US1590912A - Safety device for water wheels - Google Patents

Safety device for water wheels Download PDF

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Publication number
US1590912A
US1590912A US27548A US2754825A US1590912A US 1590912 A US1590912 A US 1590912A US 27548 A US27548 A US 27548A US 2754825 A US2754825 A US 2754825A US 1590912 A US1590912 A US 1590912A
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wheel
water
nozzle
safety device
deflector
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US27548A
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Steven A Scanavino
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F03MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B15/00Controlling
    • F03B15/02Controlling by varying liquid flow
    • F03B15/20Controlling by varying liquid flow specially adapted for turbines with jets of high-velocity liquid impinging on bladed or like rotors
    • F03B15/22Controlling by varying liquid flow specially adapted for turbines with jets of high-velocity liquid impinging on bladed or like rotors for safety purposes
    • 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
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/20Hydro energy

Definitions

  • This invention relates to improvements in safety devices for water wheels.
  • the principal object of this invention is to provide means whereby the water nozzle may be diverted. when the water wheel against which the same impinges revolves at a rate greater than that for which it'is designed under normal load.
  • Yet another object of this invention is to provide means whereby the nozzle automatically causes its propulsive force to be diverted so as to decrease the speed of the wheel.
  • An additional object of this invention is to produce a device of this character which is simple in construction and, therefore, one which will be efficient in operation.
  • a still further object of this invention is to provide a device of this character which may be incorporated in the ordinary water wheel construction without altering the construction of the same or its associated parts.
  • Figure 1 is a side elevation of a water wheel having my device applied thereto
  • Figure 2 is a view similar to Figure 1, showing my device in operation and diverting the flow of water away from the wheel,
  • Figure 3 is a modified form of my device attached to a water wheel
  • Figure 4 is a view similar to Figure 3, of the modified form showing the water bellg diverted from contact with the wheel, an
  • FIG. 5 is a fragmentary detail view showing a hydraulic means for accomplishing the same purpose.
  • a jet of water contacts a wheel having a plurality of blades, paddles or cups attached to the wheel, with the result that the wheel rotates and is capable of delivering power.
  • the jet will strike the cups and after giving up its force will splash downwardly and flow away.
  • the numeral 5 designates a water wheel having a plurality of cups 6, while a nozzle'is longer I shown at 7 adapted to discharge a stream 8 against the cups 6. Normally while the wheel is loaded, it will strike the cup and he deflected downwardly as shown in full lines at 9. Q
  • a lever13 is connected to the nozzle 7 and extendsto a point outside of the wheel housing, the purpose of which is to move the nozzle 7 when desired.
  • the stream 8 will'pass'the cups 6 as shown in dotted lines at 14 and will contact a.
  • movable member 16 which movable member is pivoted as at 17 toa suitable support 18.
  • a deflector 19 is pivoted as at 21 to a support 22 and has a link 23 connected thereto as shown at 24, while its opposite end is pivoted as at 26 to the movable member 16, the result being that as thestream strikes the, movable member 16 it is forced over and against the bumper 12 thus lifting the deflector 19 through the medium of the link 23.
  • This immediately deflectsv the water of the stream 8 downwardly as shown in full lines at 27 When the deflector is in this position the stream cannot contact the buckets of the water wheel, with the result that it will immediately slow down and stop. It is then necessary for the operator to shut off the flow of water, reset the deflector to the position shown in Figure 1 and again open the flow of fluid to the nozzle.
  • nozzle in all of the forms is pivoted as at 29 so as to be movable by the lever 13.
  • a link 31 is connected to the nozzle 7 and has its free end secured to a bell-crank lever 32, pivoted as at 33 and having its opposite end providedwith a pin movable Within a slot 36 formed in one end of a link 38, the opposite end of which link is pivoted as at 39 to the member 16, the result of this construction being that, when the wheel 5 rotates at a speed.
  • the nozzle 7 is moved downwardly so as to contact the'underside of the deflector 19 thus holding the same in this position until reset by the operator, which is accomplished by shutting ofl'the flow of fluid tothe nozzle, resetting the parts and again turning on the flow.
  • the movable member is designated at 41 as having a plunger 42 adapted to enter one end of a tube 13.
  • This tube may extend to any convenient point and serve to conduct hydraulic pressure for the purpose of cutting oil the flow of fluid or operating the deflecting mechanism, It will thus be seen that I have provided a very simple and etflcien-t means for utilizing the etl'ect of anincrease in speed of a water wheel for the purpose of deflecting the fluid to prevent further increase in speed of the motor.
  • I claim 2 1 7 1.
  • said movable member being pivoted toapoint below said water wheel, alinkcon-- nesting?" said deflector arid said movable member for the purpose of moving said deflector to a point between said nozzle and said water wheel when the fluid issuing from saidn'ozzle strikes said movable member, and means associated with said movable member for moving said nozzle, as specified.

