KR20120072997A - Small hydroelectric power plant - Google Patents

Small hydroelectric power plant Download PDF

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KR20120072997A
KR20120072997A KR1020100134965A KR20100134965A KR20120072997A KR 20120072997 A KR20120072997 A KR 20120072997A KR 1020100134965 A KR1020100134965 A KR 1020100134965A KR 20100134965 A KR20100134965 A KR 20100134965A KR 20120072997 A KR20120072997 A KR 20120072997A
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South Korea
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water
reservoir
power generation
hydrophobic power
power plant
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KR1020100134965A
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Korean (ko)
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KR101234325B1 (en
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류경상
윤영배
김정현
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한국남부발전 주식회사
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    • 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
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B13/00Adaptations of machines or engines for special use; Combinations of machines or engines with driving or driven apparatus; Power stations or aggregates
    • F03B13/06Stations or aggregates of water-storage type, e.g. comprising a turbine and a pump
    • 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
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B11/00Parts or details not provided for in, or of interest apart from, the preceding groups, e.g. wear-protection couplings, between turbine and generator
    • F03B11/006Sealing arrangements
    • 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
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B11/00Parts or details not provided for in, or of interest apart from, the preceding groups, e.g. wear-protection couplings, between turbine and generator
    • F03B11/08Parts or details not provided for in, or of interest apart from, the preceding groups, e.g. wear-protection couplings, between turbine and generator for removing foreign matter, e.g. mud
    • 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
    • F03BMACHINES OR ENGINES FOR LIQUIDS
    • F03B17/00Other machines or engines
    • F03B17/06Other machines or engines using liquid flow with predominantly kinetic energy conversion, e.g. of swinging-flap type, "run-of-river", "ultra-low head"
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2220/00Application
    • F05B2220/30Application in turbines
    • F05B2220/32Application in turbines in water turbines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2220/00Application
    • F05B2220/70Application in combination with
    • F05B2220/706Application in combination with an electrical generator
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F05INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
    • F05BINDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
    • F05B2230/00Manufacture
    • F05B2230/80Repairing, retrofitting or upgrading methods
    • 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
    • Y02E10/20Hydro 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
    • Y02E10/30Energy from the sea, e.g. using wave energy or salinity gradient
    • 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
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/16Mechanical energy storage, e.g. flywheels or pressurised fluids

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Power Engineering (AREA)
  • Other Liquid Machine Or Engine Such As Wave Power Use (AREA)

Abstract

PURPOSE: A small hydro power facility is provided to prevent seawater pollution near fish farms with improving the generating efficiency of a small hydro power generator. CONSTITUTION: A small hydro power facility comprises a settling unit(20), a reservoir(30), and a small hydro power generating unit(40). The settling unit removes foreign materials included in water discharged from a fish farm. The settling unit comprises first and second settling chambers. The water discharged from the fish farm is filled in the first settling chamber. The filtered water from the first settling chamber is filled in the second settling chamber. The water discharged from the reservoir is filled in the settling unit. The small hydro power generating unit is connected to the reservoir in order that the water filled in the reservoir flows by level difference. The fraction power generating part discharges the water of reservoir to the sea.

Description

소수력 발전설비{SMALL HYDROELECTRIC POWER PLANT}Small Power Plant {SMALL HYDROELECTRIC POWER PLANT}

본 발명은 소수력 발전설비에 관한 것으로, 더욱 상세하게는 양식장에서 버려지는 물을 이용하여 전력을 생산하여 소수력 발전기의 발전효율을 향상시킬 수 있는 소수력 발전설비에 관한 것이다.
The present invention relates to a small hydro power plant, and more particularly to a small hydro power plant that can improve the power generation efficiency of the hydro power generator by producing power using water discarded in the farm.

일반적으로, 소수력발전은 산간벽지의 작은 하천이나 폭포수의 낙차를 이용하여 전기를 일으키는 발전시설로 그 시설용량이 10,000kw 이하의 수력발전을 의미한다.In general, hydroelectric power generation is a power generation facility that generates electricity by using small rivers or waterfalls of mountain walls, and means hydroelectric power of 10,000kw or less.

소수력발전은 전력의 생산 외에도 농업용 저수지, 농업용 보, 하수처리장, 정수장 및 다목적댐의 용수로 등에도 적용할 수 있다는 점을 감안할 때 국내의 개발 잠재량은 풍부하며, 또한 청정자원으로서 개발할 가치가 매우 크다 할 수 있다.Considering that small hydro power generation can be applied to agricultural reservoirs, agricultural beams, sewage treatment plants, water treatment plants and multi-purpose dams, in addition to the generation of electricity, domestic development potential is abundant and it is very valuable to develop as a clean resource. have.

소수력발전은 설비용량, 낙차, 발전방식에 따라 분류되며, 발전방식에 따라 수로식, 댐식, 터널식으로 분류된다.Small hydro power generation is classified by facility capacity, free fall, and power generation method, and is classified into waterway type, dam type, and tunnel type according to power generation method.

수로식은 하천을 따라 완경사의 수로를 결정하고 하천의 급경사와 굴곡 등을 이용하여 수로에 의한 낙차를 얻는 방식으로 하천 경사가 급한 상류나 중류에 적합한 방식이다.The waterway formula is a method suitable for the upstream or midstream of the steep slope of the river by determining the slope of the gentle slope along the stream and obtaining the drop by the channel using the steep slope and the bend of the stream.

그리고 댐식은 댐에 의해서 낙차를 얻는 형식으로 발전소는 댐에 인접하게 건설하고 하천 경사가 작은 중하류의 유량이 풍부한 지점에 설치하는 것이 유리하다. 즉, 댐식은 하천의 구배가 완만하나 유량이 풍부한 곳, 또는 낙차는 크나 하천의 수위변동이 심한 지역에 설치되는 것이 유리하다.In addition, the dam type is designed to obtain a drop by the dam. It is advantageous to construct the power plant adjacent to the dam and install it at the point where the flow is rich in the middle and lower streams with small river slope. That is, the dam type is advantageous to be installed in a place where the gradient of the river is gentle but the flow rate is rich, or the drop is large but the water level fluctuates severely.

