KR100905792B1 - A inhaler remote automatic adjusting device of lake water circulation device - Google Patents

A inhaler remote automatic adjusting device of lake water circulation device Download PDF

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KR100905792B1
KR100905792B1 KR20070072374A KR20070072374A KR100905792B1 KR 100905792 B1 KR100905792 B1 KR 100905792B1 KR 20070072374 A KR20070072374 A KR 20070072374A KR 20070072374 A KR20070072374 A KR 20070072374A KR 100905792 B1 KR100905792 B1 KR 100905792B1
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water
inlet
frame
water circulation
wire
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KR20070088421A (en
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안익태
권기생
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주식회사 솔라비
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    • 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
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W10/00Technologies for wastewater treatment
    • Y02W10/30Wastewater or sewage treatment systems using renewable energies
    • Y02W10/37Wastewater or sewage treatment systems using renewable energies using solar energy

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Abstract

본 발명은 호소(湖沼) 수질순환장치의 흡입구 원격 자동조절장치에 관한 것으로서, 호소의 수중 용존산소량과 탁도를 센서로 센싱한 후 흡입구의 높이를 원격으로 자동조절토록 하고, 흡입구를 통해 물을 상하로 순환토록 하여 수질을 개선시킬 수 있도록 한 호소 수질순환장치의 흡입구 원격 자동조절장치에 관한 것이다.The present invention relates to an inlet remote automatic control device of an appealing water circulation system, and after sensing the dissolved oxygen content and turbidity of the appeal with a sensor to remotely automatically adjust the height of the inlet, and the water up and down through the inlet The present invention relates to an inlet remote automatic control device of an appealing water circulation system, which can improve the water quality by circulating.

즉, 본 발명은 프레임(2)에 수개의 플로트(3)가 설치되어 수면 위에 프레임(2)이 부상할 수 있도록 하고, 상기 프레임(2)에는 태양광을 이용하여 전원을 축전할 수 있도록 솔라셀(4)이 수개 설치되고, 상기 솔라셀(4)에 의해 축전된 전원을 이용하여 구동되는 구동모터(5)가 설치되고, 상기 구동모터(5)의 구동에 의해 물을 펌핑할 수 있는 임펠러(6)가 프레임(2)의 중앙 하부로 설치되어 프레임(2) 하부로 설치된 자바라형 흡입구(7)로 유입된 물을 펌핑하여 깔때기형 순환호퍼(8)를 통해 수면 상부로 배출토록 한 통상의 호소 수질순환장치(1)에 있어서, 상기 프레임(2) 일측으로 원격으로 정역 구동을 제어할 수 있는 정역모터(9)와, 상기 정역모터(9)의 원동축(10)상에 와이어드럼(11)을 축고정하여 와이어(12)의 일단을 연결하고, 상기 와이어(12)의 타단은 안내로울러(13)를 경유토록 하여 흡입구(7) 하단에 고정되고, 상기 흡입구(7) 하단에는 용존산소센서(14)와 탁도센서(15)를 각각 설치하여 센싱된 수치에 의해 흡입구(7)를 자동으로 승강조절할 수 있도록 구성한 것을 특징으로 한다.That is, in the present invention, several floats 3 are installed on the frame 2 to allow the frame 2 to float on the surface of the water, and the frame 2 is solar-powered to store power using sunlight. A plurality of cells 4 are installed, a drive motor 5 driven using power stored by the solar cell 4 is installed, and water can be pumped by driving the drive motor 5. Impeller (6) is installed in the lower center of the frame (2) to pump the water flowing into the bellows type inlet (7) installed below the frame (2) to discharge to the upper surface of the water through the funnel circulation hopper (8) In a conventional appeal water circulation system (1), a forward and reverse motor (9) capable of remotely controlling forward and backward driving to one side of the frame (2), and a wire on the drive shaft (10) of the forward and reverse motor (9) The drum 11 is axially fixed to connect one end of the wire 12, and the other end of the wire 12 is a guide roller 1. 3) is fixed to the lower end of the suction port (7), and the dissolved oxygen sensor 14 and the turbidity sensor (15) are respectively installed at the lower end of the suction port (7) to automatically detect the suction port (7) by the sensed value. Characterized in that configured to be adjustable lift.

