US1578835A - Fluid motor - Google Patents

Fluid motor Download PDF

Info

Publication number
US1578835A
US1578835A US12200A US1220025A US1578835A US 1578835 A US1578835 A US 1578835A US 12200 A US12200 A US 12200A US 1220025 A US1220025 A US 1220025A US 1578835 A US1578835 A US 1578835A
Authority
US
United States
Prior art keywords
partitions
drum
wings
pockets
wind
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
Application number
US12200A
Inventor
Louis E Kothe
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Individual
Original Assignee
Individual
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Individual filed Critical Individual
Priority to US12200A priority Critical patent/US1578835A/en
Application granted granted Critical
Publication of US1578835A publication Critical patent/US1578835A/en
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

Links

Images

Classifications

    • 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
    • F03DWIND MOTORS
    • F03D3/00Wind motors with rotation axis substantially perpendicular to the air flow entering the rotor 
    • F03D3/06Rotors
    • F03D3/062Rotors characterised by their construction elements
    • F03D3/066Rotors characterised by their construction elements the wind engaging parts being movable relative to the rotor
    • F03D3/067Cyclic movements
    • 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
    • F03B17/00Other machines or engines
    • F03B17/06Other machines or engines using liquid flow with predominantly kinetic energy conversion, e.g. of swinging-flap type, "run-of-river", "ultra-low head"
    • F03B17/062Other machines or engines using liquid flow with predominantly kinetic energy conversion, e.g. of swinging-flap type, "run-of-river", "ultra-low head" with rotation axis substantially at right angle to flow direction
    • F03B17/063Other machines or engines using liquid flow with predominantly kinetic energy conversion, e.g. of swinging-flap type, "run-of-river", "ultra-low head" with rotation axis substantially at right angle to flow direction the flow engaging parts having no movement relative to the rotor during its rotation
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2240/00Components
    • F05B2240/20Rotors
    • F05B2240/21Rotors for wind turbines
    • F05B2240/211Rotors for wind turbines with vertical axis
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2260/00Function
    • F05B2260/70Adjusting of angle of incidence or attack of rotating blades
    • F05B2260/72Adjusting of angle of incidence or attack of rotating blades by turning around an axis parallel to the rotor centre line
    • 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
    • Y02E10/70Wind energy
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction

