JP6810864B1 - Sandy beach landscape lights that use wind energy - Google Patents

Sandy beach landscape lights that use wind energy Download PDF

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JP6810864B1
JP6810864B1 JP2020028864A JP2020028864A JP6810864B1 JP 6810864 B1 JP6810864 B1 JP 6810864B1 JP 2020028864 A JP2020028864 A JP 2020028864A JP 2020028864 A JP2020028864 A JP 2020028864A JP 6810864 B1 JP6810864 B1 JP 6810864B1
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slider
end surface
fixedly installed
space
lamp
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JP2021071111A (en
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劉捷
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臨海市啓致灯具有限公司
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S9/00Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply
    • F21S9/02Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a battery or accumulator
    • F21S9/026Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a battery or accumulator rechargeable by using wind power, e.g. using wind turbines
    • 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
    • F03D1/00Wind motors with rotation axis substantially parallel to the air flow entering the rotor 
    • F03D1/02Wind motors with rotation axis substantially parallel to the air flow entering the rotor  having a plurality of rotors
    • F03D1/025Wind motors with rotation axis substantially parallel to the air flow entering the rotor  having a plurality of rotors coaxially arranged
    • 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
    • F03D9/20Wind motors characterised by the driven apparatus
    • F03D9/25Wind motors characterised by the driven apparatus the apparatus being an electrical generator
    • 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
    • F03D9/30Wind motors specially adapted for installation in particular locations
    • F03D9/34Wind motors specially adapted for installation in particular locations on stationary objects or on stationary man-made structures
    • F03D9/43Wind motors specially adapted for installation in particular locations on stationary objects or on stationary man-made structures using infrastructure primarily used for other purposes, e.g. masts for overhead railway power lines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21SNON-PORTABLE LIGHTING DEVICES; SYSTEMS THEREOF; VEHICLE LIGHTING DEVICES SPECIALLY ADAPTED FOR VEHICLE EXTERIORS
    • F21S9/00Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply
    • F21S9/04Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator
    • F21S9/043Lighting devices with a built-in power supply; Systems employing lighting devices with a built-in power supply the power supply being a generator driven by wind power, e.g. by wind turbines
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V23/00Arrangement of electric circuit elements in or on lighting devices
    • F21V23/003Arrangement of electric circuit elements in or on lighting devices the elements being electronics drivers or controllers for operating the light source, e.g. for a LED array
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F21LIGHTING
    • F21VFUNCTIONAL FEATURES OR DETAILS OF LIGHTING DEVICES OR SYSTEMS THEREOF; STRUCTURAL COMBINATIONS OF LIGHTING DEVICES WITH OTHER ARTICLES, NOT OTHERWISE PROVIDED FOR
    • F21V33/00Structural combinations of lighting devices with other articles, not otherwise provided for
    • 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
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B10/00Integration of renewable energy sources in buildings
    • Y02B10/30Wind power
    • 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
    • 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
    • Y02E10/728Onshore wind turbines
    • 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
    • Y02E10/74Wind turbines with rotation axis perpendicular to the wind direction
    • 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
    • Y02E70/00Other energy conversion or management systems reducing GHG emissions
    • Y02E70/30Systems combining energy storage with energy generation of non-fossil origin

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  • Engineering & Computer Science (AREA)
  • General Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Mechanical Engineering (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Power Engineering (AREA)
  • Microelectronics & Electronic Packaging (AREA)
  • Wind Motors (AREA)
  • Non-Portable Lighting Devices Or Systems Thereof (AREA)
  • Arrangement Of Elements, Cooling, Sealing, Or The Like Of Lighting Devices (AREA)

Abstract

【課題】本発明は風力エネルギーを利用する砂浜の風景ライトを開示した。【解決手段】ランプ支柱及び前記ランプ支柱の上端面に位置する固定ブロックを含み、前記ランプ支柱の中には作動空間が設置され、前記ランプ支柱の頂部の外端面にはランプシェードが固定的に設置され、前記ランプシェードが環状になるように設置され、本願発明の風力エネルギーを利用する砂浜の風景ライトは砂浜の風を利用して砂浜で散歩する人に照明を提供でき、砂辺の海風を十分に利用し、省エネルギーと排出削減を実現し、本願発明はまた風の吹く方向によって羽根の角度を変えられ、こうして海風が始終に鉛直状態を保持し、高効率に海風を利用してエネルギーを生み出せ、人がライトの下方に立つ時、本願発明はまた水煙を噴き出せ、風景ライトの周りの温度を下げて通行人が涼しく感じられる。【選択図】図1PROBLEM TO BE SOLVED: To disclose a landscape light on a sandy beach using wind energy. SOLUTION: A lamp strut and a fixing block located on an upper end surface of the lamp strut are included, an operating space is installed in the lamp strut, and a lamp shade is fixed on the outer end surface of the top of the lamp strut. The lampshade is installed so that the lamp shade is ring-shaped, and the landscape light of the sandy beach using the wind energy of the present invention can provide lighting to a person walking on the sandy beach by using the wind of the sandy beach, and can provide the sea breeze on the sandy side. Fully utilized to achieve energy saving and emission reduction, the present invention also allows the angle of the blades to be changed depending on the direction of the wind, thus keeping the sea breeze in a vertical state from beginning to end, and efficiently using the sea breeze for energy. Create, when a person stands below the light, the present invention can also spew water smoke, lowering the temperature around the landscape light and making passers-by feel cool. [Selection diagram] Fig. 1

Description

本願発明は風力エネルギー分野に関わり、具体的には風力エネルギーを利用する砂浜の風景ライトである。 The present invention is related to the field of wind energy, and is specifically a landscape light on a sandy beach that uses wind energy.

風景ライトは観光地で照明用の灯具で、砂浜の風景ライトがその一つで砂浜で散歩する人に照明を提供する。しかし、今の砂浜の風景ライトの多くは浜辺の海風を十分に利用しなく、これは資源浪費になり、また機能が単一で、砂浜で歩く人に他のサービスを提供できなく、従い、上記の問題を解決するために、風力エネルギーを利用する砂浜の風景ライトが必要となり、上記の欠点に対して本願発明は改善を行う。 Landscape lights are lighting fixtures in tourist areas, and one of them is the landscape light on the beach, which provides lighting for people walking on the beach. However, many of today's beach landscape lights do not take full advantage of the beach breeze, which is a waste of resources and has a single function, unable to provide other services to those walking on the beach. In order to solve the above problem, a landscape light on a sandy beach using wind energy is required, and the present invention improves the above-mentioned drawbacks.

中国特許出願公開第105423189号明細書Chinese Patent Application Publication No. 10543189

本願発明の解決しようとする問題は風力エネルギーを利用する砂浜の風景ライトを提供することによって上記の問題を解決することである。 The problem to be solved by the present invention is to solve the above problem by providing a landscape light on a sandy beach utilizing wind energy.

本願発明は以下の技術的プランによって実現される。 The present invention is realized by the following technical plan.