호소 수질순환장치의 흡입구 원격 자동조절장치, 솔라셀, 정역모터, 흡입구, 승강수단 Inlet remote automatic control device of appeal water circulation system, Cell, Stationary motor, Inlet port, Lift means

Description

호소 수질순환장치의 흡입구 원격 자동조절장치{A inhaler remote automatic adjusting device of lake water circulation device}A inhaler remote automatic adjusting device of lake water circulation device

본 발명은 호소(湖沼) 수질순환장치의 흡입구 원격 자동조절장치에 관한 것으로서, 호소의 수중 용존산소량과 탁도를 센서로 센싱한 후 흡입구의 높이를 원격으로 자동조절토록 하고, 흡입구를 통해 물을 상하로 순환토록 하여 수질을 개선시킬 수 있도록 한 호소 수질순환장치의 흡입구 원격 자동조절장치에 관한 것이다.The present invention relates to an inlet remote automatic control device of an appealing water circulation system, and after sensing the dissolved oxygen content and turbidity of the appeal with a sensor to remotely automatically adjust the height of the inlet, and the water up and down through the inlet The present invention relates to an inlet remote automatic control device of an appealing water circulation system, which can improve the water quality by circulating.

하천, 호수, 강이나 바다에 유기물을 함유한 생활하수와 분뇨가 과량 흘러 들어가면 미생물이 유기물을 과량 분해하므로 수역에 영양이 많아지는 부영양화 현상이 발생하게 된다.If excess sewage and manure containing organic matter flows into rivers, lakes, rivers or seas, microorganisms decompose organic matter excessively, causing nutrient nutrients in the water.

즉 자정능력을 넘는 대량의 유기물이나 염류가 강, 바다에 유입되면 수역은 분해산물 또는 이차생성물 등의 영양염류가 풍부해지는 현상이 일어나며 이로 인하여 수초와 녹조류가 번창하고 생물학적 산소요구량(Biochemical Oxygen Demand, BOD)이 증가하게 되며 물 속의 산소 부족으로 물고기 등 수중생물이 살 수 없게 되는 것이다.In other words, when a large amount of organic matter or salts exceeding the self-cleaning ability flows into the river or the sea, nutrients such as decomposition products or secondary products are enriched in the water, which causes the plants and green algae to thrive and biochemical oxygen demand (Biochemical Oxygen Demand, BOD) increases and the lack of oxygen in the water makes it impossible for aquatic organisms such as fish to live.

이와 같은 부영양화된 호소의 수질을 개선시키기 위하여 호소 수질순환장 치가 일부에서 사용되고 있다.In order to improve the water quality of such eutrophicated lakes, the lake water circulation system is used in some cases.

상기 알려진 호소 수질순환장치는 수개의 플로트를 사용하여 수질순환장치가 수면에 부상 설치되도록 하고, 상기 플로트와 연결된 프레임 상에는 솔라셀(solar cell)을 수개 설치하여 태양광을 이용하여 전원을 축전한 후 축전된 전원을 이용하여 구동할 수 있는 모터와 임펠러를 설치하여 수중으로 설치된 흡입구를 통해 물을 상부로 펌핑하여 순환시킴으로써 수중 수질을 개선시킬 수 있도록 되어 있다.The known water recirculation device uses several floats so that the water recirculation device floats on the surface of the water, and installs several solar cells on the frame connected to the float to store power using solar light. By installing a motor and an impeller that can be driven using the stored power, the water quality can be improved by circulating by pumping the water upward through the inlet installed in the water.

