US538813A - Warm-air apparatus - Google Patents
Warm-air apparatus Download PDFInfo
- Publication number
- US538813A US538813A US538813DA US538813A US 538813 A US538813 A US 538813A US 538813D A US538813D A US 538813DA US 538813 A US538813 A US 538813A
- Authority
- US
- United States
- Prior art keywords
- air
- warm
- cold
- rooms
- room
- 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
- 230000001105 regulatory effect Effects 0.000 description 5
- 206010022000 influenza Diseases 0.000 description 2
- 239000000446 fuel Substances 0.000 description 1
- 230000000717 retained effect Effects 0.000 description 1
- 238000010792 warming Methods 0.000 description 1
- XLYOFNOQVPJJNP-UHFFFAOYSA-N water Substances O XLYOFNOQVPJJNP-UHFFFAOYSA-N 0.000 description 1
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Classifications
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F24—HEATING; RANGES; VENTILATING
- F24F—AIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
- F24F13/00—Details common to, or for air-conditioning, air-humidification, ventilation or use of air currents for screening
- F24F13/02—Ducting arrangements
- F24F13/04—Air-mixing units
Definitions
- Figure 1 is a vertical section of a portion Fig. 2 is a similar view on the line a: m of Fig. 1, and Fig. 3 is a transverse horizontal section on the line ,2 z of Fig. 1.
- This invention is designed for use in connection with what is known as the Smead system of warming and ventilatingbuildings, in which system both the warm and the cold air are. brought into the room through a single flue, in which is arranged what is termed a mixing valve, by the adjustment of which the relative proportions of cold and warm air can be varied at will.
- A indicates the chamber in which theheating apparatus is located, and which may be either a furnace or a steam or hot water apparatus, and B and C indicate rooms to be heated in the stories above.
- the cold air enters not only the heat-chamber but also the fines through the opening 0 at the bottom of the fines, while the warm air enters the flues through the opening above, the Volume of both cold and warm air being regulated by the hinged valve I which is so arranged as to let on the warm air in proportion as it shuts off the cold air, and vice versa', and thus by mingling the warm'and cold air as desired, secure the proper temperature in the room.
- valve I may be adjusted, there will be a stronger current ofair in some of the tines than in others, and that consequently some of the rooms will get more air than others.
- each flue -an additional valve or damper H, which can be adjusted independently for each flue, and alsoindepeudentlyofthevalvesI.
- These may be arranged in any suitable manner so that they can be closed and opened more or less at will.
- a simple plan, as shown in Figs. 1, 2, and 3, is to make them in the form of a plate, with suitable guides, to enable them to be raised or lowered at will.
- For the purpose of adjusting them they are suspended by a chain or wire cord 72 which passes over pulleys r 'r as shown, and which has a weight or ICO to connect a chain or cord near each upper corner as shown in Fig.
- valves II act in connection with the mixing valve I, as equalizers of the air currents in the sev eral fines; and that by the proper adjustment of the valves, not only the temperature but also the volume of air supplied to each and all the rooms can be rendered perfectly uniform.
- This improvement is simple and cheap, and can be readily applied in all cases where the warm and cold air are both brought through the same fine, and a mixing valve is used as in the Smead system.
- Another advantage of this arrangement is, that it enables the flow of both cold and warm air to be shutoff entirely when desired. In some instances schools close for instance at eleven a. m., and then open again in the afternoon or evening; and in such cases, by dropping the valve I, the cold air is shut off, and by raising the valve H the flow of the Warm air is shut off, and as no air can enter at such times, the heat in the rooms will be retained therein to a considerable extent.
- thermograph By means of a thermograph connecting the various rooms to be warmed, with the janitors room, he can at any instant ascertain the temperature of each room, and then adjust the valves I so as to increase or decrease the flow of cold air into each separately, and thus equalize the temperature in all the rooms, while the current in the separate lines can be regulated by the valves H.
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- Engineering & Computer Science (AREA)
- Chemical & Material Sciences (AREA)
- Combustion & Propulsion (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Duct Arrangements (AREA)
Description
(No Model.)
S m A M An DDA M mm W TU Pate ted May '7, 1895.
furnace,
m: ponms MZYERS w. wo'ruu'mou WASNINDYON. u. c.
of a building on the line y yof Fig. 2.
UNITED STATES PATENT DFFICE.
JAMES BARTLETT, OF TOLEDO, AND EUGENE B. BARTLETT, OF CLEVE- LAND, OHIO. I
WARM-AIR APPARATUS.
SPECIFICATION forming part of Letters Patent No. 538,813, dated May 7, 1895.
Application filed December 17, 1894. Serial No. 532,098- (No model.)
consists in means for regulating the flow of' the air in or 'to the several rooms for the purpose of regulating and equalizing not only the heat but also the volume of air entering the various rooms of the building, as herein-- after more fully described.
Figure 1 is a vertical section of a portion Fig. 2 is a similar view on the line a: m of Fig. 1, and Fig. 3 is a transverse horizontal section on the line ,2 z of Fig. 1.