本願発明の風力エネルギーを利用する砂浜の風景ライトは、ランプ支柱及び前記ランプ支柱の上端面に位置する固定ブロックを含み、前記ランプ支柱の中には作動空間が設置され、前記ランプ支柱の頂部の外端面にはランプシェードが固定的に設置され、前記ランプシェードが環状になるように設置され、前記ランプ支柱の外端面には前記ランプシェードの下側に位置する電球柱が固定的に設置され、前記電球柱が左右対称に設置され、前記電球柱の外端壁には電球が固定的に設置され、前記電球によって照明を提供でき、前記ランプシェードの外端面には環状板が固定的に設置され、前記環状板の上端面には磁石が固定的に設置され、前記磁石が前記環状板に沿って円周方向に八個設置され、前記固定ブロックの中には第一空き空間が設置され、前記第一空き空間が上下方向に貫通しており、前記第一空き空間の中には電流転換器が固定的に設置され、前記電流転換器が上方へ前記第一空き空間の外側に伸びており、前記固定ブロックの上端の中には環状空間が固定的に設置され、前記環状空間の中には第一スライダがスライド可能に設置され、前記第一スライダが左右対称に設置され、前記固定ブロックの中には第二空き空間が設置され、前記第二空き空間の中には固定ロッドが固定的に設置され、前記固定ロッドの左右端面が前記第一スライダの内端面に固定的に連結され、前記第一スライダの外端面には回転ロッドが固定的に設置され、前記回転ロッドには風当て板が前後対称且つ固定的に設置され、前記回転ロッドの中には前記風当て板の後側に位置する第三空き空間が固定的に設置され、前記第三空き空間の中には第一回転軸が回転可能に設置され、前記第一回転軸の外端面には羽根が固定的に設置され、前記羽根が前記第一回転軸に沿って円周方向に四本設置され、風が吹く時、前記羽根が回転して前記磁石の間での磁束を切り、生じた電流が前記電流転換器によって前記電球に電力を提供して照明を提供し、風が異なる方向から吹く時、前記風当て板の回転によって前記第一スライダを駆動して回転させ、こうして風が始終に前記羽根に対する垂直状態を保持し、より高効率に風力エネルギーを利用できる。 The landscape light on a sandy beach utilizing the wind energy of the present invention includes a lamp strut and a fixed block located on the upper end surface of the lamp strut, and an operating space is installed in the lamp strut, and the top of the lamp strut is provided. A lamp shade is fixedly installed on the outer end surface, the lamp shade is installed so as to form an annular shape, and a light bulb column located below the lamp shade is fixedly installed on the outer end surface of the lamp column. , The bulb pillars are installed symmetrically, a bulb is fixedly installed on the outer end wall of the bulb pillar, lighting can be provided by the bulb, and an annular plate is fixedly installed on the outer end surface of the lamp shade. It is installed, magnets are fixedly installed on the upper end surface of the annular plate, eight magnets are installed along the annular plate in the circumferential direction, and a first empty space is installed in the fixed block. The first vacant space penetrates in the vertical direction, a current converter is fixedly installed in the first vacant space, and the current converter is moved upward to the outside of the first vacant space. An annular space is fixedly installed in the upper end of the fixed block, a first slider is slidably installed in the annular space, and the first slider is installed symmetrically. A second empty space is installed in the fixed block, a fixed rod is fixedly installed in the second empty space, and the left and right end faces of the fixed rod are fixed to the inner end surface of the first slider. A rotary rod is fixedly installed on the outer end surface of the first slider, and a wind support plate is fixedly installed on the rotary rod symmetrically in the front-rear direction. A third empty space located on the rear side of the plate is fixedly installed, a first rotating shaft is rotatably installed in the third empty space, and blades are installed on the outer end surface of the first rotating shaft. It is fixedly installed, and four blades are installed in the circumferential direction along the first rotation axis. When the wind blows, the blades rotate to cut off the magnetic flux between the magnets, and the generated current. Powers the bulb through the current converter to provide lighting, and when the wind blows from different directions, the rotation of the windshield drives and rotates the first slider, thus causing the wind to end and end. The vertical state with respect to the blades can be maintained, and wind energy can be used more efficiently.

有益なように、前記ランプ支柱の右端壁には前記ランプシェードの下側に位置する噴霧器が固定的に設置され、前記噴霧器の下端面には噴霧ノズルが固定的に設置され、前記噴霧ノズルが十一個設置され、前記作動空間の中には前記噴霧器の下側に位置するピストンシリンダーが固定的に設置され、前記ピストンシリンダーの中にはピストン空間が設置され、前記ピストン空間の中には第二スライダがスライド可能に設置され、前記第二スライダと前記ピストン空間の底壁とが第一バネによって連結され、前記第一バネが左右対称に設置され、前記第二スライダの下端面にはピストンロッドが固定的に設置され、前記ピストンロッドが下方へ前記ピストン空間の外側に伸びており、前記ピストンシリンダーには一方向液入り弁が固定的に設置され、前記ピストンシリンダーには前記一方向液入り弁の右側に位置する一方向液出弁が固定的に設置され、前記ピストンシリンダーには前記一方向液出弁の右側に位置する第一抜き孔が固定的に設置され、前記第一抜き孔の中には水出管が固定的に設置され、前記水出管が外へ伸びて前記噴霧器の下端面と固定的に連結され、前記第二スライダが上下方向にスライドして前記ピストン空間の中の水を前記一方向液出弁を介して押し出し、水が前記水出管によって前記噴霧器の中に入り、そして前記噴霧器によって噴霧化された後に、前記噴霧ノズルによって噴出され、温度を下げる効果を達する。 To be beneficial, a sprayer located below the lamp shade is fixedly installed on the right end wall of the lamp column, and a spray nozzle is fixedly installed on the lower end surface of the sprayer. Eleven are installed, a piston cylinder located below the atomizer is fixedly installed in the working space, a piston space is installed in the piston cylinder, and a piston space is installed in the piston space. The second slider is slidably installed, the second slider and the bottom wall of the piston space are connected by a first spring, the first spring is installed symmetrically, and the lower end surface of the second slider The piston rod is fixedly installed, the piston rod extends downward to the outside of the piston space, a one-way liquid-filled valve is fixedly installed in the piston cylinder, and the one-way liquid is fixedly installed in the piston cylinder. A one-way liquid discharge valve located on the right side of the liquid inlet valve is fixedly installed, and a first drain hole located on the right side of the one-way liquid discharge valve is fixedly installed in the piston cylinder. A water discharge pipe is fixedly installed in the drain hole, the water discharge pipe extends outward and is fixedly connected to the lower end surface of the atomizer, and the second slider slides in the vertical direction to slide the piston. Water in the space is pushed out through the one-way discharge valve, the water enters the atomizer by the water outlet, and after being atomized by the atomizer, is ejected by the spray nozzle to control the temperature. Achieve a lowering effect.

有益なように、前記ランプ支柱の頂部には前記第一空き空間の下側に位置する第二抜き孔が固定的に設置され、前記第二抜き孔が上下方向に貫通しており、前記ランプ支柱には前記電球柱の内端面に位置する第三抜き孔が固定的に設置され、前記電流転換器の下端面には電流伝達線が固定的に設置され、前記電流伝達線が下方へ伸びて前記第二抜き孔を貫通しており、前記第二抜き孔が両側へ伸びて前記電球柱の内端面に固定的に連結され、こうして電流を前記電球柱の中に伝達する。 To be beneficial, a second punching hole located below the first empty space is fixedly installed at the top of the lamp column, and the second punching hole penetrates in the vertical direction to penetrate the lamp. A third hole located on the inner end surface of the bulb column is fixedly installed on the column, a current transmission line is fixedly installed on the lower end surface of the current converter, and the current transmission line extends downward. The second drilling hole extends to both sides and is fixedly connected to the inner end surface of the bulb column, thus transmitting an electric current into the bulb column.

