KR20120000325A - Hybrid generating system using the ocean stream, solar power and wind power together - Google Patents

Hybrid generating system using the ocean stream, solar power and wind power together Download PDF

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KR20120000325A
KR20120000325A KR1020100060637A KR20100060637A KR20120000325A KR 20120000325 A KR20120000325 A KR 20120000325A KR 1020100060637 A KR1020100060637 A KR 1020100060637A KR 20100060637 A KR20100060637 A KR 20100060637A KR 20120000325 A KR20120000325 A KR 20120000325A
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South Korea
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power generation
solar
housing
generation unit
power
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KR1020100060637A
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Korean (ko)
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김성근
임종환
김현훈
임용철
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제주대학교 산학협력단
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Publication of KR20120000325A publication Critical patent/KR20120000325A/en

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    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S10/00PV power plants; Combinations of PV energy systems with other systems for the generation of electric power
    • H02S10/10PV power plants; Combinations of PV energy systems with other systems for the generation of electric power including a supplementary source of electric power, e.g. hybrid diesel-PV energy systems
    • 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
    • F03DWIND MOTORS
    • F03D9/00Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations
    • F03D9/007Adaptations of wind motors for special use; Combinations of wind motors with apparatus driven thereby; Wind motors specially adapted for installation in particular locations the wind motor being combined with means for converting solar radiation into useful energy
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S10/00PV power plants; Combinations of PV energy systems with other systems for the generation of electric power
    • H02S10/40Mobile PV generator systems
    • 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
    • Y02E10/50Photovoltaic [PV] energy
    • 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
    • Y02E10/70Wind energy
    • Y02E10/72Wind turbines with rotation axis in wind direction

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  • Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Wind Motors (AREA)
  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

PURPOSE: A floating hybrid generation system using an ocean current, solar power, and wind power is provided to maximize energy efficiency by simultaneously using an ocean current, solar power, and wind power. CONSTITUTION: A floating hybrid generation system using an ocean current, solar power, and wind power comprises a housing unit(H), a solar power generation unit(S), a wind power generation unit(W), and a tidal power generation unit(T). The housing unit protects inner control units. The solar power generation unit is installed on the top of the housing and has solar power generation panels(11). The wind power generation unit is arranged on the housing unit to be parallel with the solar power generation unit. The tidal power generation unit is arranged under the housing unit to be submerged in seawater.

Description

해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치{Hybrid generating system using the ocean stream, solar power and wind power together}Hybrid generating system using the ocean stream, solar power and wind power together}

본 발명은 해양에 부유하면서 해류, 풍력 그리고 태양광을 복합적으로 이용한 발전장치에 관한 것이다.The present invention relates to a power generator using a combination of ocean currents, wind power and solar light while floating in the ocean.

해양에서 발생하는 조력, 파력을 이용하거나 풍력을 이용한 다양한 기술들이 개발되고 있다. 예를 들면 특허 10-2003-38066호의 경우에 도 1 에 도시하듯이 해양환경에서 제공하는 자연에너지를 에너지원으로 이용하는 발전장치에 있어서, 하단부가 해저지반에 고정되는 원통형 수직지지기둥(10); 상기 수직지지기둥(10)을 감싸는 형태로 설치되어 상기 수직지지기둥(10) 축으로 회전하고, 상단에 연결기어(25)가 장착되는 동력전달실린더(20); 상기 수직지지기둥(20)의 상단부에 회전가능하게 설치되며, 수평의 풍력입력축(43)과, 풍력입력축(43)과 맞물려 연동하는 풍력기어박스(47), 상기 연결기어(25)와 맞물려 연동하는 헬리칼기어박스(41), 및 풍력기어박스(47)와 헬리칼 기어박스(41)에서 조절된 회전력으로 전기를 생산하는 복합발전기(45)를 포함하는 복합발전기 유닛(40); 상기 동력전달실린더(20)가 자체의 중심에 위치하도록 상기 동력전달실린더(20)의 수면 이하 부분에 고정되는 하나이상의 헬리칼 블레이드(30);상기 풍력입력축(43)에 설치되는 프로펠라 블레이드(50);를 포함하는 것을 특징으로 하는 복합발전기를 구비한 헬리칼형 해양 복합발전장치를 제공하고 있다.Various technologies using tidal, wave, or wind power generated in the ocean are being developed. For example, in the case of Patent No. 10-2003-38066, as shown in FIG. 1, in a power generation apparatus using natural energy provided by an marine environment as an energy source, a cylindrical vertical support column 10 having a lower end fixed to a seabed ground; A power transmission cylinder 20 installed to surround the vertical support column 10 and rotating around the vertical support column 10 and having a connection gear 25 mounted on an upper end thereof; It is rotatably installed on the upper end of the vertical support pillar 20, the horizontal wind input shaft 43, the wind gear box 47 to interlock and interlock with the wind input shaft 43, interlocking with the connecting gear 25. A multi-generator unit 40 including a helical gear box 41 and a multi-generator 45 for generating electricity with the rotational force controlled by the wind gear box 47 and the helical gear box 41; One or more helical blades 30 fixed to sub-surface portions of the power transmission cylinder 20 so that the power transmission cylinder 20 is located at its center; a propeller blade 50 installed on the wind power input shaft 43; It provides a helical-type marine combined cycle power generation apparatus with a composite generator comprising a.

