Hydroelectric power generation apparatus
10648449 ยท 2020-05-12
Assignee
Inventors
Cpc classification
F03B17/063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/30
GENERAL 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
F03B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/706
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B17/061
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Y02E10/20
GENERAL 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
F05B2240/90
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F03B7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B15/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B17/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A hydroelectric power generation apparatus includes a hydroelectric power generation module, a supporting part, and a bar. The hydroelectric power generation module includes a rotary blade and a power generator that generates power by rotation of the rotary blade. The supporting part supports the hydroelectric power generation module. The supporting part can be installed at a water channel. The bar is connected to the supporting part to protrude from the supporting part. With one end of the bar closer to the supporting part or a portion of the supporting part serving as a center, the other end of the bar opposite to one end of the bar can be pivoted to switch a first state to a second state and vice versa.
Claims
1. A hydroelectric power generation apparatus comprising: a hydroelectric power generation module including a rotary blade and a power generator the power generator configured to generate power using rotation of the rotary blade; a supporting part that supports the hydroelectric power generation module, the supporting part extending across a water channel so that a first end of the supporting part is disposed on a first side of the water channel and a second end of the supporting part is disposed on a second side of the water channel, the second end of the supporting part being opposite the first end of the supporting part, the second side being opposite the first side of the water channel; and a bar having 1) a first end at one end of a longitudinal axis of the bar and 2) a second end at another end of the longitudinal axis of the bar, the first end of the bar being connected to the first end of the supporting part so that the longitudinal axis of the bar is perpendicular to a longitudinal axis of the supporting part, wherein when the hydroelectric power generation apparatus is in a first state, 1) the rotary blade is below a surface of water flowing through the water channel and 2) the longitudinal axis of the bar is parallel to the surface of water flowing through the water channel, wherein when the hydroelectric power generation apparatus is in a second state, 1) the rotary blade is above the surface of water flowing through the water channel and 2) the longitudinal axis of the bar is perpendicular to the surface of water flowing through the water channel, and wherein the bar pivots about the first end of the bar to switch between the first state and the second state of the hydroelectric power generation apparatus, and wherein the hydroelectric power generation apparatus further comprises a supporting member that rotatably supports the supporting part, the supporting member including 1) a first supporting member disposed on the first end of the supporting part and the first side of the water channel and 2) a second supporting member disposed on the second end of the supporting part and the second side of the water channel.
2. The hydroelectric power generation apparatus according to claim 1, further comprising a connecting member that detachably connects the bar to the supporting part.
3. The hydroelectric power generation apparatus according to claim 1, wherein the supporting member has a hinge.
4. The hydroelectric power generation apparatus according to claim 1, wherein the supporting member has a bearing.
5. The hydroelectric power generation apparatus according to claim 1, wherein the rotary blade is a horizontal-axis-type, propeller-type rotary blade.
6. The hydroelectric power generation apparatus according to claim 1, wherein the rotary blade is a vertical-axis-type rotary blade.
Description
BRIEF DESCRIPTION OF DRAWINGS
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DESCRIPTION OF EMBODIMENTS
(20) Embodiments of the present invention will now be described with reference to the drawings. In the figures, identical or corresponding components are identically denoted and wilt not be described redundantly.
First Embodiment
(21) <Configuration of Hydroelectric Power Generation Apparatus>
(22)
(23) The hydroelectric power generation apparatus shown in
(24) The control device controls the output of power generator 3 and rotary blade 1. Maximum power extracted from power generator 3 varies depending on the flow velocity of the water current. Accordingly, the control device measures the flow velocity of the water current, the rotation speed of rotary blade 1, or the power generation voltage of power generator 3, and determines an optimum current value allowing a maximum power to be extracted from power generator 3. Then, the control device controls the hydroelectric power generation module so that the amount of the current of power generator 3 matches the optimum value.
(25) The supporting part supports the hydroelectric power generation module. The supporting part includes two beams 4a and 4b, a mount 4c, a support 4d, and a base plate 4e. The two beams 4a and 4b are aligned in parallel. At the center portions of the two beams 4a, 4b, mount 4c is disposed to connect the two beams 4a, 4b. Mount 4c is fixed to beams 4a. 4b. On an upper surface of mount 4c, two supports 4d are disposed with a spacing therebetween. The two supports 4d are each disposed at an end of mount 4c. Further, supports 4d are positioned to overlap beams 4a, 4b in plan view. Base plate 4e is disposed to connect between the two supports 4d. Power generator 3 is fixed to base plate 4e. Power generator 3 is disposed between mount 4c and base plate 4e. The support of the hydroelectric power generation module has one end connected to a lower surface of mount 4c.