有益なように、前記作動空間の内底壁にはモーターが固定的に設置され、前記モーターには第二回転軸が伝動可能に連結され、前記第二回転軸には第一傘歯車が固定的に設置され、前記作動空間の前後内壁には前記第二回転軸の上側に位置する第三回転軸が回転可能に設置され、前記第三回転軸には第二傘歯車が固定的に設置され、前記第二傘歯車が前記第一傘歯車と噛み合っており、前記作動空間の前後内壁には前記第三回転軸の上側に位置する第四回転軸が回転可能に設置され、前記第四回転軸にはカムが固定的に設置され、前記第四回転軸と前記第三回転軸とがベルトプーリによって伝動可能に連結され、前記カムの外端面が前記ピストンロッドの下端面と当接している。 Beneficially, a motor is fixedly installed on the inner bottom wall of the working space, a second rotating shaft is movably connected to the motor, and a first cap gear is fixed to the second rotating shaft. A third rotating shaft located above the second rotating shaft is rotatably installed on the front and rear inner walls of the working space, and a second captive gear is fixedly installed on the third rotating shaft. The second bevel gear meshes with the first bevel gear, and a fourth rotating shaft located above the third rotating shaft is rotatably installed on the front and rear inner walls of the operating space. A cam is fixedly installed on the rotating shaft, the fourth rotating shaft and the third rotating shaft are movably connected by a belt pulley, and the outer end surface of the cam comes into contact with the lower end surface of the piston rod. There is.

有益なように、前記作動空間の内底壁には前記モーターの左側に位置する蓄電池が固定的に設置され、前記電流伝達線が前記蓄電池の上端面に固定的に連結され、前記蓄電池の右端面にはスライダ箱が固定的に設置され、前記スライダ箱の中にはスライダ空間が設置され、前記スライダ空間の中には第三スライダがスライド可能に設置され、前記第三スライダの底壁と前記スライダ空間の左内壁とが第二バネによって連結され、前記第三スライダの中には第四抜き孔が設置され、前記第四抜き孔が左右方向に貫通しており、前記第四抜き孔の中には電流伝達器が固定的に設置され、前記スライダ箱の中には前記スライダ空間の下側に位置する第一スライド溝が固定的に形成され、前記第一スライド溝が上下方向に貫通しており、前記第三スライダの下端面には連結ロッドが固定的に設置され、前記連結ロッドが前記第一スライド溝を貫通して下方に伸びており、前記第三スライダが右方へ前記モーターと接触するまでスライドした時、前記電流伝達器によって前記蓄電池の中の電流を前記モーターの中に伝達し、前記モーターを始動する。 To be beneficial, a storage battery located on the left side of the motor is fixedly installed on the inner bottom wall of the working space, the current transmission line is fixedly connected to the upper end surface of the storage battery, and the right end of the storage battery. A slider box is fixedly installed on the surface, a slider space is installed in the slider box, a third slider is slidably installed in the slider space, and the bottom wall of the third slider is installed. The left inner wall of the slider space is connected by a second spring, a fourth punch hole is installed in the third slider, the fourth punch hole penetrates in the left-right direction, and the fourth punch hole A current transmitter is fixedly installed in the slider box, a first slide groove located below the slider space is fixedly formed in the slider box, and the first slide groove is vertically formed. A connecting rod is fixedly installed on the lower end surface of the third slider, the connecting rod penetrates the first slide groove and extends downward, and the third slider moves to the right. When sliding until it comes into contact with the motor, the current transmitter transmits the current in the storage battery into the motor to start the motor.

有益なように、前記ランプ支柱の底部には前記連結ロッドの下側に位置する第二スライド溝が形成され、前記第二スライド溝の中には第四スライダがスライド可能に設置され、前記第四スライダの上端面と前記連結ロッドの下端面とが固定的に連結され、前記第四スライダの左端面と前記第二スライド溝の左内壁とが第三バネによって連結され、前記ランプ支柱の右底壁には踏板が固定的に設置され、前記踏板の中には第三スライド溝が形成され、前記第三スライド溝の中には第五スライダがスライド可能に設置され、前記第五スライダの下端面と前記第三スライド溝の底壁とが第四バネによって連結され、前記第五スライダの左端面と前記第四スライダの右端面とが第一引き紐によって連結され、前記踏板の中には前記第三スライド溝の右側に位置する第四スライド溝が形成され、前記第四スライド溝が上方へ貫通しており、前記第四スライド溝の中にはスライド板がスライド可能に設置され、前記スライド板の下端面と前記第四スライド溝の底壁とが第五バネによって連結され、前記スライド板の下端面と前記第五スライダの下端面とが第二引き紐によって連結されている。 Beneficially, a second slide groove located below the connecting rod is formed at the bottom of the lamp column, and a fourth slider is slidably installed in the second slide groove. The upper end surface of the four sliders and the lower end surface of the connecting rod are fixedly connected, the left end surface of the fourth slider and the left inner wall of the second slide groove are connected by a third spring, and the right side of the lamp column. A tread plate is fixedly installed on the bottom wall, a third slide groove is formed in the tread plate, a fifth slider is slidably installed in the third slide groove, and the fifth slider The lower end surface and the bottom wall of the third slide groove are connected by a fourth spring, and the left end surface of the fifth slider and the right end surface of the fourth slider are connected by a first pull string into the tread plate. A fourth slide groove located on the right side of the third slide groove is formed, the fourth slide groove penetrates upward, and a slide plate is slidably installed in the fourth slide groove. The lower end surface of the slide plate and the bottom wall of the fourth slide groove are connected by a fifth spring, and the lower end surface of the slide plate and the lower end surface of the fifth slider are connected by a second pull string.

有益なように、前記電流伝達器が弾性材料によって作られたものである。 Beneficially, the current transmitter is made of an elastic material.

本願発明の効果は:本願発明の風力エネルギーを利用する砂浜の風景ライトは砂浜の風を利用して砂浜で散歩する人に照明を提供でき、砂辺の海風を十分に利用し、省エネルギーと排出削減を実現し、本願発明はまた風の吹く方向によって羽根の角度を変えられ、こうして海風が始終に鉛直状態を保持し、高効率に海風を利用してエネルギーを生み出せ、人がライトの下方に立つ時、本願発明はまた水煙を噴き出せ、風景ライトの周りの温度を下げて通行人が涼しく感じられる。 The effect of the present invention is: The landscape light of the sandy beach using the wind energy of the present invention can provide lighting to the person walking on the sandy beach by using the wind of the sandy beach, and fully utilize the sea breeze of the sandy beach to save energy and reduce emissions. In the present invention, the angle of the blades can be changed according to the direction of the wind, so that the sea breeze keeps the vertical state from beginning to end, and the sea breeze can be used to generate energy with high efficiency, and the person stands under the light. At times, the invention of the present application can also spew water smoke, lowering the temperature around the landscape lights and making passers-by feel cool.

下記に図1〜6をあわせて本願発明について詳しく説明し、便利に説明するために、下記の方向を以下のように規定する:図1は本願発明装置の正面図であり、以下に述べる上下左右前後の方向と図1の自身投影関係の上下左右前後の方向とが一致である。 In order to explain the invention of the present application in detail with reference to FIGS. 1 to 6 below and to explain the present invention in a convenient manner, the following directions are defined as follows: FIG. The left-right front-back direction and the up-down, left-right front-back direction of the self-projection relationship in FIG.

図1は本願発明の風力エネルギーを利用する砂浜の風景ライトの全体構成概略図FIG. 1 is a schematic diagram of the overall configuration of a landscape light on a sandy beach using the wind energy of the present invention. 図2は図1のA―Aの構成概略図FIG. 2 is a schematic configuration diagram of AA of FIG. 図3は図1のBの構成概略図FIG. 3 is a schematic configuration diagram of B in FIG. 図4は図1のCの構成概略図FIG. 4 is a schematic configuration diagram of C in FIG. 図5は図1のDの構成概略図FIG. 5 is a schematic configuration diagram of D in FIG. 図6は図1のEの構成概略図FIG. 6 is a schematic configuration diagram of E in FIG.

