CA1318569C - Liquid driven turbine - Google Patents

Liquid driven turbine

Info

Publication number
CA1318569C
CA1318569C CA000544329A CA544329A CA1318569C CA 1318569 C CA1318569 C CA 1318569C CA 000544329 A CA000544329 A CA 000544329A CA 544329 A CA544329 A CA 544329A CA 1318569 C CA1318569 C CA 1318569C
Authority
CA
Canada
Prior art keywords
turbine
water
drum
blade portion
bucket
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 - Fee Related
Application number
CA000544329A
Other languages
French (fr)
Inventor
George Roy Martin
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.)
Martin Research & Developments Ltd
Original Assignee
Martin Research & Developments Ltd
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 Martin Research & Developments Ltd filed Critical Martin Research & Developments Ltd
Application granted granted Critical
Publication of CA1318569C publication Critical patent/CA1318569C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

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
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B7/00Water wheels
    • 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
    • F05B2240/40Use of a multiplicity of similar components
    • 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

Abstract

ABSTRACT OF THE DISCLOSURE
A water driven turbine, particularly useful for pumping water from sources providing only a low head, is provided with a series of buckets secured to the periphery of a rotary drum.
The outer lip of each bucket is so aligned as to delay the discharge of water from the bucket until shortly before the bottom dead centre. The water inlet has a relatively narrow intake end receiving water and a relatively wide outlet end to spray the flow and to direct it along the length of the bucket to drive the turbine by the water falling into the buckets. The invention improves the efficiency of the turbine.

Description

318~69 BACKGROUND TO THE I~VENTION

Eield of InventLor This invention relates to a water driven turbine. The turbine is particularly useful for pumping water frnm sources providing only a low head. It can be used for other applications known to those skilled in the art.
Discussion o~ the PriQ~ Art.

Water wheels have been known and used for centuries. A number of applications have been devised for the use of water wheels. A
conventional wheel is of a relatively large diameter with relatively short axis of rotation. The blades extend radially outwardly from near the centre. Such blades are inefficient in operation in comparison with the turbine of the present invention.
We are aware of US Patent Nos. 1,015,858; 1,108,700;
1,798,646; 3,381,618; 4,043,702; 4,246,753 and 4,352,025 which all relate to devices having a common origin in the water wheel.
These represent the most relevant prior art known to us. None shows the same features of construction in combination of our invention.
It is advantageous to have a water wheel turbine of a mechanically simple design which allows the efficient use of the weight of water rather than speed to achieve sufficient momentum to turn the water wheel at optimum rate.
,,,. ~

~31~S~9
-2-It is an object of this invention to go some way towards achieving this desideratum or at least to offer the public a useful choice.
Summary of the Invention Accordingly the invention may be said broadly to consist in a water driven turbine comprising:
a central shaft, a drum co-axial and rotatable with said shaft, buckets fixed to the periphery of said drums, the alignment of the out lip of each said bucket being such as to delay discharge of water from said bucket until before but substantially close to bottom dead centre and, inlet means having a relatively narrow intake end to receive a flow of water and having a relatively wide outlet end to spread said flow and direct said water into each said bucket substantially along the length of said bucket whereby in use said drum and shaft are rotated by said water falling into said buckets.
Preferably said turbine is substantially ylindrical and the diameter of said drum is substantially one half to three quarters of the diameter of the circumference defined by the outer lips bf said buckets.
Preferably each said bucket is defined by the outer surface of said drum9 a disc extending radially outwardly at either end thereof and connecting inner and outer blade portions extending axially between each of said discs and substantially radially outwardly from said drum.

Preferably said blade portions are flat.

~ 3 ~ 6 9 Preferably the plane of the inner of said blades lies along a radius of said drum.
Preferably the plane of said outer blade intersects the plane of said inner blade at an angle of substantially 120.
Preferably there is provided a lip blade portion at the radially outer edge of a said outer b1ade, said lip extending axially between each of said discs.
Preferably the plane of said lip intersects the plane of said outer blade at an angle of substantially 120.
Preferably said outer blade is wider than viewed in end elevation than either of said inner blade and said lip portion.
Preferably there are provided three said inlet means into said turbine.
Preferably the planes of said inner blades extending radially from said drum intersect at angles of substantially 30.
Preferably said inlet is provided at its water discharge end with deflecting means to direct the flow of water in a substantially flat flow.

