US119004A - Improvement in water-meters - Google Patents

Improvement in water-meters Download PDF

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US119004A
US119004A US119004DA US119004A US 119004 A US119004 A US 119004A US 119004D A US119004D A US 119004DA US 119004 A US119004 A US 119004A
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ports
piston
cap
water
cylinder
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01FMEASURING VOLUME, VOLUME FLOW, MASS FLOW OR LIQUID LEVEL; METERING BY VOLUME
    • G01F3/00Measuring the volume flow of fluids or fluent solid material wherein the fluid passes through the meter in successive and more or less isolated quantities, the meter being driven by the flow
    • G01F3/02Measuring the volume flow of fluids or fluent solid material wherein the fluid passes through the meter in successive and more or less isolated quantities, the meter being driven by the flow with measuring chambers which expand or contract during measurement
    • G01F3/04Measuring the volume flow of fluids or fluent solid material wherein the fluid passes through the meter in successive and more or less isolated quantities, the meter being driven by the flow with measuring chambers which expand or contract during measurement having rigid movable walls
    • G01F3/14Measuring the volume flow of fluids or fluent solid material wherein the fluid passes through the meter in successive and more or less isolated quantities, the meter being driven by the flow with measuring chambers which expand or contract during measurement having rigid movable walls comprising reciprocating pistons, e.g. reciprocating in a rotating body
    • G01F3/16Measuring the volume flow of fluids or fluent solid material wherein the fluid passes through the meter in successive and more or less isolated quantities, the meter being driven by the flow with measuring chambers which expand or contract during measurement having rigid movable walls comprising reciprocating pistons, e.g. reciprocating in a rotating body in stationary cylinders

Definitions

  • Figure 1 is a longitudinal vertical central section of my invention.
  • Fig. 2 is a transverse vertical central section 5 Fig. 3, a plan view with the upper portion removed; Fig. 4, an end elevation; and Fig. 5, a plan view of the piston.
  • This invention is analogous to one for which application for Letters Patent was made by me, of even date with this; and it consists mainly of a floating valve-piston, and an arrangement of ports in connection therewith, whereby a perfect reciprocating motion is produced, while certain parts which were essential to the above-inentioned invention are omitted.
  • the details of construction and method of operation will be more fully described hereinafter.
  • A represents a cylinder, in which is the iioating air-tight piston B, which moves freely therein, and is somewhat more than half its length.
  • a casing, C having a plane upper surface, C, below which is a space, D, which is subdivided by vertical partitions.
  • E represents a casing or cap with a semicircular upper surface, which covers the casing C.
  • a valve, F which consists of a tube, f, havin g rightangled circular flanges G G near the ends, and the wider flanges H H near the center, and between these the Vcylindrical langes I I and annular passages J J.
  • cap Eis provided with semicircul ar bands or rests K K, L L', and M M', which form circles in connection with the semicircular top or cap E. Between the rests K K", Ste., and the bottom of cap E are spaces, which are also subdivided by vertical partitions, and are provided with ports N N O O, which connect with the ports P P It B on the surface of the casing G, which latter communicate with the interior of casing G.
  • S S represent end caps, which are attached, through ilanges, to the ends of cylinder A and cap E, thereby connecting the same.
  • T represents the induction-pipe
  • T the eduction-pipe, which enter casing C at opposite sides.
  • U represents a port in the surface C, through which the water from inductionpipe T passes into cap E.
  • V represent ports in the surface C', which communicate with ports W W, which latter'are in the upper part of cylinder A.
  • X X represent similar ports in cylinder A corresponding to ports W W. Said ports X X communicate, through horizontal passagesY Y in casing C and inclined passages Z in end pieces S S, with the ends of cap E.
  • a a represent ports in cylinder A, lower on the periphery of the same than the others, the former a being in line with ports X W and the latter a being in line with ports W X.
  • b b represent orilices in the ends of casing C, through which orifices communication is had from said casing to the ends oi' cylinder A through end caps S S.
  • c c represent vertical passages or valves running through piston B. Said valves are of sufficient width to cover both of the ports W X or W X and bring the same into connection with each other at certain stages of the operation.
  • the valves c c are at opposite ends of piston B and on opposite sides of the same, as shown.
  • d d represent narrower valves running through piston B and occupying corresponding positions to valves c c.
  • the valves d el are provided with right-angled branches c e, which lead from the same horizontally to the sides of the piston B.
  • the valve cl and its branch c connect at certain stages ofthe opera-tion with the ports ⁇ X and a', while at opposite stages the valve d and branch c connect ports X and a.
  • the piston B is kept in a vertical position by a pin, g, which enters a groove in the bottom ofthe same.
  • valve c comes in connection with the ports W' X', and at the same time the valve d, with its branch e, comes in connection with the ports X a, thus opening a passage from port V' through ports W' X', channels Y' and Z, to the end of cap E, and the incoming water through port U, flowing through said passage, strikes the iiange G' of valve F and forces said valve toward the opposite end of the cap E, displacing the water in the end S, and forcing it downward through passages Z and Y into port X, which, as before stated, is in connection with valve d and branch e of piston B, thus opening a passage from port X to lport c, through which the ejected water from cap E ows and nds egress through eduction-pipe T'.
  • valve F being now in contact with the end cap S, its position with relation to the ports P P' B R' is reversed, the conditions being now favorable for the water to iiow from cylinder A through ports P, N, N', and Pl to the eduction-pipe, and for the incoming water to pass through passages J of valve F and ports O' R' into end cap S', revers- .in g the motion of piston B and forcing it toward the opposite end of cylinder A, Where the valves c' and d' perform the same functions in connection with ports W X, passage Y, ports X' and a', as that of valves o d with relation to ports X' W' X a and passage Y'.
  • valve F As the length of stroke of valve F is comparatively short, the time required to reverse its Yposition and remove the water om the opposite end of cap E, by the means described, is brief, the connection of valves in piston B and ports in cylinder A during the transit of the former being sufficient to effect the desired result.
  • the iioating valve-piston B constructed as described, in combination with cylinder A having ports W W', X X', and a a', substantially asy described.
  • valves o c' d d' and their branches e e' of piston B with relation to ports W W', XX', and a a', of cylinder A, passages Y Y' Z Z, and valve F, as and for the purpose set forth.