下記に附図説明と実施例を合わせて本願発明についてさらなる説明を行い、本願発明は以下の実施例を含むが以下の実施例に限定されたものではない。 The invention of the present application will be further described below by combining the description of the attached drawings and the examples, and the invention of the present application includes the following examples, but is not limited to the following examples.

附図1〜6に示すように、風力エネルギーを利用する砂浜の風景ライトであって、ランプ支柱10及び前記ランプ支柱10の上端面に位置する固定ブロック25を含み、前記ランプ支柱10の中には作動空間11が設置され、前記ランプ支柱10の頂部の外端面にはランプシェード21が固定的に設置され、前記ランプシェード21が環状になるように設置され、前記ランプ支柱10の外端面には前記ランプシェード21の下側に位置する電球柱19が固定的に設置され、前記電球柱19が左右対称に設置され、前記電球柱19の外端壁には電球20が固定的に設置され、前記電球20によって照明を提供でき、前記ランプシェード21の外端面には環状板32が固定的に設置され、前記環状板32の上端面には磁石31が固定的に設置され、前記磁石31が前記環状板32に沿って円周方向に八個設置され、前記固定ブロック25の中には第一空き空間27が設置され、前記第一空き空間27が上下方向に貫通しており、前記第一空き空間27の中には電流転換器24が固定的に設置され、前記電流転換器24が上方へ前記第一空き空間27の外側に伸びており、前記固定ブロック25の上端の中には環状空間29が固定的に設置され、前記環状空間29の中には第一スライダ30がスライド可能に設置され、前記第一スライダ30が左右対称に設置され、前記固定ブロック25の中には第二空き空間49が設置され、前記第二空き空間49の中には固定ロッド48が固定的に設置され、前記固定ロッド48の左右端面が前記第一スライダ30の内端面に固定的に連結され、前記第一スライダ30の外端面には回転ロッド26が固定的に設置され、前記回転ロッド26には風当て板28が前後対称且つ固定的に設置され、前記回転ロッド26の中には前記風当て板28の後側に位置する第三空き空間47が固定的に設置され、前記第三空き空間47の中には第一回転軸22が回転可能に設置され、前記第一回転軸22の外端面には羽根23が固定的に設置され、前記羽根23が前記第一回転軸22に沿って円周方向に四本設置され、風が吹く時、前記羽根23が回転して前記磁石31の間での磁束を切り、生じた電流が前記電流転換器24によって前記電球20に電力を提供して照明を提供し、風が異なる方向から吹く時、前記風当て板28の回転によって前記第一スライダ30を駆動して回転させ、こうして風が始終に前記羽根23に対する垂直状態を保持し、より高効率に風力エネルギーを利用できる。 As shown in FIGS. 1 to 6, it is a landscape light on a sandy beach using wind energy, and includes a lamp support 10 and a fixed block 25 located on the upper end surface of the lamp support 10, and the lamp support 10 includes a fixed block 25. The working space 11 is installed, the lamp shade 21 is fixedly installed on the outer end surface of the top of the lamp column 10, the lamp shade 21 is installed so as to be annular, and the lamp shade 21 is installed on the outer end surface of the lamp column 10. A light bulb pillar 19 located below the lamp shade 21 is fixedly installed, the light bulb pillar 19 is installed symmetrically, and a light bulb 20 is fixedly installed on the outer end wall of the light bulb pillar 19. The light bulb 20 can provide illumination, an annular plate 32 is fixedly installed on the outer end surface of the lamp shade 21, a magnet 31 is fixedly installed on the upper end surface of the annular plate 32, and the magnet 31 is installed. Eight pieces are installed in the circumferential direction along the annular plate 32, a first empty space 27 is installed in the fixed block 25, and the first empty space 27 penetrates in the vertical direction. A current converter 24 is fixedly installed in the empty space 27, the current converter 24 extends upward to the outside of the first empty space 27, and is inside the upper end of the fixed block 25. The annular space 29 is fixedly installed, the first slider 30 is slidably installed in the annular space 29, the first slider 30 is installed symmetrically, and the first slider 30 is installed in the fixed block 25. Two empty spaces 49 are installed, a fixed rod 48 is fixedly installed in the second empty space 49, and the left and right end faces of the fixed rod 48 are fixedly connected to the inner end faces of the first slider 30. A rotary rod 26 is fixedly installed on the outer end surface of the first slider 30, a wind support plate 28 is fixedly installed on the rotary rod 26 in a front-rear symmetrical manner, and the rotary rod 26 is inside the rotary rod 26. A third empty space 47 located behind the windshield 28 is fixedly installed, and a first rotating shaft 22 is rotatably installed in the third empty space 47, and the first rotating shaft 22 is installed. The blades 23 are fixedly installed on the outer end surface of the blade 23, and four blades 23 are installed in the circumferential direction along the first rotation axis 22. When the wind blows, the blades 23 rotate and the magnet. The magnetic flux between 31 is cut off, and the generated current provides power to the bulb 20 by the current converter 24 to provide illumination, and when the wind blows from different directions, the rotation of the windshield 28 causes the light bulb 20 to provide illumination. The first slider 30 is driven to rotate, and thus the wind is exhausted. The vertical state with respect to the blade 23 can be maintained, and wind energy can be used more efficiently.

有益なように、前記ランプ支柱10の右端壁には前記ランプシェード21の下側に位置する噴霧器33が固定的に設置され、前記噴霧器33の下端面には噴霧ノズル34が固定的に設置され、前記噴霧ノズル34が十一個設置され、前記作動空間11の中には前記噴霧器33の下側に位置するピストンシリンダー15が固定的に設置され、前記ピストンシリンダー15の中にはピストン空間16が設置され、前記ピストン空間16の中には第二スライダ69がスライド可能に設置され、前記第二スライダ69と前記ピストン空間16の底壁とが第一バネ68によって連結され、前記第一バネ68が左右対称に設置され、前記第二スライダ69の下端面にはピストンロッド14が固定的に設置され、前記ピストンロッド14が下方へ前記ピストン空間16の外側に伸びており、前記ピストンシリンダー15には一方向液入り弁70が固定的に設置され、前記ピストンシリンダー15には前記一方向液入り弁70の右側に位置する一方向液出弁67が固定的に設置され、前記ピストンシリンダー15には前記一方向液出弁67の右側に位置する第一抜き孔66が固定的に設置され、前記第一抜き孔66の中には水出管35が固定的に設置され、前記水出管35が外へ伸びて前記噴霧器33の下端面と固定的に連結され、前記第二スライダ69が上下方向にスライドして前記ピストン空間16の中の水を前記一方向液出弁67を介して押し出し、水が前記水出管35によって前記噴霧器33の中に入り、そして前記噴霧器33によって噴霧化された後に、前記噴霧ノズル34によって噴出され、温度を下げる効果を達する。 To be beneficial, a sprayer 33 located below the lamp shade 21 is fixedly installed on the right end wall of the lamp column 10, and a spray nozzle 34 is fixedly installed on the lower end surface of the sprayer 33. Eleven spray nozzles 34 are installed, a piston cylinder 15 located below the sprayer 33 is fixedly installed in the operating space 11, and a piston space 16 is installed in the piston cylinder 15. Is installed, a second slider 69 is slidably installed in the piston space 16, the second slider 69 and the bottom wall of the piston space 16 are connected by a first spring 68, and the first spring 68 are installed symmetrically, a piston rod 14 is fixedly installed on the lower end surface of the second slider 69, the piston rod 14 extends downward to the outside of the piston space 16, and the piston cylinder 15 A one-way liquid-filled valve 70 is fixedly installed in the piston cylinder 15, and a one-way liquid discharge valve 67 located on the right side of the one-way liquid-filled valve 70 is fixedly installed in the piston cylinder 15. A first drain hole 66 located on the right side of the one-way liquid discharge valve 67 is fixedly installed in the first drain hole 66, and a water discharge pipe 35 is fixedly installed in the first drain hole 66. The pipe 35 extends outward and is fixedly connected to the lower end surface of the atomizer 33, and the second slider 69 slides in the vertical direction to allow water in the piston space 16 to flow through the one-way discharge valve 67. The water is ejected by the water discharge pipe 35 into the sprayer 33, and after being sprayed by the sprayer 33, is ejected by the spray nozzle 34 to achieve the effect of lowering the temperature.