Preferably said deflecting means comprises a lip at said discharge end thereof and complementary means to direct the flow of water from said lip substantially radially inward toward the opening of each said bucket.
Preferably said turbine is provided with a casing.
Preferably said casing is closely fitting over said buckets.
Preferably at least one end of said shaft is provided with a crank drivingly connected to a reciprocating pump, the source for water pumped by said pump being a reservoir near the discharge point for water driving said turbine.

~318~9 Preferably there is provided a baffle between the point of discharge oF water from said turbine and the point of intake of water into said pump to reduce cavitation in water being pumped.

Brjef Descrip~iQn of thç ~ra~i~q~

The invention may be more fully understood by having reference to the accompanying drawings ~herein:
Figure 1 is an end elevation of a turbine according to the invention with a protective side housing removed from the reciprocating pump and a portion of the 10wer part of the casing broken away to show the intake reservoir.
Figure 2 is a sectional view of the drum and buckets of a first construction.
Figures 3 is the cross section view III-III in Figure 4 of the cover/inlet portion of the apparatus.
Figure 4 is the section view IV-IY in Figure 3.
Figure 5 is a perspective view of the cover/inlet of Figures 3 and 4.
Figure 6 is a front elevational view of three turbines according to the invention having the ends of their driven shafts interconnected.
Figures 7A and 7B are side elevations of three turbines mounted one above the other and connected with the spoutirg of a building to use rainwater to drive the turbines.
Figure 8 is a cross-sectional view of an alternative embodiment of the invention showing turbine buckets of another constructions.
Figure 9 is an isometric projection of a further embodiment of the invention with part of the end cut away.

, ~L3~8~3 Figure 10 is a sectional view taken in the direction of the arrows X-X as shown in Figure 9.
Figure 11 is an end elevation of a pump mounted on the turbine according to the invention.

~ etailed Des~ciption of ~he Invention Referring to Figure 2 the driven component of the turbine of the invention comprises a pair of end dlscs 40 mounted at either end of a drum 46. Buckets of one embodiment are formed by means of flat blades comprising an inner portion 44 and an outer portion 42. Discs 40 extend radially beyond the lips of outer portions 42 in a preferred embodiment to reduce spillage of water out of the buckets. In the embodiment illustrated the plane of inner portion 44 lies in a radius of the drum. Blade 42 extends at an angle of approximately 120 to blade 44. There are a series of spokes 48 which extend from a bush 50 around central shaft 15 to support the drum 46. Other suitable constructions can be employed to maintain the drum to be rotatable with central shaft 15. Constructions using blades which are curved to form buckets ~ay be used. A
particularly preferred embodiment is described below in relation to Figure 8. As will be discussed below the buckets are designed to provide the maxi~um torque in rotating shaft 15.
The turbine is provided with a casing 10 as illustrated in Figure 1. End 14 of shaft 15 is mounted in a bearing block 13. A
crank 16 is mounted on end 14 and joined by a connecting rod 18 to a slide piece 20. Slide piece 20 operates the piston rod of a reciprocating pump 22. A pipe 24 leads out of pump 22. A
non-return valve 26 is provided in pipe 24.

