Cyclical ocean wave power generation, wave dissipation, and energy storage constant-speed output device

WO2026165729A1PCT designated stage Publication Date: 2026-08-13CHEN JIANGU
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Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-08-13

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Abstract

A cyclical ocean wave power generation, wave dissipation, and energy storage constant-speed output device, comprising an outer frame, a continuous-track wave-capturing blade device, a transmission system, and an energy storage constant-speed output device, wherein the outer frame is fixable to a shoreside to form a wave-breaking embankment, and the continuous-track wave-capturing blade device comprises streamlined cupped wave-capturing blades (6), flow divider plates (4), and a continuous track (1). The device improves the utilization rate of ocean wave power generation.
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Description

Circulating wave power generation, wave damping and energy storage uniform output device Technical Field

[0001] This invention relates to a circulating wave power generation, wave dissipation and energy storage uniform output device, which is in the field of marine power generation and energy storage technology. Background Technology

[0002] Wave energy is a clean and renewable energy source. Its collection and use do not consume any fuel or other resources and do not cause pollution to the environment.

[0003] Ocean energy has a high energy density and is widely distributed in the ocean, making it an easily accessible and readily available energy source that can be used in all weather conditions, and it is more stable than wind energy.

[0004] By developing and utilizing the ocean, we can reduce our dependence on land and thus protect land resources.

[0005] Tides and waves generated during the movement of seawater are the main driving forces behind coastal erosion.

[0006] Waves are not continuous and stable; they vary in strength and sometimes appear and sometimes disappear. This makes wave power generation require systems with high stability and reliability, which places high demands on technology.

[0007] Existing wave power generation devices are expensive, and the power generation methods all use turbine blades, hydraulic devices, or reciprocating devices to drive generators to generate electricity. The utilization rate is low and the ideal state is not achieved. The high technical requirements and precision of the equipment result in extremely high construction costs.

[0008] Existing wave power generation devices mainly focus on improving the overall conversion efficiency of existing devices, and continuously tackle and improve them by passively adapting to the instability of waves.

[0009] In summary, existing wave power generation devices are limited to a technical approach that relies on continuous research and improvement to passively adapt to the instability of waves. This approach requires various precision equipment, resulting in high costs and low conversion rates. Technical issues

[0010] Waves are not continuous and stable; they vary in strength and sometimes appear and sometimes disappear. This makes wave power generation require systems with high stability and reliability, which places high demands on technology.

[0011] Existing wave power generation devices are expensive, and the power generation methods all use turbine blades, hydraulic devices, or reciprocating devices to drive generators to generate electricity. The utilization rate is low and the ideal state is not achieved. The high technical requirements and precision of the equipment result in extremely high construction costs.

[0012] Most existing wave power generation devices only consider single power generation needs and do not comprehensively address multi-functional needs. Technical solutions

[0013] The circulating wave power generation, wave dissipation and energy storage uniform output device adopts a tracked wave-drawing blade device and an energy storage uniform output device, both of which use ordinary chains and ordinary escapement mechanisms, with low technical requirements.

[0014] The circulating wave power generation, wave dissipation and energy storage uniform output device all use common technologies and materials. The power generation method is circulating power generation, which is divided into upper and lower layers. The upper layer receives the impact of the waves, and the lower layer is where the waves flow back to the depths. There is no backflow to consume the front waves, which artificially increases the kinetic energy of the waves and greatly improves the utilization rate of wave power generation, achieving an ideal state.

[0015] In addition to generating electricity, the circulating wave power generation, wave dissipation and energy storage uniform output device can reduce the erosion of the coast by waves when installed near the sea or on the coast, eliminating the need for additional wave dissipation facilities. Furthermore, the energy storage uniform output device can reduce the use of energy storage batteries, truly achieving the goal of being green and environmentally friendly. Beneficial effects

[0016] The circulating wave power generation, wave dissipation and energy storage uniform output device uses ordinary materials and does not employ high-precision technology, which greatly saves costs.

[0017] The circulating wave power generation, wave dissipation and energy storage uniform output device adopts a two-layer design. The upper layer receives the impact of the waves on the blades, which drives the chain to rotate. The lower layer is the seawater that flows back when the waves reach their peak, and drives the chain to rotate again before the next wave arrives, which greatly improves the utilization rate of wave power generation.

