DEVICE FOR RETRIVING ENERGY OF FLOWING WATER FOR THE RIVERSIDE
20190242358 ยท 2019-08-08
Inventors
Cpc classification
F03B17/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F03B17/065
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2220/706
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2240/91
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/50
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F05B2260/403
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
International classification
Abstract
A device for retrieving energy of flowing water for the riverside is disclosed. The device uses a rotating disk to respectively connect with a first blade and a second blade through two rotating bodies. The first blade and the second blade are respectively located at the first position of an upstream side and the second position of a downstream side. Water pushes the first blade under the surface of water to swing from the first position to the second position, thereby rotating the rotating disk by a rotating distance. Thus, the second blade originally arranged over the surface of water reversely swings to the first position. Then, the second blade sinks in the water. Water pushes the second blade to swing to the second position, and the first blade rises and leaves the surface of water to swing to the first position.
Claims
1. A device for retrieving energy of flowing water for the riverside, which is arranged at a riverside of a river, and the device for retrieving energy of flowing water for the riverside comprising: a rotating disk; a first rotating body and a first blade arranged at a first position of an upstream side of the river; a second rotating body and a second blade arranged at a second position of a downstream side of the river; a set of first connecting rods fixed to the first rotating body, an end of the set of first connecting rods is connected with the first blade, and another end of the set of first connecting rods is connected with the rotating disk; a set of second connecting rods fixed to the second rotating body, an end of the set of second connecting rods is connected with the second blade, and another end of the set of second connecting rods is connected with the rotating disk; and wherein water pushes the first blade under a surface of the water to swing from the first position to the second position, thereby rotating the rotating disk and reversely swinging the second blade over the surface of the water from the second position to the first position, the second blade sinks in the water, the water pushes the second blade to swing to the second position and rotate the rotating disk, thereby swinging the first blade over the surface of the water to the first position, and the first blade and the second blade alternately reciprocate and paddle to output a thrust of a stream.
2. The device for retrieving energy of flowing water for the riverside according to claim 1, wherein the first blade is provided with a paddling rod to sleeve one of the first connecting rods, and the second blade is provided with a paddling rod to sleeve one of the second connecting rods.
3. The device for retrieving energy of flowing water for the riverside according to claim 2, wherein each of the first rotating body, the second rotating body, and the rotating disk is fixed at the riverside using a fixing post.
4. The device for retrieving energy of flowing water for the riverside according to claim 3, wherein the first rotating body is provided with a pulley and a horizontal sliding rod, the pulley is wound by a cord with two ends thereof respectively connected with the first blade and the first rotating body, and the fixing post is provided with a cord pushing rod, the cord pushing rod pushes the cord, and the cord pulls the first blade to rise using the pulley and the horizontal sliding rod.
5. The device for retrieving energy of flowing water for the riverside according to claim 4, wherein the pulley and the horizontal sliding rod are arranged on a fixing board, and the fixing board is fixed to one the first connecting rods and vertical to it.
6. The device for retrieving energy of flowing water for the riverside according to claim 5, wherein the paddling rod is provided with a ratchet base, and an upper surface of the ratchet base is provided with a plurality of ratchet teeth, and the fixing board is provided with a ratchet claw, and the ratchet claw rotates on the fixing board.
7. The device for retrieving energy of flowing water for the riverside according to claim 6, wherein the plurality of ratchet teeth are combined with the ratchet claw, and the ratchet claw rotates by gravity to unidirectionally rotate the plurality of ratchet teeth.
8. The device for retrieving energy of flowing water for the riverside according to claim 3, wherein the second rotating body is provided with a pulley and a horizontal sliding rod, the pulley is wound by a cord with two ends thereof respectively connected with the second blade and the second rotating body, and the fixing post is provided with a cord pushing rod, the cord pushing rod pushes the cord, and the cord pulls the second blade to rise using the pulley and the horizontal sliding rod.
9. The device for retrieving energy of flowing water for the riverside according to claim 8, wherein the pulley and the horizontal sliding rod are arranged on a fixing board, and the fixing board is fixed to one the second connecting rods and vertical to it.