터널식은 댐식과 수로식이 혼합된 방식으로 지형상 지하터널로 수로를 만들어 큰 낙차를 얻을 수 있는 곳에 설치하는 것이 바람직하며, 수로식의 변형이라 할 수 있다.Tunnel type is a method of mixing the dam type and the channel type, and it is preferable to install the channel in the underground tunnel to get a big drop.

한편, 어패류를 양식하는 육상 양식장은 해수를 용이하게 이용하기 위하여 바닷가 인접한 육상에 위치되며, 양식에 필요한 해수를 펌프를 이용하여 바다로부터 공급하게 된다.On the other hand, aquaculture farms for fish and shellfish are located on the shore adjacent to the beach to facilitate the use of seawater, and the seawater needed for farming is supplied from the sea by a pump.

그리고 어패류의 양식 환경 예를 들어 양식장의 수질을 깨끗하게 관리하기 위하여 양식장의 해수를 정기적으로 교체하게 된다. 이때, 양식장에서 배출되는 물은 바다로 그대로 유입된다.In addition, the seawater in the farms is regularly replaced to keep the fish and shellfish farming environment clean. At this time, the water discharged from the farm is introduced into the sea as it is.

상기한 기술구성은 본 발명의 이해를 돕기 위한 배경기술로서, 본 발명이 속하는 기술 분야에서 널리 알려진 종래기술을 의미하는 것은 아니다.
The technical structure described above is a background technique for assisting the understanding of the present invention, and does not mean the prior art widely known in the technical field to which the present invention belongs.

이와 같은 종래의 육상 양식장은 해수 교체를 위하여 버려지는 물이 바다로 유입되므로, 소수력발전이 가능한 에너지원을 적절하게 활용하지 못하고 버리게 될 뿐만 아니라, 배출지역의 해수를 오염시키게 되는 문제점이 있다.In the conventional land farms as described above, since the discarded water is introduced into the sea, the wastewater cannot be properly used as an energy source capable of hydropower generation, and there is a problem of polluting the seawater in the discharge area.

본 발명은 상기와 같은 종래의 문제점을 개선하기 위하여 안출된 것으로, 양식장에서 버려지는 물을 이용하여 전력을 생산하여 소수력 발전기의 발전효율을 향상시킬 수 있을 뿐만 아니라, 양식장 주위의 해수 오염을 방지할 수 있는 소수력 발전설비를 제공하는데 그 목적이 있다.
The present invention has been made in order to improve the conventional problems as described above, to produce electric power by using the water discarded in the farm, it is possible to improve the power generation efficiency of the hydropower generator, and also to prevent seawater pollution around the farm. Its purpose is to provide a small hydro power plant.

상기한 목적을 달성하기 위한 본 발명에 따른 소수력 발전설비는, 양식장에서 배수되는 방류수의 이물질을 제거하기 위한 침전부와, 침전부에서 배수되는 물이 저수되는 저수부와, 저수부에 저수된 물이 높이차에 의해 흐르도록 저수부에 연결되며 저수부의 물을 바다로 배출시키는 소수력 발전부를 포함한다.Hydrophobic power plant according to the present invention for achieving the above object, the sedimentation unit for removing the foreign matter of the discharged water discharged from the farm, the reservoir to store the water drained from the sedimentation section, the water stored in the reservoir It is connected to the reservoir to flow by the height difference and includes a hydrophobic power generation unit for discharging the water of the reservoir to the sea.

여기서, 침전부는, 양식장과 연결되며 양식장의 방류수가 담수되는 제1 침전조와, 제1 침전조에서 여과된 물이 배수되어 담수되는 제2 침전조를 포함한다.Here, the sedimentation unit includes a first sedimentation tank connected to the aquaculture farm and receiving fresh water from the aquaculture farm, and a second sedimentation tank where the filtered water from the first sedimentation tank is drained and fresh.

또한, 제1 침전조 및 제2 침전조는 내부로 저수되는 방류수의 유속이 저감되도록 유속저감부재가 각각 구비된다.In addition, the first settling tank and the second settling tank are each provided with a flow rate reducing member so that the flow rate of the discharged water stored therein is reduced.

또한, 유속감소부재는, 제1 침전조 및 제2 침전조의 일측 내면에서 연장 형성되는 제1 격벽부재와, 제1 격벽부재 사이에 위치되도록 제1 침전조 및 제2 침전조의 타측 내면에서 연장 형성되는 제2 격벽부재를 포함한다.The flow rate reducing member may include a first partition member extending from an inner surface of one side of the first precipitation tank and a second precipitation tank, and a second extension member extending from an inner surface of the other side of the first precipitation tank and the second precipitation tank so as to be positioned between the first partition member. 2 includes a partition member.

또한, 제1 침전조 및 제2 침전조는 내부로 유입되는 물의 유속이 감소되도록 유입구에서 배출구로 갈수록 폭이 넓어지게 형성된다.In addition, the first settling tank and the second settling tank is formed wider from the inlet to the outlet so that the flow rate of water flowing into the inside is reduced.

또한, 저수부는, 침전부에서 배수되는 물을 담수시키며 소수력 발전부가 연결되는 옹벽부와, 옹벽부의 일측에 마련되어 옹벽부의 내부에 담수된 물을 선택적으로 배수시키기 위한 보부재와, 옹벽부에 형성되어 옹벽부 내부의 퇴적물이 상기 소수력 발전부로 유입되는 것을 방지하는 퇴적물 차단부를 포함한다.In addition, the reservoir is a retaining wall portion for fresh water drained from the sedimentation portion and the hydrophobic power generation portion is connected to, and a retaining member provided on one side of the retaining wall portion for selectively draining the fresh water inside the retaining wall portion, the retaining wall portion And a sediment blocking unit for preventing sediment inside the retaining wall from being introduced into the hydrophobic power generation unit.

또한, 보부재는, 옹벽부의 일측에 타설되며 배수구가 형성되는 수중보와, 배수구가 개폐되도록 수중보에 회동가능하게 설치되는 가동보를 포함한다.In addition, the beam member includes an underwater beam that is placed on one side of the retaining wall portion and is formed with a drainage port, and a movable beam that is rotatably installed on the underwater beam so that the drainage port is opened and closed.