[0018] The circulating wave power generation, wave dissipation and energy storage uniform output device can be installed in the deep sea and on the shore. When installed on the shore, its structure is similar to that of a wave-dissipating dike, which can achieve the purpose of wave dissipation, reduce erosion of the coast, and reduce the investment in dedicated wave-dissipating dikes.

[0019] The circulating wave power generation, wave dissipation and energy storage uniform output device uses an escapement mechanism as the main energy storage and outputs at a uniform speed, directly achieving a stable voltage output, which can reduce the use of energy storage batteries and truly achieve the goal of green and environmental protection.

[0020] The circulating wave power generation, wave dissipation and energy storage uniform output device, after being equipped with solar panels on the top, becomes an excellent wind-catching body, integrating multiple green energy sources such as wave, solar and wind power into one power generation device. Summary of the Invention

[0021] In view of the above-mentioned defects in the existing technology, and considering the considerable energy density and renewable characteristics of ocean waves, this invention actively utilizes the periodicity and short duration of ocean waves, adopts the method of absorbing the energy pushed forward by ocean waves and utilizing the gravity flow of the seawater return, to provide a circulating ocean wave power generation, wave dissipation, energy storage, and uniform speed output device. This invention adopts a tracked wave-absorbing blade device to separate the waves from the return seawater (12), which not only makes full use of the energy brought by each wave, but also utilizes the energy of the seawater return, and further reduces the impact of the return seawater on the waves, thereby reducing the kinetic energy loss of each wave; except for the energy storage uniform speed output device (generator set), the other devices only require general precision to complete, which can significantly reduce the cost.

[0022] To achieve the above objectives, the technical solution adopted by the present invention is: a circulating wave power generation, wave dissipation and energy storage uniform output device, including an outer frame, a tracked wave-collecting blade device, a transmission system, and an energy storage uniform output device (generator set).

[0023] The aforementioned external frame includes a generator room (which also serves as a viewing platform), wave deflectors, and water flow deflectors. The external frame can be fixed to the coastline to form a breakwater, or it can be fixed to a floating structure and placed in the open sea. The generator room (also serving as a viewing platform) is located on both sides, and the inclined wave deflectors and water flow deflectors are in the middle.

[0024] The tracked wave-collecting blade device includes streamlined grooved wave-collecting blades, a fixed plate, a flow divider plate, a flow divider groove, gears, a drive shaft, tracks, and chains (belts). The tracked wave-collecting blade device is fixed to the external water flow guide plate. The streamlined grooved wave-collecting blades are fixed to the tracks, which are fixed to the chains (belts). The chains (belts) are wound around the gears, which are fixed to the keel of the water flow guide plate. Gears on the same horizontal level are connected by the drive shaft. Intermediate gears that drive the energy storage uniform speed output device (generator set) are set at both ends of the drive shaft.

[0025] The transmission system includes a drive shaft, gears, a chain (belt), and an intermediate gear connecting the energy storage constant speed output device (generator set). The transmission system connects the drive shaft gear to the intermediate gear connecting the energy storage constant speed output device (generator set) via a chain (belt), or the drive shaft gear can be directly connected to the energy storage constant speed output device (generator set) via the intermediate gear.

[0026] The aforementioned energy storage constant speed output device (generator set) includes an energy storage escapement mechanism (including a balance wheel and hairspring system, with the same principle as a mechanical watch), a general speed-increasing unit, and a general wind or hydroelectric generator. The energy storage constant speed output device (generator set) is fixedly installed in a generator room (which also serves as a viewing platform). The tracked wave-lifting blade device is connected to a spring-loaded energy storage gear (which can be multi-stage and equipped with an overload slip protection device) via an intermediate gear. The spring-loaded energy storage gear then passes through the intermediate gear of the escapement structure controlled by the balance wheel and hairspring system, and then back to the spring-loaded energy storage gear. The output end is then connected to a general speed-increasing unit, and the output end of the general speed-increasing unit is connected to a general generator to output a stable current. Attached Figure Description

[0027] Figure 1 is a schematic diagram of the installation position of the overall system structure of the present invention.

[0028] Figure 2 is a cross-sectional schematic diagram of the tracked wave-lifting blade device of the present invention.

[0029] Figure 3 is a schematic diagram of the overall structure of the energy storage uniform output device (generator set) of the present invention.

[0030] Figure 4 is a cross-sectional schematic diagram of the energy storage escapement mechanism of the energy storage uniform speed output device (generator set) of the present invention.