Definitions

  • the rotary power transforming element is in the nature of a drum including heads, a connecting hub and a plurality of partitions which extend from the hub to the periphery of the drum and define a series of .fiu'id receiving pockets.
  • the individual] pElIUtlODS serve as sails,
  • buckets or'Vane's depending'upon whether the wheel is used as a wind mill, water wheel or turbine rotor and the individual pockets serve to store fluid actuatin means upon the main powerimpulse and to subsequently release such fluid and obtain a secondary power impulse at the time of the release.
  • the individual partitions are arranged so that a maximum leverage is .ob-
  • each partition includes an inner section disposed in a substantially radial position relative to the hub of the drum and extending from the hub to a point closelyadjacent the periphery thereof.
  • a trailing section preferably disposed at aslightly obtuseangle tothe radial section, adjacent pairs of such trailing sections providing tapered guiding chutes or deflectors for the motive medium so that the latteris directed against the outer ends of the radial parti tion sections with considerable forceand at a sufficient distance from the center of the rarenr orr TESL,
  • the trailing partition sections also receive j a directpo-wer impulse from the motive medium, the leverage afforded by the impingement upon such surfaces being longer than the initial impingementupon the radial sections.
  • the pockets tend tostore up energy in the nature of compressed air or steam, or in the case of a water wheel theyserve to trap water and asthe pockets move to the point where their outlet ends are no longer under the direct influence of the motive medium, such fluid, in escaping, impinges upon the; trailing'sections and imparts to them'an additional secondary power; impulse. I'jam' thus able to obtain a maximum amount of power'froni a minimum motive force.
  • the effective surfaces'of thepartitions may be supplemented by'theuse of hinged sails or' wings having limited out-ward swinging movement which have the effect ofexte nd ing the partitions, as they'move to leeward and which are feathered by air pressure to; close the pockets as they move to windward.
  • the'drum is used as awind 'mill, it is" preferably mounted upon the main vertical
  • FIG. 1 is a top plan view of a simplified element is in the nature of a drum includ ingv a pair of heads 10, 11, connected by a central hub 12. Extending from the hub to the periphery of the drum are a number ofpartitions each of which includes a'radial 7 section 13extending from the hub to a point closely adjacent the periphery, and a trailing section 15 forming a continuation of the radial section and trailing at a slightly obtuse-angle thereto.
  • the consecutive partitions cooperate to provide air pockets 16 and the; trailing partition ends provide tapering deflectorstor directing fluid motive medium into. thepockets in such. a manner that it will impinge on. the outer ends of the radial partition sections, thereby obtaining a. maximum leverage on each partition.
  • This direction of motive-medium against the outer ends of the radial partition sections occur-sat the timewhentwoadjaccnt trailingends are in position so that the motive medium enters. directly between them. Further rotation of the drum, however, will move the leading trailing section; into aposition where r the motivemedium may impinge directly thereon, in which instance, an'even longer leverage isv obtained tending to rotationalv movement of the drum.
  • the motivemediumds used to store up energy in the ndlv dual. pockets. at the time it enters the same, such energy being subsequently released and. giving ,an: additional powenimpulse.
  • a gaseous fluidv such as. air or steam
  • the gas will be compressed inthe pockets and as the mouths of the pockets move out ofthe direct influence of: the motive medium and. pressures.
  • themoton includes headslO 113a hub 12 and a series of partitions 15 the-inner ends of which may ,be anchored in peripheral notches 12 in the hub, and the edges of which may be secured to the heads in any approved manner.
  • These partitions are somewhat different from the partitions shown in Figure 1, but the difference is merely relative since the same principles are involved. It will be noted that each partition while it projects from the hub in a substantially radial direction, trails toward its outer end although the sharply defined junction of the radial section and trailing section.
  • each partition is omitted and the partitions are curved in a trailing direction at a progressively increasing rate toward their outer ends.
  • the drum heads shown are of generally octagonal instead of th'e, cir cular shape of Figure 1, although they might be of any regular polygonal shape desired, depending principally on the number of partitions utilized.
  • I have shown the partitions as entering the drum hub opposite one corner of the head and having their trailing ends joining the pe 'iphery of the drum. adjacent. the following corner.
  • These wings are preferably curved on an arc struck from the center of the hubin order to offer a minimum resistance to the wind as they move to windward.
  • Means for limiting the outward swinging movement of the partitions preferably includes flexible and approximately triangular webs 21 and such websmay be integral with the canvas covering 20 on'the skeleton frames of the wings.
  • This wing construction is conducive to lightness inweight and the canvas which covers the wings may be water prooted and otherwisetreated in the manner of the material commonly used on air plane wings so thatit will: stand up well under the conditions of exposure, to which it will be subjected.
  • heads of the drums are preferably inclined 7 from their center to their periphery inorder to effect drainage of rain water and the normal tendency of the webs as seenbest inv Figure 2 is to sag downwardly nd pre vent the collection of water therein.
  • the wings are slightly longerthan the distance between the outeredgcs of consecutive partitions so that the tollmving free end of each wing projects slightly from the outer periphery of the drum and from the hinge line of the suc hearing the motor.
  • the drum will always rotate in the same direction regardless of whichway the wind is blowing, the wind swinging open the scoop like deflector wings and operating on both the wings and the partitions as levers at one side of the drum to cause rotational movement thereof.
  • the wings pass from the leeward side of the drum toward .the windward side, they are folded in or feathered by the pressure of wind thereon.