(26) Bars 5a, 5b serving as lifting bars are fixed to beams 4a, 4b with a bolt 15. Bar 5a is connected to each beam 4a, 4b at one end. Bar 5b is connected to each beam 4a, 4b at the other end opposite to one end. Bars 5a and 5b extend in a direction traversing a direction in which beams 4a and 4b extend, and for example it is a direction orthogonal to beams 4a and 4b.
(27) Bars 5a, 5b are detachably connected to beams 4a, 4b with bolt 15 constituting a connecting member. Specifically, beams 4a, 4b each have opposite ends each with a hole formed therethrough to pass bolt 15 therethrough. In addition, bars 5a and 5b each also have a hole formed therein to receive bolt 15. Bars 5a, 5b are positioned with respect to beams 4a, 4b so that the holes of bars 5a, 5b overlap the holes of beams 4a, 4b. The hydroelectric power generation apparatus shown in
(28) <Method for Lifting the Hydroelectric Power Generation Apparatus>
(29)
(30) Initially, as shown in
(31) Subsequently, ends of bars 5a and 5b (i.e., the other end of each bar opposite to one end thereof connected to beams 4a and 4b) are lifted in a direction indicated by an arrow 10 shown in
(32) While in the above configuration a center of rotation when lifting, the other ends of bars 5a, 5b is a portion at which beams 4a, 4b are in contact with wall portion 8 of the water channel, the center of rotation may be one end of each bar 5a, 5b located closer to beam 4a.
(33) By thus lifting the other ends of bars 5a, 5b in the direction of arrow 10 (see
(34) While the hydroelectric power generation apparatus described above has beams 4a and 4b disposed directly on wall portion 8 of the water channel, bars 5a and 5b may also be applied to a hydroelectric power generation apparatus of a different configuration. For example, a configuration in which a foundation for a hydroelectric power generation apparatus is separately formed on opposite sides of a water channel and beams 4a, 4b are mounted on that foundation may also similarly have bars 5a, 5b connected to beams 4a, 4b. This case also allows the hydroelectric power generation module of the hydroelectric power generation apparatus to be lifted out of the water channel by lifting the other ends of bars 5a, 5b.
(35) Further, while, as shown in
(36) <Operation of Hydroelectric Power Generation Apparatus>
(37) The hydroelectric power generation apparatus fixed to the water channel has its rotary blade rotated by a current of water flowing through the water channel. The rotary blade generates rotational energy which is in turn transmitted to power generator 3 via gear box 2, a rotation shaft disposed inside the support, and the like. Power generator 3 receives the transmitted rotational energy and converts it into electrical energy. The electrical energy generated by power generator 3 is externally output through an output line or the like.
(38) <Characteristic Configuration, and Function and Effect>
(39) The above-described hydroelectric power generation apparatus comprises a hydroelectric power generation module, a supporting part (beams 4a, 4b, mount 4c, support 4d, and base plate 4e), and bars 5a, 5b. The hydroelectric power generation module includes rotary blade 1 and power generator 3 that generates power by rotation of rotary blade 1. The supporting part supports the hydroelectric power generation module. The supporting part can be installed at a water channel. Bars 5a, 5b are connected to the supporting part to protrude from the supporting part. With one end of each bar 5a, 5b closer to the supporting part or a portion of the supporting part serving as a center, the other end of each bar 5a, 5b opposite to one end thereof can be pivoted to switch a first state to a second state and vice versa. In the first state, as shown in
(40) Thus, by lifting the other ends of bars 5a, 5b, the hydroelectric power generation apparatus can be rotated about beams 4a, 4b. Further, by making bars 5a and 5b sufficiently long, a large distance can be provided between the center of rotation and the other ends to allow the hydroelectric power generation apparatus to be rotated with a relatively small force through leverage. Thus, without using a large-scale device using a pulley or a rope, and instead by a work such as lifting the other ends of bars 5a, 5b by manpower, the hydroelectric power generation apparatus can be easily lifted out of the water channel in a short period of time.
(41) For example, when heavy rain or the like results in the water channel having a raised water level, and accordingly, the hydroelectric power generation apparatus according to the present embodiment needs to be lifted out of a water current, the hydroelectric power generation apparatus according to the present embodiment can be lifted out of the water current without using a crane vehicle or the like. Further, the hydroelectric power generation apparatus does not require a large-scale device for an operation of lifting the apparatus, and can be manufactured and installed at a reduced cost. In addition, the operation of lifting the apparatus can be done with man power and thus no particular driving force is required, and a large degree of freedom can be obtained in where the hydroelectric power generation apparatus is installed.