10. The device for retrieving energy of flowing water for the riverside according to claim 9, wherein the paddling rod is provided with a ratchet base, and an upper surface of the ratchet base is provided with a plurality of ratchet teeth, and the fixing board is provided with a ratchet claw, and the ratchet claw rotates on the fixing board.
11. The device for retrieving energy of flowing water for the riverside according to claim 10, wherein the plurality of ratchet teeth are combined with the ratchet claw, and the ratchet claw rotates by gravity to unidirectionally rotate the plurality of ratchet teeth.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0017]
[0018]
[0019]
[0020]
[0021]
DETAILED DESCRIPTION OF THE INVENTION
[0022] The present invention provides a device for retrieving energy of flowing water for the riverside, which is arranged on the river bank of a river and uses flowing water to paddle blades to endlessly retrieve the energy of flowing water.
[0023] Refer to
[0024] The rotating disk 31 is fixed at the riverside 71 using a fixing post 3. The first rotating body 10 is fixed at the riverside 71 using a fixing post 1. The second rotating body 20 is fixed at the riverside 71 using a fixing post 2.
[0025] The first blade 13 is provided with a paddling rod 12 to sleeve the first connecting rod 11. The second blade 23 is provided with a paddling rod 22 to sleeve the second connecting rod 21. The paddling rods 12 and 22 swing the first blade 13 and the second blade 23.
[0026] Refer to
[0027] When the first blade 13 is located under the surface of water, the first blade 13 is displaced due to the thrust of water. The first blade 13 swings from the first position of the upstream side to the second position of the downstream side. The first connecting rods 11 and 14 clockwise rotate to drive the second connecting rod 24, such that the direction of displacing the second blade 23 is contrary to the direction of the stream. In this way, the first blade 13 originally located over the surface of water and at the second position of the downstream side swings to the first position of the upstream side in a direction contrary to the direction of the stream.
[0028] There is a distance between the first blade 13 and the second blade 23 that are arranged near the riverside. The distance allows the first blade 13 and the second blade 23 to swing rather than to interfere with each other. When the surface of the first blade 13 sinks in the river 70, the first blade 13 is displaced due to the thrust of flowing water. Simultaneously, the first rotating body 10 swings a rotating distance. Afterwards, the first blade 13 rises to leave the river 70 and swings back to its original position. Afterwards, the first blade 13 sinks in the river 70 and receives the thrust of flowing water to repeat the abovementioned process. Since the surface of the second blade 23 sinks in the river 70 to receive the thrust of flowing water, the first blade 13 swings to its original position. The second blade 23 uses the rotating disk 31 to apply a thrust. Thus, the first blade 13 and the second blade 23 alternately swing. On the other hand, the thrust of the first blade 13 helps the second blade 23 swing to its original position. As a result, one of the first blade 13 and the second blade 23 swings to generate a thrust. Accordingly, the first blade 13, the second blade 23, the first rotating body, and the second rotating body automatically and continuously output a thrust, wherein the magnitude of the output thrust depends on the areas of the first blade 13 and the second blade 23.
[0029] Refer to
[0030] Refer to
[0031] In conclusion, the device for retrieving energy of flowing water for the riverside of the present invention comprises a rotating disk and two blade swinging device each consisting of a blade, a rotating body, and a set of connecting rods. The first rotating body and the second rotating body are fixed at the riverside using a fixing post. The blade in water is displaced due to the thrust of flowing water, so as to swing the rotating body a distance. Afterwards, the blade rises to leave the surface of water and swings to its original position. Then, the blade sinks in water to repeatedly receive the thrust of flowing water. The force to swing the blade to its original position is provided by using flowing water to push another blade. The alternate force is resulted from the rotating disk used as a gear. Accordingly, the two blades swing to output continuous power, namely the retrieved energy of flowing water of the present invention. The present invention has advantages of environmental protection, simple structure, and easy installation and maintenance.
[0032] The embodiments described above are only to exemplify the present invention but not to limit the scope of the present invention. Therefore, any equivalent modification or variation according to the shapes, structures, features, or spirit disclosed by the present invention is to be also included within the scope of the present invention.