상기한 구성은 수면이하부분에 헬리칼블레이드를 설치하고 하부는 해저면에 고정하고 있다. 이러한 구성으로 해풍과 조력을 동시에 이용한다는 점에서는 우수하지만, 해저면에 고정을 하기위한 별도의 수단과 장치 그리고 설치를 위한 공정을 거쳐야 하기 때문에 상당한 설치노력과 비용이 발생되어 사실상 효율이 높지 못한 것이다. 특히 해저면 설치후 고정상태를 장기간 유지하기 어려워 이론적인 측면에 머물고 있다.
In the above configuration, the helical blade is installed below the surface of the water, and the lower part is fixed to the sea bottom. This configuration is excellent in using sea wind and tidal power at the same time, but it requires considerable installation effort and cost because it has to go through separate means and device for fixing on the sea floor and installation process, so it is not efficient. . In particular, it is difficult to maintain the fixed state for a long time after the installation of the sea floor, thus remaining in the theoretical aspect.

본 발명은 바다에 별도의 고정을 위한 장치가 필요없이 임의의 장소에 설치가능한 복합발전장치를 제공하고자 한다.The present invention is to provide a combined power generation apparatus that can be installed in any place without the need for a separate fixing to the sea.

본 발명은 바다에서 발생하는 해풍, 해류, 태양광을 모두 이용하여 단위설치장치당 최대의 효율을 갖는 복합발전장치를 제공하고자 한다.The present invention is to provide a composite power generation unit having the maximum efficiency per unit installation device using all the sea breeze, sea current, sunlight generated from the sea.

본 발명은 바다에서 항시 발생하는 조류의 흐름과 태양광 그리고 해수와 공기 그리고 육지와 바다사이에 발생하는 해풍을 이용한 풍력발전장치를 함께 구비한 복합발전 장치를 개발하였다.The present invention has developed a combined power generation unit equipped with a wind power generator using the current of the tidal current and the solar and sea water and air and the sea wind generated between the land and the sea.

본 발명은 해저면 고정방식이 아닌 해수면에 부유하면서 발전이 가능하게 한 복합발전장치를 개발하였다.The present invention has been developed a composite power generation apparatus that allows the power generation while floating on the sea surface rather than the bottom fixing method.

본 발명의 청구항 1 은 풍력, 태양광, 조력을 동시에 이용할 수 있는 장치로 단위 시설당 최대의 에너지 효율을 얻을 수 있게 하였다.Claim 1 of the present invention is a device that can use the wind, solar, tidal power at the same time to obtain the maximum energy efficiency per unit facility.

본 발명의 청구항 2 는 해수면에서 자유롭게 회전하면서 최대의 풍력을 얻도록 구성하였다.Claim 2 of the present invention is configured to obtain the maximum wind power while rotating freely at sea level.

본 발명의 청구항 3 은 조력을 증강하여 미미한 조력이라도 최대의 발전효율을 얻도록 하였다.Claim 3 of the present invention was to increase the tidal power to obtain the maximum power generation efficiency even a slight tidal power.

도 1 은 종래 해류와 풍력을 이용한 종래 발전장치의 설치개념도,
도 2 는 본 발명의 전체적인 구성을 도시한 사시도,
도 3 은 본 발명의 또다른 전체적인 구성을 도시한 사시도,
도 4 는 본 발명의 풍력발전부의 부분확대 사시도임.
1 is a conceptual view of installation of a conventional power generation apparatus using a conventional current and wind power,
2 is a perspective view showing the overall configuration of the present invention;
3 is a perspective view showing another overall configuration of the present invention,
Figure 4 is an enlarged perspective view of a part of the wind power generation unit of the present invention.