有益なように、前記ランプ支柱10の頂部には前記第一空き空間27の下側に位置する第二抜き孔71が固定的に設置され、前記第二抜き孔71が上下方向に貫通しており、前記ランプ支柱10には前記電球柱19の内端面に位置する第三抜き孔18が固定的に設置され、前記電流転換器24の下端面には電流伝達線17が固定的に設置され、前記電流伝達線17が下方へ伸びて前記第二抜き孔71を貫通しており、前記第二抜き孔71が両側へ伸びて前記電球柱19の内端面に固定的に連結され、こうして電流を前記電球柱19の中に伝達する。 To be beneficial, a second punch hole 71 located below the first empty space 27 is fixedly installed at the top of the lamp column 10, and the second punch hole 71 penetrates in the vertical direction. A third extraction hole 18 located on the inner end surface of the light bulb column 19 is fixedly installed in the lamp column 10, and a current transmission line 17 is fixedly installed in the lower end surface of the current converter 24. The current transmission line 17 extends downward and penetrates the second extraction hole 71, and the second extraction hole 71 extends to both sides and is fixedly connected to the inner end surface of the bulb column 19, thus causing current. Is transmitted into the light bulb column 19.

有益なように、前記作動空間11の内底壁にはモーター45が固定的に設置され、前記モーター45には第二回転軸39が伝動可能に連結され、前記第二回転軸39には第一傘歯車38が固定的に設置され、前記作動空間11の前後内壁には前記第二回転軸39の上側に位置する第三回転軸37が回転可能に設置され、前記第三回転軸37には第二傘歯車36が固定的に設置され、前記第二傘歯車36が前記第一傘歯車38と噛み合っており、前記作動空間11の前後内壁には前記第三回転軸37の上側に位置する第四回転軸13が回転可能に設置され、前記第四回転軸13にはカム12が固定的に設置され、前記第四回転軸13と前記第三回転軸37とがベルトプーリ72によって伝動可能に連結され、前記カム12の外端面が前記ピストンロッド14の下端面と当接している。 To be beneficial, a motor 45 is fixedly installed on the inner bottom wall of the working space 11, a second rotating shaft 39 is movably connected to the motor 45, and a second rotating shaft 39 is connected to the second rotating shaft 39. A single umbrella gear 38 is fixedly installed, and a third rotating shaft 37 located above the second rotating shaft 39 is rotatably installed on the front and rear inner walls of the operating space 11 and is rotatably installed on the third rotating shaft 37. The second umbrella gear 36 is fixedly installed, the second umbrella gear 36 meshes with the first umbrella gear 38, and is located on the front and rear inner walls of the working space 11 above the third rotating shaft 37. The fourth rotating shaft 13 is rotatably installed, the cam 12 is fixedly installed on the fourth rotating shaft 13, and the fourth rotating shaft 13 and the third rotating shaft 37 are transmitted by the belt pulley 72. It is possibly connected and the outer end surface of the cam 12 is in contact with the lower end surface of the piston rod 14.

有益なように、前記作動空間11の内底壁には前記モーター45の左側に位置する蓄電池46が固定的に設置され、前記電流伝達線17が前記蓄電池46の上端面に固定的に連結され、前記蓄電池46の右端面にはスライダ箱51が固定的に設置され、前記スライダ箱51の中にはスライダ空間52が設置され、前記スライダ空間52の中には第三スライダ54がスライド可能に設置され、前記第三スライダ54の底壁と前記スライダ空間52の左内壁とが第二バネ53によって連結され、前記第三スライダ54の中には第四抜き孔50が設置され、前記第四抜き孔50が左右方向に貫通しており、前記第四抜き孔50の中には電流伝達器55が固定的に設置され、前記スライダ箱51の中には前記スライダ空間52の下側に位置する第一スライド溝57が固定的に形成され、前記第一スライド溝57が上下方向に貫通しており、前記第三スライダ54の下端面には連結ロッド60が固定的に設置され、前記連結ロッド60が前記第一スライド溝57を貫通して下方に伸びており、前記第三スライダ54が右方へ前記モーター45と接触するまでスライドした時、前記電流伝達器55によって前記蓄電池46の中の電流を前記モーター45の中に伝達し、前記モーター45を始動する。 To be beneficial, a storage battery 46 located on the left side of the motor 45 is fixedly installed on the inner bottom wall of the working space 11, and the current transmission line 17 is fixedly connected to the upper end surface of the storage battery 46. A slider box 51 is fixedly installed on the right end surface of the storage battery 46, a slider space 52 is installed in the slider box 51, and a third slider 54 is slidable in the slider space 52. The bottom wall of the third slider 54 and the left inner wall of the slider space 52 are connected by a second spring 53, and a fourth punch hole 50 is installed in the third slider 54, and the fourth hole 50 is installed. The punch hole 50 penetrates in the left-right direction, a current transmitter 55 is fixedly installed in the fourth punch hole 50, and is located below the slider space 52 in the slider box 51. The first slide groove 57 is fixedly formed, the first slide groove 57 penetrates in the vertical direction, and a connecting rod 60 is fixedly installed on the lower end surface of the third slider 54 to connect the first slide groove 57. When the rod 60 extends downward through the first slide groove 57 and slides to the right until the third slider 54 comes into contact with the motor 45, the current transmitter 55 inside the storage battery 46. Current is transmitted into the motor 45 to start the motor 45.

