JP6564984B1 - Solar power generator - Google Patents

Solar power generator Download PDF

Info

Publication number
JP6564984B1
JP6564984B1 JP2018125632A JP2018125632A JP6564984B1 JP 6564984 B1 JP6564984 B1 JP 6564984B1 JP 2018125632 A JP2018125632 A JP 2018125632A JP 2018125632 A JP2018125632 A JP 2018125632A JP 6564984 B1 JP6564984 B1 JP 6564984B1
Authority
JP
Japan
Prior art keywords
circular base
power generation
end surface
rotation
groove
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired - Fee Related
Application number
JP2018125632A
Other languages
Japanese (ja)
Other versions
JP2019201539A (en
Inventor
竺裕東
Original Assignee
玉環川進環保科技有限公司
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by 玉環川進環保科技有限公司 filed Critical 玉環川進環保科技有限公司
Application granted granted Critical
Publication of JP6564984B1 publication Critical patent/JP6564984B1/en
Publication of JP2019201539A publication Critical patent/JP2019201539A/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Images

Classifications

    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02SGENERATION OF ELECTRIC POWER BY CONVERSION OF INFRARED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, e.g. USING PHOTOVOLTAIC [PV] MODULES
    • H02S20/00Supporting structures for PV modules
    • H02S20/30Supporting structures being movable or adjustable, e.g. for angle adjustment
    • H02S20/32Supporting structures being movable or adjustable, e.g. for angle adjustment specially adapted for solar tracking
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E10/00Energy generation through renewable energy sources
    • Y02E10/50Photovoltaic [PV] energy
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E70/00Other energy conversion or management systems reducing GHG emissions
    • Y02E70/30Systems combining energy storage with energy generation of non-fossil origin

Abstract

【課題】本発明は太陽熱発電装置を開示した。【解決手段】第一円形基座、第二円形基座、中心支柱と太陽光発電板を含み、前記第二円形基座の底端面の中心が回転軸を通じて前記第一円形基座の頂端面の中心と回転し係合し接続され、前記第一円形基座の頂端面に内から外まで内輪リングと外輪リングが設置され、前記内輪リングと外輪リングの中に回転できる内ボールと外ボールがそれぞれ設置され、前記第二円形基座の底端面と前記内ボールと外ボールが突合、前記第一円形基座に回転筐体が設置され、本発明は太陽の運動軌跡により太陽光発電板の傾斜角度及び向きを自動にコントロールでき、これにより太陽光をもっとよく吸収して発電し、太陽光発電板の発電効率を高め、その全体構造が簡単で、操作が迅速かつ便利で、設備全体の作動が安全かつ安定である上で、省エネまた環境保護の面でも長所があり、発電効率を高め、取付けや生産コストが低い。【選択図】図1The present invention discloses a solar thermal power generation apparatus. A first circular base, a second circular base, a central support column and a photovoltaic power generation plate, wherein the center of the bottom end surface of the second circular base is the top end surface of the first circular base through a rotation axis. An inner ring and an outer ball which are rotated and engaged with and connected to the center of the first circular base seat, and an inner ring and an outer ring are installed on the top end surface of the first circular base seat from the inside to the outside. Are installed, a bottom end face of the second circular base is in contact with the inner ball and the outer ball, and a rotating housing is installed on the first circular base. The tilt angle and direction of the solar power can be automatically controlled, thereby generating more power by absorbing sunlight, increasing the power generation efficiency of the solar power generation plate, its overall structure is simple, operation is quick and convenient, and the entire facility Is safe and stable and energy-saving. There are advantages in terms of environmental protection, increasing the power generation efficiency, low installation and production costs. [Selection] Figure 1

Description

本発明は太陽熱発電技術分野に関し、具体的には、太陽熱発電装置に関する。 The present invention relates to the field of solar thermal power generation technology, and specifically to a solar thermal power generation apparatus.