  • the motor with the curved partitions' of Figures 2 to 4 is capable of use without the wings and that in such instance, the partitions moving to windward present convex wind deflecting surfaces so that most of the wind is spilled out of the pockets while partitions'moving to leeward present concave surfaces tending in larger measureto trap and effectively derive power from the wind.
  • the Wind escaping from the pockets on the leeward side of the drum acts to deliver an additional power impulse to the trailing ends of the partitions;
  • the device maybe used either as a wind or Water motor and that it may be mounted in either vertical or horizontal position.
  • the device When used as a water motor. the device is mounted in horizontal position and the wing portions are preferably omitted.
  • the motor be mounted horizontally for use as a wind motor it necessitates the provision of a vane to maintain it broad side to the wind and it also necessitates'the use of a conventional type of transmission gearing, for converting rotary movement. of a horizontal shaft into rotary movement of a vertical shaft.
  • a conventional type of transmission gearing for converting rotary movement. of a horizontal shaft into rotary movement of a vertical shaft.
  • the drum mounted in vertical position and directly keyed to the main power shaft of the mill I am able to eliminate not only the vanes, and counterba'lances, but also the mechanism commonly employed for operatively connecting such shaft to the horizontal power shaft
  • a reversal of the direction of rotation of the drum may be quickly effected by removing the drum, turning it upside down, and replacing it.
  • the invention lends itself admirably to embodiment in a toy or windmill.
  • a wind motor including a drum formed with a plurality of partitions defining pockets extending from near the center thereof to substantially the periphery thereof and to meet the requirements of could be in I the wings freely hinged at the fouter ends'of the partitions, those of said .wings' moving in direction opposedto the wind being closed by the pressure'of the windfi wind motor'including adruin formed with a plurality of partitions defining pockets extending fromnear the center thereof to substantially the periphery thereof and wings hinged at the outer ends of the partit ons, having l mited outward swinging movement from the outer ends of the pock-Q ets andfree inwardmovement to close auto-,
  • Awind motor including a drum formed witha plurality of partitions fixed therein and defining pockets extending from near the center thereof to substantially the periphery thereof and wings hinged at the. outer ends of'the partitions and adapted to" be feathered by wind pressure, and having limited outward Swinging movement from L the outer ends of the pockets, said wings having their upper and lower edges connected by'websto the ends of the drum.
  • a motor of the class described including a drum, a plurality ofpartitions extending from the periphery to substantially the axis of the drum and forming air pockets and wings pivoted to the partitions and defleeting air into the pockets, approximately triangular webs at the ends of the wings limiting outward swinging movement thereof and cooperating therewith to form scooplike baffles for deflecting air into the pockets.
  • a motor. of the class described including a drum including upper and lower heads, partitions extending from the axis of the drum to the periphery thereof and forming air pockets and wings hinged to the edges ofthe partitions and. movable across the inletsto the pockets, said partitions having limited/outward swinging moven'ient, themeans for. limiting. the outward swinging movement of the wings including substan tially triangularwebs connecting the upper andilower. edges of the wings witl'iIthe up per andlower heads of the drum.
  • a motor of the class described including a' drum including upper and lower heads, partitions extending from the axis of thedruni to the periphery thereof and torming airflpockets and wings hinged to the edges of the partitionsand movable across the'inlets to the pockets to close the same,
  • partitions having'limited outward swinging -1nove1nent,- said partitions being curved away from the direction of rotation of the drum whereby air directed into the pockets. by a wing. is trapped by the partitions to which the wing ishinged.
  • -A motor of theclass described including adrum having heads, and curved partitions extending from near the axis to substantially the periphery of the drum, and arcuate wings pivot-edto the partitions and adapted to swing across the mouths of the pocketsdefined thereby to close the same.
  • a motor of the class described including a drum having heads, and curved partitions extending from near the axis to sub stantially the vperiphery of the drum, and arcuate wings pivoted to the partitions and adapted to. swing, across the mouths of the pockets defined thereby, said wings being curved on an arc struck from the center or the drum.
  • a motor of the class described includ.- ing a drum having heads, and curved partl tions extending from near/the axis to substantially the periphery of the drum, and
  • a wind motor including a drum formed with a plurality of partitions defining pockets extending from near the center thereof to substantially the periphery there of and wings hinged at the outer ends of the partitions, said wings comprising skeleton frames supporting taut sheets of flexible material.
  • a wind motor comprising a drum having upper and lower heads, a hub, partitions extending from the hub to the periphery of the drum, wings hinged to the partitions and adapted when in closed position tooverlap each other and provide projecting ends offering wind resistance.
  • a device otthe class described including a drum comprising upper and lower heads, a hub connecting the heads, uniformly spaced partitions extending from the hub to the peripheries of the-head and defining air pockets and wings hinged to the partitions and curved on an arc struck from the center of the drum.
  • a device of the class described including a drum comprising upper and lower heads, a hub connecting the'heads, unitormly spaced partitions extending, from the hub to the peripheryores the head and defining air pockets, wings hinged to the partitions and curved on an arc struck from the center of the drum, each wing being longer than thedistanee between the partitions whereby to provide free following edges overlapping the hinged edge 01": anadjacent wing and oiering a projecting end to expedite the opening of the blade under the influence of the wind.