有益なように、前記ランプ支柱10の底部には前記連結ロッド60の下側に位置する第二スライド溝59が形成され、前記第二スライド溝59の中には第四スライダ61がスライド可能に設置され、前記第四スライダ60の上端面と前記連結ロッド60の下端面とが固定的に連結され、前記第四スライダ61の左端面と前記第二スライド溝59の左内壁とが第三バネ62によって連結され、前記ランプ支柱10の右底壁には踏板44が固定的に設置され、前記踏板44の中には第三スライド溝40が形成され、前記第三スライド溝40の中には第五スライダ65がスライド可能に設置され、前記第五スライダ65の下端面と前記第三スライド溝40の底壁とが第四バネ64によって連結され、前記第五スライダ65の左端面と前記第四スライダ61の右端面とが第一引き紐58によって連結され、前記踏板44の中には前記第三スライド溝40の右側に位置する第四スライド溝43が形成され、前記第四スライド溝43が上方へ貫通しており、前記第四スライド溝43の中にはスライド板42がスライド可能に設置され、前記スライド板42の下端面と前記第四スライド溝43の底壁とが第五バネ41によって連結され、前記スライド板42の下端面と前記第五スライダ65の下端面とが第二引き紐63によって連結されている。 Beneficially, a second slide groove 59 located below the connecting rod 60 is formed at the bottom of the lamp column 10, and a fourth slider 61 is slidable in the second slide groove 59. Installed, the upper end surface of the fourth slider 60 and the lower end surface of the connecting rod 60 are fixedly connected, and the left end surface of the fourth slider 61 and the left inner wall of the second slide groove 59 are connected to a third spring. A tread plate 44 is fixedly installed on the right bottom wall of the lamp column 10, connected by 62, a third slide groove 40 is formed in the tread plate 44, and a third slide groove 40 is formed in the third slide groove 40. The fifth slider 65 is slidably installed, the lower end surface of the fifth slider 65 and the bottom wall of the third slide groove 40 are connected by a fourth spring 64, and the left end surface of the fifth slider 65 and the fifth slider 65. The right end surface of the four sliders 61 is connected by a first pull string 58, and a fourth slide groove 43 located on the right side of the third slide groove 40 is formed in the tread plate 44, and the fourth slide groove 43 is formed. Is pierced upward, and a slide plate 42 is slidably installed in the fourth slide groove 43, and a fifth spring is formed between the lower end surface of the slide plate 42 and the bottom wall of the fourth slide groove 43. It is connected by 41, and the lower end surface of the slide plate 42 and the lower end surface of the fifth slider 65 are connected by a second pull string 63.

有益なように、前記電流伝達器55が弾性材料によって作られたものである。 Beneficially, the current transmitter 55 is made of an elastic material.

本願発明の機械動作の順序は以下の通りである。 The order of mechanical operation of the present invention is as follows.

本願発明は初期状態にある時、スライド板42が第四スライド溝43の内上側に位置し、第五バネ41が緩んだ状態にあり、第二引き紐63が引っ張られた状態にあり、第四バネが圧縮された状態にあり、第一引き紐58が緩んだ状態にあり、第三バネ62が緩んだ状態にあり、第二バネ53が緩んだ状態にあり、第三スライダ54がモーター45と接触していなく、第二スライダ69がピストン空間16の内下側に位置している。 In the present invention, when the slide plate 42 is in the initial state, the slide plate 42 is located on the inner upper side of the fourth slide groove 43, the fifth spring 41 is in the loosened state, and the second pull string 63 is in the pulled state. The four springs are in the compressed state, the first pull string 58 is in the loose state, the third spring 62 is in the loose state, the second spring 53 is in the loose state, and the third slider 54 is in the motor. The second slider 69 is located on the inner lower side of the piston space 16 without being in contact with the 45.

1.風が吹く時、風が羽根23を駆動して回転させ、羽根23が回転して磁石31の間での磁束を切る。
2.磁束を切ることを通じて生じた電流が前記電流転換器24に通った後、電流伝達線17によって電球柱19の中に伝達され、電球20に照明用の電力を提供する。
3.風の吹く方向が変わった時、風が風当て板28に当てて風当て板28を駆動して回転させ、風当て板28が回転して回転ロッド26を駆動して回転させ、回転ロッド26が回転して第一スライダ30を駆動して環状空間29の中で回転させ、第一スライダ30が風の吹く方向と垂直になるまで回転を止め、風が吹いてくる時、羽根23に最大の回転速度を保つことができ、より高効率に風力エネルギーを利用できる。
4.生じて残った電流が電流伝達線17によって蓄電池46の中に伝達されて貯蔵される。
5.人が踏板44に立つ時、スライド板42が下方にスライドして第五バネ41を押圧し、スライド板42が下方にスライドして第二引き紐63を緩め、第二引き紐63が緩くなることで第四バネ64を復帰させ、第四バネ64が復帰して第五スライダ65を駆動して上方に移動させ、第五スライダ65が上方へ移動することによって第一引き紐58を引き動かす。
6.第一引き紐58が引き動かされることによって第四スライダ61は右方にスライドし、第四スライダ61のスライドによって連結ロッド60が右方に移動し、連結ロッド60の右方への移動によって第三スライダ54を駆動して右方に移動させ、第三スライダ54が右方へモーター45と接触するまで移動した時、電流伝達器55によって蓄電池46の中の電流をモーター45の中に伝達し、モーター45を始動する。
7.モーター45が起動して第二回転軸39を駆動して回転させ、第二回転軸39の回転によって第一傘歯車38を駆動して回転させ、第一傘歯車38が第二傘歯車36と噛み合っているため、第一傘歯車38の回転で第二傘歯車36は回転し、第二傘歯車36の回転によって第三回転軸37を駆動して回転させ、第三回転軸37と第四回転軸13とがベルトプーリ72によって伝動可能に連結されているため、第三回転軸37の回転によって第四回転軸13は回転する。
8.第四回転軸13の回転によってカム12を駆動して回転させ、カム12の回転によってピストンロッド14が上下方向への運動を止まらずに行い、ピストンロッド14の上下方向への運動によって第二スライダ69の上下方向への運動を行わせてピストン空間16の中の水を押圧する。
9.ピストン空間16の中の水が一方向液出弁67を介して水出管35の中にプッシュされ、そして水出管35によって噴霧器33の中に入り、噴霧器33で水を噴霧化してから噴霧ノズル34によって噴き出し、温度を下げる効果を達する。
10.人が離れた時、本願発明は初期状態に戻る。
1. 1. When the wind blows, the wind drives and rotates the blades 23, and the blades 23 rotate to cut the magnetic flux between the magnets 31.
2. 2. After the current generated by cutting the magnetic flux passes through the current converter 24, it is transmitted into the bulb column 19 by the current transmission line 17 to provide the bulb 20 with electric power for lighting.
3. 3. When the direction in which the wind blows changes, the wind hits the wind support plate 28 to drive and rotate the wind support plate 28, and the wind support plate 28 rotates to drive and rotate the rotary rod 26 to rotate the rotary rod 26. Rotates to drive the first slider 30 to rotate in the annular space 29, stop the rotation until the first slider 30 is perpendicular to the direction in which the wind blows, and when the wind blows, the maximum is on the blade 23. The rotation speed of the wind can be maintained, and wind energy can be used more efficiently.
4. The generated and remaining current is transmitted to and stored in the storage battery 46 by the current transmission line 17.
5. When a person stands on the tread plate 44, the slide plate 42 slides downward to press the fifth spring 41, the slide plate 42 slides downward to loosen the second pull string 63, and the second pull string 63 becomes loose. As a result, the fourth spring 64 is returned, the fourth spring 64 is returned to drive the fifth slider 65 and move it upward, and the fifth slider 65 moves upward to pull the first pull string 58. ..
6. The fourth slider 61 slides to the right when the first pull string 58 is pulled, the connecting rod 60 moves to the right by sliding the fourth slider 61, and the connecting rod 60 moves to the right by moving to the right. When the three sliders 54 are driven to move to the right and the third slider 54 moves to the right until they come into contact with the motor 45, the current transmitter 55 transmits the current in the storage battery 46 into the motor 45. , Start the motor 45.
7. The motor 45 is activated to drive and rotate the second rotating shaft 39, and the rotation of the second rotating shaft 39 drives and rotates the first umbrella gear 38, and the first umbrella gear 38 becomes the second umbrella gear 36. Since they are in mesh with each other, the second cap gear 36 rotates with the rotation of the first cap gear 38, and the third rotating shaft 37 is driven and rotated by the rotation of the second cap gear 36 to rotate the third rotating shaft 37 and the fourth Since the rotating shaft 13 is movably connected to the rotating shaft 13 by the belt pulley 72, the fourth rotating shaft 13 rotates due to the rotation of the third rotating shaft 37.
8. The cam 12 is driven and rotated by the rotation of the fourth rotating shaft 13, the piston rod 14 does not stop the vertical movement by the rotation of the cam 12, and the second slider is rotated by the vertical movement of the piston rod 14. The water in the piston space 16 is pressed by causing the 69 to move in the vertical direction.
9. Water in the piston space 16 is pushed into the water outlet 35 via the one-way discharge valve 67 and enters the atomizer 33 by the water outlet 35, atomizing the water with the atomizer 33 and then spraying. It is ejected by the nozzle 34 and has the effect of lowering the temperature.
10. When a person leaves, the invention of the present application returns to the initial state.