Description

June 29 1926. 1,590,912
5. A. SCANAVINO' SAFETY DEVICE FOR WATER )WHEELS Filed May z 1925 2 Sheets-Sheet 1 INVENTOR.
S. H. SCHNHVINU 7 5 fadij w ATTORNEY Jim 29,1926.
5. A. SCANAVINO SAFETY DEVICE FOR WATER WHEELS 2 Sheets-Sheet 2 Filed May 2, i
mmvrok,
S- H. SCHNHVIND ATTORNEY Patented June 29, 1926.
UNITED STATES STEVEN A. SCANAVINO, or sauna cnUz, CALIFORNIA.
SAFETY DEVIGE QE WATER W'HEELS.
Application filed May 2,
This invention relates to improvements in safety devices for water wheels. I
The principal object of this invention is to provide means whereby the water nozzle may be diverted. when the water wheel against which the same impinges revolves at a rate greater than that for which it'is designed under normal load.
.Another object of this invention is to provide means whereby the nozzle automatically causes its propulsive force to be diverted so as to decrease the speed of the wheel.
An additional object of this invention is to produce a device of this character which is simple in construction and, therefore, one which will be efficient in operation.
A still further object of this invention is to provide a device of this character which may be incorporated in the ordinary water wheel construction without altering the construction of the same or its associated parts. I I
Other objects and advantages will be apparent during the course of the following description.
In the accompanying drawings forming a part of this specification, and in which like numerals are employed to designate like parts throughout the same,
Figure 1 is a side elevation of a water wheel having my device applied thereto,
Figure 2 is a view similar to Figure 1, showing my device in operation and diverting the flow of water away from the wheel,
Figure 3 is a modified form of my device attached to a water wheel,
Figure 4 is a view similar to Figure 3, of the modified form showing the water bellg diverted from contact with the wheel, an
Figure 5 is a fragmentary detail view showing a hydraulic means for accomplishing the same purpose.
In an impact water wheel a jet of water contacts a wheel having a plurality of blades, paddles or cups attached to the wheel, with the result that the wheel rotates and is capable of delivering power. When a load is placed upon the wheel, the jet will strike the cups and after giving up its force will splash downwardly and flow away. hen
. the load is suddenly removed, as often happens in the shutting down of a generator, or breaking of a power line or sha'ft-ing, or for any other similar cause, the result 1225. Serial No, 27,548.
is that the water wheel will accelerate in speed, which speed, in a few moments, becomes dangerous.
When a water wheel rotates beyond a predetermined speed, the water no splashes downwardly but extends on past the wheel and would strike the back wall of the wheel housing. It is this principle that I employ to cut off the flow from th e water wheel.
In the accompanying drawings wherein for the purpose of illustration is shown a preferred embodiment of my invention, the numeral 5 designates a water wheel having a plurality of cups 6, while a nozzle'is longer I shown at 7 adapted to discharge a stream 8 against the cups 6. Normally while the wheel is loaded, it will strike the cup and he deflected downwardly as shown in full lines at 9. Q
At 11 I have shown a portion of the back wall of the wheel housing upon which is mounted a bumper 12. A lever13 is connected to the nozzle 7 and extendsto a point outside of the wheel housing, the purpose of which is to move the nozzle 7 when desired. As before mentioned, when the speed of rotation of the wheel 5 becomes excessive, the stream 8 will'pass'the cups 6 as shown in dotted lines at 14 and will contact a. movable member 16, which movable member is pivoted as at 17 toa suitable support 18.