太陽エネルギーは一つの再生可能エネルギーであり、くめどもくめどもつきない。現在に太陽エネルギーが幅広く活用され、特に太陽熱発電技術においては、太陽光をエネルギーとして、太陽光発電板を使って太陽光を吸収し、太陽エネルギーを電気エネルギーに転換して蓄電池に蓄え、これにより蓄電池を通じて電気を使う設備に給電する。したがって、現有の太陽熱発電設備は構造が簡単で、太陽光発電板が同じ角度や同じ向きに固定され、太陽の照射角度により太陽光発電板の角度を調節できず、太陽エネルギーを電気エネルギーに転換する最大作動効率を実現できない。 Solar energy is one of the renewable energy, not luck Domo Kume Domo Kume. At present, solar energy is widely used. Especially in solar thermal power generation technology, sunlight is used as energy, solar light is absorbed using a solar power generation plate, solar energy is converted into electric energy, and stored in a storage battery. Power is supplied to facilities that use electricity through storage batteries. Therefore, the existing solar thermal power generation equipment has a simple structure, the photovoltaic power generation plates are fixed at the same angle and in the same direction, the angle of the photovoltaic power generation plates cannot be adjusted by the sun irradiation angle, and the solar energy is converted into electric energy The maximum operating efficiency cannot be realized.

中国特許出願公開第103511207号明細書Chinese Patent Application No. 1035111207

本発明の目的は上記の背景技術に提出された問題を解決するための太陽熱発電装置を提供することにある。 An object of the present invention is to provide a solar power generation apparatus for solving the problems submitted to the background art described above.

上記の問題を解決するために、本発明は以下の技術プランを採用する:本発明の太陽熱発電装置は、第一円形基座、第二円形基座、中心支柱と太陽光発電板を含み、前記第二円形基座の底端面の中心が回転軸を通じて前記第一円形基座の頂端面の中心と回転できるように係合し接続され、前記第一円形基座の頂端面に内から外まで内輪リングと外輪リングが設置され、前記内輪リングと外輪リングの中に回転できる内ボールと外ボールがそれぞれ設置され、前記第二円形基座の底端面と前記内ボールと外ボールが当接し、前記第一円形基座に回転チャンバが設置され、前記第一円形基座の頂端面に前記内輪リングと外輪リングの間に前記回転チャンバと相通する環状溝が設置され、前記第二円形基座の底端面に前記回転軸から遠離する側に引掛り溝が設置され、前記回転チャンバの中間位置に上下に伸びる駆動軸が設置され、前記駆動軸の頂端が前記回転チャンバの頂端壁に設置される駆動電機と動力で接続され、前記駆動軸に回転ブロックが固定に設置され、前記回転ブロックの前記駆動軸から遠離する一端に引掛りブロックが固定に設置され、前記引掛りブロックが上へ前記環状溝から伸び出して前記引掛り溝に挿入し係合し接続され、前記中心支柱が前記第二円形基座の頂端面の中心に固定に設置され、前記中心支柱の頂端面に左右に貫通する沈み溝が設置され、前記太陽光発電板が回転ピンを通じて前記沈み溝の中に回転できるように設置され、前記太陽光発電板の左右両端に左バックルと右バックルが対称に設置され、前記第二円形基座に左右に貫通する調節通し溝が設置され、前記調節通し溝の左右両端の開口のところにそれぞれ左回転レバーと右回転レバーを通じて左転輪と右転輪が回転できるように設置され、前記調節通し溝の中間に主軸を通じて前ライン筒と後ライン筒が回転できるように設置され、前記主軸の後端が前記調節通し溝の後端壁に設置される回転電機と動力で接続され、前記左バックルと前記後ライン筒の間に左引縄が接続されるかつ前記左引縄が前記左転輪を経って、前記右バックルと前記前ライン筒の間に右引縄が接続されるかつ前記右引縄が前記右転輪を経って、前記第二円形基座の頂端面の外周に軟質座金が固定に設置される。 In order to solve the above problems, the present invention adopts the following technical plan: The solar thermal power generation apparatus of the present invention includes a first circular base, a second circular base, a central column and a solar power generation plate, out of the second center of the bottom end surface of the circular base seat is engaged for rotation with the center of the top end surface of the first circular base seat through rotation shaft connected, the inner to the apical surface of the first circular base seat An inner ring and an outer ring are installed, and an inner ball and an outer ball that can be rotated are respectively installed in the inner ring and the outer ring, and the bottom end surface of the second circular base is in contact with the inner ball and the outer ball. A rotating chamber is installed in the first circular base; an annular groove communicating with the rotating chamber is installed between the inner ring and the outer ring on the top end surface of the first circular base; pull on the side that releases far from the rotating shaft to the bottom end surface of the seat Rimizo is installed, the drive shaft extending vertically middle position of the rotary chamber is installed, the top end of the drive shaft is connected with the driving electric and power installed in the top end wall of the rotary chamber, the drive shaft A rotating block is fixedly installed, a hooking block is fixedly installed at one end of the rotating block far from the drive shaft, and the hooking block extends upward from the annular groove and is inserted into the hooking groove. Engaged and connected, the central column is fixedly installed at the center of the top end surface of the second circular base seat, a sinking groove penetrating left and right is installed in the top end surface of the central column, and the photovoltaic power generation plate is Adjustable through-grooves installed so as to be able to rotate in the sinking groove through a rotating pin, left and right buckles being symmetrically installed at both left and right ends of the photovoltaic power generation plate, and penetrating left and right through the second circular base Set up Is, the adjustment through each at the opening of the left and right ends of the groove through the left rotation lever and right rotation lever left rolling wheel and Migitenwa disposed for rotation, the line barrel before through the spindle in the middle of the adjusting through-slot And the rear line cylinder is rotated so that the rear end of the main shaft is connected by power to a rotating electrical machine installed on the rear end wall of the adjustment through groove, and the left line between the left buckle and the rear line cylinder A line is connected and the left line goes through the left wheel, a right line is connected between the right buckle and the front line tube, and the right line goes through the right wheel. A soft washer is fixedly installed on the outer periphery of the top end surface of the second circular base.