Landscapes

  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Power Engineering (AREA)
  • Wind Motors (AREA)

Description

March 30,1926.
L. E. KOTHE FLUID MOTOR Filed Feb. 28, 1925 '2 Shets-Sheet 1 INVENTOR 1? K0250 March 30 1926. 1,578,835
L. E. K OTHE FLUID moron,
Filed Feb. 2.8, 1925' 2 Sheets-Sheet 2 INVENTOR LKKaMe ATTORNEY-,4
" specification.
Patented Mar. 30, 1926.
mwsm Lotus nyxo riin, or nnennwoon nnw iFLUID Application filed Februar To all whom it may concern.
Be it known'that I, LOUIS E. Kori-In, a subject of the -King of Great Britain, and resident of Englewood, in, the county of Bergen and State of New Jersey, have in vented certain new and useful Improvements in Fluid Motors, of which thefollowing is a- Thisinvention relates to improvements in fluid motors, particularly to improvements in a reaction rotor which is adapted to serve as the main power converting'element in such motor. I have shown a simplified ge-' neric en'ibodiment of the invention which is readily adaptable for use as a wind mill, or a water wheel orthe rotor of a steam turbine without involving any material changes in its construction and without departing from the reaction principle involved. In accordance with a preferred simple embodis Inent offthe invention, the rotary power transforming element is in the nature of a drum including heads, a connecting hub and a plurality of partitions which extend from the hub to the periphery of the drum and define a series of .fiu'id receiving pockets. The individual] pElIUtlODS serve as sails,
buckets or'Vane's, depending'upon whether the wheel is used as a wind mill, water wheel or turbine rotor and the individual pockets serve to store fluid actuatin means upon the main powerimpulse and to subsequently release such fluid and obtain a secondary power impulse at the time of the release. f
Preferably, the individual partitions are arranged so that a maximum leverage is .ob-
tained regardless of the nature of the fluid which furnishes power. Preferably each partition includes an inner section disposed in a substantially radial position relative to the hub of the drum and extending from the hub to a point closelyadjacent the periphery thereof. Connected to this radial section and preferably integral therewith is a trailing section preferably disposed at aslightly obtuseangle tothe radial section, adjacent pairs of such trailing sections providing tapered guiding chutes or deflectors for the motive medium so that the latteris directed against the outer ends of the radial parti tion sections with considerable forceand at a sufficient distance from the center of the rarenr orr TESL,
MOTORQ,
as, 1925. Serial No. 122074).
drum "-to'obtain a powerful leverage. The trailing partition sections also receive j a directpo-wer impulse from the motive medium, the leverage afforded by the impingement upon such surfaces being longer than the initial impingementupon the radial sections. The pockets tend tostore up energy in the nature of compressed air or steam, or in the case of a water wheel theyserve to trap water and asthe pockets move to the point where their outlet ends are no longer under the direct influence of the motive medium, such fluid, in escaping, impinges upon the; trailing'sections and imparts to them'an additional secondary power; impulse. I'jam' thus able to obtain a maximum amount of power'froni a minimum motive force.
worthy advantage ofembodying no individually movable parts and consequently is a" compact sturdy structure which while light in weight,is unlikely to get out ofaorder orv to be'injured by unusual weather conditions.
In a preferred specific embodiment in which the device is used as a windmill, the effective surfaces'of thepartitions may be supplemented by'theuse of hinged sails or' wings having limited out-ward swinging movement which have the effect ofexte nd ing the partitions, as they'move to leeward and which are feathered by air pressure to; close the pockets as they move to windward. When the'drum is used as awind 'mill, it is" preferably mounted upon the main vertical The rotary element or drum has thehotedurable in use and unlikelyto become dam- I aged dueto extreme weather conditions. 1' 5 The means by which'the. above noted and .various other objects are attained may be more fully.understood 'from the following description in connection '.with the accompanying'drawings, whereini I 'Q Figure 1 is a top plan view of a simplified element is in the nature of a drum includ ingv a pair of heads 10, 11, connected by a central hub 12. Extending from the hub to the periphery of the drum are a number ofpartitions each of which includes a'radial 7 section 13extending from the hub to a point closely adjacent the periphery, and a trailing section 15 forming a continuation of the radial section and trailing at a slightly obtuse-angle thereto. The consecutive partitions cooperate to provide air pockets 16 and the; trailing partition ends provide tapering deflectorstor directing fluid motive medium into. thepockets in such. a manner that it will impinge on. the outer ends of the radial partition sections, thereby obtaining a. maximum leverage on each partition. This direction of motive-medium against the outer ends of the radial partition sections occur-sat the timewhentwoadjaccnt trailingends are in position so that the motive medium enters. directly between them. Further rotation of the drum, however, will move the leading trailing section; into aposition where r the motivemedium may impinge directly thereon, in which instance, an'even longer leverage isv obtained tending to rotationalv movement of the drum.
The motivemediumdsused to store up energy in the ndlv dual. pockets. at the time it enters the same, such energy being subsequently released and. giving ,an: additional powenimpulse. In the-case. of a gaseous fluidv such; as. air or steam, the gas will be compressed inthe pockets and as the mouths of the pockets move out ofthe direct influence of: the motive medium and. pressures.