그러나 기존의 호소 수질순환장치의 흡입구는 길이가 한정되어 있어 수심에 따른 호환성이 부재하였고, 그로 인하여 수심에 따라 별도의 장치를 설치하여야 하는 문제점을 안고 있었던 것이다.However, the intake port of the existing appeal water circulation device is limited in length due to the limited length, and therefore had a problem that a separate device should be installed according to the depth.

이에 본 발명에서는 기존 사용되고 있는 호소 수질순환장치의 흡입구를 수중의 용존산소량(dissolved oxygen, Do)과 탁도를 센싱하여 자동으로 높이 조절할 수 있도록 한 흡입구 자동조절장치를 제공하여 호소의 수심 및 수질에 따른 호환성을 갖는 호소 수질순환장치를 제공코자 하는 것이다.Therefore, the present invention provides an inlet automatic control device for automatically adjusting the intake port of the existing water inlet water circulation system, which senses dissolved oxygen (Do) and turbidity in the water, according to the depth and water quality of the appeal. It is an object of the present invention to provide a compatible water circulation system.

본 발명은 호소 수질순환장치의 흡입구를 수중 용존산소량과 탁도를 센싱한 후 이를 원격으로 자동조절하기 위하여 흡입구를 자바라 타입으로 구성하고, 상기 자바라 타입의 흡입구를 승강조절이 가능토록 원격조절이 가능한 정역 구동모터상 에 와이어드럼을 축설치하고, 상기 와이어드럼에 와이어의 일단을 연결하고 와이어의 타단은 자바라형 흡입구의 하단과 연결하여 흡입구를 수중에서 높이 조절이 가능토록 한 호소 수질순환장치의 흡입구 원격 자동조절장치를 제공한다.The present invention comprises a bellows type inlet port for sensing the dissolved oxygen content and turbidity in the water inlet of the appealing water circulation device and automatically controlling it remotely, and the remote control is possible to remotely control the lifting port of the bellows type suction port. A shaft of a wire drum is installed on the driving motor, and one end of the wire is connected to the wire drum, and the other end of the wire is connected to the lower end of the bellows type inlet port so that the inlet port can be adjusted in water. Provide automatic adjustment device.

본 발명의 호소 수질순환장치의 흡입구 원격 자동조절장치는 호소의 수심에 관계없이 흡입구 높이를 용존산소량과 탁도에 따라 원격으로 자동 조절함으로써 수질 개선에 크게 일조할 수 있는 매우 유용한 발명이다.The inlet remote automatic control device of the appeal water circulation system of the present invention is a very useful invention that can greatly improve water quality by automatically adjusting the inlet height remotely according to the dissolved oxygen amount and turbidity regardless of the depth of the appeal.

본 발명의 호소 수질순환장치의 흡입구 원격 자동조절장치는 도 1,2에서 보는 바와 같이 실시될 수 있다.Inlet remote automatic control device of the appeal water circulation device of the present invention can be implemented as shown in Figs.

즉, 통상의 호소 수질순환장치(1)와 같이 상부 프레임(2)에는 수개의 플로트(3)가 설치되어 수면 위에 프레임(2)이 부상할 수 있도록 하고, 상기 프레임(2)에는 태양광을 이용하여 전원을 축전할 수 있도록 솔라셀(4)이 수개 설치된다.That is, several floats 3 are installed in the upper frame 2 as in the conventional appeal water circulation device 1 to allow the frame 2 to float on the surface of the water, and sunlight is applied to the frame 2. Several solar cells 4 are installed so that power can be stored using them.