[0031] Reference numerals: 1- Track and chain (belt); 2- Gear; 3- Drive shaft; 4- Flow divider; 5- Water flow guide plate; 6- Streamlined grooved wave-drawing blade; 7- Fixing plate; 8- Chain (belt); 9- Wave guide plate; 10- Generator room (also a viewing platform); 11- Flow divider; 12- Water flow direction; 13- Energy storage escapement mechanism; 14- Speed ​​increaser; 15- Generator; 16- Base; 17- Fixing bracket; 18- Input shaft; 19- Ratchet; 20- Mainspring; 21- Barrel wheel; 22- Double gear (large); 23- Double gear (small); 24- Pinion; 25- Escape wheel; 26- Barrel wheel base plate; 27- Balance wheel; 28- Balance wheel and hairspring; 29- Escape fork; 30- Output shaft. The best embodiment of the present invention

[0032] The technical solutions of the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings, so that the objectives, technical solutions, and advantages of the embodiments of the present invention are clearer and the present invention patent is more fully understood. However, the described embodiments are only some embodiments of the present invention, not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be designed and implemented in various different configurations or ways. Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but only to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without innovation are within the scope of protection of the present invention, and the present invention is not limited to the specific embodiments disclosed below.

[0033] In the description of this invention, the orientations or positional relationships indicated are based on the orientations or positional relationships shown in the accompanying drawings, or the orientations or positional relationships in which the product of the invention is usually placed when in use. They are only for the purpose of facilitating the description of this invention and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0034] As shown in Figures 1-4, a circulating wave power generation, wave damping, and energy storage uniform output device includes an outer frame, a tracked wave-collecting blade device, a transmission system, and an energy storage uniform output device (generator set). The tracked wave-collecting blade device is fixed on the outer frame, which can be fixed on the coast to form a breakwater or fixed on a floating body placed in the open sea. The tracked wave-collecting blade device transmits kinetic energy to the transmission system and then to the energy storage uniform output device (generator set).

[0035] In the embodiments of the present invention, as shown in Figures 1 and 2, the external frame includes a generator room (also serving as a viewing platform) (10), a wave deflector (9), and a water flow deflector (5). The external frame can be fixed to the coast to form a breakwater, or it can be fixed to a floating body placed in the open sea. The generator room (also serving as a viewing platform) (10) is on both sides, and the wave deflector (9) and the water flow deflector (5) are in the middle. The wave deflector (9) actively divides the waves into upper and lower parts according to the depth of the wave's influence, and makes full use of the kinetic and potential energy of the two parts to improve the conversion efficiency of wave energy. The water flow deflector (5) mainly pushes the high-energy wave wavelength up the wave body at the designed angle, converting it into usable kinetic energy, while increasing potential energy. In the case of the shore, it can also reduce the friction of the backflow and isolate the scouring of the shore mud and sand. The curved water flow deflector (5) can also reduce noise.

[0036] In the embodiments of the present invention, as shown in Figures 1 and 2, the wave-collecting blade device includes: a streamlined grooved wave-collecting blade (6), a fixing plate (7), a diverting plate (4), a diverting groove (11), a gear (2), a transmission shaft (3), and a track and chain (belt) (1). The tracked wave-collecting blade device is set between two generator rooms (also serving as viewing platforms) (10) and fixed on the keel of the external water flow guide plate (5). The streamlined grooved wave-collecting blade (6) is fixed on the track and chain (belt) (1). The track is fixed on the chain (belt). The chain (belt) (1) drives the gear (2). The gear (2) at the same level transmits kinetic energy to the gears on both sides through the transmission shaft (3). The wave-collecting blade is divided into upper and lower blades according to its position. The upper blade mainly absorbs the kinetic energy of the waves diverted by the wave guide plate (9) and pushes the blade to tilt upwards. When it rises to a certain height, the upper blade is driven upwards. After a certain period, when the gravitational energy of the wave is greater than its kinetic energy, the wave flows downward with the streamlined grooved wave-collecting blade (6), is divided by the diverting plate (4), and moves downward along the diverting groove (11) to carry out potential energy movement. At the same time, it pushes the lower blade at this point to tilt downward and drive it. This continuous cycle rotation will not produce a back-and-forth turning motion. It makes full use of the kinetic and potential energy of the wave going back and forth, actively utilizes the characteristics of the wave's periodic cycle and short time, makes full use of the energy brought by each wave, and also utilizes the energy of the seawater return flow, further reducing the impact of the return seawater on the wave, thereby reducing the kinetic energy loss of each wave; it improves work efficiency and protects the coastline.