~318~69 At the bottom of casina 10 at the lower left hand side there is provided an outlet 28 from which water 38 is discharged in operation. The inlet for pump 22 is provided by a first elbowed pipe 32, a tubing 34 and an inlet 36 which is open at its bottom end. A suitable filter 39 may be provided in inlet 36. In one embodiment metal wool made of a suitable non-corrosive metal can be used.
Inside the bottom of casing 10 there is a defined reservoir 30, the depth of which is determined by the bottom level height of opening 28. Reservoir 30 extends to one end of the casing to provide a reservoir for intake 36. A baffle plate may be provided betwe0n the main reservoir and the side reservoir 30. This baffle can reduce cavitation during use reducing the incidence of bubbles in tubing 34. In one preferred embodiment a pump and reservoir are provided at each end of the casing.
In the top of the casing 10 there is provided a rectangular opening into which fits the cover/inlet member illustrated in Figures 3, 4, and 5. The cover/inlet member comprises a top portion 52 having a central inlet hole 53. There are also provided front walls 54, side walls 55, rear wall 60, a central gusset 58 and a curved bottom wall 56 having slots 62 and 64 passing therethrough. At the bottom of opening 53 above one wall 56 there is provided a deflector 66 having a pair of folded back ends 68 and a lip portion 70. Inlet pipe 12 fits into opening 53.
Referring to Figure 5 there may also be provided a pair of auxilliary openings 72 and 74 and caps 76 and 69 for use when only one source of water is provided.

~3.18~g Referring to Figure 6 there are ill~strated three turbines 71, 73 and 75. Each has an inlet lZ and discharge opening 28. Each of the abutting ends 14 of shafts 15 of the three turbines are connected to each other.
Illustrated in Figures 7A and 7B are three turbines 78, 80 and 82 mounted one above the other on the side of a building 77 draining water from the building. Spouting 79 empties into downpipe 81 which feeds in turn each of the turbines 78, 80 and 82. A priming reservoir is provided at the bottom of turbine 82 and this is emptied by drainpipe 85 into sewer pipe 87. As illustrated in Figure 7B a crank 90 may be provided on the bottom turbine 82 connected by a connecting rod 92 to a reciprocating pump 86. A intake priming pipe 88 is connected to the reservoir at the bottom of turbine 82.
A discharge pipe 84 leads from pump 86.
The drive shafts of each of the three turbines 78, 80 and 82 may be interconnected by chain and sprocket or the like gearing means so that the torque of the three turbines is combined into the the drive of the bottom twrbine 82.
The operation of the embodiment illustrated in Figures 1 to 5 will now be described. A source of water is provided to conduit 12. In one operative embodiment a stream is dammed to provide a head of approximately 600mm feeding a circular pipe 12 of approximately 100mm diameter. Water discharged from the mouth of pipe 12 contacts the deflector 66 above slots 62 and 64. Some of the flow drops directly through slot 62 and a lesser amount directly through slot 64. Another portion of the stream of water is deflected by lip 70 outwardly in the direction of arrow A along ~318~69 the deflector 66 and past the end portion 68 against the inside of wall 66 and back down slot 64 as shown by arrow B. The steam of water passing through the slots 62 and 64 is spread substantially along the length of the buckets immediately below. It will be seen from Figure 2 that water does not begin to discharge from the buckets until the turbine has rotated to approximately 4 to ~
o'clock. This allows sufficient torque to b0 developed to rotate shaft 14 at an optimum efficiency.
It has been observed that with a head of 600mm and a reciprocating pump having a bore of 38.1mm water can be raised to a reservoir of 61 meters height while the turbine is rotating at between 60 and 90 RPM. It was further observed that the pump was self priming. It is believed that the combination of the shape of the buckets and the spread of water by the lips at the inlet the maximum torque is provided on shaft 15.
The embodiments illustrated in Figures 6, 7A and 7B provide increased pumping power over a single turbine where this is required. The operation is substantially the same as is illustrated in relation to Figures 1 to 5 except that the torque delivered from each turbine augments the others. It will be appreciated that the embodiment shown in Figures 7A and 7B may be employed in high rise buildings not only for storm water but also for such uses as sinks. The waste water can be recycled to reserve tanks on the roofs of buildings for use in automatic urinal flushing systems and toilet flushing systems or the like.
In the embodiment illustrated in figure B and the buckets are formed by three blade portions. Inner blade portion 112 extends radially outwardly from the circumference 111 of a drum 110 1~18~69 g carrying outer blade portion 114 and lip portion 116. When viewed in cross section, the construction of the bucket is completed by end discs 40.
In the embodi~ent illustrated the plane of portion 114 intersects a radial plane passing through blade portion 112 at an angle of 120. Similarly the plane in which lip portion 226 lies intersects the plane in which outer portion 114 lies at an angle of 120. These are preferred embodiments and other arlgles may be found to be appropriate for other circumstances. Outer blade portion 114 is wider than inner portion 112 or lip portion 116.
Inlet 12 empties water 38 onto curved bottom wall 56 of the throat of the turbine and water passes through slots 62 and 64 in the same manner as illustrated in Figure 3. A curved portion 118 is cut into the back wall of the casing 10 to allow passage of the - buckets as they rotate about axis 15.
Water intake 36 is illustrated in the bottom reservoir of the turbine. In another embodiment intake 36 is placed in a source of fresh clear water and inlet 12 is connected to a source of waste water so that the waste water can be used to pump the fresh water.
The turbine is illustrated in Figure 8 is sitting on a concrete pad 120.
In operation water flowing inlet 12 passes through the slots S2 and 64 to enter the buckets as defined by drum surface 111, blade portions 112, 114, 116 and discs 40 to drive the turbine in a counter clockwise as illustrated in Figure 8.
A further embodiment of the invention is illustrated in Figures 9, 10 and 11. This construction features a casing which is substantially cylindrical surrounding the buckets and a ~31~69 reciprocating pump driven by the turbine mounted so as to reduce the length oF the priming pipe as compared to the other embodiment illustrated.
The construction comprises a pair of upright frames 122 and 124. The cylindrical casing 130 has an upright inlet manifold 128 and an outlet 131 feeding into a bottom reservoir 134. Inlet manifold 128 has three inlet holes 127, 129 and 139. In the embodiment illustrated an inlet pipe 126 feeds into inlet hole 127. Casing 130 sits on three blocks 132. Opening 136 in the forrn of a lip as illustrated extencls from the side of the reservoir casing 134. Priming pipe 146 from the pipe leads into pump intake box 148. This box is separated by a bafflP from the main body of the reservoir so as to minimise the presence of bubbles caused by cavitation within box 148. Shaft 140 is mounted in bearing block 138 which in turn is mounted on upright frame member 124.
In Figure 10 crank disc 50 is illustrated mounted on the end of shaft 140. This crank is better illustrated in Figure 11.
Referring to Figure 10 the turbine comprises a drum 142 mounted by radial spokes ~not illustrated3 extending from drum 142. Each blade 144 consists of a radial inner portion, a main blade portion extending at an angle of approximately 120 from the inner blade portion and an outer lip again extending at an angle of approximately 120 from the main blade portion. In the embodiment illustrated the angle between adjacent inner portions of the blade is approximately 30. Although the preferred blade configurations and angles are as illustrated it will be appreciated that a curved blade having a lip achieving the same retention of water may also be employed.

