US155621A - Improvement in steam-traps - Google Patents

Improvement in steam-traps Download PDF

Info

Publication number
US155621A
US155621A US155621DA US155621A US 155621 A US155621 A US 155621A US 155621D A US155621D A US 155621DA US 155621 A US155621 A US 155621A
Authority
US
United States
Prior art keywords
steam
boiler
water
pipe
trap
Prior art date
Legal status (The legal status 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 status listed.)
Expired - Lifetime
Application number
Publication date
Application granted granted Critical
Publication of US155621A publication Critical patent/US155621A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F04POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
    • F04FPUMPING OF FLUID BY DIRECT CONTACT OF ANOTHER FLUID OR BY USING INERTIA OF FLUID TO BE PUMPED; SIPHONS
    • F04F5/00Jet pumps, i.e. devices in which flow is induced by pressure drop caused by velocity of another fluid flow
    • F04F5/44Component parts, details, or accessories not provided for in, or of interest apart from, groups F04F5/02 - F04F5/42
    • F04F5/46Arrangements of nozzles
    • F04F5/461Adjustable nozzles

Definitions

  • the obj ect of myimprovement is to returnthe waste-water produced by condensation in the pipes for steam-heating to the boiler again under pressure; and the invention consists of an apparatus, as hereinafter described, so arranged that a jet of live steam performs the double ofce of drawing the condensed water up by suction to the trap, and then forcing it by injection to the boiler, as will be more fully set forth, the same being accomplished by a constant and unremittingy action.
  • A represents the trap, which is simply an air-tight receptacle of any desired form, and elevated at any desired distance above the water-level of the boiler. It is connected, by a pipe or pipes, B, with a receiver or receivers below, which serves to catch and retain the condensed water which runs therein from the steam-pipes running through the building or other place to be heated.
  • a suction is produced in the trap A by the jet of steam, as will be presently described, which draws the condensed water up into the trap, whence it is forced into the boiler again.
  • O is the eduction pipe, which connects the trap A with the boiler at any point below the water-line, and serves to convey the condensed Water back to the boiler. It may be conveniently connected with the mud-pipe of theV boiler.
  • D is the steam-pipe, connected with the steam-dome or any other part of the boiler in the steam-space.
  • the steam-jet performs a double function: rst, it draws the water up through pipe B into the 'trap by suction; and, second, it forces the water thus drawn up back intoV the boiler through pipe O; and, furthermore, this action is constant and unremittin g, requiring no other attachments.
  • the only condition is that the trap A shall stand at a higher point than the water-level of the boiler, by which means the gravity of the water therein will be sufficient to enable it to pass to the boiler. This is necessary, since the back pressure through pipe O exactly balances the forward pressure of the steam through pipe D.
  • Each of the pipes vB O has a check-valve, c, so arranged as to prevent back action through the pipes, but to allow a free forward motion.
  • That in the steam-pipe may have globe-valve g,.with a wheel, c, by which the steam is let l0n or cut ofi'.
  • the bottom of the trap has an lair-cock, cl, and the eduction-pipe also has an air-cock, f, for the purpose of allowing escape of the air at any time.
  • This improvement may be used in other con-- nections than with heating-pipes. It is applicable in all cases where steam-pipes are employed producing condensed water, and serves to convey such water to the boiler again.
  • Another advantage is, that, by the constant action of the apparatus, as above described, the water is returned to the boiler at a high temperature, as the steam-jet comes in contact with the whole body of Water as it passes through the eduction-pipe.
  • An important feature in my invention is the unremitting and constant action of the apparatns, producing both a. suction and a discharge of the water, and requiring no attention except to turn on and cut oi' the supply of steam.
  • the boiler is kept free, in a great degree, from lime.
  • the pipe B for connection with a receiver
  • the eduction-pipe C for connection

Landscapes

  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Catching Or Destruction (AREA)

