US615452A - Tht morris peters co - Google Patents

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US615452A
US615452A US615452DA US615452A US 615452 A US615452 A US 615452A US 615452D A US615452D A US 615452DA US 615452 A US615452 A US 615452A
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boiler
chamber
tubes
steam
drums
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F22STEAM GENERATION
    • F22BMETHODS OF STEAM GENERATION; STEAM BOILERS
    • F22B21/00Water-tube boilers of vertical or steeply-inclined type, i.e. the water-tube sets being arranged vertically or substantially vertically
    • F22B21/34Water-tube boilers of vertical or steeply-inclined type, i.e. the water-tube sets being arranged vertically or substantially vertically built-up from water tubes grouped in panel form surrounding the combustion chamber, i.e. radiation boilers
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S122/00Liquid heaters and vaporizers
    • Y10S122/03Gas flow baffles

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  • my invention consists, generally stated, in a boiler formed of annular upper and lower drums having exposed inner and outer faces and a series of vertical pipes connecting said annular drums with a 0 vertical central pipe extending within the central space formed by the annular drums and within the series of vertical pipes connecting the same, so that all the products of combustion ascending Within the generator will pass 3 5 in contact with the series of tubes connecting the drums or the central pipe above referred to or with the inner or outer walls of the drums and can be deflected into contact with the tubes, so as to cause large absorption of 0 heat by the water in the tubes.
  • the central pipe when forming part of the generator itself, acts to provide for the downward currents in the regular boiler circulation, so aiding and increasing the circulation thereof.
  • Fig. 2 is a crossseotion on the line 2 2, Fig.
  • Fig. 3 is a longitudinal section illustrating the use of the invention when the central pipe is employed as an air-heating means 5 5 instead of as the down-circulation pipe of the steam-generator.
  • the steam-generator illustrated has advantages when used in connection with the gas-generators or other plants in which the heat of the waste products or escaping gas is utilized for the generation of the steam, I have illustrated it in a plant of that character, the coal or fire chamber A being located in position to deliver the flame or heated prod ucts generated therein into the fire-chant ber of the boiler when necessary or being located in the line of escape of the heated products or gases from other sources, such heated products or gases entering the fire-chamber A through the port B.
  • the fire-chamber is constructed with a suitable grate a, air-supply entrance a, and feeding-chute of, with the feeding-hopper a the parts being so constructed as to provide for the feeding of the chamber with the necessary coal or other fuel without permitting escape of the gases from the furnace or other source.
  • the fire-chamber A is therefore preferably operated as an ordinary gas-producer. It has any suitable doors in its side walls to provide for the removal of ashes, &c., such as the doors a and a and has the air-entrance port a in the upper part of the chamber.
  • the boilerfurnace chamber D Located close to this fire-chamber and separated therefrom by the bridge or wall a is the boilerfurnace chamber D, which is formed within a large brick-lined casing cl and extends up for a considerable height, the casing being either separated from or forming part of the casing or inclosure forthe fire-chamber A.
  • the boiler E which is formed of the upper annu- 5 lar drum F and lower annular drum G, with a series of vertical connecting-tubes e.
  • the drums are made either of wrought or cast metal, as desired, and for their support may be braced interiorly, as shown, the brace-rods f connecting to the top and bottom of the drum and to a stirrup f between them.
  • drums are of annular form, as above stated, for the purpose of exposing both their inner and outer surfaces to the heat within the firechamber and for the further purpose of obtaining the desired distribution of the boiler tubes or fines e, the distribution of which is more clearly shown in Fig. 2, the tubes practically filling the boiler-space except in the center thereof.
  • the central pipe h which is of considerably larger section than the boiler-tubes eand when forming part of the boiler system receives the water from the upper drum F and forms the doWntake-pipe to the lower drum G.
  • the crossplates 7t extending out from the central tube to or within the boiler-tubes 6, so as to throw the heated products of combustion of gases in among the same, while the plates extend among the boiler-tubes e from the brick lining of the boiler-chamber inwardly toward but not to the central tube h. They therefore serve to throw the products of combustion, &c., inwardly toward the central tube, causing a diagonal or cross circulation for the heated products across the outer or boiler tubes and into contact with the central tube.
  • the boiler has the ordinary water-indicator Z, which communicates with the, upper drum F and projects through the casing d.
  • steam-outlet pipes m for conducting the steam to the point of use.