~3~8~69 Within the manifold 128 at the bottom there is a spreader section 133 with two longitudinal openings 135 and 137 opening into the casing and into the mouth of buckets.
Referring to Figure 11 a reciprocating pump for use with the turbine of the invention is illustrated. The pump is mounted on an aluminium channel 160 having upright lips 162 projecting therefrom. Four bolts 164 mount the channel onto an end frame member 124. A similar channel may be mounted on th~ outer face of upright frame member 122.
The pump consists of a barrel 176 extending fro~ a bracket 174 to below bracket 184. Brackets 174 and 184 retain the barre1 in the position illustrated. Piston rod 168 extends out the top of barrel 176 and through bearing blocks 172 and 166. Preferably these bearings are brass bearings. Within the guideway 178 in barrel 176 at the end of piston rod 168 there is provided a washer 180 and a brass guide 182. In a preferred embodiment the washer is a leather washer. A connecting member 170 is mounted with screws on piston rod 16~. Crank disc 150 having a choice of three positions for the end 156 of connecting rod 154 is mounted on the end of shaft 140 by a key in a keyway 152. A knuckle joint 158 at the opposite end of connecting rod 154 joins the connecting rod 154 to the connecting member 170.
Priming pipe 146 extends downwardly from nan-return valve 188 at the bottom of the pump barrel. To the right of the pump barrel a discharge pipe 187 extends out of a one way valve 186.
In operation water flowing into outlet pipe 126 is spread outwardly within the manifold 128 to pass through the openings 135 and 137 into the exposed bucket 144. As in the operation of the 1318~