上記の実施例は本願発明の技術的構想と特徴を説明するだけであり、その目的は当業者に本願発明内容を了解させてさらに実施させるのであり、本願発明の保護範囲を制限することはできない。本願発明の精神の実質に基づいて行われたすべての等価的な変化又は修飾は、本願発明の保護範囲の中に含むべきである。 The above-mentioned examples merely explain the technical concept and features of the present invention, and the purpose thereof is to allow a person skilled in the art to understand the contents of the present invention and further implement the invention, and the scope of protection of the present invention cannot be limited. .. All equivalent changes or modifications made on the basis of the spiritual substance of the present invention should be included within the scope of the present invention.

Claims (1)

ランプ支柱及び前記ランプ支柱の上端面に位置する固定ブロックを含み、前記ランプ支柱の中には作動空間が設置され、前記ランプ支柱の頂部の外端面にはランプシェードが固定的に設置され、前記ランプシェードが環状になるように設置され、前記ランプ支柱の外端面には前記ランプシェードの下側に位置する電球柱が固定的に設置され、前記電球柱が左右対称に設置され、前記電球柱の外端壁には電球が固定的に設置され、前記電球によって照明を提供でき、前記ランプシェードの外端面には環状板が固定的に設置され、前記環状板の上端面には磁石が固定的に設置され、前記磁石が前記環状板に沿って円周方向に八個設置され、前記固定ブロックの中には第一空き空間が設置され、前記第一空き空間が上下方向に貫通しており、前記第一空き空間の中には電流転換器が固定的に設置され、前記電流転換器が上方へ前記第一空き空間の外側に伸びており、前記固定ブロックの上端の中には環状空間が固定的に設置され、前記環状空間の中には第一スライダがスライド可能に設置され、前記第一スライダが左右対称に設置され、前記固定ブロックの中には第二空き空間が設置され、前記第二空き空間の中には固定ロッドが固定的に設置され、前記固定ロッドの左右端面が前記第一スライダの内端面に固定的に連結され、前記第一スライダの外端面には回転ロッドが固定的に設置され、前記回転ロッドには風当て板が前後対称且つ固定的に設置され、前記回転ロッドの中には前記風当て板の後側に位置する第三空き空間が固定的に設置され、前記第三空き空間の中には第一回転軸が回転可能に設置され、前記第一回転軸の外端面には羽根が固定的に設置され、前記羽根が前記第一回転軸に沿って円周方向に四本設置され、風が吹く時、前記羽根が回転して前記磁石の間での磁束を切り、生じた電流が前記電流転換器によって前記電球に電力を提供して照明を提供し、風が異なる方向から吹く時、前記風当て板の回転によって前記第一スライダを駆動して回転させ、こうして風が始終に前記羽根に対する垂直状態を保持し、より高効率に風力エネルギーを利用でき、
前記ランプ支柱の右端壁には前記ランプシェードの下側に位置する噴霧器が固定的に設置され、前記噴霧器の下端面には噴霧ノズルが固定的に設置され、前記噴霧ノズルが十一個設置され、前記作動空間の中には前記噴霧器の下側に位置するピストンシリンダーが固定的に設置され、前記ピストンシリンダーの中にはピストン空間が設置され、前記ピストン空間の中には第二スライダがスライド可能に設置され、前記第二スライダと前記ピストン空間の底壁とが第一バネによって連結され、前記第一バネが左右対称に設置され、前記第二スライダの下端面にはピストンロッドが固定的に設置され、前記ピストンロッドが下方へ前記ピストン空間の外側に伸びており、前記ピストンシリンダーには一方向液入り弁が固定的に設置され、前記ピストンシリンダーには前記一方向液入り弁の右側に位置する一方向液出弁が固定的に設置され、前記ピストンシリンダーには前記一方向液出弁の右側に位置する第一抜き孔が固定的に設置され、前記第一抜き孔の中には水出管が固定的に設置され、前記水出管が外へ伸びて前記噴霧器の下端面と固定的に連結され、前記第二スライダが上下方向にスライドして前記ピストン空間の中の水を前記一方向液出弁を介して押し出し、水が前記水出管によって前記噴霧器の中に入り、そして前記噴霧器によって噴霧化された後に、前記噴霧ノズルによって噴出され、温度を下げる効果を達し、
前記ランプ支柱の頂部には前記第一空き空間の下側に位置する第二抜き孔が固定的に設置され、前記第二抜き孔が上下方向に貫通しており、前記ランプ支柱には前記電球柱の内端面に位置する第三抜き孔が固定的に設置され、前記電流転換器の下端面には電流伝達線が固定的に設置され、前記電流伝達線が下方へ伸びて前記第二抜き孔を貫通しており、前記第二抜き孔が両側へ伸びて前記電球柱の内端面に固定的に連結され、こうして電流を前記電球柱の中に伝達し、
前記作動空間の内底壁にはモーターが固定的に設置され、前記モーターには第二回転軸が伝動可能に連結され、前記第二回転軸には第一傘歯車が固定的に設置され、前記作動空間の前後内壁には前記第二回転軸の上側に位置する第三回転軸が回転可能に設置され、前記第三回転軸には第二傘歯車が固定的に設置され、前記第二傘歯車が前記第一傘歯車と噛み合っており、前記作動空間の前後内壁には前記第三回転軸の上側に位置する第四回転軸が回転可能に設置され、前記第四回転軸にはカムが固定的に設置され、前記第四回転軸と前記第三回転軸とがベルトプーリによって伝動可能に連結され、前記カムの外端面が前記ピストンロッドの下端面と当接しており、
前記作動空間の内底壁には前記モーターの左側に位置する蓄電池が固定的に設置され、前記電流伝達線が前記蓄電池の上端面に固定的に連結され、前記蓄電池の右端面にはスライダ箱が固定的に設置され、前記スライダ箱の中にはスライダ空間が設置され、前記スライダ空間の中には第三スライダがスライド可能に設置され、前記第三スライダの底壁と前記スライダ空間の左内壁とが第二バネによって連結され、前記第三スライダの中には第四抜き孔が設置され、前記第四抜き孔が左右方向に貫通しており、前記第四抜き孔の中には電流伝達器が固定的に設置され、前記スライダ箱の中には前記スライダ空間の下側に位置する第一スライド溝が固定的に形成され、前記第一スライド溝が上下方向に貫通しており、前記第三スライダの下端面には連結ロッドが固定的に設置され、前記連結ロッドが前記第一スライド溝を貫通して下方に伸びており、前記第三スライダが右方へ前記モーターと接触するまでスライドした時、前記電流伝達器によって前記蓄電池の中の電流を前記モーターの中に伝達し、前記モーターを始動し、
前記ランプ支柱の底部には前記連結ロッドの下側に位置する第二スライド溝が形成され、前記第二スライド溝の中には第四スライダがスライド可能に設置され、前記第四スライダの上端面と前記連結ロッドの下端面とが固定的に連結され、前記第四スライダの左端面と前記第二スライド溝の左内壁とが第三バネによって連結され、前記ランプ支柱の右底壁には踏板が固定的に設置され、前記踏板の中には第三スライド溝が形成され、前記第三スライド溝の中には第五スライダがスライド可能に設置され、前記第五スライダの下端面と前記第三スライド溝の底壁とが第四バネによって連結され、前記第五スライダの左端面と前記第四スライダの右端面とが第一引き紐によって連結され、前記踏板の中には前記第三スライド溝の右側に位置する第四スライド溝が形成され、前記第四スライド溝が上方へ貫通しており、前記第四スライド溝の中にはスライド板がスライド可能に設置され、前記スライド板の下端面と前記第四スライド溝の底壁とが第五バネによって連結され、前記スライド板の下端面と前記第五スライダの下端面とが第二引き紐によって連結されており、
前記電流伝達器が弾性材料によって作られたものであることを特徴とする風力エネルギーを利用する砂浜の風景ライト。
A working space is provided in the lamp column, including a lamp column and a fixed block located on the upper end surface of the lamp column, and a lamp shade is fixedly installed on the outer end surface of the top of the lamp column. The lamp shade is installed so as to form an annular shape, and a light bulb column located below the lamp shade is fixedly installed on the outer end surface of the lamp column, the light bulb column is installed symmetrically, and the light bulb column is installed symmetrically. A light bulb is fixedly installed on the outer end wall of the lamp, and the light bulb can provide lighting. An annular plate is fixedly installed on the outer end surface of the lamp shade, and a magnet is fixed on the upper end surface of the annular plate. Eight magnets are installed in the circumferential direction along the annular plate, a first empty space is installed in the fixed block, and the first empty space penetrates in the vertical direction. A current converter is fixedly installed in the first empty space, the current converter extends upward to the outside of the first empty space, and an annular shape is formed in the upper end of the fixed block. The space is fixedly installed, the first slider is slidably installed in the annular space, the first slider is installed symmetrically, and the second empty space is installed in the fixed block. A fixed rod is fixedly installed in the second empty space, the left and right end faces of the fixed rod are fixedly connected to the inner end face of the first slider, and the outer end face of the first slider is rotated. The rod is fixedly installed, the air-support plate is installed symmetrically and fixedly on the rotating rod, and the third empty space located behind the air-support plate is fixed in the rotating rod. The first rotating shaft is rotatably installed in the third empty space, the blades are fixedly installed on the outer end surface of the first rotating shaft, and the blades are installed on the first rotating shaft. Four bulbs are installed in the circumferential direction along the light bulb, and when the wind blows, the blades rotate to cut off the magnetic flux between the magnets, and the generated current supplies power to the light bulb by the current converter. It provides lighting and, when the wind blows from different directions, the rotation of the windshield drives and rotates the first slider, thus keeping the wind perpendicular to the blades throughout and more efficiently. Energy is available,