This invention is designed for use in connection with what is known as the Smead system of warming and ventilatingbuildings, in which system both the warm and the cold air are. brought into the room through a single flue, in which is arranged what is termed a mixing valve, by the adjustment of which the relative proportions of cold and warm air can be varied at will.
In the drawings, A indicates the chamber in which theheating apparatus is located, and which may be either a furnace or a steam or hot water apparatus, and B and C indicate rooms to be heated in the stories above.
It is customary in the Smead system to build the fines F and F for the warm air alongside of one another, one for each room, there being often four or more of these fines opening out from one heat chamber, two only being shown in this case, as they suffice to illustrate the invention. As shown in Figs. 1 and 2, these fines are usually of different heights, the flues F for the first story stoppingat that story, while the flue F extends to the second story, as indicated by the dotted lines in Fig. 2, the air entering the room B through the guard a, and the room 0 through the guard at, and so on for any numberof stories, there being no registers or valves at these guards. In the Smead system as illustrated in this case, the cold air enters not only the heat-chamber but also the fines through the opening 0 at the bottom of the fines, while the warm air enters the flues through the opening above, the Volume of both cold and warm air being regulated by the hinged valve I which is so arranged as to let on the warm air in proportion as it shuts off the cold air, and vice versa', and thus by mingling the warm'and cold air as desired, secure the proper temperature in the room.
Experience has shownthat however the valve I may be adjusted, there will be a stronger current ofair in some of the tines than in others, and that consequently some of the rooms will get more air than others.
' wind. For these various reasons it is difficult by this system to so regulate thesupply of air entering the various rooms, in a large school building for instance, as to secure a uniform volume of air in each.
To remedy this difficulty is the object of our invention, and to accomplish this result we provide at the warm air opening into each flue,-an additional valve or damper H, which can be adjusted independently for each flue, and alsoindepeudentlyofthevalvesI. These may be arranged in any suitable manner so that they can be closed and opened more or less at will. A simple plan, as shown in Figs. 1, 2, and 3, is to make them in the form of a plate, with suitable guides, to enable them to be raised or lowered at will. For the purpose of adjusting them, they are suspended by a chain or wire cord 72 which passes over pulleys r 'r as shown, and which has a weight or ICO to connect a chain or cord near each upper corner as shown in Fig. 2, and pass them over pulleys, and then unite them to asingle cord by which to operate them as described. It will thus be seen that the object of these valves II is to act in connection with the mixing valve I, as equalizers of the air currents in the sev eral fines; and that by the proper adjustment of the valves, not only the temperature but also the volume of air supplied to each and all the rooms can be rendered perfectly uniform.
This improvement is simple and cheap, and can be readily applied in all cases where the warm and cold air are both brought through the same fine, and a mixing valve is used as in the Smead system. Another advantage of this arrangement is, that it enables the flow of both cold and warm air to be shutoff entirely when desired. In some instances schools close for instance at eleven a. m., and then open again in the afternoon or evening; and in such cases, by dropping the valve I, the cold air is shut off, and by raising the valve H the flow of the Warm air is shut off, and as no air can enter at such times, the heat in the rooms will be retained therein to a considerable extent. So too, in very cold weather, at night when the fire is out, the flow of the air can be shut off entirely, by which means the rooms will be cooled much less during the night, and will require a fire for a shorter period in the morning to bring the air in the rooms to the proper temperature, in both of which cases a saving of fuel will be etfected.
By means of a thermograph connecting the various rooms to be warmed, with the janitors room, he can at any instant ascertain the temperature of each room, and then adjust the valves I so as to increase or decrease the flow of cold air into each separately, and thus equalize the temperature in all the rooms, while the current in the separate lines can be regulated by the valves H.
Having thus fully described our invention, what we claim is- 1. In combination with a single flue arranged to conduct both cold and warm air to a room, and having a mixing valve I arranged therein to regulate the relative supply of the cold and the warm air, a valve H arranged to close the warm air inlet to said flue more or less independently of the mixing valve, substantially as shown and described.
2. The combination in a building, of two or more fines of diiferent heights, each arranged to conduct both warm and cold airto a room therein, and having a mixing valve I for regulating the proportion of warm and cold air in each' flue, a separate valve II located at the warm air inlet of each flue arranged to be operated independently of the mixing valve, substantially as shown and described.
In Witness whereof we hereunto set our hands in the presence of two witnesses.
J AMES BARTLET EUGENE B. BARTLET'I. Witnesses:
J H. KUGEL, F. S. BARTON.
Publications (1)
| Publication Number | Publication Date |
|---|---|
| US538813A true US538813A (en) | 1895-05-07 |
Family
ID=2607574
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| US538813D Expired - Lifetime US538813A (en) | Warm-air apparatus |
Country Status (1)
| Country | Link |
|---|---|
| US (1) | US538813A (en) |
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0
- US US538813D patent/US538813A/en not_active Expired - Lifetime
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