8 yrs left)· nominal 20-yr term from priority
F01K 13/00F01K 25/08F03G 7/129
23
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Claims

Abstract

The compressor of high pressure ( 15 ) and the steam engine ( 20 ) are the heart of the method (device) for converting of warmth environment into mechanical energy and electricity. The compressor ( 15 ) acts as a concentrator of the environing heat and is adapted to create two thermal sources: a) the heat-positive (hot) source ( 11 ) due to the heat of compressed of an air, and b) the heat-negative (cold) source ( 40 ) due to of expansion of the compressed air. The steam engine ( 20 ), which is connected mechanically with compressor ( 15 ), produces rotational energy by dint of the transfer of heat from the hot source ( 11 ) to the cold source ( 40 ) by a low-boiling working body. Herewith, the low-boiling working body makes phase transition from a liquid state in vaporous state and back again. Freons, ammonia, ethane, etc., are used as the low-boiling working body. During of producing rotational energy, the device can also produce electricity, heat, cold, distilled water, and stores the energy in the form of a compressed air. This method will contribute to reducing the needs for hydrocarbon fuels.

Claims

exact text as granted — not AI-modified
I claim: 
     
         1 . A method for converting of low-potential warmth of environment into mechanical energy by using an air compressor of high pressure, comprising:
 (a) providing said air compressor of high pressure for many step compression of an atmospheric air and which is fitted for creation of hot and cold energy sources, and   (b) providing a steam engine for producing rotational energy which is connected to said compressor of high pressure and which is adapted for work on a low-boiling working body using temperature difference between said hot and cold energy sources,   whereby, said steam engine will produce rotational energy in quantity essentially bigger than energy expended for work said compressor of high pressure without using any other energy, in addition to the low-potential warmth of environment.

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