tion of the rotor in Figure 1, theconstruction and operationof the particular type of windmot-or disclosed in Figures 2 toA will be moreevident. In these figures, themoton includes headslO 113a hub 12 and a series of partitions 15 the-inner ends of which may ,be anchored in peripheral notches 12 in the hub, and the edges of which may be secured to the heads in any approved manner. These partitions are somewhat different from the partitions shown in Figure 1, but the difference is merely relative since the same principles are involved. It will be noted that each partition while it projects from the hub in a substantially radial direction, trails toward its outer end although the sharply defined junction of the radial section and trailing section. of each partition is omitted and the partitions are curved in a trailing direction at a progressively increasing rate toward their outer ends. The drum heads shown are of generally octagonal instead of th'e, cir cular shape of Figure 1, although they might be of any regular polygonal shape desired, depending principally on the number of partitions utilized. I have shown the partitions as entering the drum hub opposite one corner of the head and having their trailing ends joining the pe 'iphery of the drum. adjacent. the following corner. I have also shown the use of a number of wings or sails 17' hingedly connected to the partitionsat their outer ends and having a limited outward, swinging movement. These wings are preferably curved on an arc struck from the center of the hubin order to offer a minimum resistance to the wind as they move to windward. Means for limiting the outward swinging movement of the partitions preferably includes flexible and approximately triangular webs 21 and such websmay be integral with the canvas covering 20 on'the skeleton frames of the wings. This wing construction is conducive to lightness inweight and the canvas which covers the wings may be water prooted and otherwisetreated in the manner of the material commonly used on air plane wings so thatit will: stand up well under the conditions of exposure, to which it will be subjected. It is desirable that there must be no escape of wind'between thewing sections and-the par.- tition ends to which they are hingedly con nected and I consequently provide-some type of hinge structure which will serve to. prevent such escape. For illustrative-purposes only I have shown a leaf hinge, the leaves of which are countersunk in the partitions and the frames 18 of the wings 17. The
heads of the drums are preferably inclined 7 from their center to their periphery inorder to effect drainage of rain water and the normal tendency of the webs as seenbest inv Figure 2 is to sag downwardly nd pre vent the collection of water therein.
7 It will benotedthat the wings are slightly longerthan the distance between the outeredgcs of consecutive partitions so that the tollmving free end of each wing projects slightly from the outer periphery of the drum and from the hinge line of the suc hearing the motor.
ures 1 and 3. These projecting corners offeran inlet to the pockets which facilitates the initial outward swinging movement of the wings as they move into position where the wind can act on the projecting corners.
The drum will always rotate in the same direction regardless of whichway the wind is blowing, the wind swinging open the scoop like deflector wings and operating on both the wings and the partitions as levers at one side of the drum to cause rotational movement thereof. As the wings pass from the leeward side of the drum toward .the windward side, they are folded in or feathered by the pressure of wind thereon.
Inthe operation of the device, it will be noted that the partitions as they move to leeward, offer pocketing surfaces into which the air is deflected by the wings. The impingement of the air upon the partitions gives a considerable power impulse over and above the power obtained from the effective wing surfaces. In other words, both partitions and wings cooperate to act as sails.
In this connection, it may be'noted that the motor with the curved partitions' of Figures 2 to 4, is capable of use without the wings and that in such instance, the partitions moving to windward present convex wind deflecting surfaces so that most of the wind is spilled out of the pockets while partitions'moving to leeward present concave surfaces tending in larger measureto trap and effectively derive power from the wind. The Wind escaping from the pockets on the leeward side of the drum acts to deliver an additional power impulse to the trailing ends of the partitions; I
It will be evident that the device maybe used either as a wind or Water motor and that it may be mounted in either vertical or horizontal position. When used as a water motor. the device is mounted in horizontal position and the wing portions are preferably omitted. v
If the motor be mounted horizontally for use as a wind motor it necessitates the provision of a vane to maintain it broad side to the wind and it also necessitates'the use of a conventional type of transmission gearing, for converting rotary movement. of a horizontal shaft into rotary movement of a vertical shaft. lVith the drum mounted in vertical position and directly keyed to the main power shaft of the mill, I am able to eliminate not only the vanes, and counterba'lances, but also the mechanism commonly employed for operatively connecting such shaft to the horizontal power shaft A reversal of the direction of rotation of the drum may be quickly effected by removing the drum, turning it upside down, and replacing it.
It will thus be seen thatthere is herein described apparatus in which the several features of this invention are embodied,
and which apparatus in its action attains ter contained in the above description or shown in the accompanying drawings shall be interpreted as illustrative and not in a" limiting sense.
The invention lends itself admirably to embodiment in a toy or windmill.