또한 가동보는, 압축공기의 공급 및 배기에 의해 팽창 및 수축되도록 수중보에 결합되는 에어백과, 에어백에 결합되어 에어백의 팽창 및 수축에 의해 배수구를 차단 및 개방시키는 개폐패널과, 개폐패널이 에어백에서 이탈되는 것을 방지하는 전도방지부재를 포함한다.In addition, the movable beam, an air bag coupled to the underwater beam to expand and contract by the supply and exhaust of compressed air, the opening and closing panel coupled to the air bag to block and open the drain opening by the expansion and contraction of the air bag, and the opening and closing panel is separated from the air bag It includes a fall prevention member to prevent it.

또한, 전도방지부재는 플렉시블 재질에 의해 형성되며, 일단부가 개폐패널에 결합되고 타단이 수중보에 결합된다.In addition, the fall prevention member is formed by a flexible material, one end is coupled to the opening and closing panel and the other end is coupled to the underwater beam.

또한, 에어백은 수중보에 결합되도록 결합부가 연장 형성되고, 결합부의 일측에 개폐패널의 하단부가 삽입되어 고정되는 고정홈부가 형성된다.In addition, the airbag is coupled to the coupling portion is formed to be coupled to the underwater beam, and the fixing groove portion is formed is fixed to the lower end of the opening and closing panel is inserted into one side of the coupling portion.

또한, 가동보는 개폐패널과 수중보 사이를 밀폐시키기 위한 밀폐부재를 더 포함한다.In addition, the movable beam further includes a sealing member for sealing between the opening and closing panel and the underwater beam.

또한, 밀폐부재는, 배수구의 양측면에 부착되어 마찰을 저감시키는 벽면플레이트와, 일단부가 개폐패널에 결합되고 타단부가 벽면플레이트에 접촉되는 밀폐플레이트를 포함한다.In addition, the sealing member includes a wall plate attached to both sides of the drain port to reduce friction, and a sealing plate whose one end is coupled to the opening and closing panel and the other end is in contact with the wall plate.

또한, 소수력 발전부는 저수부의 물이 낙하되도록 저수부와 연통되는 수로부재와, 수로부재를 통해 물이 공급되어 전기가 발생되는 발전기와, 발전기를 보호 및 유지보수 할 수 있도록 발전기가 수용되는 발전실을 포함한다.In addition, the hydropower unit is a waterway member in communication with the water reservoir so that the water in the water reservoir drops, a generator that is supplied with water through the waterway member to generate electricity, and a power generator in which the generator can be protected and maintained Contains thread.

또한, 수로부재는 저수부와 발전기를 연결하는 연결관과, 연결관을 보호하기 위한 보호커버를 포함한다.
In addition, the waterway member includes a connector for connecting the reservoir and the generator, and a protective cover for protecting the connector.

상기와 같은 본 발명에 따른 소수력 발전설비에 의하면, 양식장에서 버려지는 물을 이용하여 전력을 생산하여 소수력 발전기의 발전효율을 향상시킬 수 있을 뿐만 아니라, 양식장 주위의 해수 오염을 방지할 수 있다.
According to the hydrophobic power generation equipment according to the present invention as described above, by using the water discarded in the farm can produce power to improve the power generation efficiency of the hydropower generator, it is possible to prevent seawater pollution around the farm.

도 1은 본 발명에 따른 소수력 발전설비의 구성을 나타낸 평면도이다.
도 2는 본 발명에 따른 저수부와 소수력 발전부의 구성을 나타낸 측면도이다.
도 3은 본 발명에 따른 저수부의 구성을 나타낸 평면도이다.
도 4는 본 발명에 따른 저수부의 보부재를 나타낸 사시도이다.
도 5는 도 4의 측단면도이다.
도 6은 도 5의 "A"부 확대도이다.
도 7은 조 4의 "B"부 확대도이다.
1 is a plan view showing the configuration of a hydro power plant according to the present invention.
2 is a side view showing the configuration of the reservoir and the hydrophobic power generation unit according to the present invention.
3 is a plan view showing the configuration of the reservoir according to the present invention.
Figure 4 is a perspective view showing the beam member of the reservoir according to the present invention.
5 is a side cross-sectional view of FIG. 4.
6 is an enlarged view of a portion “A” of FIG. 5.
7 is an enlarged view of a portion “B” of pair 4.

본 발명의 특징 및 이점들은 첨부도면에 의거한 다음의 상세한 설명으로 더욱 명백해질 것이다. 이에 앞서, 본 명세서 및 청구범위에 사용된 용어나 단어는 발명자가 그 자신의 발명을 가장 최선의 방법으로 설명하기 위해 용어의 개념을 적절하게 정의할 수 있다는 원칙에 입각하여 본 발명의 기술적 사상에 부합하는 의미와 개념으로 해석되어야만 한다. The features and advantages of the present invention will become more apparent from the following detailed description based on the accompanying drawings. Prior to this, terms and words used in the present specification and claims are to be interpreted in accordance with the technical idea of the present invention based on the principle that the inventor can properly define the concept of the term in order to explain his invention in the best way. It must be interpreted in terms of meaning and concept.

이하, 이하, 본 발명의 실시 예에 따른 소수력 발전설비를 첨부된 도면을 참조하여 상세하게 설명한다.Hereinafter, with reference to the accompanying drawings, a hydrophobic power plant according to an embodiment of the present invention will be described in detail.

도 1 내지 도 3에 도시된 바와 같이, 본 실시 예에 따른 소수력 발전설비는 양식장(10)에서 배출되는 방류수가 유입되는 침전부(20)와, 침전부(20)에서 배수되는 물이 저수되는 저수부(30)와, 저수부(30)에서 낙하되는 물에 의해 전기에너지를 발생시키는 소수력 발전부(40)가 포함된다.As shown in Figures 1 to 3, the hydrophobic power generation facility according to the present embodiment is a sedimentation unit 20 and the water discharged from the sedimentation unit 20, the discharged water discharged from the aquaculture plant 10 is stored A reservoir 30 and a hydrophobic power generation unit 40 for generating electrical energy by water falling from the reservoir 30 are included.

양식장(10)은 바닷물을 이용하여 어패류가 양식할 수 있도록 바닷가 인근의 육상에 위치되며, 어패류의 양식 환경이 깨끗하게 유지될 수 있도록 주기적으로 해수가 교체된다.The farm 10 is located on the land near the beach so that fish and shellfish can be farmed using seawater, and the seawater is periodically replaced so that the fish farming environment is kept clean.