본 발명은 해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치에 관한 것이다.The present invention relates to a floating combined cycle power plant using ocean current, solar light and wind power at the same time.

본 발명에서는 해저면에 고정하지 않고 필요한 위치에 임의로 설치가능한 해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치에 관한 것이다. The present invention relates to a floating combined cycle power plant using ocean current, solar light and wind power that can be arbitrarily installed in a required position without being fixed to the sea bottom.

본 발명의 대표적인 실시예를 첨부한 도면에 의하여 구체적으로 설명한다.Exemplary embodiments of the present invention will be described in detail with reference to the accompanying drawings.

본 발명의 전체적인 구성은 도 2에 도시하듯이 부력발생과 내부 제어장치를 보호하는 하우징부(H),The overall configuration of the present invention is shown in Figure 2 housing portion (H) to protect the buoyancy and the internal control device,

상기한 하우징부의 상면에 태양을 향하여 경사설치되어진 태양광발전부(S),Photovoltaic power generation unit (S) is inclined toward the sun on the upper surface of the housing,

하우징부의 상면에 태양광발전부와 병렬배치되어진 풍력발전부(W),Wind power generation unit (W) disposed in parallel with the solar power generation unit on the upper surface of the housing,

상기한 하우징의 하부에 해수속에 잠기도록 배치되어지는 조력발전부(T)로 구성되어진다.It consists of an tidal power generation unit (T) which is arranged to be submerged in the sea water in the lower portion of the housing.

본 발명에서 하우징부란 해류를 직접 맞닿는 정면부(1)는 첨예하게 구성하며, 그 후면은 원형이나 타원형형태와 같이 해수의 저항을 적게 받도록 보디부(2)를 구성하였다. 내부는 중공구조를 이루도록 하여 자체적인 부력을 발생하여 해수에서 부유가능하도록 한다.In the present invention, the housing portion is the front portion (1) directly contacting the current is configured sharply, the rear portion is configured to the body portion (2) so as to receive less resistance of sea water, such as circular or elliptical form. The inside is hollowed out to create its own buoyancy to be floating in sea water.

이 하우징의 하부에는 미도시하였으나 해저면에 고정되어지는 앵커체와 연결할 수 있는 고정고리를 설치하여 일정위치에 고정이 가능하도록 한다.Although not shown in the lower part of the housing, it is possible to fix it at a predetermined position by installing a fixing ring that can be connected to the anchor body fixed to the sea bottom.

본 발명에서 하우징부의 내부에 축전지, 레귤레이터, 광센서 및 중앙연산장치들이 배치되어지며, 이 하우징의 외부는 해수에 의한 침해를 막기 위하여 방수처리와 함께 부력을 주는 기능을 발휘하게 한다.In the present invention, a storage battery, a regulator, an optical sensor, and a central computing device are disposed inside the housing part, and the outside of the housing exerts a buoyancy function with waterproofing to prevent invasion by seawater.

하우징내의 레귤레이터는 조력이나 태양광에 의하여 발전한 전원을 일정하게 조율하여 축전지로 충전가능하게 하는 것이며, 중앙연산장치는 외부에 설치되어진 광센서 혹은 내부에 내장된 프로그램에 의하여 일몰과 일출의 상태에 따라 발광부에 대한 전원의 공급과 차단동작을 통제한다. 또한 과도한 충전 혹은 방전시에는 축전지의 보호를 위한 충전차단 혹은 방전차단으로 축전지를 보호한다.The regulator inside the housing regulates the power generated by tidal power or solar power to make it possible to charge the battery. The central computing unit is installed according to the state of sunset and sunrise by the light sensor installed in the outside or the built-in program. Control the power supply and cut off operation to the light emitting part. In case of excessive charging or discharging, the battery is protected by charging or discharging to protect the battery.

본 발명에서 태양광발전부는 경사프레임(10)을 태양입사각과 일치하도록 설치한다. 본 발명의 도면에서는 태양광 발전부를 2개가 설치되어 있지만 태양광의 공전궤도에 일치하기 위하여 태양광발전부를 뾰족한 원뿔형태로 하는 것이 바람직하다. 또 다른 예로는 평판구조의 태양광발전판넬을 전후좌우 4개의 구역에 나누어 배치하는 것도 가능하다. 가장 바람직한 형태로는 태양광 판넬이 태양의 춘하추동 궤도변경 그리고 일출시에서부터 일몰시까지의 위치변경을 자동추적할 수 있도록 구성하는 것이다.In the present invention, the photovoltaic unit installs the inclined frame 10 to coincide with the solar incident angle. In the drawings of the present invention, two solar power generation units are provided, but in order to coincide with the orbit of the solar light, the solar power generation unit is preferably in the shape of a pointed cone. As another example, a flat panel photovoltaic panel may be divided into four zones. In the most preferred form, the solar panel is configured to automatically track the sun's orbital change and its position from sunrise to sunset.