  • I provide two outlets at the upper end of the boiler-chamber B, the outlet it serving to permit the escape of the highly-heated products of combustion and forming a stand-pipe, which is controlled by a suitable valve n, while the outlet 1) leads from the upper part of the boiler-chamber to any suitable storagetank to receive the gases which are to bev stored after passing from the gas-generator through the steam-generator.
  • the steam-generator by providing for the carrying ofthe flame, heated products, or gases around and among the tubes thereof and into contact with the central pipe and with the inner and outer surfaces of the annular drums provides for the absorption of the greater portion of the heat entering the chamber either from the heated products of the generator-gas or from the gas to be stored, or, when this is not sufficient for raising the desired amount of steam, from the flame and heat generated in the coal chamber or producer A.
  • the boilerchamber positive contact of the heated products with the numerous boiler tubes and the downtake-pipe is assured on account of the cross or baflie plates located at intervals therein.
  • the central pipe also provides for the free and rapid circulation of the water within the boiler upwardly through the tubes e and into the upper drum and thence by the nipples or connecting-pipes'i in slower course downwardly through the said central pipe to the lower annular drum and into the same at a point above the base thereof, so that all sediment can be collected in the lower part of the boiler, while as the boiler-tubes are all vertical there is no liability of scaling or incrustation therein.
  • the large capacity of the central tube h provides for the down current, even though located in the center or hottest part of the boiler-chamber, while the numerous boiler-tubes e divide the Water into such streams as to expose the same to the heated products, &c., and cause the rapid up current and the quick generation of steam therein.
  • the ring plate 12 may be hung from the upper flange u midway between it and-the lower such flange by suitable tie-rods 12.
  • a steam-generator formed of a boiler or generator chamber, upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubesconnecting the same, and a central vertical pipe extending between the drums and within the annular spaces of the drums, substantially as set forth.
  • a steam-generator formed of a boiler or generator chamber, upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the annular drums and Within the annular spaces of said drums, and cross or baffie plates for directing the current in the boiler-chainber, substantially as set forth.
  • a steam-generator formed of a boiler or generator chamber, upper and lower annular drums and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the annular drums and within the annular spaces of said drums, and cross or baffle plates for directing the current in the boiler-chamber, said baffle-plates contacting alternately with the central pipe and the wall of the boiler-chamber, substantially as set forth.
  • a steam-generator formed of a Vertical boiler-chamber having upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the drums and within the annular spaces thereof and nipples connectin g the vertical pipe with the annular drums, substantially as set forth. 7 A

Description

No. 6l5,452.
Patented Dec. 6, I898. J. .L. HASTINGS.
STEAM GENERATOR.
(Application filed June 11, 1897.) (lo Model.) 2 Shanta-Sheet l.
24d WW WW3 m w ms PEFEDIS 05.. mmu'mc" wasmum'ou. n. c.
No. 65,452. Patented m. 6, I898. J. L. HASTINGS.
STEAM GENERATOR.
(Application filed June 11, 1697.) (No Model) 2 Sheohr-Sheet 2.
M ar
- UNITED STATES PATENT OFFICE.
JAMES L. HASTINGS, OF PHILADELPHIA, PENNSYLVANIA, ASSIGNOR TO THE STANDARD GAS COMPANY OF AMERICA, OF SAME PLACE.
STEAM-G EN ERATOR.
SPECIFICATION forming part of Letters Patent No. 615,452, dated December 6, 1898.
Application filed June 11, 1897.
To all whom it may concern:
Be it known that 1, JAMES L. HASTINGS, a resident of Philadelphia, in the county of Philadelphia and State of Pennsylvania, have 5 invented a new and useful Improvement in Steam-Generators; and I do hereby declare the following to be a full, clear, and exact description thereof.
My invention relates to steanrgenerators, to its object being to provide a form of steamgenerator in which opportunity for absorption of the heat from the flame and heated products is provided while the same are ascending in upward course, and in addition to l 5 that provision is made for proper circulation of the water, so as to provide for the rapid ascending and descending currents in the boiler, which gives free opportunity for escape of steam. Another point of advantage 2o aimed at is to provide a form of boiler which has advantages for absorption of the heat from the waste products in gas-manufacturing plants, furnaces, &c., when located close thereto.
