US900669A - Pumping mechanism. - Google Patents
Pumping mechanism. Download PDFInfo
- Publication number
- US900669A US900669A US43979008A US1908439790A US900669A US 900669 A US900669 A US 900669A US 43979008 A US43979008 A US 43979008A US 1908439790 A US1908439790 A US 1908439790A US 900669 A US900669 A US 900669A
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- Prior art keywords
- chamber
- water
- air
- casing
- pressure
- 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.)
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Classifications
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04B—POSITIVE-DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS
- F04B47/00—Pumps or pumping installations specially adapted for raising fluids from great depths, e.g. well pumps
- F04B47/02—Pumps or pumping installations specially adapted for raising fluids from great depths, e.g. well pumps the driving mechanisms being situated at ground level
- F04B47/04—Pumps or pumping installations specially adapted for raising fluids from great depths, e.g. well pumps the driving mechanisms being situated at ground level the driving means incorporating fluid means
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F04—POSITIVE - DISPLACEMENT MACHINES FOR LIQUIDS; PUMPS FOR LIQUIDS OR ELASTIC FLUIDS
- F04F—PUMPING OF FLUID BY DIRECT CONTACT OF ANOTHER FLUID OR BY USING INERTIA OF FLUID TO BE PUMPED; SIPHONS
- F04F1/00—Pumps using positively or negatively pressurised fluid medium acting directly on the liquid to be pumped
- F04F1/18—Pumps using positively or negatively pressurised fluid medium acting directly on the liquid to be pumped the fluid medium being mixed with, or generated from the liquid to be pumped
Definitions
- My invention relates to pumping ism, and consists of an improved structure comprisingthe combination of a force and lift pump, with means for automatically filling the water receiving cham ber of said force pump by power developed from the air exhausting from said chamber prior to its subsequent filling.
- Figure l is a sectional elevation of the structure forming 'the subject of my invention
- Fig. 2 is a plan view of the same
- Fig. 3 is an enlarged sectional view of a valve employed in connection with the opera-- tion of the structure.
- Pu'mpsof this type are usually submerged in a body of' water, and when filled, a float indicated at.5 and mounted on a rod or stem 6,.risesunder rod so as to operate a valve 7 in theair pipe through the medium of suitable means, such as a slotted arm 8 carried by said valve and connected with said rod at '9.
- suitable means such as a slotted arm 8 carried by said valve and connected with said rod at '9.
- Such action also opens a valve 10 controlling the outlet to the discharge pipe.
- the .stem is proided with collars or projections 11 for engagement by said float; the latter eflecting movement of said rod in both directions by engagement therewith.
- the dischargepipe carries a check-valve 12 to prevent back flow.
- air is directed thereto through the pipe 3, and it will be understood that when the chamber has been emptied of water it contains a large volume of air at the full pressure of the air supply, and such air must be vented from the chamber before it can again be filled with water. Under ordinary circumstances, this air is vented to waste, andit-is' necessary to wait until the chamber again fills by gravity.
- said chamber may pass at constant-pressure a pipe 16 which leads into a sump 17 and 1s provided with a return bend 18 at its lower end.
- a suitable tank 19 Disposed adjacent the sump is a suitable tank 19 having a discharge pipe 20 leading, to the inlet opening of the chamber- 1; such pipe' beingprovided with an ordinary form of check valve 21 'to prevent back-flow'w'hen the water is being forced from the chamber 1.
- I provide an eX- haust valve 24 normally, held closed by" the pressure within thejchamber 1 and provided with a spring 25 whereby it may open under the influence of the same or atmospheric I pressure when the pressure within the cham ber drops to or about 10lbs.
- the pressure reducing valve which is shown in enlarged section in Fig. 3, comprises a shell or casing 26, in which is mounted a piston 27carrying a sleeve 28 adapted when raised to close openings 29 in a pipev .30 affording communication between said.
- the sleeve is maintained normally in the lowered position'by means of a spring 31; the upper end of which engages the top of the shell or casing,'while the lower end is in engagement" with an adjustable nut 32 on an upper stem 33 of said piston,-which also forms a guide for the spring.
- the exhaust valve is arranged to be moved outwardly by'the pressure within the chamber 1 and close an exhaust opening 34; such movement being against the pressure of the spring 25, which may be set by means of an adjustable nut 35 on the stem 37 of the valve so as to open when the pressure within the chamber 1 drops to or below that required to actuate the air lift pump.
- the structure forming the subject of my invention is made entirely of wood, and is of particular value for use in connection with the pumping of acid mine waters, as well as other liquids containing acid; the material employed being substantially unaffected by the liquid pumped, and thereby avoiding a large expense for repairs.
- said means including a reducing valve carried by the casing having a piston, a spring for regulating the movement imparted to saidpiston by the air exhausting from said chamber, and means for delivering air to'the end of the pipe within the sump.
