US501612A - Gustav durr - Google Patents

Gustav durr Download PDF

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US501612A
US501612A US501612DA US501612A US 501612 A US501612 A US 501612A US 501612D A US501612D A US 501612DA US 501612 A US501612 A US 501612A
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boiler
water
boilers
steam
compartment
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F02COMBUSTION ENGINES; HOT-GAS OR COMBUSTION-PRODUCT ENGINE PLANTS
    • F02BINTERNAL-COMBUSTION PISTON ENGINES; COMBUSTION ENGINES IN GENERAL
    • F02B75/00Other engines
    • F02B75/02Engines characterised by their cycles, e.g. six-stroke

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  • This invention relates to a steam boiler in which a thorough crculationwof the water, and consequently a thorough utilization of fuel, takes place.
  • Hand holes having covers of peculiar construction permit ready access to the feed and heating tubes.
  • Figure l is a vertical longitudinal section of my improved boiler;
  • Fig. 2 a vertical longitudinal section of a double boiler;
  • Fig. 3 ahorizontal section on line ne, Fig. 2;
  • Fig. 4 a cross section on line y, y, Fig. 3.
  • the water room into which enter the feed tubes r, and the heating tubes r, is bya partition w, divided into two compartments c, c.
  • the feed tubes r' enter the compartment c, while the heating tubes r, enter the compartment c.
  • Two upper water boilers A are placed above the tubes andare connected with each other, near their rear end by a coupling o.
  • One of the boilers A is connected to the compartment c, while the other boiler is connected to the compartment c.
  • the water fed into one of the boilers at e flows to the rear of the boiler and passes through connection o, into the second boiler.
  • I may, of course, use one single boiler provided with a perforated partition.
  • the left hand tube boiler 'sup plies the steam-carrying-water through connections s, to one upper boiler A, While the right hand tube boiler supplies the steam-carrying-water through connections s2, to the other upper boiler.
  • the steam separates from the water and the steam that has entered through connections s, passes through tube g, into the superheater u, while the steam that has entered through connection s2, into the other boiler, passes in the opposite direction through tube g', into the superheater.
  • the water flows through the connections s2, s', into the chambers c, and together with the fresh feed water introduced vat t', passes through the tubes in the manner already described.

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Control Of Steam Boilers And Waste-Gas Boilers (AREA)

Description

(No'Model.) sheets-sheet 1.v
G. DRR.
I STEAM BoIL-ER.
2 Sheets-Sheet 2.
(No Model.)
G. DRR.
STEAM BOILER.
Patnted July 18, 1893.
UNITED STATES PATENT OFFICE.
-G'UsTAvDEa oF DUSSELDORF, GERMANY.
STEAM-BOILER.
SPECIFICATION forming part of Letters Patent No. 501,612', dated July 18, 1893. Application led February 1, 1893. Serial Nolr460,608. (No model.) Patented in Germany October 29, 1889, No. 53,449.
To all whom t may concern:
Be it known that I, GUSTAV DRR, a subject of the German Emperor, residing at Dusseldorf, Germany, have invented certain new and useful Improvements in Steam-Boilers, (for which I have obtained a patent in Germany,
No. 53,449, dated October 29, 1889,) of which the following is a specification.
This invention relates to a steam boiler in which a thorough crculationwof the water, and consequently a thorough utilization of fuel, takes place. Hand holes having covers of peculiar construction permit ready access to the feed and heating tubes.
In the accompanying drawings: Figure lis a vertical longitudinal section of my improved boiler; Fig. 2 a vertical longitudinal section of a double boiler; Fig. 3 ahorizontal section on line ne, Fig. 2; Fig. 4 a cross section on line y, y, Fig. 3. l
The water room into which enter the feed tubes r, and the heating tubes r, is bya partition w, divided into two compartments c, c. The feed tubes r', enter the compartment c, while the heating tubes r, enter the compartment c. Two upper water boilers A, are placed above the tubes andare connected with each other, near their rear end by a coupling o. One of the boilers A, is connected to the compartment c, while the other boiler is connected to the compartment c. The water fed into one of the boilers at e, flows to the rear of the boiler and passes through connection o, into the second boiler. Here the water iiows toward the front and enters the compartment lc. It flows from compartment c, through thefeed tubes fr', and through the rear open ends of the same into the heating tubes r. Through the tubes r the water flows forward entering compartment c', which as has already been stated is connected to the first boiler A. Thus a thorough circulation is effected. The formation of steam commences in the heating tubes r, which are made quite thin and which are subjected to the action of the heat from furnace B. The heat travels as indicated by the arrows Fig. 1.
By causing the steam to come into contact with the feed water, the latter is heated suddenly and will consequently cause the mud and sediment to be quickly and thoroughlyT separated. This separation takes place principlly in the rear ends of boilers A, back of the connection c. The boilers A, are slightly inclined from front to rear and in their rear end no circulation takes place and consequently these rear ends form convenient mud chambers, from which the mud may be readily removed through suitable openings.
In lieu of using two connected upper boilers A, I may, of course, use one single boiler provided with a perforated partition.
In Figs. 2 to 4, I employ a double system of tubes under each of the upper boilers, which latter are made of increased length.
Above the boilers A, and connected therewith by tubes g, g, is a superheater u, filled with steam. The left hand tube boiler,'sup plies the steam-carrying-water through connections s, to one upper boiler A, While the right hand tube boiler supplies the steam-carrying-water through connections s2, to the other upper boiler. Within the upper boiler the steam separates from the water and the steam that has entered through connections s, passes through tube g, into the superheater u, while the steam that has entered through connection s2, into the other boiler, passes in the opposite direction through tube g', into the superheater. The water flows through the connections s2, s', into the chambers c, and together with the fresh feed water introduced vat t', passes through the tubes in the manner already described.
1. The combination of two connected water boilers A, with a Water room divided into two compartments c, c', and with a series of feed pipes and heating pipes, all being so constructed that one of the boilers together with the feed pipes communicate with compartment c, while the other boiler and the heating pipes communicate with compartment c', substantially as specified.
2. The combination of two sets of feed pipes and heating pipes, with divided water room c, c', and with two water boilers A, all being so constructed that the compartment c, of one specification in the presence of two subscribing Witnesses.
GUSTAV DRR.
A, at the other end, while the compartment 5 c', connects with the boilers at the opposite ends, substantially as specified.
/Vitnesses:
HANS FRIEDRICH,
In testimony whereof I have signed this i D. J. PARTELLO.
US501612D Gustav durr Expired - Lifetime US501612A (en)

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