Hydropower System
20200309087 ยท 2020-10-01
Inventors
Cpc classification
F03B17/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/32
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/30
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/91
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
F05B2240/40
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2250/411
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/31
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
Abstract
A hydropower system has a channel and at least one water turbine. The channel has a flowing path, two side walls, and at least one turbine recess recessed in at least one of the side walls and having an opening communicating with the flowing path. The at least one water turbine is mounted in the at least one turbine recess and has a shaft, a blade wheel, and a generator. The blade wheel is mounted on and rotatable with the shaft and partially protrudes into the flowing path. The generator is connected to the shaft. The blade wheel may be propelled to rotate by flowing water flowing through the flowing path to drive the generator to generate power.
Claims
1. (canceled)
2. (canceled)
3. (canceled)
4. A hydropower system comprising: a channel having two side walls; a flowing path formed between the two side walls; and at least one turbine recess recessed in at least one of the side walls of the channel, and each one of the at least one turbine recess having a spinning space formed in the turbine recess and an opening communicating with the flowing path; at least one water turbine, an amount of the at least one water turbine being equal to an amount of the at least one turbine recess, and each one of the at least one water turbine mounted in the spinning space of a corresponding one of the at least one turbine recess, and having a shaft vertically and axially rotatably mounted in the spinning space of the corresponding one of the at least one turbine recess; a blade wheel mounted on and rotated with the shaft, partially protruding into the flowing path of the channel from the opening of the corresponding one of the at least one turbine recess, and having a base fixed on the shaft; and multiple driving blades mounted around the base at equiangular intervals and extending radially; and a generator connected with the shaft wherein each driving blade of the blade wheel of each one of the at least one water turbine has a fixed arm fixed on the base and extending outward from the base; and a swing blade pivotally connected with the fixed arm in a unidirectional deflection; wherein the fixed arm of each driving blade of the blade wheel of each one of the at least one water turbine has a limiting slot formed in an end of the fixed arm of the driving blade away from the base of the blade wheel; and the swing blade of each driving blade of the blade wheel of each one of the at least one water turbine has a limiting block formed in an end of the swing blade of the driving blade near the fixed arm of the driving blade and being pivotable to abut against an inner surface of the limiting slot of the fixed arm of the driving blade of the blade wheel of the water turbine, wherein the swing blade of each driving blade of the blade wheel of each one of the at least one water turbine has ribs formed on a surface of the swing blade.
5. The hydropower system as claimed in claim 4, wherein a length of a portion of the swing blade protruding into the flowing path while the swing blade is directly facing the flowing path is 40 centimeters.
6. (canceled)
7. (canceled)
8. (canceled)
9. (canceled)
10. (canceled)
11. (canceled)
12. (canceled)
13. The hydropower system as claimed in claim 4, wherein each one of the at least one water turbine has two said blade wheels mounted on the shaft of the water turbine and arranged along the shaft at a spaced interval.
14. The hydropower system as claimed in claim 5, wherein each one of the at least one water turbine has two said blade wheels mounted on the shaft of the water turbine and arranged along the shaft at a spaced interval.
15. (canceled)
16. (canceled)
17. (canceled)
18. (canceled)
19. The hydropower system as claimed in claim 4, wherein each of the side walls of the flowing channel has multiple said turbine recesses recessed in the side wall, and the turbine recesses recessed in the two side walls are in a staggered arrangement.
20. The hydropower system as claimed in claim 5, wherein each of the side walls of the flowing channel has multiple said turbine recesses recessed in the side wall, and the turbine recesses recessed in the two side walls are in a staggered arrangement.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0009]
[0010]
[0011]
[0012]
[0013]
[0014]
[0015]
DETAILED DESCRIPTION OF PREFERRED EMBODIMENT
[0016] With reference to
[0017] The channel 10 is applied for flowing water F to flow through, and has two side walls 101, a flowing path 103, and at least one turbine recess 11. The two side walls 101 and the flowing path 103 may be formed from a flowing river directly. The at least one turbine recess 11 is recessed in at least one of the side walls 101 of the channel 10. The at least one turbine recess 11 may be multiple turbine recesses 11. The multiple turbine recesses 11 may be recessed in one of the side walls 101 and arranged along the side wall 101 at spaced intervals, or recessed in the two side walls 101 and each of the side walls 101 has at least one of the turbine recesses 11 formed therein. The turbine recesses 11 formed in the different side walls 101 may be arranged in opposite positions or in staggered positions. Each turbine recess 11 has a spinning space 111 and an opening communicating with the flowing path 103.
[0018] The amount of the at least one water turbine 200 is equal to the amount of the at least one turbine recess 11. Multiple said water turbines 200 are respectively mounted in the spinning spaces 111 of the multiple turbine recesses 11. Each water turbine 200 has a shaft 30, a blade wheel 20, and a generator 40. The shaft 30 is vertically and axially rotatably mounted in the spinning space 111 of the turbine recess 11. The blade wheel 20 is disposed under the flowing water F, is fixed on and rotatable with the shaft 30, partially protrudes into the flowing path 103 from the opening of the turbine recess 11, and has a base 21 and multiple driving blades 23. The base 21 is fixed on the shaft 30. The driving blades 23 are mounted around the base 21 at equiangular intervals and extend radially. The generator 40 is connected with the shaft 30. The blade wheel 20 will be propelled to rotate by the flowing water. F flowing through the flowing path 103, and the shaft 30 will be spinning with the blade wheel 20 to drive the generator 40 for generating electric power.
[0019] In the first embodiment of the water turbine 200, each driving blade 23 is a flat blade, and a portion of the driving blade 23 that is away from the base 21 protrudes into the flowing path 103 from the opening of the turbine recess 11.
[0020] With reference to
[0021] Preferably, the swing blade 235 is a flat blade and has multiple ribs 238 formed on a side of the swing blade 235 to increase the structural strength of the swing blade 235.
[0022] With reference to
[0023] With reference to
[0024] The water turbine 200B further has a guiding seat 50. The guiding seat 50 is a barrel, is mounted on the bottom of the shaft 30 in the turbine recess 11, and has an opening formed in the top thereof and a flowing hole 51 radially formed through the guiding seat 50. When the flowing water F drives the water turbines 200B to generate electric power, the water inside the turbine recesses 11 will be led into the guiding seats 50 and flow to the flowing path 103 via the flowing holes 51. The water inside the turbine recesses 11 will keep flowing to enhance the unimpeded rotation of the water turbines 200B and prevent the water from retaining in the turbine recesses 11.
[0025] With such arrangements, the water turbines 200, 200A, 200B can be propelled to generate power by flowing water F flowing through an existing river directly, and the multiple water turbines 200, 200A, 200B can be set alongside of the existing river to increase the power generation. The construction of the hydropower system in accordance, with the present invention is easy and may reduce time and labor.