優先的な技術プランとして、前記主軸の先端と前記調節通し溝の前端壁が回転できるように係合し接続され、前記前ライン筒と後ライン筒が前後対称に設置され、前記前ライン筒と前記右転輪が相対し設置され、前記後ライン筒と前記左転輪が相対し設置され、前記前ライン筒及び後ライン筒が前記主軸と固定に接続され、前記左転輪が前記左回転レバーと固定に接続され、前記右転輪が前記右回転レバーと固定に接続され、前記左転輪と右転輪の直径が同じく、前記前ライン筒と後ライン筒の直径が同じである。 As the preferred technology plan, front end and the front end wall of the adjusting through-slot of the spindle is engaged to be rotatable connection, the front line tube and the rear line tube is placed symmetrically before and after, and the front line tube The right wheel is installed oppositely, the rear line cylinder and the left wheel are installed facing each other, the front line cylinder and the rear line cylinder are fixedly connected to the main shaft, and the left wheel is rotated left The right wheel is fixedly connected to the lever, the right wheel is fixedly connected to the right wheel, the left wheel and the right wheel have the same diameter, and the front line tube and the rear line tube have the same diameter.

優先的な技術プランとして、前記駆動軸の底端が前記回転チャンバの底端壁と回転できるように係合し接続され、前記第二円形基座の底端面が前記回転軸と固定に接続され、前記回転ピンが前記太陽光発電板の中心を前後に貫通するかつ前記太陽光発電板と固定に接続され、前記回転ピンの前後両端が前記沈み溝の前後両端壁と回転できるように係合し接続される。 As the preferred technology plan, bottom end of the drive shaft is the engagement for rotation with the bottom end wall of the rotary chamber and is connected, the bottom end surface of said second circular base seat is connected to the fixed and the rotating shaft The rotating pin penetrates the center of the photovoltaic power generation plate back and forth and is fixedly connected to the photovoltaic power generation plate, and the front and rear ends of the rotating pin engage with the front and rear end walls of the sinking groove. Connected.