[0037] In the embodiments of the present invention, as shown in Figures 1 and 2, the transmission system includes a transmission shaft (3), gears (2), a chain (belt) (8), and an intermediate gear (2) connecting the energy storage uniform speed output device (generator set). The transmission system receives the kinetic energy transmitted from the track and chain (belt) (1) of the tracked wave-collecting blade device through the transmission shaft (3), drives the gears (2) on both sides of the tracked wave-collecting blade device to rotate, and then directly transmits the kinetic energy to the intermediate gear (2) through the gears (or it can be transmitted to the independent intermediate gear (2) connecting the energy storage uniform speed output device (generator set) through the chain or belt (8) to achieve the purpose of concentrated energy output.

[0038] In the embodiments of the present invention, as shown in Figures 3 and 4, the energy storage uniform speed output device (generator set) includes an energy storage escapement mechanism (13), a general speed-increasing generator set (14), and a general wind or hydroelectric generator (15). This device is installed and fixed in the machine room on both sides. The energy storage escapement mechanism includes: front spring mainspring energy storage (multi-stage setting, with overload slip protection device) gears (19, 20, 21, 26), escapement mechanism (including balance wheel and hairspring system, principle is the same as mechanical watch) (24, 25, 27, 28, 29), intermediate gears (22, 23), and rear spring mainspring (multi-stage setting) gears (19, 20, 21, 26). The energy storage escapement mechanism can convert unstable kinetic energy such as ocean waves or wind into uniform speed output kinetic energy. This device can be used in any project with similar unstable kinetic energy input conditions. The aforementioned front-end spring-driven energy storage (multi-stage setting, with overload sliding protection device) gear transmits kinetic energy through the input shaft (18) to the ratchet (19) for unidirectional rotation, driving the spring (20) to store energy (with overload sliding protection device). The spring (20) drives the barrel wheel (21) and the barrel wheel base plate (26) to rotate, converting unstable energy into deformation energy (potential energy) in a flexible manner for storage.The escapement mechanism (principle is the same as that of a mechanical watch) drives the escapement fork (28) to swing at a constant speed through the balance wheel and hairspring system (including balance wheel (27) and balance wheel and hairspring (28)), which in turn drives the escape wheel (25) to rotate at a constant speed. This releases the energy of the front spring mainspring energy storage gear to the middle gear at a constant speed, converting the unstable kinetic energy of the waves into a constant speed energy output. This constant speed energy is then input to the rear spring mainspring (which can be set in multiple stages) unidirectional gear. Thus, the purpose of true energy storage and continuous kinetic energy output is achieved. The general speed increaser (14) is a speed increaser commonly available on the market or invented by other companies. This speed increaser can increase the slow speed to a speed that meets the power requirements of the generator.The general wind and water generator (15) is a commercially available or other invention generator that converts kinetic energy into usable electrical energy. Embodiments of the present invention

[0039] The technical solutions of the present invention will be further described in detail below through embodiments and in conjunction with the accompanying drawings, so that the objectives, technical solutions, and advantages of the embodiments of the present invention are clearer and the present invention patent is more fully understood. However, the described embodiments are only some embodiments of the present invention, not all embodiments. The components of the embodiments of the present invention described and shown in the accompanying drawings can generally be designed and implemented in various different configurations or ways. Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but only to illustrate selected embodiments of the invention. All other embodiments obtained by those skilled in the art based on the embodiments of the present invention without innovation are within the scope of protection of the present invention, and the present invention is not limited to the specific embodiments disclosed below.

[0040] In the description of this invention, the orientations or positional relationships indicated are based on the orientations or positional relationships shown in the accompanying drawings, or the orientations or positional relationships in which the product of the invention is usually placed when in use. They are only for the purpose of facilitating the description of this invention and simplifying the description, and are not intended to indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this invention.

[0041] As shown in Figures 1-4, a circulating wave power generation, wave damping, and energy storage uniform output device includes an outer frame, a tracked wave-collecting blade device, a transmission system, and an energy storage uniform output device (generator set). The tracked wave-collecting blade device is fixed on the outer frame, which can be fixed on the coast to form a breakwater or fixed on a floating body placed in the open sea. The tracked wave-collecting blade device transmits kinetic energy to the transmission system and then to the energy storage uniform output device (generator set).