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  • Physics & Mathematics (AREA)
  • Fluid Mechanics (AREA)
  • General Physics & Mathematics (AREA)
  • Multiple-Way Valves (AREA)

Description

PATENT GFFIOE.
HENRY M. BARTLETT, OF SOUTH DEDHAM, MASSACHUSETTS.
IMPROVEMENT IN WATER-M ETERS.
Specification forming part of Letters Patent No. 119,004, dated September 19, 1871.
To all 'whom it may concern:
Be it known that I, HENRY M. BARTLETT, of South Dedham, in the county of Norfolk and State of Massachusetts, have invented certain Improvements in Water-Meters, of which the following is a speciiication:
Figure 1 is a longitudinal vertical central section of my invention. Fig. 2 is a transverse vertical central section 5 Fig. 3, a plan view with the upper portion removed; Fig. 4, an end elevation; and Fig. 5, a plan view of the piston.
This invention is analogous to one for which application for Letters Patent was made by me, of even date with this; and it consists mainly of a floating valve-piston, and an arrangement of ports in connection therewith, whereby a perfect reciprocating motion is produced, while certain parts which were essential to the above-inentioned invention are omitted. The details of construction and method of operation will be more fully described hereinafter.
In the drawing, A represents a cylinder, in which is the iioating air-tight piston B, which moves freely therein, and is somewhat more than half its length. Above the cylinder A is a casing, C, having a plane upper surface, C, below which is a space, D, which is subdivided by vertical partitions. E represents a casing or cap with a semicircular upper surface, which covers the casing C. Within the cap E, and resting on suitable seats, is a valve, F, which consists of a tube, f, havin g rightangled circular flanges G G near the ends, and the wider flanges H H near the center, and between these the Vcylindrical langes I I and annular passages J J. The interior of cap Eis provided with semicircul ar bands or rests K K, L L', and M M', which form circles in connection with the semicircular top or cap E. Between the rests K K", Ste., and the bottom of cap E are spaces, which are also subdivided by vertical partitions, and are provided with ports N N O O, which connect with the ports P P It B on the surface of the casing G, which latter communicate with the interior of casing G. S S represent end caps, which are attached, through ilanges, to the ends of cylinder A and cap E, thereby connecting the same. T represents the induction-pipe, and T the eduction-pipe, which enter casing C at opposite sides. U represents a port in the surface C, through which the water from inductionpipe T passes into cap E. V
V represent ports in the surface C', which communicate with ports W W, which latter'are in the upper part of cylinder A. X X represent similar ports in cylinder A corresponding to ports W W. Said ports X X communicate, through horizontal passagesY Y in casing C and inclined passages Z in end pieces S S, with the ends of cap E. a a represent ports in cylinder A, lower on the periphery of the same than the others, the former a being in line with ports X W and the latter a being in line with ports W X. b b represent orilices in the ends of casing C, through which orifices communication is had from said casing to the ends oi' cylinder A through end caps S S. c c represent vertical passages or valves running through piston B. Said valves are of sufficient width to cover both of the ports W X or W X and bring the same into connection with each other at certain stages of the operation. The valves c c are at opposite ends of piston B and on opposite sides of the same, as shown. d d represent narrower valves running through piston B and occupying corresponding positions to valves c c. The valves d el are provided with right-angled branches c e, which lead from the same horizontally to the sides of the piston B. The valve cl and its branch c connect at certain stages ofthe opera-tion with the ports` X and a', while at opposite stages the valve d and branch c connect ports X and a. The piston B is kept in a vertical position by a pin, g, which enters a groove in the bottom ofthe same.