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- Engineering & Computer Science (AREA)
- Mechanical Engineering (AREA)
- General Engineering & Computer Science (AREA)
- Jet Pumps And Other Pumps (AREA)
Description
' J. D. 00x5. PUMPING MECHANISM.
APPLICATION FILED JUNE 22,1908.
Patented 0011.6, 1908.
EDMUND .T. D. com, or HOUTZDALE, PENNSYLVANIA.
PUMPING MECHANISM.
Specification of Letters Patent.
Patented Oct. 6, 1908.
Application filed June 22, 1908. Serial No. 439,790.
To all whom it may concern: I
Be it known that I, EDMUND J D. COKE, a citizen of the United States, and a resident of Houtzdale, Clearfield county, Pennsylvania, have invented certain Improvements in Pumping Mechanism, of which the following 1s a specification.
My invention relates to pumping ism, and consists of an improved structure comprisingthe combination of a force and lift pump, with means for automatically filling the water receiving cham ber of said force pump by power developed from the air exhausting from said chamber prior to its subsequent filling.
My invention is fully shown in the accompanying drawings, in which Figure l, is a sectional elevation of the structure forming 'the subject of my invention; Fig. 2, is a plan view of the same, and Fig. 3, is an enlarged sectional view of a valve employed in connection with the opera-- tion of the structure.
1 represents the chamber of a force pump 2 the discharge pipeleading therefrom; 3 an inlet pipe for air under pressure, and 4 the inlet opening for the water. Pu'mpsof this type are usually submerged in a body of' water, and when filled, a float indicated at.5 and mounted on a rod or stem 6,.risesunder rod so as to operate a valve 7 in theair pipe through the medium of suitable means, such as a slotted arm 8 carried by said valve and connected with said rod at '9. Such action also opens a valve 10 controlling the outlet to the discharge pipe. The .stem is proided with collars or projections 11 for engagement by said float; the latter eflecting movement of said rod in both directions by engagement therewith. The dischargepipe carries a check-valve 12 to prevent back flow. In order to empty this chamber from the water with which it has filled, air is directed thereto through the pipe 3, and it will be understood that when the chamber has been emptied of water it contains a large volume of air at the full pressure of the air supply, and such air must be vented from the chamber before it can again be filled with water. Under ordinary circumstances, this air is vented to waste, andit-is' necessary to wait until the chamber again fills by gravity. I
I propose to'utilize the .air exhausting from the chamber 1, for the purpose of filll mechan form of pumps. the influence of the water and raises said.
said chamber may pass at constant-pressure a pipe 16 which leads into a sump 17 and 1s provided with a return bend 18 at its lower end. Disposed adjacent the sump is a suitable tank 19 having a discharge pipe 20 leading, to the inlet opening of the chamber- 1; such pipe' beingprovided with an ordinary form of check valve 21 'to prevent back-flow'w'hen the water is being forced from the chamber 1.
F on the purpose of conveying water into v the tank.19, I provide a pipe 22 leading from the sump. 17 and having a suitable spout 23 to discharge-into said tank; the
lower end of said pipe 22 receiving the return bend 18 of the 'airexhaust pipe 16 whereby water may beraised therein under the principle of the well-known air lift To permit flow into the chamber 1 after the air has been discharged therefrom, 1
it 1s necessary to equalize the pressure therein,.and for this purpose I provide an eX- haust valve 24 normally, held closed by" the pressure within thejchamber 1 and provided with a spring 25 whereby it may open under the influence of the same or atmospheric I pressure when the pressure within the cham ber drops to or about 10lbs.
The pressure reducing valve which is shown in enlarged section in Fig. 3, comprises a shell or casing 26, in which is mounted a piston 27carrying a sleeve 28 adapted when raised to close openings 29 in a pipev .30 affording communication between said.
chamber and valve casing.- The sleeve is maintained normally in the lowered position'by means of a spring 31; the upper end of which engages the top of the shell or casing,'while the lower end is in engagement" with an adjustable nut 32 on an upper stem 33 of said piston,-which also forms a guide for the spring.
The normal pressure within the chamber cient to raise the piston 27 and cause the 1.10 1 for discharging the water therein, is sufli sleeve to close the openings 29 in the outlet pipe 30. When such pressure has accomplished its work, it will tend to drop in efficiency and the piston will lower sufficiently "to permit a slight opening of'the valve to permit discharge of said air to the pipe 16 at the constant pressure desired, which is controlled by the spring 81. This is intended to be sufficient to maintain the tank sufliciently full of water at all times ,to fill the chamber 1. The exhaust valve is arranged to be moved outwardly by'the pressure within the chamber 1 and close an exhaust opening 34; such movement being against the pressure of the spring 25, which may be set by means of an adjustable nut 35 on the stem 37 of the valve so as to open when the pressure within the chamber 1 drops to or below that required to actuate the air lift pump.