그리고 상기 솔라셀(4)에 의해 축전된 전원을 이용하여 구동되는 구동모터(5)가 설치되고, 상기 구동모터(5)의 구동에 의해 물을 펌핑할 수 있는 임펠러(6)가 프레임(2)의 중앙 하부로 설치되어 프레임(2) 하부로 설치된 자바라형 흡입구(7)로 유입된 물을 펌핑하여 깔때기형 순환호퍼(8)를 통해 수면 상부로 배출토록 한다.In addition, a driving motor 5 driven by using the power stored in the solar cell 4 is installed, and an impeller 6 capable of pumping water by driving the driving motor 5 includes a frame 2. ) Is installed at the lower center of the pump to pump water introduced into the bellows-type suction port 7 installed under the frame 2 to be discharged to the upper surface of the water through the funnel-type circulation hopper 8.

본 발명은 상기와 같은 통상의 호소 수질순환장치(1)의 프레임(2) 일측으로 원격으로 정역 구동을 제어할 수 있는 정역모터(9)를 설치하고, 상기 정역모터(9) 의 원동축(10)상에 와이어드럼(11)을 축고정하여 와이어(12)의 일단을 연결한다.The present invention provides a stationary motor (9) capable of remotely controlling the forward and reverse driving to one side of the frame (2) of the conventional appealing water circulation device (1), the drive shaft of the stationary motor (9) ( 10) connect one end of the wire 12 by axially fixing the wire drum (11).

그리고 상기 와이어(12)의 타단은 안내로울러(13)를 경유토록 하여 흡입구(7) 내측 하단에 고정토록 한다.The other end of the wire 12 is fixed to the lower end of the inlet 7 through the guide roller 13.

그리고 상기 흡입구(7)의 하단에는 수중의 용존산소량과 탁도를 측정할 수 있는 용존산소센서(14)와 탁도센서(15)를 각각 설치하여 도시하지 아니한 원격 콘트롤러상에서 측정된 수치를 기준으로 하여 흡입구(7)를 자동으로 승강조절할 수 있도록 구성한 것이다.At the lower end of the suction port 7, the dissolved oxygen sensor 14 and the turbidity sensor 15 capable of measuring the dissolved oxygen amount and turbidity in the water are respectively installed, and the suction port is based on the measured value on the remote controller (not shown). (7) is configured to automatically adjust the lift.

이와 같이 구성될 수 있는 본 발명의 호소 수질순환장치(1)의 흡입구 원격 자동조절장치는 호소의 수중 용존산소량(Do)과 탁도에 따라 흡입구(7) 높이를 원격으로 자동 조절할 수 있어 수질 개선에 크게 일조할 수 있는 것으로서, 본 발명의 작용 등을 이하에 보다 상세히 설명키로 한다.The inlet remote automatic control device of the appeal water circulation device (1) of the present invention that can be configured as described above can remotely automatically adjust the height of the intake port (7) according to the dissolved oxygen amount (Do) and turbidity of the appeal to improve the water quality. As can greatly contribute, the operation of the present invention and the like will be described in more detail below.

호소에 본 발명의 호소 수질순환장치(1)를 플로트(3)를 사용하여 부상되도록 설치하고, 자바라형 흡입구(7)를 수중으로 투하시킨다.The appealing water circulation device 1 of the present invention is installed on the appeal so as to be floated using the float 3, and the bellows type suction port 7 is dropped in water.

흡입구(7)가 수중으로 투하되면 흡입구(7)의 하단에 설치된 용존산소센서(14)와 탁도센서(15)가 흡입구(7) 하단이 위치하는 수중의 용존산소량과 탁도를 센싱하여 육상에 설치된 원격 콘트롤러로 무선 송신을 행하게 되며, 콘트롤러에서는 흡입구(7)가 투하된 수중의 용존산소량과 탁도를 사전에 설정한 값과 비교하여 정역모터(9)를 정역방향으로 선택 구동하는 신호를 무선으로 인가하여 정역모터(9)를 구동케 된다.When the suction port 7 is dropped into the water, the dissolved oxygen sensor 14 and the turbidity sensor 15 installed at the lower end of the suction port 7 sense the dissolved oxygen amount and turbidity in the water where the lower part of the suction port 7 is located on the land. Wireless transmission is performed by the remote controller, and the controller wirelessly applies a signal for selectively driving the forward / reverse motor 9 in the forward / reverse direction by comparing the dissolved oxygen amount and turbidity of the dropped water with a predetermined value. To drive the stationary motor (9).

