US693273A - Carbureter. - Google Patents

Carbureter. Download PDF

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Publication number
US693273A
US693273A US7078201A US1901070782A US693273A US 693273 A US693273 A US 693273A US 7078201 A US7078201 A US 7078201A US 1901070782 A US1901070782 A US 1901070782A US 693273 A US693273 A US 693273A
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Prior art keywords
carbureter
oil
pipe
tank
air
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US7078201A
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Frederick W Jervis
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WILLIAM HENRY JERVIS
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WILLIAM HENRY JERVIS
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02MSUPPLYING COMBUSTION ENGINES IN GENERAL WITH COMBUSTIBLE MIXTURES OR CONSTITUENTS THEREOF
    • F02M37/00Apparatus or systems for feeding liquid fuel from storage containers to carburettors or fuel-injection apparatus; Arrangements for purifying liquid fuel specially adapted for, or arranged on, internal-combustion engines
    • F02M37/02Feeding by means of suction apparatus, e.g. by air flow through carburettors

Definitions

  • the invention also embodies novel means for discharging the residue and sediment which settle to the bottom of the carbureter and equalizing the air-pressure in the oiltank and carbureter during the operation of charging the same with oil.
  • the invention also has for its object to provide for a thorough circulation of oil in the curbureter Without the aid of a mixer, thereby producing a uniform quality of gas without resort to apparatus which is liable to get out of order.
  • Another object of the invention is to provide a special form of tubular connection between the storage or supply tank and the carbureter which will admit of the settling of either or both tanks without causing a leak.
  • Another object ⁇ in view is to extend the pressure-equalizing pipe so as to form in con- 5o nection with the rising oil in the carbureter a check which will automatically cut olf lthe llow of oil to the carbureter and prevent the loodin g of -the carbureter and gas or service pipe.
  • l designates a carbureter adapted to receive a suitable supply of oil fed from an oil-tank 2, thel bottom of which is located about in line-with the ⁇ normal level of the oil in the carbureter, ⁇ -both' the tank and carbureter being ordinarily.
  • Air is fed into the carbureter under pressure through an air-supply pipe 6, which may connect with any form of air-compressor, and
  • the gas is carried out of the carbureter through a service-pipe 7, both of the pipes 6- and 7 leading into the upper portion of the carbureter and'belng provided with. cut-ott valves 8 and 9, respectively.
  • the air-supply pipe 6 connects with an air-distributing pipe l0, having a plurality of downwardly-pointing nozzles ll, W-hich terminate several inches below the main.- tained level of the oil in the carbureter.
  • the air entering the carbureter under compression is thus forced in a number of jets into IOO and through the oil and, rising, is carried outward through the service-pipe 7 and distributed to the burners.
  • a pressnre-equalizing pipe 12 connects the upper portions of the carbureter and oil-tank and allows the air to escape from the carbureter to the oil-tank as the oil is fed from the tank into the carbureter, thus insuring the feeding of the oil by gravity.
  • a check-Valve 13 is associated with the air-supply pipe 6, and while permitting the air to pass readily into the carbureter it prevents the oil from passing to the air-compressor.
  • the oil-tank 2 is equipped with a fillingpipe 14, having a stop-cock 15 and sealingcap 1G, enabling the tank to be filled with oil from the surface of the ground.
  • the pres- -sure-equalizing pipe has a vent-pipe 17 extending to the surface of the ground and provided with a stop-cock 18 and cap 19. This vent is left open when filling the tank 2 with oil in order that the air may escape from the tank and carbureter.
  • a residue-discharge pipe 20 connects with the bottom of the carbureter and extends to the surface of the ground, where it has a stopcock 21 and cap 22. Said pipe is designed to carryoff all residue, heavy oil, and sediment which accumulate in the bottom of the carbureter.
  • an airinlet pipe 23 is connected with the pressureequalizing pipe 12 at the point 24 and provided with a stop-cock 25 and cap 26. This pipe 23 is designed to receive a force-pump, and air is forced downward through pipe 12 into the carbureter until the pressure is sufficient to expel the residue in the bottom of the carbureter through the pipe 20.
  • the latter In order to entirely cut off communication through the pressure-equalizing pipe 12, the latter is provided with a stop-cock 27, located between the air-inlet pipe 23 and the oil-tank. This prevents the air from the force-pump from passing to the oil-tank and directs it to the carbureter.
  • vent-pipe 17 In refilling the oil-tank the vent-pipe 17 is opened and the stop-cock 27 is closed, thus permitting the air in the tank to pass out as the oil fills the same. The filling and vent pipes are then closed, and the machine is ready for operation. W'hen it becomes necl essary to clean the carbureter, the stop-cock 27 and the valves 8 and 9 are closed, the discharge-pipe 2O opened, and air pumped into the carbureter through the pipe 23, thus forcing the residue from the bottom of the carbureter outward through pipe 20.
  • the pressure-equalizing pipe 12 is provided within the carbureter with an eX- tension 28, which terminates slightly above the predetermined level of oil in the carbureter, as clearly shown in the drawing. Should the iioat-valve fail to operate, the oil will rise in the carbureter until it covers and seals the open end of the pressure-equalizing pipe, which will have the effect of cutting off connection between the air-spaces of the carbureter and storage-tank, and consequently cutting off the flow of oil to the carbureter. This prevents flooding the carbureter and also prevents oil from finding its way into and through the gas or service pipe.
  • Both the storage-tank and carbureter are also buried in the ground, and this also assists in maintaining the normal temperature of the oil in the carbureter.
  • the upper portions of the pipe should be incased in jackets of metal or other material in order to prevent the frost from lifting them out of place.
  • the machine is simple in construction, economical inA manufacture, easily filled, cleaned, ⁇ and maintained in working order and is entirely automatic in operation. I do not desire to be limited to the details of construction hereinabove described, as changes may be made in the form, proportion, and minor details of construction and arrangement without departing from the principles of the invention.
  • a gas-machine comprising a carbureter, an oil-tank adapted to supply the earbureter, an oil-feed connection between the oil-tank and carbureter, a pressure-equalizing pipe connecting the upper portions of the oil-tank and carbureter, an inlet communicating with said pressure-equalizing pipe and adapted to have pressure applied therethrough to the carbureter, a residue-discharge pipe connected to the lower portion of the carbureter, and a stop-cock located in the pressure-equalizin g pipe between the air-inlet pipe and oil-tank, substantially as described.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)