A deflector 19 is pivoted as at 21 to a support 22 and has a link 23 connected thereto as shown at 24, while its opposite end is pivoted as at 26 to the movable member 16, the result being that as thestream strikes the, movable member 16 it is forced over and against the bumper 12 thus lifting the deflector 19 through the medium of the link 23. This immediately deflectsv the water of the stream 8 downwardly as shown in full lines at 27 When the deflector is in this position the stream cannot contact the buckets of the water wheel, with the result that it will immediately slow down and stop. It is then necessary for the operator to shut off the flow of water, reset the deflector to the position shown in Figure 1 and again open the flow of fluid to the nozzle.
In the modified form shown in Figure 3 it will be noted that the action is similar, with the exception that the nozzle is made to move downwardly toward the deflector. As
many of the parts are the same in the modified form, the same numerals have been applied thereto.
It will be noted that the nozzle in all of the forms is pivoted as at 29 so as to be movable by the lever 13. In the modified form a link 31 is connected to the nozzle 7 and has its free end secured to a bell-crank lever 32, pivoted as at 33 and having its opposite end providedwith a pin movable Within a slot 36 formed in one end of a link 38, the opposite end of which link is pivoted as at 39 to the member 16, the result of this construction being that, when the wheel 5 rotates at a speed. in excess of the predetermined speed, the stream will impinge upon the member 16 as before mentioned, moving the member about its pivotal member, moving the deflector upwardly in a manner similar to that previously described and at the same time through the medium of the link 38-, bell-crank lever 32 and pin 34:.
The nozzle 7 is moved downwardly so as to contact the'underside of the deflector 19 thus holding the same in this position until reset by the operator, which is accomplished by shutting ofl'the flow of fluid tothe nozzle, resetting the parts and again turning on the flow.
In the formsho'wn in Figure 5, the movable member is designated at 41 as having a plunger 42 adapted to enter one end of a tube 13. This tube may extend to any convenient point and serve to conduct hydraulic pressure for the purpose of cutting oil the flow of fluid or operating the deflecting mechanism, It will thus be seen that I have provided a very simple and etflcien-t means for utilizing the etl'ect of anincrease in speed of a water wheel for the purpose of deflecting the fluid to prevent further increase in speed of the motor.
It is to be understood that the form of my invention herewith shown and described is to be taken as a preferred example of the same, and thatvarious changes in the shape, size and arrangement of parts may be resortthe invention or the scope of the subjoined claims. 7
Having thus describedmy invention, I claim 2 1 7 1. Ina device of the character described, the cembination with a water wheel, a nozzle positioned adjacent said water wheel, a movable member in alignment therewith,
said movable member being pivoted toapoint below said water wheel, alinkcon-- nesting?" said deflector arid said movable member for the purpose of moving said deflector to a point between said nozzle and said water wheel when the fluid issuing from saidn'ozzle strikes said movable member, and means associated with said movable member for moving said nozzle, as specified.
In testimony whereof I afiix my signature.
srnvnu SGANAVINO;
ved to Without departing from the spirit of
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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3169746A (en) * 1959-09-11 1965-02-16 Moosmann Alois Fluid pressure operated turbines
US8210805B1 (en) 2009-04-24 2012-07-03 Osborne Lyle E Efficient turbine

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US3169746A (en) * 1959-09-11 1965-02-16 Moosmann Alois Fluid pressure operated turbines
US8210805B1 (en) 2009-04-24 2012-07-03 Osborne Lyle E Efficient turbine

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