To these ends my invention consists, generally stated, in a boiler formed of annular upper and lower drums having exposed inner and outer faces and a series of vertical pipes connecting said annular drums with a 0 vertical central pipe extending within the central space formed by the annular drums and within the series of vertical pipes connecting the same, so that all the products of combustion ascending Within the generator will pass 3 5 in contact with the series of tubes connecting the drums or the central pipe above referred to or with the inner or outer walls of the drums and can be deflected into contact with the tubes, so as to cause large absorption of 0 heat by the water in the tubes. The central pipe, when forming part of the generator itself, acts to provide for the downward currents in the regular boiler circulation, so aiding and increasing the circulation thereof.
To enable others skilled in the art to employ my invention, I will describe the same more fully, referring to the accompanying drawings, in which-- Figure Us a vertical central section of the 50 steam-generator and the fire-chamber which is preferably used in connection therewith.
Serial No. 640,340. (No model.)
Fig. 2 is a crossseotion on the line 2 2, Fig.
1; and Fig. 3 is a longitudinal section illustrating the use of the invention when the central pipe is employed as an air-heating means 5 5 instead of as the down-circulation pipe of the steam-generator.
Like letters indicate like parts in each of the figures.
As the steam-generator illustrated has advantages when used in connection with the gas-generators or other plants in which the heat of the waste products or escaping gas is utilized for the generation of the steam, I have illustrated it in a plant of that character, the coal or fire chamber A being located in position to deliver the flame or heated prod ucts generated therein into the fire-chant ber of the boiler when necessary or being located in the line of escape of the heated products or gases from other sources, such heated products or gases entering the fire-chamber A through the port B.
The fire-chamber is constructed with a suitable grate a, air-supply entrance a, and feeding-chute of, with the feeding-hopper a the parts being so constructed as to provide for the feeding of the chamber with the necessary coal or other fuel without permitting escape of the gases from the furnace or other source. The fire-chamber A is therefore preferably operated as an ordinary gas-producer. It has any suitable doors in its side walls to provide for the removal of ashes, &c., such as the doors a and a and has the air-entrance port a in the upper part of the chamber. Located close to this fire-chamber and separated therefrom by the bridge or wall a is the boilerfurnace chamber D, which is formed within a large brick-lined casing cl and extends up for a considerable height, the casing being either separated from or forming part of the casing or inclosure forthe fire-chamber A. Within this boilerchamber is located the boiler E, which is formed of the upper annu- 5 lar drum F and lower annular drum G, with a series of vertical connecting-tubes e. The drums are made either of wrought or cast metal, as desired, and for their support may be braced interiorly, as shown, the brace-rods f connecting to the top and bottom of the drum and to a stirrup f between them. The
IOO
drums are of annular form, as above stated, for the purpose of exposing both their inner and outer surfaces to the heat within the firechamber and for the further purpose of obtaining the desired distribution of the boiler tubes or fines e, the distribution of which is more clearly shown in Fig. 2, the tubes practically filling the boiler-space except in the center thereof. In this central portion is the central pipe h, which is of considerably larger section than the boiler-tubes eand when forming part of the boiler system receives the water from the upper drum F and forms the doWntake-pipe to the lower drum G. In such case it is connected by large nipples or connecting-pipes t' with bot-h the upper and the lower drum, connecting with the upper drum below the water level thereof and with the of the space of the boiler-chamber is occu-' pied either by the vertical boiler-tubes or by the central tube. The flame, heated products, or gases will therefore in ascending the boiler travel upwardly. in contact with the several tubes thereof and impart their heat thereto. In order to prevent the heated products or gases from tollowing a straight course upwardly around the central pipe h, I provide a series of cross baffle-plates 7c 76', filling the space between the central tube and the outer series of tubes, or, if desired, and as more clearly shown in Fig. 1, forming a circuitous course through the boiler-chamber, the crossplates 7t extending out from the central tube to or within the boiler-tubes 6, so as to throw the heated products of combustion of gases in among the same, while the plates extend among the boiler-tubes e from the brick lining of the boiler-chamber inwardly toward but not to the central tube h. They therefore serve to throw the products of combustion, &c., inwardly toward the central tube, causing a diagonal or cross circulation for the heated products across the outer or boiler tubes and into contact with the central tube. The boiler has the ordinary water-indicator Z, which communicates with the, upper drum F and projects through the casing d. It is also provided with one or more steam-outlet pipes m for conducting the steam to the point of use. Where the steam-generator is located in connection witha gas-manufacturing plant, I provide two outlets at the upper end of the boiler-chamber B, the outlet it serving to permit the escape of the highly-heated products of combustion and forming a stand-pipe, which is controlled by a suitable valve n, while the outlet 1) leads from the upper part of the boiler-chamber to any suitable storagetank to receive the gases which are to bev stored after passing from the gas-generator through the steam-generator.