[0042] In the embodiments of the present invention, as shown in Figures 1 and 2, the external frame includes a generator room (also serving as a viewing platform) (10), a wave deflector (9), and a water flow deflector (5). The external frame can be fixed to the coast to form a breakwater, or it can be fixed to a floating body placed in the open sea. The generator room (also serving as a viewing platform) (10) is on both sides, and the wave deflector (9) and the water flow deflector (5) are in the middle. The wave deflector (9) actively divides the waves into upper and lower parts according to the depth of the wave's influence, and makes full use of the kinetic and potential energy of the two parts to improve the conversion efficiency of wave energy. The water flow deflector (5) mainly pushes the high-energy wave wavelength up the wave body at the designed angle, converting it into usable kinetic energy, while increasing potential energy. In the case of the shore, it can also reduce the friction of the backflow and isolate the scouring of the shore mud and sand. The curved water flow deflector (5) can also reduce noise.

[0043] In the embodiments of the present invention, as shown in Figures 1 and 2, the wave-collecting blade device includes: a streamlined grooved wave-collecting blade (6), a fixing plate (7), a diverting plate (4), a diverting groove (11), a gear (2), a transmission shaft (3), and a track and chain (belt) (1). The tracked wave-collecting blade device is set between two generator rooms (also serving as viewing platforms) (10) and fixed on the keel of the external water flow guide plate (5). The streamlined grooved wave-collecting blade (6) is fixed on the track and chain (belt) (1). The track is fixed on the chain (belt). The chain (belt) (1) drives the gear (2). The gear (2) at the same level transmits kinetic energy to the gears on both sides through the transmission shaft (3). The wave-collecting blade is divided into upper and lower blades according to its position. The upper blade mainly absorbs the kinetic energy of the waves diverted by the wave guide plate (9) and pushes the blade to tilt upwards. When it rises to a certain height, the upper blade is driven upwards. After a certain period, when the gravitational energy of the wave is greater than its kinetic energy, the wave flows downward with the streamlined grooved wave-collecting blade (6), is divided by the diverting plate (4), and moves downward along the diverting groove (11) to carry out potential energy movement. At the same time, it pushes the lower blade at this point to tilt downward and drive it. This continuous cycle rotation will not produce a back-and-forth turning motion. It makes full use of the kinetic and potential energy of the wave going back and forth, actively utilizes the characteristics of the wave's periodic cycle and short time, makes full use of the energy brought by each wave, and also utilizes the energy of the seawater return flow, further reducing the impact of the return seawater on the wave, thereby reducing the kinetic energy loss of each wave; it improves work efficiency and protects the coastline.

[0044] In the embodiments of the present invention, as shown in Figures 1 and 2, the transmission system includes a transmission shaft (3), gears (2), a chain (belt) (8), and an intermediate gear (2) connecting the energy storage uniform speed output device (generator set). The transmission system receives the kinetic energy transmitted from the track and chain (belt) (1) of the tracked wave-collecting blade device through the transmission shaft (3), drives the gears (2) on both sides of the tracked wave-collecting blade device to rotate, and then directly transmits the kinetic energy to the intermediate gear (2) through the gears (or it can be transmitted to the independent intermediate gear (2) connecting the energy storage uniform speed output device (generator set) through the chain or belt (8) to achieve the purpose of concentrated energy output.

[0045] In the embodiments of the present invention, as shown in Figures 3 and 4, the energy storage uniform speed output device (generator set) includes an energy storage escapement mechanism (13), a general speed-increasing generator set (14), and a general wind or hydroelectric generator (15). This device is installed and fixed in the machine room on both sides. The energy storage escapement mechanism includes: front spring mainspring energy storage (multi-stage setting, with overload slip protection device) gears (19, 20, 21, 26), escapement mechanism (including balance wheel and hairspring system, principle is the same as mechanical watch) (24, 25, 27, 28, 29), intermediate gears (22, 23), and rear spring mainspring (multi-stage setting) gears (19, 20, 21, 26). The energy storage escapement mechanism can convert unstable kinetic energy such as ocean waves or wind into uniform speed output kinetic energy. This device can be used in any project with similar unstable kinetic energy input conditions. The aforementioned front-end spring-driven energy storage (multi-stage setting, with overload sliding protection device) gear transmits kinetic energy through the input shaft (18) to the ratchet (19) for unidirectional rotation, driving the spring (20) to store energy (with overload sliding protection device). The spring (20) drives the barrel wheel (21) and the barrel wheel base plate (26) to rotate, converting unstable energy into deformation energy (potential energy) in a flexible manner for storage.The escapement mechanism (principle is the same as that of a mechanical watch) drives the escapement fork (28) to swing at a constant speed through the balance wheel and hairspring system (including balance wheel (27) and balance wheel and hairspring (28)), which in turn drives the escape wheel (25) to rotate at a constant speed. This releases the energy of the front spring mainspring energy storage gear to the middle gear at a constant speed, converting the unstable kinetic energy of the waves into a constant speed energy output. This constant speed energy is then input to the rear spring mainspring (which can be set in multiple stages) unidirectional gear. Thus, the purpose of true energy storage and continuous kinetic energy output is achieved. The general speed increaser (14) is a speed increaser commonly available on the market or invented by other companies. This speed increaser can increase the slow speed to a speed that meets the power requirements of the generator.The general wind and water generator (15) is a commercially available or other invention generator that converts kinetic energy into usable electrical energy.