이때, 해수의 교체를 위해 양식장(10)에서 배출되는 방류수는 어패류의 배설물이나 사료 등에 의해 오염되어 있으며, 침전부(20)로 유입되어 오염물질이 제거된다.At this time, the discharged water discharged from the farm 10 for the replacement of seawater is contaminated by the excreta or feed of fish and shellfish, and is introduced into the settling section 20 to remove contaminants.

침전부(20)는 양식장(10)에서 배출되는 방류수가 내부로 유입되며, 방류수 중의 이물질이 침전된다. 이를 위하여, 침전부(20)는 내부로 유입되는 방류수가 2번에 걸쳐 침전이 이루어질 수 있도록 제1 침전조(21) 및 제2 침전조(23)로 이루어진다.Sedimentation unit 20 is the discharged water discharged from the farm 10 is introduced into the inside, foreign matter in the discharged water is precipitated. To this end, the settling section 20 is composed of the first settling tank 21 and the second settling tank 23 so that the discharged water flowing into the sedimentation can be made twice.

제1 침전조(21)에서 이물질이 침전된 물은 제2 침전조(23)로 다시 유입되어 침전과정을 거치면서 여과되어 배수된다. 이때, 제1 침전조(21) 및 제2 침전조(23)는 내부로 유입되는 물의 유속이 저감되어 수중의 이물질이 효과적으로 침전될 수 있도록 유입구측의 폭이 배출구측의 폭보다 작게 형성된다.Water in which the foreign matter is precipitated in the first precipitation tank 21 is introduced into the second precipitation tank 23 again, is filtered and drained through the precipitation process. At this time, the first settling tank 21 and the second settling tank 23 is formed in the width of the inlet side is smaller than the width of the outlet side so that the flow rate of the water flowing into the inside can be effectively precipitated.

즉, 제1 침전조(21) 및 제2 침전조(23)는 배출구측의 폭이 유입구측의 폭보다 넓게 형성되어 이동되는 물의 유속을 저감시키게 된다.That is, the first settling tank 21 and the second settling tank 23 has a width at the outlet side wider than the width at the inlet side to reduce the flow rate of the water to be moved.

또한, 제1 침전조(21) 및 제2 침전조(23)는 내부를 흐르는 유속이 더욱 감소되어 이물질의 침전이 보다 효과적으로 진행될 수 있도록 그 내부에 유속저감부재(25)가 각각 형성된다.In addition, the first settling tank 21 and the second settling tank 23 has a flow rate reducing member 25 is formed therein so that the flow rate of the flow through the inside is further reduced so that the deposition of foreign matter can proceed more effectively.

유속저감부재(25)는 제1 침전조(21) 및 제2 침전조(23)로 유입된 후 배출되는 물의 유속을 저감시켜 물속의 부유물들을 효과적으로 침전시키게 된다.The flow rate reducing member 25 reduces the flow rate of water discharged after entering the first settling tank 21 and the second settling tank 23 to effectively settle the suspended matter in the water.

이를 위하여, 유속저감부재(25)는 제1 침전조(21) 및 제2 침전조(23)의 일측 내면에서 연장 형성되는 제1 격벽부재(25a)와, 제1 침전조(21) 및 제2 침전조(23)의 타측 내면에서 연장 형성되는 제2 격벽부재(25b)로 이루어진다. 이때, 제2 격벽부재(25b)는 제1 격벽부재(25a) 사이에 위치되어 제1 침전조(21) 및 제2 침전조(23)의 유로가 굴곡지게 형성된다.To this end, the flow rate reducing member 25 includes a first partition member 25a extending from one inner surface of the first settling tank 21 and the second settling tank 23, and the first settling tank 21 and the second settling tank ( It consists of a second partition member (25b) extending from the other inner surface of the 23. At this time, the second partition member 25b is located between the first partition member 25a so that the flow paths of the first settling tank 21 and the second settling tank 23 are bent.

제1 침전조(21) 및 제2 침전조(23)에서 부유물이 제거된 물은 저수부(30)로 유입되어 저수된다.Water from which the suspended matter is removed in the first settling tank 21 and the second settling tank 23 flows into the reservoir 30 and is stored.

저수부(30)는 제2 침전조(23)에서 배수되는 물이 담수되며, 물의 낙차가 발생될 수 있도록 소수력 발전부(40)와 연결된다.The reservoir 30 is fresh water drained from the second sedimentation tank 23, and is connected to the hydrophobic power generation unit 40 so that a drop of water may occur.

이러한, 저수부(30)는 제2 침전조(23)에 배수되는 물을 담수하기 위한 옹벽부(31)와, 이 옹벽부(31)에 의해 저수되는 물을 선택적으로 담수 및 배수시키기 위한 보부재(50)로 이루어진다. 이때, 보부재(50)는 옹벽부(31)의 일측에 형성된다.The water storage part 30 includes a retaining wall part 31 for fresh water drained by the second settling tank 23, and a complement member for selectively freshening and draining water stored by the retaining wall part 31. It consists of 50. At this time, the beam member 50 is formed on one side of the retaining wall portion 31.

옹벽부(31)는 내부의 물이 소수력 발전부(40)로 낙하되도록 하부에 소수력 발전부(40)가 연결된다. 또한, 옹벽부(31)는 내부 바닥에 퇴적되는 퇴적물이 소수력 발전부(40)로 유입되는 것이 방지되도록 소수력 발전부(40) 연결되는 부위에 퇴적물 차단부(33)가 형성된다.The retaining wall part 31 is connected to the hydrophobic power generation unit 40 at the bottom such that the water therein falls into the hydrophobic power generation unit 40. In addition, the retaining wall part 31 has a sediment blocking part 33 formed at a portion connected to the hydrophobic power generation unit 40 so that sediment deposited on the inner bottom is prevented from entering the hydrophobic power generation unit 40.

퇴적물 차단부(33)는 옹벽부(31)의 내부 바닥에서 돌출 형성되며, 소수력 발전부(40)의 연결부위와 높이차가 발생하게 되도록 경사부(33a)가 형성된다. 이와 같이 바닥에서 돌출 형성된 퇴적물 차단부(33)에 의해 옹벽부(31) 내부에 퇴전된 퇴전물이 소수력 발전부(40)로 유입되는 것이 방지된다. The deposit blocking part 33 protrudes from the inner bottom of the retaining wall part 31, and the inclined part 33a is formed to generate a height difference with the connection part of the hydrophobic power generating part 40. In this way, the sediment that has left the inside of the retaining wall 31 by the sediment blocking portion 33 protruding from the bottom is prevented from entering the hydrophobic power generating portion 40.