Description

UNITED STATES PATENT OFFICE., t
FREDERICK W. JERVIS, OF BALTIMORE, MARYLAND, ASSIGNOR TO VILLIAM HENRY JERVIS, OF CLINTON, CANADA.
CARBURETER.
SPECIFICATION forming part of Letters Patent No. 693,273, dated February 11, 190.2..
Appncaion ined August s, 1901. serial No. 70,782. (No model.)
To all whom t may concern:
Be it known that I, FREDERICK W.' JERvIs, a subject of the King ot' Great Britain, residing at Baltimore, in the State of Maryland, have invented a certain new and useful Carbureter, of which the following is a specification, reference being had therein to the ac! the bottom of the storage-tank being located l substantially inline with the normal level of oil in the carbureter, and provision is made for automatically maintaining an equal airpressure within the tank and carbureter, therebyinsuring the proper feeding of the oil. The oil in the carbureter is maintained at a predetermined level by means operating automatically. Air is fed to the carbureter by any suitable air-compressor and in a Way to agitate the oil and intel-mingle therewith and produce gas of uniform richness.'
The invention also embodies novel means for discharging the residue and sediment which settle to the bottom of the carbureter and equalizing the air-pressure in the oiltank and carbureter during the operation of charging the same with oil.
The invention also has for its object to provide for a thorough circulation of oil in the curbureter Without the aid of a mixer, thereby producing a uniform quality of gas without resort to apparatus which is liable to get out of order.
Another object of the invention is to provide a special form of tubular connection between the storage or supply tank and the carbureter which will admit of the settling of either or both tanks without causing a leak.
Another object `in view is to extend the pressure-equalizing pipe so as to form in con- 5o nection with the rising oil in the carbureter a check which will automatically cut olf lthe llow of oil to the carbureter and prevent the loodin g of -the carbureter and gas or service pipe.
the invention consists in the novel construction, combination, and arrangement of parts hereinafter fully described, illustrated, and claimed. v
The accompanying drawing represents a verticalsction through a gas-machine 'complete constructed in accordance with thepresent invention.
lReferring to the drawing, l designates a carbureter adapted to receive a suitable supply of oil fed from an oil-tank 2, thel bottom of which is located about in line-with the`normal level of the oil in the carbureter, `-both' the tank and carbureter being ordinarily.
With the above and other objects inview'` nection 3 of lead pipe provision is made for n the settling of either or both tanks without danger of springing the joints betweeusuch pipe and the supply-tank and carbureter, and thereby causing a leak.
Air is fed into the carbureter under pressure through an air-supply pipe 6, which may connect with any form of air-compressor, and
the gas is carried out of the carbureter through a service-pipe 7, both of the pipes 6- and 7 leading into the upper portion of the carbureter and'belng provided with. cut-ott valves 8 and 9, respectively. lWithin the carbureter the air-supply pipe 6 connects with an air-distributing pipe l0, having a plurality of downwardly-pointing nozzles ll, W-hich terminate several inches below the main.- tained level of the oil in the carbureter. The air entering the carbureter under compression is thus forced in a number of jets into IOO and through the oil and, rising, is carried outward through the service-pipe 7 and distributed to the burners.
A pressnre-equalizing pipe 12 connects the upper portions of the carbureter and oil-tank and allows the air to escape from the carbureter to the oil-tank as the oil is fed from the tank into the carbureter, thus insuring the feeding of the oil by gravity. A check-Valve 13 is associated with the air-supply pipe 6, and while permitting the air to pass readily into the carbureter it prevents the oil from passing to the air-compressor.
The oil-tank 2 is equipped with a fillingpipe 14, having a stop-cock 15 and sealingcap 1G, enabling the tank to be filled with oil from the surface of the ground. The pres- -sure-equalizing pipe has a vent-pipe 17 extending to the surface of the ground and provided with a stop-cock 18 and cap 19. This vent is left open when filling the tank 2 with oil in order that the air may escape from the tank and carbureter.
