RU95106552A - Method and device for production of cold - Google Patents

Method and device for production of cold

Info

Publication number
RU95106552A
RU95106552A RU95106552/06A RU95106552A RU95106552A RU 95106552 A RU95106552 A RU 95106552A RU 95106552/06 A RU95106552/06 A RU 95106552/06A RU 95106552 A RU95106552 A RU 95106552A RU 95106552 A RU95106552 A RU 95106552A
Authority
RU
Russia
Prior art keywords
cold
water
energy
hydrogen
release
Prior art date
Application number
RU95106552/06A
Other languages
Russian (ru)
Other versions
RU2123646C1 (en
Inventor
А.А. Понуровский
Original Assignee
А.А. Понуровский
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by А.А. Понуровский filed Critical А.А. Понуровский
Priority to RU95106552A priority Critical patent/RU2123646C1/en
Publication of RU95106552A publication Critical patent/RU95106552A/en
Application granted granted Critical
Publication of RU2123646C1 publication Critical patent/RU2123646C1/en

Links

Landscapes

  • Engine Equipment That Uses Special Cycles (AREA)

Abstract

FIELD: production of cold; refrigerating engineering. SUBSTANCE: refrigerant is expanded due to supply of compressed or liquefied gas from receiver to interaction chamber of rotary piston machine. after piston has passed top dead center, 2 to 6 deg after turn of crankshaft when supply of agent is discontinued and crankshaft turns through 35-45 deg, water at positive temperature is sprayed into low-temperature gases at excessive pressure of these gases, thus causing formation of energetic process between these media by explosive dissociation of water being sprayed in to hydrogen and oxygen and providing for instantaneous going from water to gas accompanied by release of negative temperature of cold thus obtained; this negative temperature is equivalent to positive temperature during burning of hydrogen in oxygen forming water. Method and device used for realization of this method require no energy but release energy similar to operation of internal combustion engine, the only difference being in production of cold, not heat. EFFECT: inexhaustible source of energy, harmless for environment.

Claims (1)

В предлагаемом способе хладореагент веществом сжатого или сжиженного газа расширен поступлением его из рессивера в камеру взаимодействия вращающейся поршневой машины, после прохождения поршнем верхней мертвой точки спустя 2o, 6o поворота коленчатого вала, с окончанием поступления, при его повороте на угол 35o, 45o, в низкотемпературные газы при их избыточном давлении распылена вода положительных температур, чем вызвано образование между ними энергетического процесса взрывной диссоциацией распыливаемой воды на водород и кислород, таким путем получен результат мгновенного перехода вещества воды в вещество газов с выделением отрицательной температуры полученного холода, эквивалентной положительной, при горении водорода в кислороде с образованием воды. Предлагаемым способом и его устройством при получении холода не только не затрачивается, но и выделяется еще энергия полезной работой, подобно энергии выделяемой в ДВС, но с выделением не теплоты, а холода в составе отработавших газов, которые еще можно использовать и топливной смесью.In the proposed method, the refrigerant with the substance of compressed or liquefied gas is expanded by entering it from the receiver into the interaction chamber of the rotating piston machine, after the piston passes the top dead center after 2 o , 6 o of rotation of the crankshaft, with the end of receipt, when it is rotated through an angle of 35 o , 45 o, a low-temperature gases at their overpressure water sprayed positive temperatures than caused the formation therebetween explosive dissociation energy process atomized water into hydrogen and oxygen, the same result is obtained by an instantaneous water transfer substance into a substance with the release of gases resulting negative temperature cold equivalent positive combustion of hydrogen with oxygen to form water. The proposed method and its device when receiving cold not only is not expended, but also energy is released by useful work, like the energy released in the internal combustion engine, but with the release of not heat, but cold in the exhaust gas, which can still be used with the fuel mixture.
RU95106552A 1995-04-24 1995-04-24 Method and device for generation of cold RU2123646C1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
RU95106552A RU2123646C1 (en) 1995-04-24 1995-04-24 Method and device for generation of cold

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
RU95106552A RU2123646C1 (en) 1995-04-24 1995-04-24 Method and device for generation of cold

Publications (2)

Publication Number Publication Date
RU95106552A true RU95106552A (en) 1997-03-10
RU2123646C1 RU2123646C1 (en) 1998-12-20

Family

ID=20167141

Family Applications (1)

Application Number Title Priority Date Filing Date
RU95106552A RU2123646C1 (en) 1995-04-24 1995-04-24 Method and device for generation of cold

Country Status (1)

Country Link
RU (1) RU2123646C1 (en)

Also Published As

Publication number Publication date
RU2123646C1 (en) 1998-12-20

Similar Documents

Publication Publication Date Title
KR920001065A (en) Internal combustion engine and its performance improvement method
JP7030822B2 (en) Internal combustion steam engine
US3842808A (en) Regenerative steam ignition internal combustion engine
AU2445899A (en) A combined diesel-rankine cycle reciprocating engine
WO1997045629A1 (en) Energy conservation cycle engine
WO2000014396A1 (en) Adiabatic internal combustion engine
KR20080007029A (en) An implosion engine using brown-gas and a method for driving the same
RU95106552A (en) Method and device for production of cold
US2376479A (en) Internal-combustion engine and combustion mixture therefor
GB1530126A (en) Methods of and means for the storage of surplus energy
EP0953102B1 (en) Carbon black tailgas fueled reciprocating engines
JPS5726241A (en) Compound engine
SU1023121A1 (en) Method of operation of four-cycle internal combustion engine
RU2435975C2 (en) Menshov internal combustion engine
CN2260175Y (en) Engine using fuel added with steam
CN1201865A (en) Internal combustion steam engine
RU2296233C1 (en) Method of operation of liquefied gas-cooled internal combustion engine
RU1813894C (en) Method of operating internal combustion engine with compression ignition and internal combustion engine
JPS56501A (en) Internal-combustion engine
RU2125655C1 (en) Cyclic method of execution of rational working process cycle in engines
KR900002876B1 (en) Rotary engine
RU2055231C1 (en) Internal combustion engine
SU875111A1 (en) Heat piston engine
RU2067193C1 (en) Method of operation and design of two-prechamber internal combustion engine
SU1348542A1 (en) Supercharged i.c.engine and method of operating same