優先的な技術プランとして、前記第二円形基座の中に前記調節通し溝の上に蓄電池が設置され、前記蓄電池が前記太陽光発電板と電気で接続され、前記太陽光発電板と前記蓄電池の間に変換装置が接続される。 As a preferential technology plan, a storage battery is installed on the adjustment through groove in the second circular base, and the storage battery is electrically connected to the solar power generation plate, and the solar power generation plate and the storage battery The conversion device is connected between.

優先的な技術プランとして、前記内ボールと外ボールがいずれも球状であるかつ体積が同じである。 As a preferential technology plan, the inner ball and the outer ball are both spherical and have the same volume.

本発明の有益効果は: The beneficial effects of the present invention are:

1. 前記回転電機を回転させて前記主軸を回転させて前記前ライン筒と後ライン筒を同時に回転させ、これにより前記前ライン筒の縄をセッティングアウトさせ、前記後ライン筒が縄を納め、これにより前記太陽光発電板を左から右まで上へ傾け、また回転電機を逆転させて前記太陽光発電板を右から左まで上へ傾けることで、前記太陽光発電板の傾斜角度を調節し、更に、太陽光発電板の向きを調節する時に、前記駆動電機を回転させ、前記駆動電機の回転によって前記駆動軸を回転させ、前記駆動軸の回転によって前記回転ブロックを回転させ、前記回転ブロックの回転によって前記引掛りブロックを前記環状溝を回って回転させ、前記引掛りブロックによって前記第二円形基座を前記回転軸を回って回転させ、これにより前記太陽光発電板の向きを調節し、太陽光発電板がもっとよく太陽光を吸収して発電でき、前記太陽光発電板が太陽光の照射角度により調節でき、前記太陽光発電板の発電効率を高める。 1. Rotating the rotating electric machine and rotating the main shaft to rotate the front line cylinder and the rear line cylinder at the same time, thereby setting out the nose of the front line cylinder, and the rear line cylinder containing the rope, thereby Tilt the solar power plate from left to right, and reverse the rotating electric machine to tilt the solar power plate from right to left to adjust the tilt angle of the solar power plate, When adjusting the orientation of the photovoltaic power generation plate, the drive electric machine is rotated, the drive shaft is rotated by the rotation of the drive electric machine, the rotation block is rotated by the rotation of the drive shaft, and the rotation block is rotated. The hook block is rotated around the annular groove, and the second circular base is rotated around the rotation shaft by the hook block, whereby the photovoltaic power generation plate Adjust the orientation, can power photovoltaic plate absorbs a better sunlight, the photovoltaic panel can be adjusted by the irradiation angle of the sunlight increases the power generation efficiency of the photovoltaic plate.

2.本発明は太陽の運動軌跡により太陽光発電板の傾斜角度及び向きを自動にコントロールでき、これにより太陽光をもっとよく吸収して発電し、太陽光発電板の発電効率を高め、その全体構造が簡単で、操作が迅速かつ便利で、設備全体の作動が安全かつ安定である上で、省エネまた環境保護の面でも長所があり、発電効率を高め、取付けや生産コストが低い。 2. The present invention can automatically control the inclination angle and direction of the photovoltaic power generation plate according to the movement trajectory of the sun, thereby generating power by absorbing the sunlight better, increasing the power generation efficiency of the solar power generation plate, and its overall structure It is simple, quick and convenient to operate, and the operation of the entire facility is safe and stable. It also has advantages in terms of energy saving and environmental protection, increases power generation efficiency, and lowers installation and production costs.

