US137497A - Improvement in steam-boiler feeders - Google Patents
Improvement in steam-boiler feeders Download PDFInfo
- Publication number
- US137497A US137497A US137497DA US137497A US 137497 A US137497 A US 137497A US 137497D A US137497D A US 137497DA US 137497 A US137497 A US 137497A
- Authority
- US
- United States
- Prior art keywords
- water
- boiler
- steam
- cylinder
- case
- 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
Links
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 34
- 230000006698 induction Effects 0.000 description 3
- 244000187656 Eucalyptus cornuta Species 0.000 description 1
- 238000010276 construction Methods 0.000 description 1
Images
Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F22—STEAM GENERATION
- F22D—PREHEATING, OR ACCUMULATING PREHEATED, FEED-WATER FOR STEAM GENERATION; FEED-WATER SUPPLY FOR STEAM GENERATION; CONTROLLING WATER LEVEL FOR STEAM GENERATION; AUXILIARY DEVICES FOR PROMOTING WATER CIRCULATION WITHIN STEAM BOILERS
- F22D5/00—Controlling water feed or water level; Automatic water feeding or water-level regulators
- F22D5/02—Controlling water feed or water level; Automatic water feeding or water-level regulators with an intermediate compartment from which the water is fed by gravity after mechanically moving the compartment, the movement being controlled according to water level
-
- Y—GENERAL 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
- Y10—TECHNICAL SUBJECTS COVERED BY FORMER USPC
- Y10T—TECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
- Y10T137/00—Fluid handling
- Y10T137/2931—Diverse fluid containing pressure systems
- Y10T137/2937—Gas pressure discharge of liquids feed traps [e.g., to boiler]
- Y10T137/2978—Gas pressure controlled by manual or cyclic means
- Y10T137/2981—Movable trap chamber
Definitions
- the first part of our invention relates to the construction of a steam-boiler feeder for impelling feed-water into a steam-generator or boiler in variable quantities, according to the amount required for the boiler, by the use of a vertical cylinder having cavities in it, and being revolved in a semi-cylindrical concave that is connected with the 'boiler, or a steam and water chamber that is connected with the boilerand is provided with the necessary induction and eduction pipes.
- the second part relates to the manner of applying it to the boiler and adjusting it to the water-line in the boiler, so that it may impel more water when the water is low in the boiler, and less when the water is high in the same.
- the third part relates to applying to the case of the feeder one or more indicators to show the height of the water in the feeder.
- Figure 1 is a vertical section of the whole feeder and Fig. 2 a horizontal section of the same.
- A is the case, that contains steam and water, also the cylinder. To it the induction and eduction pipes may be attached.
- the case may be made to be attached to the head or side of a boiler, and when thus attached the steampipe and eduction-water pipes are not needed.
- the holes for each will allow the steam and water to pass through. It may be made any required size or shape that will give sufficient concave surface for the cylinder and space for the steam and water. Its sides may all be made together, and be provided with bottom and top plates. There must be a journal-box provided with stuffing for the spindle of the cylinder to pass through and revolve in and prevent steam or water escaping.
- the other plate has a pivot-hole for the pivot on the other end of the cylinder.
- this case there is a semi-cylindrical concave for the cylinder to revolve in.
- the concave must be made smooth, so that the cylinder may be made to fit so that steam or water cannot escape.
- a channel made in connection with the h ole for the induction-water pipe This channel should be as long as the cavities in the cylinder.
- the vertical length of this case should be made to correspond with the distance between high and low water that is safe and proper to use in the boiler, and the case should be set or attached to the boiler so that the lower end will be near the low-water line of the boiler.
- B is the cylinder. It must be made round and smooth, so that it may revolve steam and water tight in the concave in the case A.
- This cylinder has a pivot at one end that is fitted to a pivot-hole in the plate; the other end has a spindle that passes through a stuffing box in the plate, and at the end or any part outside the case a band or gear wheel is attached to turn the cylinder by. It may be turned by any kind of power, and may be turned by the engine that is used with the boiler to which the feeder is applied.
- This cylinder has one or more cavities in it nearly the whole length for receiving the feed-water when it is revolved.
- the cavity is filled with steam and water, which is carried around to the channel for the feed-water, where the steam in the cavity is condensed by the feed water and its place filled with water, which is then carried around to the chamber 0, where it is emptied into the chamber, and the cavity again filled with steam to perform the same operation again.
- the number and size of these cavities may be varied to suit the ter.
- 0 is a chamber in the case that holds both steam and wa- Into it the feed-water is discharged, and from it the water is discharged into the boiler, and into it steam comes from the boiler, so that the steam and water in it very nearly correspond with the same in the boiler.
- the size may be varied to suit the various conditions in which the feeder may be used.
- the feeder may be made to or with the head or side of the boiler, so that the steam and water in the boiler will perform the same operation as it does in the chamber 0.
- D is the induction feed-water pipe. It extends through the side of the case A into the channel in the concave for the cylinder 13. From the case it extends to the reservoir, which, in most circumstances, should be higher than the feeder.
- E is a steam-pipe that conveys steam from the boiler into the chamber 0.
- F is the water-pipe that conveys water from the chamber 0 to the boiler-
- the length or size of these pipes may be varied to suit the size of the feeder or the conditions in which it is used, and they may be provided with stop-cocks when desired.
- G is an indicator. It may be made with or attached to the case A in any ordinary manner. is to allow the engineer to see how high or low the water is in the chamber 0.
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- Engineering & Computer Science (AREA)
- Physics & Mathematics (AREA)
- Thermal Sciences (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Drying Of Solid Materials (AREA)
- Vaporization, Distillation, Condensation, Sublimation, And Cold Traps (AREA)
- Control Of Steam Boilers And Waste-Gas Boilers (AREA)
Description
A. SPENCER, Jr. 8:. T. C. SPENCER.
Steam Boiler Feeders.