ou-ter buckets the spreading o~ the water is effected even1y along substantially the length of the bucket from end to end between the end discs 14~. Because of the particular configuration of the buckets a substantial amount of water is retained in each of them as the turbine is rotated in a clockwise direction past bottom dead centre and emptying is not coMpleted until the r01ative bucket has rotated above this position. Crank disc 150 i5 rotated on a shaft 140 by the water falling on the buckets raising connecting rod 15 and consequently piston rod 168 to draw water into the pump barrel on the upstroke opening the one way valve 188 while on the downstroke one way valve 188 is closed and water is discharged through one way valve 186 and out pipe 187. Excess water in reservoir 134 not pumped by the turbine is discharged out outlet 136.
Performance equal to or better than that described in relation to the earlier embodiments has been observed using the embodiments of Figures 9 to 11 inclusive.
As is disclosed in the prior art listed above turbines according to the present invention are not limited to use in driving pumps. They may be employed as power sources for generating electricity or as a source of mechanical power for applications previously made by conventional water wheels.

Claims (16)

1. A substantially cylindrical water driven turbine, comprising:
a central horizontal shaft;
a drum co-axial and rotatable with said shaft;
a plurality of elongate buckets, each bucket being defined by the outer surface of said drum, an end disc extending radially outwardly at each end of said drum, and connecting radially inner and outer blade portions extending axially between each of said end discs and in a direction substantially radially outwardly from said drum, each bucket being adapted to delay discharge of water from said bucket during rotation of said drum until before but substantially close to bottom dead center;
the diameter of said drum being substantially in the range of one half to three-quarters of the diameter of the circumference defined by the outer lips of said buckets;
receive a flow of water and having an outlet end which is relatively wide to spread said flow horizontally and direct the water into each bucket substantially along the length of said bucket;
the axial distance end to end of said drum being greater than the width of said intake end of said inlet means;
the water outlet end of said inlet means being provided with deflecting means to direct the flow of water in a substantially flat flow, said deflecting means comprising a discharge end having a deflecting lip thereon for deflecting the water in the direction extending substantially along the length of said buckets, and directing means to direct the flow of water from said deflecting lip at said discharge end inwardly toward the opening of each bucket;
the arrangement being such that in use said drum and shaft are rotated by said water falling into said buckets.
2. A turbine as claimed in claim 1 wherein said blade portions are substantially flat.
3. A turbine as claimed in claim 2 wherein each inner blade portion lies in a plane extending along a radius of said drum.
4. A turbine as claimed in claim 3 wherein each outer blade portion lies in a plane which intersects the plane of said inner blade at an angle of substantially 120?.
5. A turbine as claimed in claim 4 wherein a lip blade portion is provided at the radially outer edge of said outer blade portion, said lip blade portion extending axially between each of said end discs.
6. A turbine as claimed in claim 5 wherein the plane of said lip blade portion intersects the plane of said outer blade portion at an angle of substantially 120?.
7. A turbine as claimed in claim 6 wherein said outer blade portion is wider when viewed in end elevation than either of said inner blade portion and said lip blade portion.
8. A turbine as claimed in claim 5 wherein said outer blade portion is wider when viewed in end elevation than either of said inner blade portion and said lip blade portion.
9. A turbine as claimed in claim 7 wherein the planes of said inner blade portions extending radially from said drum intersect with each other at angles of substantially 30?.
. 10. A turbine as claimed in claim 1 wherein three said inlet means are provided in said turbine.
11. A turbine as claimed in claim 1 wherein at least one reciprocating pump is provided for pumping water, at least one end of said shaft is provided with a crank drivingly connected to said at least one reciprocating pump, a reservoir is provided near a discharge point for water driving said turbine, andan inlet for said at least one reciprocating pump is provided and connected to said reservoir so that the water source for said pump comprises said reservoir.
12. A turbine as claimed in claim 11 wherein the water in said reservoir is supplied by said discharge point.
13. A turbine as claimed in claim 1 wherein: said directing means comprises at least one slot in said outlet end of said inlet means extending in said direction substantially along the length of said bucket.
14. A turbine as claimed in claim 13 wherein: said deflecting means comprises a first curved section on said discharge end; and said deflecting lip comprises a second curved section curved oppositely to the curvature of said first curved section.
15. A turbine as claimed in claim 1 wherein: said deflecting means further comprises a first curved section on said discharge end; and said deflecting lip comprises a second curved section curved oppositely to the curvature of said first curved section.
16. A turbine as claimed in claim 1 wherein the axial length of said drum is greater than the diameter of said drum.
CA000544329A 1985-03-12 1987-08-12 Liquid driven turbine Expired - Fee Related CA1318569C (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
NZ211406A NZ211406A (en) 1985-03-12 1985-03-12 Water driven turbine