또한, 옹벽부(31)는 소수력 발전부(40)가 안정되게 연결될 수 있도록 외측에 지지단부(35)가 돌출 형성된다.In addition, the retaining wall portion 31 has a support end portion 35 protruded to the outside so that the hydrophobic power generating portion 40 can be stably connected.

옹벽부(31)에 물을 배수 및 담수시키기 위한 보부재(50)를 도 4 내지 도 7을 참조하여 상세하게 설명한다.A beam member 50 for draining and dewatering water into the retaining wall portion 31 will be described in detail with reference to FIGS. 4 to 7.

도 4 내지 도 7에 도시된 바와 같이, 본 실시 예에 따른 보부재(50)는 옹벽부(31)의 일측에 타설되는 수중보(51)와, 이 수중보(51)에 회동가능하게 설치되는 가동보(53)를 포함한다.4 to 7, the beam member 50 according to the present embodiment is a submerged beam 51 which is placed on one side of the retaining wall portion 31, and the movable is installed rotatably on the subwater beam 51 And a beam 53.

수중보(51)는 콘크리트의 타설을 통해 형성되며, 중앙부에 배수구(51a)가 형성되고, 이 배수구(51a)에 가동보(53)가 설치된다.The underwater beam 51 is formed through the pouring of concrete, the drain port 51a is formed in the center, the movable beam 53 is installed in the drain port 51a.

가동보(53)는 배수구(51a)를 용이하게 개폐시킬 수 있도록 에어백(57)과, 이 에어백(57)에 의해 배수구(51a)에서 전개 또는 접히는 개폐패널(53b)과, 이 개폐패널(53b)의 이탈을 방지하는 전도방지부재(53c)를 포함한다.The movable beam 53 has an airbag 57, an opening / closing panel 53b which is developed or folded at the drain opening 51a by the airbag 57 so as to easily open and close the drain opening 51a, and the opening and closing panel 53b. It includes a fall prevention member (53c) to prevent the separation.

에어백(57)은 배수구(51a)에 마련되는 앵커볼트(51b)에 고정되며, 외부로부터 공기가 유입 또는 배출됨에 따라 팽창 및 수축된다. 이러한, 에어백(57)은 앵커볼트(51b)에 고정될 수 있도록 결합부(57a)가 연장 형성되고, 결합부(57a)의 일측에 고정홈부(57b)가 형성된다. 고정홈부(57b)에는 개폐패널(53b)이 삽입되어 고정된다.The airbag 57 is fixed to the anchor bolt 51b provided in the drain port 51a, and expands and contracts as air is introduced or discharged from the outside. The airbag 57 has an engaging portion 57a extended to be fixed to the anchor bolt 51b, and a fixing groove 57b is formed at one side of the engaging portion 57a. The opening and closing panel 53b is inserted into and fixed to the fixing groove 57b.

이와 같은 에어백(57)은 외부에서 공기가 공급되면 팽창을 통해 개폐패널(53b)을 전개시키고, 내부의 공기가 배출되면 개폐패널(53b)의 무게에 의해 압축되면서 개폐패널(53b)을 회동시킨다.The air bag 57 expands the opening and closing panel 53b through expansion when air is supplied from the outside, and rotates the opening and closing panel 53b while being compressed by the weight of the opening and closing panel 53b when the air inside is discharged. .

개폐패널(53b)은 그 일단이 에어백(57)의 고정홈부(57b)에 삽입되며, 고정홈부(57b)에 관통되는 고정볼트(53b')가 접합된다. 이러한, 개폐패널(53b)은 고정볼트(53b')에 체결되는 너트에 의해 에어백(57)에 고정되며, 에어백(57)의 팽창 및 압축을 통해 수중보(51)에서 전개 및 접히게 된다.One end of the opening / closing panel 53b is inserted into the fixing groove 57b of the airbag 57, and the fixing bolt 53b 'penetrated through the fixing groove 57b is joined. The opening and closing panel 53b is fixed to the airbag 57 by a nut fastened to the fixing bolt 53b ', and is expanded and folded at the underwater beam 51 through expansion and compression of the airbag 57.

본 실시 예에서는 개폐패널(53b)이 고정볼트(53b')에 의해 에어백(57)에 고정되는 것을 예를 들어 설명하고 있지만, 접착제, 용접 또는 리벳과 같은 방식으로 결합될 수도 있다.In the present exemplary embodiment, the opening and closing panel 53b is fixed to the airbag 57 by the fixing bolt 53b ', but it may be combined in the same manner as adhesive, welding, or riveting.

전도방지부재(53c)는 에어백(57)의 팽창에 따라 개폐패널(53b)이 전개될 때 에어백(57)에서 이탈되는 것을 방지한다. 이를 위하여, 전도방지부재(53c)는 그 일단부가 개폐패널(53b)에 결합되고, 타단부가 수중보에 결합된다. 이때, 전도방지부재(53c)는 개폐패널(53b)의 전개 또는 접힘에 따라 유연하게 움직이면서 그 파손이 방지되도록 플렉시블 재질에 의해 제작된다.The fall prevention member 53c prevents the airbag 57 from being separated from the airbag 57 when the opening / closing panel 53b is deployed as the airbag 57 is inflated. To this end, one end of the fall prevention member 53c is coupled to the opening and closing panel 53b, and the other end thereof is coupled to the underwater beam. At this time, the fall prevention member 53c is made of a flexible material so as to prevent its breakage while flexibly moving in accordance with the deployment or folding of the opening and closing panel 53b.

예를 들어 전도방지부재(53c)는 고무에 의해 제작되며 내구성이 향상되도록 섬유가 함유될 수 있다. 본 실시 예에서는 전도방지부재(53c)가 고무에 의해 형성되는 것을 예를 들어 설명하고 있지만, 와이어나 쇠사슬 등으로 제작할 수도 있다.For example, the fall prevention member 53c is made of rubber and may contain fibers to improve durability. In the present embodiment, for example, the fall prevention member 53c is formed of rubber, but can be manufactured by wire, chain, or the like.