상기 정역모터(9)의 정방향 또는 역방향 구동에 의해 원동축(10)상에 축고정된 와이어드럼(11)이 정역방향으로 선택 구동하여 와이어(12)가 해권 또는 권취되면서 흡입구(7)가 승강이 자동으로 이루어지게 되어 용존산소량이 부족하거나 탁도가 심한 수중의 물을 흡입구(7)를 통해 상부로 펌핑하여 순환시킴으로써 수중 오염을 최소화 시킬 수 있는 것이다.The inlet 7 is lifted while the wire drum 11 is fixedly driven in the forward and reverse directions by the wire drum 11 axially fixed on the drive shaft 10 by the forward or reverse driving of the forward and reverse motor 9. It is to be made automatically to minimize the water pollution by circulating the water in the lack of dissolved oxygen or severe turbidity by pumping the upper portion through the inlet (7).

본 발명의 호소 수질순환장치의 흡입구 원격 자동조절장치는 호소에 설치하여 수중의 용존산소량과 탁도를 센싱하여 수심에 관계없이 흡입구를 승강조절하여 호환성 있게 사용할 수 있어 수질 개선에 크게 활용이 가능하다.The inlet remote automatic control device of the appeal water circulation system of the present invention is installed in the appeal and senses the dissolved oxygen amount and turbidity in the water so that the inlet can be adjusted and used interchangeably regardless of the depth, and thus can be greatly utilized for improving the water quality.

도 1은 본 발명의 바람직한 일 실시예를 보인 정면 구성도1 is a front configuration diagram showing an embodiment of the present invention

도 2는 본 발명에서 흡입구가 상승된 상태를 보인 정면 구성도Figure 2 is a front configuration view showing a state in which the inlet is raised in the present invention

■ 도면의 주요부분에 사용된 부호의 설명 ■■ Explanation of symbols used in main part of drawing ■

1: 수질순환장치 2: 프레임1: water circulation system 2: frame

3: 플로트 4: 솔라셀3: float 4: solar cell

5: 구동모터 6: 임펠러5: drive motor 6: impeller

7: 흡입구 8: 순환호퍼7: Inlet port 8: Circulation hopper

9: 정역모터 10: 원동축9: stationary motor 10: drive shaft

11: 와이어드럼 12: 와이어11: wire drum 12: wire

13: 안내로울러 14: 용존산소센서13: Information roller 14: Dissolved oxygen sensor

15: 탁도센서15: Turbidity sensor

Claims (1)