Publications (1)

Publication Number Publication Date
CA1318569C true CA1318569C (en) 1993-06-01

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ID=19921127

Family Applications (1)

Application Number Title Priority Date Filing Date
CA000544329A Expired - Fee Related CA1318569C (en) 1985-03-12 1987-08-12 Liquid driven turbine

Country Status (5)

Country Link
US (1) US4923368A (en)
AU (1) AU595791B2 (en)
CA (1) CA1318569C (en)
GB (1) GB2172341B (en)
NZ (1) NZ211406A (en)

Families Citing this family (29)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3938748C2 (en) * 1989-11-23 1994-06-23 Peter Georg Lahne Hydroelectric machine
US5947678A (en) * 1998-06-30 1999-09-07 Bergstein; Frank D. Water wheel with cylindrical blades
CN1330877C (en) 1999-10-05 2007-08-08 通达商业集团国际公司 Hydro-power generation for water treatment system
US6885114B2 (en) 1999-10-05 2005-04-26 Access Business Group International, Llc Miniature hydro-power generation system
US6526598B1 (en) * 2001-05-30 2003-03-04 Robert V. Black Self-contained venting toilet
US6589014B1 (en) * 2002-01-15 2003-07-08 John Hawryluk Fluid-driven turbine
US6877968B2 (en) * 2002-11-27 2005-04-12 The Salmon River Project Limited Low head water turbine
TW200500552A (en) * 2003-03-28 2005-01-01 Toto Ltd Water supply apparatus
US7675188B2 (en) * 2003-10-09 2010-03-09 Access Business Group International, Llc Miniature hydro-power generation system
US20060108808A1 (en) * 2004-11-22 2006-05-25 Chen Mervyn A System and method for generating electricity using well pressures
US20090216452A1 (en) * 2005-07-05 2009-08-27 Develop Tech Resources Energy recovery within a fluid distribution network using geographic information
US7429803B2 (en) * 2005-08-01 2008-09-30 Rufus Davis Sewer line power generating system
ATE464475T1 (en) * 2005-12-29 2010-04-15 Georg Hamann DEVICE AND SYSTEM FOR GENERATING REGENERATIVE AND RENEWABLE ENERGY FROM WATER
EP2345946B1 (en) * 2006-03-22 2014-03-12 Diversey, Inc. Device and method for dilution control
BRPI0721478A2 (en) 2007-03-21 2014-03-25 Johnson Diversey Inc FLUID DISPENSING APPLIANCE AND METHOD
TW201014154A (en) * 2008-09-23 2010-04-01 qing-yuan Huang Reinforced mixed-flow turbine
EP2435666A2 (en) * 2009-05-26 2012-04-04 Leviathan Energy Hydroelectric Ltd. Hydroelectric in-pipe turbine uses
US20120169061A1 (en) * 2009-09-15 2012-07-05 Tai Koan Lee Power Generation System, Power Generator and Method Thereof
GB2475859B (en) * 2009-12-02 2013-03-06 John Kennedy Fletcher Shallow water energy generator
WO2011083407A2 (en) * 2010-01-11 2011-07-14 Saeheum Song Method and apparatus for harnessing hydro-kinetic energy
US20120049526A1 (en) * 2010-09-01 2012-03-01 Mathew Michael Raio Energy recovery system (E.R.S.)
JP5146973B1 (en) * 2011-12-19 2013-02-20 納 長尾 Water turbine
CN102705133A (en) * 2012-06-26 2012-10-03 毛雪祥 Water turbine and generating station using same
KR101569094B1 (en) * 2014-07-15 2015-11-16 (주)케이비테크놀로지 Generator Using Drop of Waste Water in Building
PL233857B1 (en) * 2017-09-12 2019-12-31 Politechnika Lódzka Mechanism of applying tension for the roll supporting angular bearings
PL233793B1 (en) * 2017-09-12 2019-11-29 Politechnika Lodzka Mechanism of applying initial tension for the roll supporting angular bearings
PL236855B1 (en) * 2017-09-21 2021-02-22 Politechnika Warszawska Segment of the inward-flow turbine rotor
US11635056B2 (en) 2021-08-23 2023-04-25 Leonard Eva Electric generating precipitation collection system
US11525429B1 (en) 2022-01-28 2022-12-13 SaeHeum Song Systems and methods for harnessing hydro-kinetic energy