Having thus described my invention, what pinwheel, Waterwheel I claim as new and desire to secure by Letters Patent is 1. A wind motor including a drum formed with a plurality of partitions defining pockets extending from near the center thereof to substantially the periphery thereof and to meet the requirements of could be in I the wings freely hinged at the fouter ends'of the partitions, those of said .wings' moving in direction opposedto the wind being closed by the pressure'of the windfi wind motor'including adruin formed with a plurality of partitions defining pockets extending fromnear the center thereof to substantially the periphery thereof and wings hinged at the outer ends of the partit ons, having l mited outward swinging movement from the outer ends of the pock-Q ets andfree inwardmovement to close auto-,
matically by movement of the wing-fin di rectlon opposedto the wind.
3. Awind motor including a drum formed witha plurality of partitions fixed therein and defining pockets extending from near the center thereof to substantially the periphery thereof and wings hinged at the. outer ends of'the partitions and adapted to" be feathered by wind pressure, and having limited outward Swinging movement from L the outer ends of the pockets, said wings having their upper and lower edges connected by'websto the ends of the drum.
4. A motor of the class described including a drum, a plurality ofpartitions extending from the periphery to substantially the axis of the drum and forming air pockets and wings pivoted to the partitions and defleeting air into the pockets, approximately triangular webs at the ends of the wings limiting outward swinging movement thereof and cooperating therewith to form scooplike baffles for deflecting air into the pockets.
and free to be feathered by wind pressure.
5. A motor of the class described incIuding a drum, a plurality of partitions extending from theperiphery to substantially the axis of the drum and forming air pockets andwings pivoted to thepartitions and deflecting air into the pockets, said partitions being curved from their inner to their outer vedges away, from the direction of rotation and wings hinged to the edges ofthe partitions-andmovable in innermost position to close the-inlets to the pockets, said wings having I limited outward swinging movement. v
7 A motor. of the class described including a drum including upper and lower heads, partitions extending from the axis of the drum to the periphery thereof and forming air pockets and wings hinged to the edges ofthe partitions and. movable across the inletsto the pockets, said partitions having limited/outward swinging moven'ient, themeans for. limiting. the outward swinging movement of the wings including substan tially triangularwebs connecting the upper andilower. edges of the wings witl'iIthe up per andlower heads of the drum.
A motor of the class described including a' drum including upper and lower heads, partitions extending from the axis of thedruni to the periphery thereof and torming airflpockets and wings hinged to the edges of the partitionsand movable across the'inlets to the pockets to close the same,
said. partitions having'limited outward swinging -1nove1nent,- said partitions being curved away from the direction of rotation of the drum whereby air directed into the pockets. by a wing. is trapped by the partitions to which the wing ishinged.
9. -A motor of theclass described including adrum having heads, and curved partitions extending from near the axis to substantially the periphery of the drum, and arcuate wings pivot-edto the partitions and adapted to swing across the mouths of the pocketsdefined thereby to close the same.
10. .A motor of the class described including a drum having heads, and curved partitions extending from near the axis to sub stantially the vperiphery of the drum, and arcuate wings pivoted to the partitions and adapted to. swing, across the mouths of the pockets defined thereby, said wings being curved on an arc struck from the center or the drum.
11. A motor of the class described includ.- ing a drum having heads, and curved partl tions extending from near/the axis to substantially the periphery of the drum, and
arcuate wings pivoted to the partitions and.
adapted to swing acrossrthe months or the pockets defined thereby to substantially close the same, and means for limiting the outward swinging IUOVQHlGIliZOf the wings including webs connecting the upper and low-er. ends of the wings to the heads of the drum.
12. A wind motor including a drum formed with a plurality of partitions defining pockets extending from near the center thereof to substantially the periphery there of and wings hinged at the outer ends of the partitions, said wings comprising skeleton frames supporting taut sheets of flexible material. I v
13. A wind motor comprising a drum having upper and lower heads, a hub, partitions extending from the hub to the periphery of the drum, wings hinged to the partitions and adapted when in closed position tooverlap each other and provide projecting ends offering wind resistance.
14-. A device otthe class described including a drum comprising upper and lower heads, a hub connecting the heads, uniformly spaced partitions extending from the hub to the peripheries of the-head and defining air pockets and wings hinged to the partitions and curved on an arc struck from the center of the drum.
15. A device of the class described including a drum comprising upper and lower heads, a hub connecting the'heads, unitormly spaced partitions extending, from the hub to the periphery voit the head and defining air pockets, wings hinged to the partitions and curved on an arc struck from the center of the drum, each wing being longer than thedistanee between the partitions whereby to provide free following edges overlapping the hinged edge 01": anadjacent wing and oiering a projecting end to expedite the opening of the blade under the influence of the wind.
{Signed at'New York in the county of s ew York and State of New York, this 2'7thday of February, A. 11.1925.
LOUIS E. KOTHE.
US12200A 1925-02-28 1925-02-28 Fluid motor Expired - Lifetime US1578835A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
US12200A US1578835A (en) 1925-02-28 1925-02-28 Fluid motor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
US12200A US1578835A (en) 1925-02-28 1925-02-28 Fluid motor