A residue-discharge pipe 20 connects with the bottom of the carbureter and extends to the surface of the ground, where it has a stopcock 21 and cap 22. Said pipe is designed to carryoff all residue, heavy oil, and sediment which accumulate in the bottom of the carbureter. In order to accomplish this, an airinlet pipe 23 is connected with the pressureequalizing pipe 12 at the point 24 and provided with a stop-cock 25 and cap 26. This pipe 23 is designed to receive a force-pump, and air is forced downward through pipe 12 into the carbureter until the pressure is sufficient to expel the residue in the bottom of the carbureter through the pipe 20.
In order to entirely cut off communication through the pressure-equalizing pipe 12, the latter is provided with a stop-cock 27, located between the air-inlet pipe 23 and the oil-tank. This prevents the air from the force-pump from passing to the oil-tank and directs it to the carbureter.
In refilling the oil-tank the vent-pipe 17 is opened and the stop-cock 27 is closed, thus permitting the air in the tank to pass out as the oil fills the same. The filling and vent pipes are then closed, and the machine is ready for operation. W'hen it becomes necl essary to clean the carbureter, the stop-cock 27 and the valves 8 and 9 are closed, the discharge-pipe 2O opened, and air pumped into the carbureter through the pipe 23, thus forcing the residue from the bottom of the carbureter outward through pipe 20.
In order to provide against the contingency of the iioatvalve failing to operate or getting out of order, the pressure-equalizing pipe 12 is provided within the carbureter with an eX- tension 28, which terminates slightly above the predetermined level of oil in the carbureter, as clearly shown in the drawing. Should the iioat-valve fail to operate, the oil will rise in the carbureter until it covers and seals the open end of the pressure-equalizing pipe, which will have the effect of cutting off connection between the air-spaces of the carbureter and storage-tank, and consequently cutting off the flow of oil to the carbureter. This prevents flooding the carbureter and also prevents oil from finding its way into and through the gas or service pipe.
By reason of the Vconstruction illustrated and described I get a uniform quality of gas and an entire absence of the refrigerat'ing effect so common in machines of this type, in connection with which a mixer must necessarily be employed in order to obtain a uniform quality of gas. As is well known, refrigeration is caused by evaporation which takes place atthe surface of the oil in the carbureter, where it is agitated by air passing through it. As the oil becomes chilled it naturally falls or settles to the bottom of the cabureter, while the warmer oil at the bottom moves upward and takes the place of the chilled oil. In this way a thorough mixture of the oil is obtained and the whole body of oil kept at a normal temperature. Both the storage-tank and carbureter are also buried in the ground, and this also assists in maintaining the normal temperature of the oil in the carbureter. In a cold climate the upper portions of the pipe should be incased in jackets of metal or other material in order to prevent the frost from lifting them out of place. f
The machine is simple in construction, economical inA manufacture, easily filled, cleaned, `and maintained in working order and is entirely automatic in operation. I do not desire to be limited to the details of construction hereinabove described, as changes may be made in the form, proportion, and minor details of construction and arrangement without departing from the principles of the invention.
Having thus describedthe invention, what I claim as new, and desire to secure by Letters Patent, is
A gas-machine comprising a carbureter, an oil-tank adapted to supply the earbureter, an oil-feed connection between the oil-tank and carbureter, a pressure-equalizing pipe connecting the upper portions of the oil-tank and carbureter, an inlet communicating with said pressure-equalizing pipe and adapted to have pressure applied therethrough to the carbureter, a residue-discharge pipe connected to the lower portion of the carbureter, and a stop-cock located in the pressure-equalizin g pipe between the air-inlet pipe and oil-tank, substantially as described.
In testimony whereof I aiiix my signature in presence of two witnesses.
FREDERICK W. JERVIS.
Witnesses:
N. 13. HENRY, W. BRYiDoNn.
ICO
IIO
US7078201A 1901-08-03 1901-08-03 Carbureter. Expired - Lifetime US693273A (en)

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3400516A (en) * 1965-09-24 1968-09-10 Leon Roberto Munoz De Air filter
JP2012237514A (en) * 2011-05-12 2012-12-06 Epia:Kk Brazier for heating and cooking in disaster or emergency

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3400516A (en) * 1965-09-24 1968-09-10 Leon Roberto Munoz De Air filter
JP2012237514A (en) * 2011-05-12 2012-12-06 Epia:Kk Brazier for heating and cooking in disaster or emergency

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