Family Cites Families (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US1015858A (en) * 1910-05-18 1912-01-30 Giuliano Verde Water-wheel.
US1108700A (en) * 1913-03-21 1914-08-25 John M Christoffel Fluid-motor.
US1379515A (en) * 1917-12-14 1921-05-24 William F Bell Double-action pump
US1331110A (en) * 1919-04-12 1920-02-17 Hutchens William Art Sectional overshot water-wheel
US1578835A (en) * 1925-02-28 1926-03-30 Louis E Kothe Fluid motor
GB306656A (en) * 1927-12-24 1929-02-28 Thomas Arthur Clarke Improvements in or relating to water motors
US1798646A (en) * 1929-08-24 1931-03-31 Andersson Wilhelm Hydraulic pump
US3381618A (en) * 1967-04-10 1968-05-07 Hudson Eng Co Self-priming system for horizontal pumps
SE386717B (en) * 1974-10-30 1976-08-16 Granath Einar WATER ENGINE DEVICE INTENDED TO TURN OVER
US4043702A (en) * 1975-04-16 1977-08-23 Lui Gotti Water wheel assembly
SE410723B (en) * 1976-07-16 1979-10-29 Trelleborg Ab DEVICE AT SCOPE ELEVATOR WITH A URL LOADING STATION WITH A CAMYTA FOR INTERVENTION WITH A CAMPHOLE AREA ON VARDERA SCOPE FOR TURNING AND EMPTYING THIS
GB2016090A (en) * 1978-03-08 1979-09-19 British Aerospace Stirling cycle apparatus
ZA781681B (en) * 1978-03-22 1979-11-28 Constance R Spit roasting apparatus and the spit roasting of roastable foodstuffs
US4218176A (en) * 1978-05-17 1980-08-19 Gawne Gordon S Fluid propulsion apparatus
US4246753A (en) * 1979-10-24 1981-01-27 Benjamin Redmond Energy salvaging system
US4272686A (en) * 1980-03-25 1981-06-09 Kunio Suzuki Apparatus for converting hydraulic energy to electrical energy
WO1981003359A1 (en) * 1980-05-16 1981-11-26 E Commins Mechanical energy autonomous hydromotor
US4352025A (en) * 1980-11-17 1982-09-28 Troyen Harry D System for generation of electrical power
US4467217A (en) * 1982-05-17 1984-08-21 Roussey Ernest H Hydro-turbine

Also Published As

Publication number Publication date
GB2172341B (en) 1989-08-16
GB8606088D0 (en) 1986-04-16
NZ211406A (en) 1987-08-31
US4923368A (en) 1990-05-08
GB2172341A (en) 1986-09-17
AU595791B2 (en) 1990-04-12
AU5466586A (en) 1986-09-18

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