Publications (1)

Publication Number Publication Date
US1578835A true US1578835A (en) 1926-03-30

Family

ID=21753825

Family Applications (1)

Application Number Title Priority Date Filing Date
US12200A Expired - Lifetime US1578835A (en) 1925-02-28 1925-02-28 Fluid motor

Country Status (1)

Country Link
US (1) US1578835A (en)

Cited By (15)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4086023A (en) * 1975-10-08 1978-04-25 Concept Development Institute, Inc. Windmill
US4204795A (en) * 1977-09-21 1980-05-27 Forrest William J Wind collecting method and apparatus
US4204356A (en) * 1978-03-21 1980-05-27 Smith Laverne Underwater fishing lure reciprocating device
US4357130A (en) * 1977-09-21 1982-11-02 Forrest William J Wind collection apparatus
US4364709A (en) * 1981-12-30 1982-12-21 August Tornquist Wind power converter
US4424796A (en) 1981-06-11 1984-01-10 Fish James W Wind-powered heat-generating apparatus
US4923368A (en) * 1985-03-12 1990-05-08 Martin Research & Development Ltd. Liquid driven turbine
US20040036297A1 (en) * 2002-08-21 2004-02-26 Rowe John Vertical axis wind turbine
FR2844837A1 (en) * 2002-09-19 2004-03-26 Emmanuel Marsollier Vertical-axis wind turbine with removable sails on tubular armature to power boats or vehicles, uses tubular armature to carry vertical blades that open out to catch wind and fold back when returning against wind
US20050025624A1 (en) * 2003-07-31 2005-02-03 Pierson Robert M. Wind turbine with vertical axis
WO2009084992A1 (en) * 2007-12-27 2009-07-09 Gehrke, Jan Wind turbine comprising means to alter the size of the surface of the blades
CN101907059A (en) * 2010-08-12 2010-12-08 吕伟雄 Fan blade mechanism of wind driven generator
US20110089698A1 (en) * 2009-07-24 2011-04-21 William Ahmadi Combination solar and dual generator wind turbine
US20240093668A1 (en) * 2022-09-15 2024-03-21 Ching-Cheng Huang Turbine device, power apparatus and power integrated system of electric power system
EP4438886A1 (en) 2023-03-23 2024-10-02 Hubert Peintner Water wheel