As so constructed, it is evident that the steam-generator by providing for the carrying ofthe flame, heated products, or gases around and among the tubes thereof and into contact with the central pipe and with the inner and outer surfaces of the annular drums provides for the absorption of the greater portion of the heat entering the chamber either from the heated products of the generator-gas or from the gas to be stored, or, when this is not sufficient for raising the desired amount of steam, from the flame and heat generated in the coal chamber or producer A. In their course through the boilerchamber positive contact of the heated products with the numerous boiler tubes and the downtake-pipe is assured on account of the cross or baflie plates located at intervals therein. The central pipe also provides for the free and rapid circulation of the water within the boiler upwardly through the tubes e and into the upper drum and thence by the nipples or connecting-pipes'i in slower course downwardly through the said central pipe to the lower annular drum and into the same at a point above the base thereof, so that all sediment can be collected in the lower part of the boiler, while as the boiler-tubes are all vertical there is no liability of scaling or incrustation therein. The large capacity of the central tube h provides for the down current, even though located in the center or hottest part of the boiler-chamber, while the numerous boiler-tubes e divide the Water into such streams as to expose the same to the heated products, &c., and cause the rapid up current and the quick generation of steam therein.
There, such as in connection with a gasgenerating plant, it is desirable to have a supply of heated air, this may be obtained by forming the central pipe into an air-heating pipe, as shown in Fig. 3, such construction, while losing the peculiar advantages of circulation above referred to, having advantages in a gas-generating plant where a large sup ply of steam may not be required, and it is also desired to heat the incoming air. In such case the construction is substantially the same, differing only in the following points: The central airpipe 7 passes in a straight course through the top and bottom walls of the boiler-chamber and within, but is not con nected with, either drum, the air being forced by a suitable blower through this pipe and thence to the point where the heated air is to be used. It will be seen that so far as the method of applying the heat is concerned the construction is practically the same; but in order to provide for down circulation it is necessary to employ either enlarged pipes among the smaller boiler-tubes, as indicated in dotted lines at s in Fig. 2, or to accomplish such circulation by a pipe extending outside of the boiler-chamber and connecting the upper and lower drum, as shown at i. As this air-pipe is preferably formed of sections of flanged cast-iron pipe, the flanges u of the sections a of pipe composing the entire vertical pipe 0* may form the cross or bafiie plates, which can be arranged diiferently, if desired. For example, where these flanges to form such baffleplates, in order to locate a like plate between them to prevent the current from hugging or passing up around the central pipe, the ring plate 12 may be hung from the upper flange u midway between it and-the lower such flange by suitable tie-rods 12.
What I claim as my invention, and desire to secure by Letters Patent, is-
1. A steam-generator formed of a boiler or generator chamber, upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubesconnecting the same, anda central vertical pipe extending between the drums and within the annular spaces of the drums, substantially as set forth.
2. A steam-generator formed of a boiler or generator chamber, upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the annular drums and Within the annular spaces of said drums, and cross or baffie plates for directing the current in the boiler-chainber, substantially as set forth.
3. A steam-generator formed of a boiler or generator chamber, upper and lower annular drums and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the annular drums and within the annular spaces of said drums, and cross or baffle plates for directing the current in the boiler-chamber, said baffle-plates contacting alternately with the central pipe and the wall of the boiler-chamber, substantially as set forth.
4. A steam-generator formed of a Vertical boiler-chamber having upper and lower annular drums having exposed inner and outer faces and vertical boiler-tubes connecting the same, and a central vertical pipe extending between the drums and within the annular spaces thereof and nipples connectin g the vertical pipe with the annular drums, substantially as set forth. 7 A
5. The combination of a steam-generator having a boiler-chamber and having therein upper and lower drums and tubes connecting the same, and a coal or fire chamber at one side of and communicating with the boilerchamber and having opposite to the port communicating with the boiler chamber and above the firepot an entrance-passage for heated gases from other sources, substantially as and for the purposes set forth.
In testimony whereof I, the said JAMES L. HASTINGS, have hereunto set my hand.
JAMES L. HASTINGS.
Witnesses:
JAMES I. KAY, ROBERT C. TOTTEN.
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