A sprayer located below the lamp shade is fixedly installed on the right end wall of the lamp column, a spray nozzle is fixedly installed on the lower end surface of the sprayer, and eleven spray nozzles are installed. A piston cylinder located below the atomizer is fixedly installed in the working space, a piston space is installed in the piston cylinder, and a second slider slides in the piston space. The second slider and the bottom wall of the piston space are connected by a first spring, the first spring is installed symmetrically, and a piston rod is fixed to the lower end surface of the second slider. The piston rod extends downward to the outside of the piston space, a one-way liquid-filled valve is fixedly installed in the piston cylinder, and the right side of the one-way liquid-filled valve is fixedly installed in the piston cylinder. A unidirectional liquid discharge valve located in is fixedly installed in the piston cylinder, and a first drain hole located on the right side of the unidirectional liquid discharge valve is fixedly installed in the piston cylinder. The water discharge pipe is fixedly installed, the water discharge pipe extends outward and is fixedly connected to the lower end surface of the atomizer, and the second slider slides in the vertical direction to provide water in the piston space. Is extruded through the one-way liquid discharge valve, water enters the atomizer by the water outlet, and after being atomized by the atomizer, is ejected by the spray nozzle to reach the effect of lowering the temperature.
A second extraction hole located below the first empty space is fixedly installed at the top of the lamp column, and the second extraction hole penetrates in the vertical direction, and the light bulb is formed in the lamp column. A third punch hole located on the inner end surface of the pillar is fixedly installed, a current transmission line is fixedly installed on the lower end surface of the current converter, and the current transmission line extends downward to the second punch. It penetrates the hole, and the second punch extends to both sides and is fixedly connected to the inner end surface of the bulb column, thus transmitting an electric current into the bulb column.
A motor is fixedly installed on the inner bottom wall of the working space, a second rotating shaft is movably connected to the motor, and a first captive gear is fixedly installed on the second rotating shaft. A third rotating shaft located above the second rotating shaft is rotatably installed on the front and rear inner walls of the working space, and a second captive gear is fixedly installed on the third rotating shaft. The bevel gear meshes with the first bevel gear, and a fourth rotation shaft located above the third rotation shaft is rotatably installed on the front and rear inner walls of the working space, and a cam is provided on the fourth rotation shaft. Is fixedly installed, the fourth rotating shaft and the third rotating shaft are movably connected by a belt pulley, and the outer end surface of the cam is in contact with the lower end surface of the piston rod.
A storage battery located on the left side of the motor is fixedly installed on the inner bottom wall of the working space, the current transmission line is fixedly connected to the upper end surface of the storage battery, and a slider box is fixedly connected to the right end surface of the storage battery. Is fixedly installed, a slider space is installed in the slider box, a third slider is slidably installed in the slider space, and the bottom wall of the third slider and the left side of the slider space. The inner wall is connected by a second spring, a fourth punch hole is installed in the third slider, the fourth punch hole penetrates in the left-right direction, and an electric current is inserted in the fourth punch hole. A transmitter is fixedly installed, and a first slide groove located below the slider space is fixedly formed in the slider box, and the first slide groove penetrates in the vertical direction. A connecting rod is fixedly installed on the lower end surface of the third slider, the connecting rod extends downward through the first slide groove, and the third slider comes into contact with the motor to the right. When slid to, the current transmitter transmits the current in the storage battery into the motor to start the motor.
A second slide groove located below the connecting rod is formed at the bottom of the lamp column, and a fourth slider is slidably installed in the second slide groove, and an upper end surface of the fourth slider is installed. And the lower end surface of the connecting rod are fixedly connected, the left end surface of the fourth slider and the left inner wall of the second slide groove are connected by a third spring, and a tread plate is attached to the right bottom wall of the lamp column. Is fixedly installed, a third slide groove is formed in the tread plate, a fifth slider is slidably installed in the third slide groove, and the lower end surface of the fifth slider and the first The bottom wall of the three slide grooves is connected by a fourth spring, the left end surface of the fifth slider and the right end surface of the fourth slider are connected by a first pull string, and the third slide is contained in the tread plate. A fourth slide groove located on the right side of the groove is formed, the fourth slide groove penetrates upward, and a slide plate is slidably installed in the fourth slide groove, and below the slide plate. The end face and the bottom wall of the fourth slide groove are connected by a fifth spring, and the lower end surface of the slide plate and the lower end surface of the fifth slider are connected by a second pull string.
A landscape light on a sandy beach that utilizes wind energy, characterized in that the current transmitter is made of an elastic material .
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