Cited By (18)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4086023A (en) * 1975-10-08 1978-04-25 Concept Development Institute, Inc. Windmill
US4204795A (en) * 1977-09-21 1980-05-27 Forrest William J Wind collecting method and apparatus
US4357130A (en) * 1977-09-21 1982-11-02 Forrest William J Wind collection apparatus
US4204356A (en) * 1978-03-21 1980-05-27 Smith Laverne Underwater fishing lure reciprocating device
US4424796A (en) 1981-06-11 1984-01-10 Fish James W Wind-powered heat-generating apparatus
US4364709A (en) * 1981-12-30 1982-12-21 August Tornquist Wind power converter
US4923368A (en) * 1985-03-12 1990-05-08 Martin Research & Development Ltd. Liquid driven turbine
US6740989B2 (en) 2002-08-21 2004-05-25 Pacifex Management Inc. Vertical axis wind turbine
US20040036297A1 (en) * 2002-08-21 2004-02-26 Rowe John Vertical axis wind turbine
FR2844837A1 (en) * 2002-09-19 2004-03-26 Emmanuel Marsollier Vertical-axis wind turbine with removable sails on tubular armature to power boats or vehicles, uses tubular armature to carry vertical blades that open out to catch wind and fold back when returning against wind
US20050025624A1 (en) * 2003-07-31 2005-02-03 Pierson Robert M. Wind turbine with vertical axis
WO2009084992A1 (en) * 2007-12-27 2009-07-09 Gehrke, Jan Wind turbine comprising means to alter the size of the surface of the blades
EP2232061A4 (en) * 2007-12-27 2013-07-24 Tripleminds Ab Wind turbine comprising means to alter the size of the surface of the blades
US20110089698A1 (en) * 2009-07-24 2011-04-21 William Ahmadi Combination solar and dual generator wind turbine
CN101907059A (en) * 2010-08-12 2010-12-08 吕伟雄 Fan blade mechanism of wind driven generator
CN101907059B (en) * 2010-08-12 2012-02-08 吕伟雄 Fan blade mechanism of wind driven generator
US20240093668A1 (en) * 2022-09-15 2024-03-21 Ching-Cheng Huang Turbine device, power apparatus and power integrated system of electric power system
EP4438886A1 (en) 2023-03-23 2024-10-02 Hubert Peintner Water wheel

Similar Documents

Publication Publication Date Title
US1578835A (en) Fluid motor
Falcão et al. Self-rectifying air turbines for wave energy conversion: A comparative analysis
AU632678B2 (en) Wind energy collection system
US4047834A (en) Horizontal multidirectional turbine windmill
CN101842585B (en) Transverse-axis turbine with twisted airfoils
US5126584A (en) Windmill
US5632599A (en) Turbine with circumferential support and stationary pressure release means
US6962478B2 (en) Vertical axis windmill
US8864455B2 (en) Impulse wind machine
US9371815B2 (en) Turbine with radial inlet and outlet rotor for use in bidirectional flows
US9863394B2 (en) Fluid turbine
US1178729A (en) Wind-wheel.
US10400748B2 (en) Wind turbine with folding blades
US7918648B1 (en) Windpower generator apparatus
US1502433A (en) Windmill
EP0509127A1 (en) Wind energy collection system
US658129A (en) Windmill.
US973823A (en) Water-motor.
CN106762430A (en) Gravity slip ring automatic telescopic wind generator
US1035377A (en) Rotatory mechanism.
JP5400224B2 (en) Propeller type windmill
US1531015A (en) Wind-power engine
US998446A (en) Windmill.
US802791A (en) Windmill.
JPS59103973A (en) Wind force generator provided with wind pressure and direction control and wind collection board on front face of vertical shaft windmill