N 137,497 PatentedApriH,1873.
Fig.1.
We'liwsswes.
UNITED STATES PATENT OFFICE- ABEL sPENoER, JR, 0E PENN YAN, AND THEODORE o. SPENCER, 0E ELMIRA, ASSIGNORS 0E ONE-THIRD THEIR RIGHT TO E. M. BIRDSALL, oE PENN YAN, NEW YORK.
IMPROVEMENT IN STEAM-BOILER FEEDERS.
Specification forming part of Letters Patent No. 137,497, dated April 1, 1873; application filed December .3, 1872.
To all whom it may concern.-
Be it known that we, ABEL Sr NcER, Jr., of Penn Yan, in the county of Yates and State of New York, and THEODORE O. SPENCER, of Elmira, in the county of Ohemung and State aforesaid, have inventedcertain Improvements in Steam-Boiler Feeders, of which the followin g is a specification:
The first part of our invention relates to the construction of a steam-boiler feeder for impelling feed-water into a steam-generator or boiler in variable quantities, according to the amount required for the boiler, by the use of a vertical cylinder having cavities in it, and being revolved in a semi-cylindrical concave that is connected with the 'boiler, or a steam and water chamber that is connected with the boilerand is provided with the necessary induction and eduction pipes. The second part relates to the manner of applying it to the boiler and adjusting it to the water-line in the boiler, so that it may impel more water when the water is low in the boiler, and less when the water is high in the same. The third part relates to applying to the case of the feeder one or more indicators to show the height of the water in the feeder.
Figure 1 is a vertical section of the whole feeder and Fig. 2 a horizontal section of the same.
The letters of reference refer to the same parts in each.
A is the case, that contains steam and water, also the cylinder. To it the induction and eduction pipes may be attached. The case may be made to be attached to the head or side of a boiler, and when thus attached the steampipe and eduction-water pipes are not needed. The holes for each will allow the steam and water to pass through. It may be made any required size or shape that will give sufficient concave surface for the cylinder and space for the steam and water. Its sides may all be made together, and be provided with bottom and top plates. There must be a journal-box provided with stuffing for the spindle of the cylinder to pass through and revolve in and prevent steam or water escaping. The other plate has a pivot-hole for the pivot on the other end of the cylinder. In one side of this case there is a semi-cylindrical concave for the cylinder to revolve in. The concave must be made smooth, so that the cylinder may be made to fit so that steam or water cannot escape. In the concave is a channel made in connection with the h ole for the induction-water pipe. This channel should be as long as the cavities in the cylinder. The vertical length of this case should be made to correspond with the distance between high and low water that is safe and proper to use in the boiler, and the case should be set or attached to the boiler so that the lower end will be near the low-water line of the boiler. B is the cylinder. It must be made round and smooth, so that it may revolve steam and water tight in the concave in the case A. It has a pivot at one end that is fitted to a pivot-hole in the plate; the other end has a spindle that passes through a stuffing box in the plate, and at the end or any part outside the case a band or gear wheel is attached to turn the cylinder by. It may be turned by any kind of power, and may be turned by the engine that is used with the boiler to which the feeder is applied. This cylinder has one or more cavities in it nearly the whole length for receiving the feed-water when it is revolved.
It should be made nearly the same length as the vertical length of the case A, so that it may act at all conditions of the water in the boiler. As one-half of the cylinder is in the chamber 0, it will carry in its revolutions both steam and water, and the amount of either corresponds with the height of water in the boiler and chamber 0, so that with low water it feeds more and with high water less, thus adapting the amount fed in to the want of the boiler, thus allowing the boiler to regulate its own feeder. By revolving this cylinder the cavity is filled with steam and water, which is carried around to the channel for the feed-water, where the steam in the cavity is condensed by the feed water and its place filled with water, which is then carried around to the chamber 0, where it is emptied into the chamber, and the cavity again filled with steam to perform the same operation again. The number and size of these cavities may be varied to suit the ter.
amount of feed-water required. 0 is a chamber in the case that holds both steam and wa- Into it the feed-water is discharged, and from it the water is discharged into the boiler, and into it steam comes from the boiler, so that the steam and water in it very nearly correspond with the same in the boiler. The size may be varied to suit the various conditions in which the feeder may be used. The feeder may be made to or with the head or side of the boiler, so that the steam and water in the boiler will perform the same operation as it does in the chamber 0. D is the induction feed-water pipe. It extends through the side of the case A into the channel in the concave for the cylinder 13. From the case it extends to the reservoir, which, in most circumstances, should be higher than the feeder. E is a steam-pipe that conveys steam from the boiler into the chamber 0. F is the water-pipe that conveys water from the chamber 0 to the boiler- The length or size of these pipes may be varied to suit the size of the feeder or the conditions in which it is used, and they may be provided with stop-cocks when desired. G is an indicator. It may be made with or attached to the case A in any ordinary manner. is to allow the engineer to see how high or low the water is in the chamber 0.
What We claim as our invention is- The combination of the case A, chambered cylinder B, chamber G, pipes D E F, and one or more indicators, G, all constructed and operated substantially as and for the purposes set forth.
ABEL SPENCER, J R. THEODORE O; SPENCER. Witnesses:
JOHN L. LEWIS, CHARLES KETGHUM.
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Publications (1)
| Publication Number | Publication Date |
|---|---|
| US137497A true US137497A (en) | 1873-04-01 |
Family
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Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US137497D Expired - Lifetime US137497A (en) | Improvement in steam-boiler feeders |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US137497A (en) |
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