본 발명에서 경사프레임은 가능한한 전후좌우에 배치하여 태양광에 수직배치되게 태양발전판넬(11)들을 설치하는 것이 최적의 설치방법이 된다.In the present invention, the inclined frame is arranged in front, rear, left and right as much as possible to install the solar panels 11 so as to be vertically disposed in the sunlight is the optimal installation method.

본 발명에서 설치되는 태양판넬은 전후2개의 평판넬을 배치하였으나, 전후좌우 4방향에 판넬을 설치하여 주거나 혹은 반구상 판넬을 배치하여 최적의 태양발전이 이루어지도록 할 수 있다. 또한 발전판넬을 평판으로 하되, 항시 태양의 고도와 지구자전의 속도, 방위각등을 미리 내장된 프로그램에 의하여 태양광이 항시 수직으로 입사되도록 판넬하부에 제어부를 설치하는 것도 가능하다.In the solar panel installed in the present invention, two front and rear panel panels are arranged, but the panel is installed in four directions, front, rear, left and right, or a hemispherical panel can be arranged to achieve optimal solar power generation. In addition, it is also possible to install the control panel under the panel so that the power generation panel is a flat panel, and the solar light is always vertically incident by the built-in program.

본 발명에서 풍력발전부는 전방에 임펠러(51)를 배치하고 이 임펠러에 의하여 발전하는 발전터빈부(52)가 임펠러와 동일축에 배치되면서 후방에는 별도의 방향타(53)를 설치하였다. 그리고 발전터빈부의 하부와 하우징간의 연결을 위한 설치부(55)의 사이에는 평면에서 발전터빈부 전체가 회전이 자유롭도록 미끄럼장치(56)을 설치하였다. 이러한 구성에 의하여 임펠러가 받는 해풍의 방향이 수시로 변화하여도 능동적으로 임펠러의 회전이 가능하며, 하우징이 조류의 변화로 변화하여도 미끄럼장치에의하여 항시 해풍과 수직향으로 배치되어 풍력발전 효율을 극대화하였다.In the present invention, the wind turbine is disposed with the impeller 51 at the front and the power turbine unit 52 generated by the impeller is disposed on the same axis as the impeller, the rear is provided with a separate rudder 53. In addition, a sliding device 56 is installed between the lower portion of the power generation turbine part and the installation part 55 for connection between the housing so that the entire power generation turbine part can be freely rotated in a plane. With this configuration, the impeller can be actively rotated even if the direction of the sea wind that the impeller receives is changed from time to time, and the housing is arranged vertically with the sea wind at all times even if the housing changes with the change of tidal current to maximize wind power generation efficiency. It was.

본 발명에서 조력발전부는 하우징의 하부에 조력감응조타부(21)을 매개로 깔대기 형태로 수중 설치되도록 하되,In the present invention, the tidal power generation unit is to be installed underwater in the form of a funnel via the tidal sensitive steering unit 21 in the lower portion of the housing,

수입구부(22)는 대구경으로 하며, 수배출구(23)은 좁게 구성하여 로켓의 형태로 구성하였다. 그리고 발전용임펠러(24)를 수입구부측에 설치하며, 이 임펠러의 축과 축결되도록 발전모듈들을 설치한다.The import port part 22 has a large diameter, and the water outlet 23 has a narrow configuration in the form of a rocket. Then, the power generation impeller 24 is installed on the side of the import port, and the power generation modules are installed to be condensed with the shaft of the impeller.

조력감응조타부는 조류의 방향에 따라 수입구부를 조류와 수직으로 배치하도록 조절하는 기능을 하게 한다. 또한 수입구부는 넓게하고 내부로 갈수록 좁게 하여 내부에 배치된 임펠러의 회전력을 최대화하도록 하였다.The tidal sensation steering unit has a function of adjusting the import port to be disposed perpendicular to the bird according to the direction of the bird. In addition, the import port was widened and narrowed toward the inside to maximize the rotational force of the impeller disposed inside.