또한, 본 실시 예에 따른 가동보(53)는 수중보(51)의 넓이에 따라 하나 이상 설치되며, 두 개 이상이 연속되게 설치될 때에는 개폐패널(53b) 사이가 밀폐되도록 개폐패널(53b)이 실 플레이트(58)에 의해 연결된다. 이때, 개폐패널(53b)과 실 플레이트(58)는 볼트 및 너트에 의해 결합되지만, 용접 또는 리벳과 같은 방식으로 결합될 수도 있다.In addition, at least one movable beam 53 according to the present embodiment is installed according to the width of the underwater beam 51, and when two or more are installed in succession, the opening and closing panel 53b is sealed so as to be sealed between the opening and closing panel 53b. It is connected by the seal plate 58. At this time, the opening and closing panel 53b and the seal plate 58 are coupled by bolts and nuts, but may be coupled in a manner such as welding or riveting.

한편, 가동보(53)는 개폐패널(53b)과 수중보(51) 사이를 밀폐시키기 위한 밀폐부재(59)를 더 포함한다.On the other hand, the movable beam 53 further includes a sealing member 59 for sealing between the opening and closing panel 53b and the underwater beam 51.

밀폐부재(59)는 배수구(51a)의 양측면에 부착되는 벽면플레이트(59a)와, 개폐패널(53b)과 벽면플레이트(59a) 사이를 밀폐시키는 밀폐플레이트(59b)를 포함한다. 이때, 벽면플레이트(59a) 및 밀폐플레이트(59b)는 금속에 의해 제작된다.The sealing member 59 includes a wall plate 59a attached to both side surfaces of the drain port 51a, and a sealing plate 59b for sealing between the opening and closing panel 53b and the wall plate 59a. At this time, the wall plate 59a and the sealing plate 59b are made of metal.

밀폐플레이트(59b)는 그 일단부가 볼트 및 너트에 의해 개폐패널(53b)에 결합되고 타단부가 벽면플레이트(59a)에 접촉된다. 이때, 밀폐플레이트(59b)는 벽면플레이트(59a)와의 접촉면적이 증가되도록 타단부가 절곡된다.One end of the sealing plate 59b is coupled to the opening / closing panel 53b by bolts and nuts, and the other end thereof is in contact with the wall plate 59a. At this time, the sealing plate (59b) is bent the other end so that the contact area with the wall plate (59a) increases.

본 실시 예에서는 밀폐플레이트(59b)와 벽면플레이트(59a)가 볼트 및 너트에 의해 결합되는 것을 예를 들어 설명하고 있지만, 용접 또는 리벳과 같은 방식으로 결합될 수도 있다.In the present embodiment, for example, the sealing plate 59b and the wall plate 59a are coupled by bolts and nuts, but may be coupled in the same manner as welding or riveting.

도 2를 다시 참조하면, 소수력 발전부(40)는 저수부(30)의 물이 낙하되도록 옹벽부(31)에 연결되는 수로부재(41)와, 이 수로부재(41)에서 낙하되는 물에 의해 전기를 발생하는 발전기(43) 및 이 발전기(43)를 보호하기 위한 발전실(45)로 이루어진다.Referring back to FIG. 2, the hydrophobic power generation unit 40 is connected to the water channel member 41 connected to the retaining wall portion 31 so that the water of the reservoir 30 falls, and the water dropped from the water channel member 41. It consists of a generator 43 for generating electricity and a power generation chamber 45 for protecting the generator 43.

수로부재(41)는 옹벽부(31)와 발전기(43)를 연결시키는 연결관(41a)과, 이 연결관(41a)을 보호하기 위한 보호커버(41b)로 구성된다.The waterway member 41 is composed of a connecting pipe 41a for connecting the retaining wall 31 and the generator 43 and a protective cover 41b for protecting the connecting pipe 41a.

연결관(41a)은 그 일단부가 옹벽부(31)를 관통하여 그 내부와 연통되고, 타단부가 발전실(45)을 관통하여 발전기(43)에 연결된다. 이러한 연결관(41a)은 내부로 유입되는 물의 낙차가 발생되도록 하측으로 경사지게 형성되며, 그 일단이 이물질 차단망이 부착된다.One end of the connecting pipe 41a communicates with the inside through the retaining wall portion 31, and the other end is connected to the generator 43 through the power generating chamber 45. The connecting pipe 41a is formed to be inclined downward to cause a drop of water introduced into the inside thereof, and one end thereof is attached with a foreign matter blocking network.

보호커버(41b)는 콘크리트의 타설을 통해 형성되며, 연결관(41a)의 외면을 커버한다. 이러한 보호커버(41b)는 그 단부가 옹벽부(31)의 지지단부(35)에 걸려 지지되어 침하되는 것이 방지된다.The protective cover 41b is formed through the pouring of concrete and covers the outer surface of the connecting pipe 41a. The protective cover 41b is prevented from falling down while being supported by the supporting end 35 of the retaining wall portion 31.

본 실시 예에서는 보호커버(41b)가 콘크리트에 의해 형성되는 것을 예를 들어 설명하고 있지만, 우레탄, 고무, 합성수지 등에 의해서 형성될 수도 있다. In the present embodiment, the protective cover 41b is described with an example of being formed of concrete, but may be formed of urethane, rubber, synthetic resin, or the like.

발전기(43)는 그 내부에 전기를 발생시키기 위한 터빈이 마련되며, 그 일단부가 발전실(45)의 외부로 노출된다. 이는 발전기(43)를 통과한 물이 외부로 배수되도록 하기 위함이다.The generator 43 is provided with a turbine for generating electricity therein, and one end thereof is exposed to the outside of the power generation chamber 45. This is to allow the water passed through the generator 43 to be drained to the outside.

발전실(45)은 발전기(43)를 보호 및 유지보수 할 수 있도록 발전기(43)가 수용되며, 그 내부로 작업자가 인출입할 수 있도록 상측에 출입구가 마련된다. 통상 발전실(45)은 콘크리트에 의해 형성된다.
Power generation room 45 is a generator 43 is accommodated to protect and maintain the generator 43, the entrance is provided on the upper side so that the operator can draw in and out. Usually the power generation room 45 is formed of concrete.