Water is admitted to cap E through pipe T and port U, and finds access, by means hereafter described, to one end of cylinder A, and, entering the same, forces the piston B toward the opposite end ot' said cylinder, thereby forcing the water which had Vaccumulated in said opposite end of cylinder A through a series of ports and valves and out at the eduction-pipe T, the piston B, just at the end of its'stroke, operating valve F in such manner as to admit the incoming water to force the piston back and open a passage to the cduction-pipe T for the water expelled by the backward motion of the piston. In Fig. l the piston B is represented as having completed its stroke in the direction of cap S and forced the valve F toward the opposite end of the cap E, thus leaving the ports N and P in connection with the interior of cap E through lianges I H and passage J of valve F,
and at the same time cutting olf ports N' and P' from connection with said cap. The ports O O' and R R' are connected with each other by the space i between flanges H' and I', forming a siphon-like passage over -rest L. It will now be seen that the conditions are favorable for the incoming water through. pipe T and port U to pass up into cap E through flanges H I, passage J', ports N P, space D, and orifice b, into the lower part of cap S, where it presses against piston B and propels the same toward the opposite end vof cylinder A, thereby forcing the water from said cylinder upward through orifice b', space D, ports B' O' and Vspace z', over rest L, then downward through ports O B and out at eductionpipe T'. When the piston reaches the end of its passage toward end piece S', the same being prescribed by pin g, the valve c comes in connection with the ports W' X', and at the same time the valve d, with its branch e, comes in connection with the ports X a, thus opening a passage from port V' through ports W' X', channels Y' and Z, to the end of cap E, and the incoming water through port U, flowing through said passage, strikes the iiange G' of valve F and forces said valve toward the opposite end of the cap E, displacing the water in the end S, and forcing it downward through passages Z and Y into port X, which, as before stated, is in connection with valve d and branch e of piston B, thus opening a passage from port X to lport c, through which the ejected water from cap E ows and nds egress through eduction-pipe T'. The valve F being now in contact with the end cap S, its position with relation to the ports P P' B R' is reversed, the conditions being now favorable for the water to iiow from cylinder A through ports P, N, N', and Pl to the eduction-pipe, and for the incoming water to pass through passages J of valve F and ports O' R' into end cap S', revers- .in g the motion of piston B and forcing it toward the opposite end of cylinder A, Where the valves c' and d' perform the same functions in connection with ports W X, passage Y, ports X' and a', as that of valves o d with relation to ports X' W' X a and passage Y'.
It will be seen that, as the length of stroke of valve F is comparatively short, the time required to reverse its Yposition and remove the water om the opposite end of cap E, by the means described, is brief, the connection of valves in piston B and ports in cylinder A during the transit of the former being sufficient to effect the desired result.
By this arrangementwl dispense with one of the valves used in the invention above referred to, thereby simplifying the machine and reducing friction.
The object of running the valves c c' and d d' of piston B entirely through the same is to equalize the pressure.
Having thus fully described my invention, what I claim as new, and desire to secure by Letters Patent, is
l. The iioating valve-piston B, constructed as described, in combination with cylinder A having ports W W', X X', and a a', substantially asy described.
2. The described arrangement of valves o c' d d' and their branches e e' of piston B with relation to ports W W', XX', and a a', of cylinder A, passages Y Y' Z Z, and valve F, as and for the purpose set forth.
In testimony whereof I have signed my name to this specification in the presence of two subscribing witnesses.
HENRY M. BARTLETT.
Witnesses:
CARROLL D. WRIGHT, C. F. BROWN.
ml A mi l
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