조력발전부의 특징은 도시하듯이 수입구부는 넓게 구성하고, 수배출구는 좁게 구성하였다. 이러한 구성은 조력이 통과하면서 가속화되어 보다 원활한 조력발전효율을 올릴 수 있게 되었다.As shown in the figure, the tidal power generation section has a wider import port and a narrower water outlet. This configuration is accelerated as tidal flow passes, allowing for a smoother tidal power generation efficiency.

H:하우징부, S: 태양광발전부, W: 풍력발전부, T: 조력발전부(T)
10:경사프레임 11:태양발전판넬 51:임펠러 52:발전터빈부 53:방향타 55:설치부 56: 미끄럼장치
H: housing, S: solar power, W: wind power, T: tidal power (T)
DESCRIPTION OF SYMBOLS 10 Inclined frame 11 Solar power panel 51 Impeller 52 Power generation turbine part 53 Rudder 55 Installation part 56 Sliding apparatus

Claims (3)

부력발생과 내부 제어장치를 보호하는 하우징부(H),
상기한 하우징부의 상면에 경사프레임(10)을 태양입사각과 일치하도록 설치하도록 전후좌우에 배치하여 태양광에 수직배치되게 태양발전판넬(11)들을 설치한 태양광발전부(S),
하우징부의 상면에 태양광발전부와 병렬배치되어진 풍력발전부(W),
상기한 하우징의 하부에 해수속에 잠기도록 배치되어지는 조력발전부(T)로 구성로 구성되어진 해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치.
Housing part (H) to protect buoyancy and internal control device,
A photovoltaic power generation unit (S) having solar panels 11 installed in front, rear, left and right so as to be installed at the upper surface of the housing part so as to be aligned with the solar incident angle, and vertically disposed with solar light;
Wind power generation unit (W) disposed in parallel with the solar power generation unit on the upper surface of the housing,
Floating combined power generation apparatus using the current, solar and wind power at the same time consisting of a tidal power generation unit (T) disposed to be submerged in the sea water in the lower portion of the housing.
제 1 항에 있어서,
풍력발전부는 전방에 임펠러(51)를 배치하고 이 임펠러에 의하여 발전하는 발전터빈부(52)가 임펠러와 동일축에 배치되면서 후방에는 별도의 방향타(53)를 설치하였다. 그리고 발전터빈부의 하부와 하우징간의 연결을 위한 설치부(55)의 사이에는 평면에서 발전터빈부 전체가 회전이 자유롭도록 미끄럼장치(56)을 설치하는 것을 특징으로 하는 해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치.
The method of claim 1,
The wind power generator has an impeller 51 disposed at the front, and the power turbine unit 52 generated by the impeller is disposed on the same axis as the impeller, and a separate rudder 53 is installed at the rear. And between the lower portion of the power generation turbine and the installation portion 55 for the connection between the housing, the sliding current 56 is installed so that the entire power turbine is free to rotate in the plane at the same time to the current, solar and wind Floating combined power plant using.
제 1 항에 있어서,
조력발전부는 하우징의 하부에 조력감응조타부(21)을 매개로 깔대기 형태로 수중 설치되도록 하되,
수입구부(22)는 대구경으로 하며, 수배출구(23)은 좁게 구성하여 로켓의 형태로 구성하고, 발전용임펠러(24)를 수입구부측에 설치하며, 이 임펠러의 축과 축결되도록 발전모듈들을 설치하는 것을 특징으로 하는 해류, 태양광 그리고 풍력을 동시에 이용한 부유식 복합발전장치.
The method of claim 1,
The tidal power generation unit is to be installed underwater in the form of a funnel via the tidal sensitive steering unit 21 in the lower part of the housing,
The import port 22 has a large diameter, and the water outlet 23 has a narrow configuration in the form of a rocket, the power generation impeller 24 is installed on the import port side, and the power generation modules are condensed with the shaft of the impeller. Floating combined power plant using the current, solar and wind power, characterized in that the installation.
KR1020100060637A 2010-06-25 2010-06-25 Hybrid generating system using the ocean stream, solar power and wind power together KR20120000325A (en)

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CN105065190A (en) * 2015-09-02 2015-11-18 福建省泉州海丝船舶评估咨询有限公司 Offshore multifunctional power generation device
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CN106549624A (en) * 2016-11-11 2017-03-29 浙江海洋大学 A kind of offshore floating type multi-energies hybrid power generating system
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