프레임(2)에는 수개의 플로트(3)가 설치되어 수면 위에 프레임(2)이 부상할 수 있도록 하고, 상기 프레임(2)에는 태양광을 이용하여 전원을 축전할 수 있도록 솔라셀(4)이 수개 설치되고, 상기 솔라셀(4)에 의해 축전된 전원을 이용하여 구동되는 구동모터(5)가 설치되고, 상기 구동모터(5)의 구동에 의해 물을 펌핑할 수 있는 임펠러(6)가 프레임(2)의 중앙 하부로 설치되어 프레임(2) 하부로 설치된 자바라형 흡입구(7)로 유입된 물을 펌핑하여 깔때기형 순환호퍼(8)를 통해 수면 상부로 배출토록 한 통상의 호소 수질순환장치(1)에 있어서;Several floats 3 are installed in the frame 2 to allow the frame 2 to float on the water surface, and the solar cell 4 is provided in the frame 2 so as to store power using solar light. A plurality of drive motors 5 are installed and are driven by using power stored by the solar cell 4, and an impeller 6 capable of pumping water by driving the drive motor 5 is provided. Water flow into the upper surface of the water through the funnel-type circulation hopper (8) by pumping water introduced into the bellows-type inlet (7) installed below the frame (2) and installed below the frame (2). In the device (1); 상기 프레임(2) 일측으로 원격으로 정역 구동을 제어할 수 있는 정역모터(9)와,A forward and reverse motor 9 capable of remotely controlling the forward and reverse driving to one side of the frame 2, 상기 정역모터(9)의 원동축(10)상에 와이어드럼(11)을 축고정하여 와이어(12)의 일단을 연결하고, 상기 와이어(12)의 타단은 안내로울러(13)를 경유토록 하여 흡입구(7) 하단에 고정되고,The wire drum 11 is fixed on the driving shaft 10 of the stationary motor 9 to connect one end of the wire 12, and the other end of the wire 12 passes through the guide roller 13. Is fixed to the bottom of the inlet (7), 상기 흡입구(7) 하단에는 용존산소센서(14)와 탁도센서(15)를 각각 설치하여 센싱된 수치에 의해 흡입구(7)를 자동으로 승강조절할 수 있도록 구성한 것을 특징으로 하는 호소 수질순환장치의 흡입구 원격 자동조절장치.The inlet 7 of the appeal water circulation system, characterized in that the inlet 7 is installed to the dissolved oxygen sensor 14 and the turbidity sensor 15 so as to automatically lift and adjust the inlet 7 by the sensed value. Remote auto control.
KR20070072374A 2007-07-19 2007-07-19 A inhaler remote automatic adjusting device of lake water circulation device KR100905792B1 (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101914496B1 (en) * 2017-12-04 2018-11-02 주식회사 씨앤씨솔루션 Solar Powered Oxygen Supplying and Circulating System Equipped with Horizontal Impeller
KR20200048239A (en) * 2018-10-29 2020-05-08 주식회사 씨앤씨솔루션 Water purification device
KR102229799B1 (en) * 2020-02-07 2021-03-22 (주)신성엔지니어링 floating water quality management device

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR102441575B1 (en) * 2021-08-31 2022-09-06 임덕교 Disinfection apparatus for sewer pipe using smokescreen

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0747393A (en) * 1993-08-05 1995-02-21 Dam Suigenchi Kankyo Seibi Center Diffuser type water stream generating device provided in water
JP2000202428A (en) * 1999-01-19 2000-07-25 Shigetomo Nishijima Water cleaning device for lake water or the like
US7285208B2 (en) * 2002-12-31 2007-10-23 Psi-Ets, A North Dakota Partnership Water circulation systems for ponds, lakes, and other bodies of water
KR200437180Y1 (en) 2006-12-11 2007-11-08 코스맥 주식회사 Solar underwater aeration system

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH0747393A (en) * 1993-08-05 1995-02-21 Dam Suigenchi Kankyo Seibi Center Diffuser type water stream generating device provided in water
JP2000202428A (en) * 1999-01-19 2000-07-25 Shigetomo Nishijima Water cleaning device for lake water or the like
US7285208B2 (en) * 2002-12-31 2007-10-23 Psi-Ets, A North Dakota Partnership Water circulation systems for ponds, lakes, and other bodies of water
KR200437180Y1 (en) 2006-12-11 2007-11-08 코스맥 주식회사 Solar underwater aeration system

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
KR101914496B1 (en) * 2017-12-04 2018-11-02 주식회사 씨앤씨솔루션 Solar Powered Oxygen Supplying and Circulating System Equipped with Horizontal Impeller
KR20200048239A (en) * 2018-10-29 2020-05-08 주식회사 씨앤씨솔루션 Water purification device
KR102219088B1 (en) * 2018-10-29 2021-02-23 주식회사 씨앤씨솔루션 Water purification device
KR102229799B1 (en) * 2020-02-07 2021-03-22 (주)신성엔지니어링 floating water quality management device

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