It will be understood therefore in the operation of this structure that it is only necessary to connect a source of supply for air under pressure to the pipe 3, whereupon the water which has been flowing into the chamber 1 will be discharged; then as soon as said water is discharged the supply of air will be cut ofI by the closing of the valve 7 and the air within the chamber will operate to force water into the tank, which in turn will flow back into the chamber lias soon as the pressure within the same is equalized with that of the atmosphere, and the presence of such water within the chamber 1 will again "cause the float 5 to actuate the valve controlling the air pressure and said chamber will empty in the usual manner, and so on.
The structure forming the subject of my invention is made entirely of wood, and is of particular value for use in connection with the pumping of acid mine waters, as well as other liquids containing acid; the material employed being substantially unaffected by the liquid pumped, and thereby avoiding a large expense for repairs.
I claim:
1. The combination of a closed casing forming a water receiving chamber, inlet and outlet openings communicating there-v with, a source of air supply in communication with said casing for discharging water therefrom, means for controlling the passage of air to said chamber, a tank in communication with the water inlet to said chamber, and means for raising Water into said tank by air exhausting from said chamber. i i
2. The combination of a closed casing forming a water receiving chamber, inlet and outlet openings communicating there-- with, a source of air supply in communication with said casing for discharging water therefrom, means for controlling the passage of air to said chamber, .a tank in communication with the water inlet to said chamber, means for raising water into said tank by air exhausting from said chamber, and means for exhausting said air at a constant pressure.
3. The combination of a closed casing forming a water receiving chamber, inlet and outlet openings communicating therewith, a source of air supply connected to said casing for discharging water therefrom, means for controlling the passage of air to said chamber by the water therein, a tank in communication with the water inlet to said chamber, and means for raising water into said tank by the waste air exhausting from said chamber.
4:- The combination of a closed casing forming awater receiving chamber, inlet and outlet openings communicating therewith, a source of air supply connected to said casing for discharging water therefrom, a float for controlling the passage of air to said chamber, a tank 1n communication with the water inlet to said chamber, means for raising water into said tank by the waste air exhausting from said chamber, and means for exhausting said air at constant pressure. p
5. The combination with a pumping mechanism, of a casing forming a chamber to receive water, said casing having inlet and outlet passages, a source of air, supply communicating with said casing for discharging the water therefrom, and means for raising water to a supply tank by the air exhausting from said casing, said means including a reducing valve carried by the casing having a piston, and a spring for regulating the movement imparted to said piston by the air -ex-.
saidwater, a supply tank, a sump, a pipe leading from said sump to the tank, and means for raising water from said sump to the tank by the an exhausting from said casing, said means including a reducing valve carried by the casing having a piston, a spring for regulating the movement imparted to saidpiston by the air exhausting from said chamber, and means for delivering air to'the end of the pipe within the sump.
7. The combination with a pumping mechanism, of a casing forming a chamber to receive water, said casing having inlet and outlet passages, means for discharging said water by air under pressure, and means for raising water by the air exhausting from said casing, said means including a reducing valve carried by the casing, a piston connected thereto, and a spring for regulating the movement imparted to said iston by the air exhaustin from said cham er.
8. The com ination with a pumping mechseer AVAILABLE copy anism, of a casing forming a chamber to reeeivewater, said casing having inlet and outlet passages, means for discharging said water by air under pressure, means for raising water by the air exhausting from said casing, said means including a reducing valve carried by the casing, a piston connected thereto, and a spring for regalating; the movement imparted to said piston by the air exhausting from said-chamber, and an equalizing valve for the reduction of pressure Within the chamber to atmospheric pressure when such pressure falls to or below a predetermined point.
In testimony whereof, I have signed my name to this specification, in the presence of two subscribing Witnesses.
EDMUND J. D. COX 1.
Vitnesses J N0. B. MCGRATII, CHAS. T. KINNRY.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US43979008A US900669A (en) | 1908-06-22 | 1908-06-22 | Pumping mechanism. |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
US43979008A US900669A (en) | 1908-06-22 | 1908-06-22 | Pumping mechanism. |
Publications (1)
Publication Number | Publication Date |
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US900669A true US900669A (en) | 1908-10-06 |
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Family Applications (1)
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US43979008A Expired - Lifetime US900669A (en) | 1908-06-22 | 1908-06-22 | Pumping mechanism. |
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Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2861848A (en) * | 1956-07-19 | 1958-11-25 | Fairchild Engine & Airplane | Lubrication system |
US4643650A (en) * | 1985-11-25 | 1987-02-17 | Khakzad Ghomi Abdol Hossein | Fluid-raising apparatus driven by low hydraulic head |
-
1908
- 1908-06-22 US US43979008A patent/US900669A/en not_active Expired - Lifetime
Cited By (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
US2861848A (en) * | 1956-07-19 | 1958-11-25 | Fairchild Engine & Airplane | Lubrication system |
US4643650A (en) * | 1985-11-25 | 1987-02-17 | Khakzad Ghomi Abdol Hossein | Fluid-raising apparatus driven by low hydraulic head |
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