Description

UNiTEn STATES PATENT OFFICE OYRUS A. PROTY, VOF ROCHESTER, NEW YORK.
,y IMPROVEMENT lN S'l'EAM-TRAPS.
Specification forming part of Ilettels Patent No. 155,621, dated October 6, 1874; application tiled June 1, 1874.
To all whom 'it may concern Be it known that I, vGYRUs A. PRoUrrY, of the city of Rochester, in the county of Monroe and State of New York, have invented a certain new and useful Improvement in Steam- Traps; and I do hereby declare that the following is a full, clear, and exact description of the construction and operation of the same, reference being had to the accompanying drawing, which represents a central vertical section of my invention.y
The obj ect of myimprovement is to returnthe waste-water produced by condensation in the pipes for steam-heating to the boiler again under pressure; and the invention consists of an apparatus, as hereinafter described, so arranged that a jet of live steam performs the double ofce of drawing the condensed water up by suction to the trap, and then forcing it by injection to the boiler, as will be more fully set forth, the same being accomplished by a constant and unremittingy action.
In the drawings', A represents the trap, which is simply an air-tight receptacle of any desired form, and elevated at any desired distance above the water-level of the boiler. It is connected, by a pipe or pipes, B, with a receiver or receivers below, which serves to catch and retain the condensed water which runs therein from the steam-pipes running through the building or other place to be heated.
A suction is produced in the trap A by the jet of steam, as will be presently described, which draws the condensed water up into the trap, whence it is forced into the boiler again. O is the eduction pipe, which connects the trap A with the boiler at any point below the water-line, and serves to convey the condensed Water back to the boiler. It may be conveniently connected with the mud-pipe of theV boiler. D is the steam-pipe, connected with the steam-dome or any other part of the boiler in the steam-space. It opens into the top of the trap, thence passes down through the same, and thence is turned into the eductionpipe C any desired length, and has a nozzle, I), through which the steam escapes, thereby blowing or forcing the water forward through the eduction-pipe into the boiler.
It will be seen that the steam-jet performs a double function: rst, it draws the water up through pipe B into the 'trap by suction; and, second, it forces the water thus drawn up back intoV the boiler through pipe O; and, furthermore, this action is constant and unremittin g, requiring no other attachments. The only condition is that the trap A shall stand at a higher point than the water-level of the boiler, by which means the gravity of the water therein will be sufficient to enable it to pass to the boiler. This is necessary, since the back pressure through pipe O exactly balances the forward pressure of the steam through pipe D.
Each of the pipes vB O has a check-valve, c, so arranged as to prevent back action through the pipes, but to allow a free forward motion. That in the steam-pipe may have globe-valve g,.with a wheel, c, by which the steam is let l0n or cut ofi'. The bottom of the trap has an lair-cock, cl, and the eduction-pipe also has an air-cock, f, for the purpose of allowing escape of the air at any time.
This improvement may be used in other con-- nections than with heating-pipes. It is applicable in all cases where steam-pipes are employed producing condensed water, and serves to convey such water to the boiler again.
I am aware that various arrangements are in use for returning waste-water to the boiler; but, so far as I am aware, they are different in construction from mine, above described, and act intermittently or at intervals. By this intermitting action there is much waste of heat, as, during the time of filling and before discharging, the action in the pipes is stopped and deadened, and no circulation takes place.
In my device, as the circulation is constant, no such stagnation can take place, thus giving a larger percentage of heat.
Another advantage is, that, by the constant action of the apparatus, as above described, the water is returned to the boiler at a high temperature, as the steam-jet comes in contact with the whole body of Water as it passes through the eduction-pipe.
An important feature in my invention is the unremitting and constant action of the apparatns, producing both a. suction and a discharge of the water, and requiring no attention except to turn on and cut oi' the supply of steam.
By the employment of this invention the boiler is kept free, in a great degree, from lime.
Having thus described my invention, what I claim as new, and desire to secure by Letters Patent, is-
In combination with the trap or air-tight casing A, the pipe B, for connection with a receiver; the eduction-pipe C, for connection,
with a. boiler below the water-line; and the steainpipe D,passing through the trapand into the eduction-pipe, t0 act upon the checkvalfe therein for forcing such Water back into the boiler from whence it issued, substantially as described.
In Witness whereof I have hereunto signed my name in the presence of two subscribing Witnesses.
C. A. PROUTY.
Witnesses:
R. F. OsGoon, GEORGE W. HARROLD.
US155621D Improvement in steam-traps Expired - Lifetime US155621A (en)

Publications (1)

Publication Number Publication Date
US155621A true US155621A (en) 1874-10-06

Family

ID=2225031

Family Applications (1)

Application Number Title Priority Date Filing Date
US155621D Expired - Lifetime US155621A (en) Improvement in steam-traps

Country Status (1)

Country Link
US (1) US155621A (en)

Similar Documents

Publication Publication Date Title
US568615A (en) Apparatus for evaporating liquids
US573219A (en) Evaporating-pan
US623554A (en) Island
US725314A (en) Return water-feed for steam-heating systems.
US694206A (en) Hot-water heating system.
US569318A (en) And james mcallister
US758090A (en) Condenser.
US1183853A (en) Combined high and low pressure vacuum circulating system for heating apparatus.
US708101A (en) Vacuum steam-heating system.
US398263A (en) kirkaldy
US449120A (en) Steam-muffler
US739472A (en) Apparatus for compressing air.
US784685A (en) Condenser.
US788314A (en) Liquid-return system.
US447241A (en) Steam-radiator
US924140A (en) Steam-pump.
US151664A (en) Improvement in devices for separating water from steam
US500377A (en) Feed-water heater
US671221A (en) Process of cooling or condensing fluids.
US148658A (en) Improvement in apparatus for feeding steam-boilers with air
US1265480A (en) Method of producing low vacuum in steam-condensers.
US976438A (en) Locomotive-boiler washing and refilling apparatus.
US456672A (en) Steam-loop connection for steam-boilers
US513409A (en) Heating feed-water
US272347A (en) Heineich stollweeck