상기와 같이 구성되는 본 발명의 실시 예에 따른 소수력 발전설비의 작용을 설명한다.It describes the operation of the hydrophobic power plant according to an embodiment of the present invention configured as described above.

먼저, 양식장(10)에서 배출되는 물은 제1 침전조(21) 및 제2 침전조(23)를 통과하면서 부유물들이 침전되어 제거된다.First, the water discharged from the aquaculture farm 10 passes through the first settling tank 21 and the second settling tank 23, and suspended matter is precipitated and removed.

이때, 제1 침전조(21) 및 제2 침전조(23)로 유입되는 물은 제1 격벽부재(25a) 및 제2 격벽부재(25b)에 의해 그 유속이 감소되면서 부유물들의 침전이 보다 효과적으로 진행된다. 즉, 부유물 제거가 효과적으로 이루어지게 되어 해수의 오염을 예방할 수 있게 된다.At this time, the water flowing into the first settling tank 21 and the second settling tank 23 is reduced by the flow rate of the first partition member 25a and the second partition member 25b, the sedimentation of the suspended matter proceeds more effectively. . In other words, it is possible to effectively remove the suspended solids to prevent contamination of seawater.

그리고 제2 침전조(23)에서 배수되는 물은 발전기(43)를 가동시킬 수 있도록 저수부(30)에서 일정량 저수된 후 수로부재(41)를 통해 발전기(43)로 낙하되어 발전기(43)의 터빈을 회전시키게 된다.Then, the water drained from the second settling tank 23 is stored in the reservoir 30 to a predetermined amount so that the generator 43 can be operated, and then falls into the generator 43 through the water channel member 41 so that the generator 43 is discharged. The turbine will rotate.

즉, 양식장(10)에서 버려지는 물을 이용하여 전력을 생산하여 소수력 발전기의 발전효율이 향상될 수 있다. That is, the power generation efficiency of the hydrophobic power generator can be improved by producing electric power using water discarded in the farm 10.

또한, 제2 침전조(23)에서 저수부(30)로 유입되는 물이 과도하거나 또는 빗물 등의 유입으로 인하여 저수부(30)에 저수된 물의 수위가 과도하게 상승하게 될 경우에는 가동보(53)를 회동시켜 저수부(30)의 물을 배수시킬 수 있다.In addition, when the water flowing into the reservoir 30 from the second sedimentation tank 23 is excessive or the level of water stored in the reservoir 30 is excessively increased due to the inflow of rainwater, etc., the movable beam 53 ) Can be rotated to drain the water in the reservoir 30.

즉, 저수부(30)의 수위에 따라 가동보(53)를 작동시켜 저수부(30)의 수위를 항상 안정되게 유지시킬 수 있다. That is, by operating the movable beam 53 in accordance with the water level of the reservoir 30 can maintain the water level of the reservoir 30 at all times.

이상에서 설명한 것은 본 발명을 실시하기 위한 하나의 실시 예에 불과한 것으로서, 본 발명은 상기한 실시 예에 한정되지 않고, 이하의 특허청구범위에서 청구하는 바와 같이 본 발명의 요지를 벗어남이 없이 당해 발명이 속하는 분야에서 통상의 지식을 가진 자라면 누구든지 다양한 변경 실시가 가능한 범위까지 본 발명의 기술적 정신이 있다고 할 것이다.
It will be apparent to those skilled in the art that the present invention is not limited to the embodiment described above, but may be embodied in various other forms without departing from the spirit of the invention, It will be understood by those of ordinary skill in the art that various changes and modifications may be made without departing from the scope of the present invention.

10 : 양식장 20 : 침전부
21 : 제1 침전조 23 : 제2 침전조
25 : 유속저감부재 30 : 저수부
31 : 옹벽부 33 : 퇴적물 차단부
40 : 소수력 발전부 50 : 보부재
51 : 수중보 53 : 가동보
57 : 에어백 59 : 밀폐부재
10: farm 20: sedimentation part
21: first precipitation tank 23: second precipitation tank
25: flow rate reducing member 30: water reservoir
31: retaining wall portion 33: sediment blocking unit
40: hydrophobic power generation unit 50: beam member
51: underwater beam 53: movable beam
57 air bag 59 sealing member

Claims (15)