(42) The hydroelectric power generation apparatus may further comprise a connecting member (bolt 15 and a nut) to detachably connect bars 5a, 5b to the supporting part. In that case, bars 5a, 5b can be connected to beams 4a, 4b only when the hydroelectric power generation apparatus is lifted out of the water channel. Further, a direction which bars 5a, 5b have with respect to beams 4a, 4b when the former are connected to the latter can be changed, as appropriate, so that rotary blade 1 faces a desired side when the hydroelectric power generation apparatus is lifted out of the water channel.
Second Embodiment
(43) <Configuration of Hydroelectric Power Generation Apparatus>
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(45) The hydroelectric power generation apparatus shown in
(46) <Method for Lifting the Hydroelectric Power Generation Apparatus>
(47) The method for lifting the
Third Embodiment
(48) <Configuration of Hydroelectric Power Generation Apparatus>
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(50) The hydroelectric power generation apparatus shown in
(51) Fixing device 9 is disposed to connect between beams 4a and 4b at opposite end sides of beams 4a and 4b. In other words, fixing device 9 is disposed to extend in a direction traversing a direction in which beams 4a and 4b extend. Fixing device 9 has, for example, a columnar shape. Normally, fixing device 9 is fixed to beams 4a and 4b by a fixing member such as a bolt. In contrast, as will be described hereinafter, when lifting the hydroelectric power generation apparatus, the bolt fixing device 9 to beams 4a and 4b is removed. Further, fixing device 9 is disposed at a position facing an inner peripheral surface await portion 8 of the water channel. As shown in
(52) Hinge 11 is disposed to connect the end surface of fixing device 9 and the side surface of beam 4a. Hinge 11 is fixed to the end surface of fixing device 9 and the side surface of beam 4a. When fixing device 9 is not bolted to beams 4a, 4b, the hydroelectric power generation apparatus can be moved (or rotated) in such a manner that the side surface of beam 4a is inclined with respect to the end surface of fixing device 9 with hinge 11 serving as a center.
(53) <Method for Lifting the Hydroelectric Power Generation Apparatus>
(54) The method for lifting the
(55) This case also allows the hydroelectric power generation apparatus to be easily lifted out of the water channel, as well as the method of lifting the same as shown in
Fourth Embodiment
(56) <Configuration of Hydroelectric Power Generation Apparatus>
(57)
(58) The hydroelectric power generation apparatus shown in
(59) Shaft 21 is connected to each of opposite ends of beam 4a to extend in a direction in which beam 4a extends, Bearing unit 20 supports shaft 21. Two bearing units 20 are disposed to sandwich beam 4a therebetween. Bearing unit 20 is fixed on an upper surface of wall portion 8 of the water channel. As shown in
(60) Inner race 20a, outer race 20b, and rolling element 20c constitute a hearing. Housing 20d holds the bearing. Specifically, housing 20d is disposed to surround an outer circumference of outer race 20b. Housing 20d is fixed to an upper surface of wall portion 8 of the water channel. Shaft 21 is rotatably supported by bearing unit 20. As a result, when the hydroelectric power generation apparatus is lifted out of the water channel, the hydroelectric power generation apparatus can be rotated about shaft 21 and beam 4a, as will he described hereinafter.
(61) Bars 5a, 5b are connected to beams 4a, 4b on an inner peripheral side of the water channel. Bars 5a, 5b are disposed to extend along an internal wall surface of wall portion 8 of the water channel.
(62) While bearing unit 20 is connected to the upstream beam 4a, as shown in
(63) <Method for Lifting the Hydroelectric Power Generation Apparatus>
(64) The method for lifting the
(65) This case also allows the hydroelectric power generation apparatus to be easily lifted out of the water channel, as well as the method of lifting the same as shown in
Fifth Embodiment
(66) <Configuration of Hydroelectric Power Generation Apparatus>
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(68) The hydroelectric power generation apparatus shown in
(69) The above-described hydroelectric power generation apparatus can have a rotary blade in any form.
(70) While embodiments of the present invention have been described as above, the embodiments can be variously modified. Further, the present invention is not limited in scope to the above-described embodiments. The scope of the present invention is defined by the terms of the claims, and is intended to include any modifications within the meaning and scope equivalent to the terms of the claims.
INDUSTRIAL APPLICABILITY
(71) The present invention is suitably applied to a small-sized hydroelectric power generation apparatus installed in an irrigation canal or the like, in particular.
REFERENCE SIGNS LIST
(72) 1, 30: rotary blade; 2: gear box; 3: power generator; 4, 4a, 4b: beam; 4c: mount; 4d: support; 4e: base plate; 5a, 5b, 5c, 5d: bar; 6a: fixed portion; 6b: extending portion; 8: wall portion of water channel; 9: fixing device; 10: arrow; 11: hinge; 12: anchor bolt; 15: bolt; 20: bearing unit; 20a: inner race; 20b: outer race; 20c: rolling element; 20d: housing; 21: shaft; 30: vertical axis type rotary blade; 40: water surface.