[0046] The above-described specific embodiments are merely specific examples of the present invention. The patent protection scope of the present invention includes, but is not limited to, the product form and style of the above-described specific embodiments. Any appropriate changes or modifications made by those skilled in the art that conform to the claims of the present invention should fall within the patent protection scope of the present invention. Industrial applicability

[0047] The external frame, tracked wave-collecting blade device, transmission system, and energy storage uniform output device (generator set) used in the circulating wave power generation, wave dissipation and energy storage uniform output device are all common products on the market. The technology is relatively simple, so the cost is low and the feasibility is high.

[0048] If a circulating wave power generation, wave dissipation and energy storage uniform output device replaces the existing coastal breakwater, it can not only achieve the purpose of wave dissipation and reduce coastal erosion, but also reduce noise, and can generate wave power, which is green and environmentally friendly.

[0049] The circulating wave power generation, wave dissipation and energy storage uniform output device is a circulating motion power generation device. There is no backflow, which reduces the reaction force on the waves. The backflowing seawater continues to drive the wave-drawing blades to continue doing work, which can greatly improve the power generation rate.

[0050] The circulating wave power generation, wave dissipation and energy storage uniform output device, after being equipped with solar panels on the top, becomes an excellent wind-catching body, integrating multiple green energy sources such as wave, solar and wind power into one power generation device. Sequence List Free Content

[0051] Type the free content description paragraph for the sequence list here.

Claims

1. A circulating wave power generation, wave damping, and energy storage uniform speed output device includes an outer frame, a tracked wave-collecting blade device, a transmission system, and an energy storage uniform speed output device (generator set), characterized in that: The tracked wave-collecting blade device is fixed on the outer frame, which can be fixed on the coast to form a breakwater or fixed on the floating body and placed in the open sea. The tracked wave-collecting blade device transmits kinetic energy to the transmission system, which then transmits it to the energy storage and uniform output device (generator set).

2. The circulating wave power generation, wave damping, energy storage, and uniform output device according to claim 1, characterized in that: The tracked wave-collecting blade device includes streamlined grooved wave-collecting blades (6), a fixed plate (7), a flow divider plate (4), a flow divider groove (11), a gear (2), a drive shaft (3), and a track and chain (belt) (1).

3. The circulating wave power generation, wave damping, energy storage, and uniform output device according to claim 1, characterized in that: The external frame includes a generator room (also serving as a viewing platform) (10), a wave deflector (9), and a water flow deflector (5).

4. The circulating wave power generation, wave damping, energy storage, and uniform output device according to claim 1, characterized in that: The transmission system includes a drive shaft (3), a gear (2), a chain (belt) (8), and an intermediate gear (2) that connects to the energy storage uniform speed output device (generator set).

5. The circulating wave power generation, wave damping, and energy storage uniform output device according to claim 1, characterized in that: The energy storage uniform speed output device (generator set) includes an energy storage escapement mechanism (13), a general speed increaser (14), and a general wind and hydro generator (15).

6. The energy storage uniform output device according to claim 5, characterized in that: The energy storage escapement mechanism includes: a front spring mainspring energy storage (multi-stage setting, with overload slip protection device) gear (19, 20, 21, 26), an escapement mechanism (including balance wheel and hairspring system, principle is the same as mechanical watch) (24, 25, 27, 28, 29), an intermediate gear (22, 23), and a rear spring mainspring (multi-stage setting) gear (19, 20, 21, 26). The energy storage escapement mechanism can convert unstable kinetic energy such as ocean waves or wind into uniform output kinetic energy. This device can be used in any project with similar unstable kinetic energy input conditions.