양식장에서 배수되는 방류수의 이물질을 제거하기 위한 침전부;
상기 침전부에서 배수되는 물이 저수되는 저수부; 및
상기 저수부에 저수된 물이 높이차에 의해 흐르도록 상기 저수부에 연결되며, 상기 저수부의 물을 바다로 배출시키는 소수력 발전부;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
A sedimentation unit for removing foreign matter from the discharged water discharged from the farm;
A reservoir for storing water drained from the precipitate; And
A hydrophobic power generation unit connected to the reservoir to allow the water stored in the reservoir to flow by a height difference, and to discharge the water of the reservoir to the sea;
Hydrophobic power plant characterized in that it comprises a.
제 1 항에 있어서, 상기 침전부는,
상기 양식장과 연결되며 상기 양식장의 방류수가 담수되는 제1 침전조; 및
상기 제1 침전조에서 여과된 물이 배수되어 담수되는 제2 침전조;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 1, wherein the precipitation portion,
A first sedimentation tank connected to the farm and receiving fresh water of the farm; And
A second precipitation tank in which the water filtered in the first precipitation tank is drained and fresh water;
Hydrophobic power plant characterized in that it comprises a.
제 2 항에 있어서,
상기 제1 침전조 및 제2 침전조는 내부로 저수되는 방류수의 유속이 저감되도록 유속저감부재가 각각 구비되는 것을 특징으로 하는 소수력 발전설비.
The method of claim 2,
The first settling tank and the second settling tank is hydrophobic power generation equipment, characterized in that each provided with a flow rate reducing member to reduce the flow rate of the discharged water stored therein.
제 1 항에 있어서, 상기 저수부는,
상기 침전부에서 배수되는 물을 담수시키며, 상기 소수력 발전부가 연결되는 옹벽부; 및
상기 옹벽부의 일측에 마련되어 상기 옹벽부의 내부에 담수된 물을 선택적으로 배수시키기 위한 보부재;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 1, wherein the reservoir portion,
A retaining wall portion for freshening the water drained from the precipitation portion and connected with the hydrophobic power generation portion; And
A beam member provided at one side of the retaining wall portion for selectively draining the fresh water in the retaining wall portion;
Hydrophobic power plant characterized in that it comprises a.
제 4 항에 있어서, 상기 보부재는,
상기 옹벽부의 일측에 타설되며 배수구가 형성되는 수중보; 및
상기 배수구가 개폐되도록 상기 수중보에 회동가능하게 설치되는 가동보;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 4, wherein the beam member,
An underwater beam which is poured on one side of the retaining wall and is formed with a drain hole; And
A movable beam installed rotatably on the underwater beam so that the drain hole is opened and closed;
Hydrophobic power plant characterized in that it comprises a.
제 5 항에 있어서, 상기 가동보는,
압축공기의 공급 및 배기에 의해 팽창 및 수축되도록 상기 수중보에 결합되는 에어백;
상기 에어백에 결합되어 상기 에어백의 팽창 및 수축에 의해 상기 배수구를 차단 및 개방시키는 개폐패널; 및
상기 개폐패널이 상기 에어백에서 이탈되는 것을 방지하는 전도방지부재;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 5, wherein the movable beam,
An airbag coupled to the underwater beam to expand and contract by supply and exhaust of compressed air;
An opening / closing panel coupled to the airbag to block and open the drain hole by expansion and contraction of the airbag; And
A fall prevention member preventing the opening and closing panel from being separated from the air bag;
Hydrophobic power plant characterized in that it comprises a.
제 6 항에 있어서,
상기 에어백은 상기 수중보에 결합되도록 결합부가 연장 형성되고, 상기 결합부의 일측에 상기 개폐패널의 하단부가 삽입되어 고정되는 고정홈부가 형성되는 것을 특징으로 하는 소수력 발전설비.
The method according to claim 6,
The airbag is a hydrophobic power generation facility characterized in that the coupling portion is formed to be extended to be coupled to the underwater beam, the fixing groove portion is formed to be fixed by inserting the lower end of the opening and closing panel on one side of the coupling portion.
제 6 항에 있어서,
상기 가동보는 상기 개폐패널과 상기 수중보 사이를 밀폐시키기 위한 밀폐부재를 더 포함하는 것을 특징으로 하는 소수력 발전설비.
The method according to claim 6,
The movable beam further comprises a sealing member for sealing between the opening and closing panel and the underwater beams.
제 8 항에 있어서, 상기 밀폐부재는,
상기 배수구의 양측면에 부착되어 마찰을 저감시키는 벽면플레이트; 및
일단부가 상기 개폐패널에 결합되고 타단부가 상기 벽면플레이트에 접촉되는 밀폐플레이트;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 8, wherein the sealing member,
Wall plates attached to both sides of the drain port to reduce friction; And
A sealing plate having one end coupled to the opening / closing panel and the other end contacting the wall plate;
Hydrophobic power plant characterized in that it comprises a.
제 1 항에 있어서, 상기 소수력 발전부는,
상기 저수부의 물이 낙하되도록 상기 저수부와 연통되는 수로부재;
상기 수로부재를 통해 물이 공급되어 전기가 발생되는 발전기; 및
상기 발전기를 보호 및 유지보수 할 수 있도록 상기 발전기가 수용되는 발전실;
을 포함하는 것을 특징으로 하는 소수력 발전설비.
The hydrophobic power generation unit of claim 1,
A water channel member in communication with the reservoir so that the water of the reservoir falls;
A generator for generating electricity by supplying water through the channel member; And
A power generation room in which the generator is accommodated to protect and maintain the generator;
Small hydro power plant characterized in that it comprises a.
제 10 항에 있어서, 상기 수로부재는,
상기 저수부와 상기 발전기를 연결하는 연결관; 및
상기 연결관을 보호하기 위한 보호커버;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 10, wherein the channel member,
A connecting pipe connecting the reservoir and the generator; And
A protective cover for protecting the connector;
Hydrophobic power plant characterized in that it comprises a.
제 3 항에 있어서, 상기 유속감소부재는,
상기 제1 침전조 및 상기 제2 침전조의 일측 내면에서 연장 형성되는 제1 격벽부재; 및
상기 제1 격벽부재 사이에 위치되도록 상기 제1 침전조 및 상기 제2 침전조의 타측 내면에서 연장 형성되는 제2 격벽부재;
를 포함하는 것을 특징으로 하는 소수력 발전설비.
The method of claim 3, wherein the flow rate reducing member,
A first partition member extending from an inner surface of one side of the first precipitation tank and the second precipitation tank; And
A second partition member extending from an inner surface of the other side of the first precipitation tank and the second precipitation tank so as to be located between the first partition walls;
Hydrophobic power plant characterized in that it comprises a.
제 2 항에 있어서,
상기 제1 침전조 및 상기 제2 침전조는 내부의 유속이 감소되도록 유입구에서 배출구로 갈수록 폭이 넓어지는 것을 특징으로 하는 소수력 발전설비.
The method of claim 2,
The first sedimentation tank and the second sedimentation tank hydrophobic power generation facility, characterized in that the width widens from the inlet to the outlet so that the flow rate therein is reduced.
제 6 항에 있어서,
상기 전도방지부재는 플렉시블 재질에 의해 형성되며 일단부가 상기 개폐패널에 결합되고 타단이 상기 수중보에 결합되는 것을 특징으로 하는 소수력 발전설비.
The method according to claim 6,
The fall prevention member is formed by a flexible material, one end is coupled to the opening and closing panel and the other end is hydrophobic power generation facility, characterized in that coupled to the underwater beam.
제 4 항에 있어서,
상기 옹벽부는 상기 소수력 발전부로 퇴적물이 유입되는 것을 방지하는 퇴적물 차단부가 형성되는 것을 특징으로 하는 소수력 발전설비.
The method of claim 4, wherein
The retaining wall portion is a hydrophobic power generation facility, characterized in that the sediment blocking unit is formed to prevent the sediment is introduced into the hydrophobic power generation unit.
KR1020100134965A 2010-12-24 2010-12-24 Small hydroelectric power plant KR101234325B1 (en)

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KR102089677B1 (en) 2018-08-13 2020-03-16 (주)위 에너지 Small-scale hydroelectric power generation system using emission from the farm and the method using it
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