本発明の実施例また既存の技術の中の技術方案をもっとはっきり説明するため、下記に実施例また既存の技術の説明の中に使用する必要がある附図に簡単な紹介を行って、一目でわかることは下記の説明の中の附図はただ本発明のいくつかの実施例で、本領域の普通技術者にとって、創造的な労働を払わないことを前提に、これらの附図に基づいてそのほかの附図を得ることができる。 In order to more clearly explain the technical solutions in the embodiments of the present invention and in the existing technology, the following is a brief introduction to the accompanying drawings that need to be used in the description of the embodiments and the existing technology. It should be understood that the accompanying drawings in the following description are only some embodiments of the present invention, and that other engineers based on these appended drawings are assumed based on the assumption that creative labor is not paid to ordinary engineers in this field. Attached figure can be obtained.

図1は本発明の太陽熱発電装置の全体構造概略図である。FIG. 1 is a schematic diagram of the overall structure of the solar thermal power generation apparatus of the present invention. 図2は図1の太陽光発電板が傾斜状態にある時の全体構造概略図である。FIG. 2 is a schematic diagram of the overall structure when the photovoltaic power generation plate of FIG. 1 is in an inclined state. 図3は図2の第二円形基座が回転状態にある時の全体構造概略図である。FIG. 3 is a schematic diagram of the entire structure when the second circular base of FIG. 2 is in a rotating state. 図4は図1の前ライン筒と後ライン筒が主軸に設置される時の構造概略図である。FIG. 4 is a structural schematic diagram when the front line cylinder and the rear line cylinder of FIG. 1 are installed on the main shaft.

下記に附図を交え本発明の好ましい実施例を詳しく説明し、本発明の長所と特徴を本分野の技術者にもっとやすく理解させ、これにより本発明の保護範囲にもっと明確な画定を行う。 The preferred embodiments of the present invention will be described in detail below with reference to the accompanying drawings, to make it easier for those skilled in the art to understand the advantages and features of the present invention, thereby providing a clearer definition of the protection scope of the present invention.

図1〜4を参照し、本発明の太陽熱発電装置は、第一円形基座1、第二円形基座2、中心支柱3と太陽光発電板32を含み、前記第二円形基座2の底端面の中心が回転軸5を通じて前記第一円形基座1の頂端面の中心と回転できるように係合し接続され、前記第一円形基座1の頂端面に内から外まで内輪リング14と外輪リング12が設置され、前記内輪リング14と外輪リング12の中に回転できる内ボール15と外ボール13がそれぞれ設置され、前記第二円形基座2の底端面と前記内ボール15と外ボール13が当接し、前記第一円形基座1に回転チャンバ10が設置され、前記第一円形基座1の頂端面に前記内輪リング14と外輪リング12の間に前記回転チャンバ10と相通する環状溝11が設置され、前記第二円形基座2の底端面に前記回転軸5から遠離する側に引掛り溝21が設置され、前記回転チャンバ10の中間位置に上下に伸びる駆動軸17が設置され、前記駆動軸17の頂端が前記回転チャンバ10の頂端壁に設置される駆動電機16と動力で接続され、前記駆動軸17に回転ブロック18が固定に設置され、前記回転ブロック18の前記駆動軸17から遠離する一端に引掛りブロック19が固定に設置され、前記引掛りブロック19が上へ前記環状溝11から伸び出して前記引掛り溝21に挿入し係合し接続され、前記中心支柱3が前記第二円形基座2の頂端面の中心に固定に設置され、前記中心支柱3の頂端面に左右に貫通する沈み溝30が設置され、前記太陽光発電板32が回転ピン31を通じて前記沈み溝30の中に回転できるように設置され、前記太陽光発電板32の左右両端に左バックル33と右バックル34が対称に設置され、前記第二円形基座2に左右に貫通する調節通し溝20が設置され、前記調節通し溝20の左右両端の開口のところにそれぞれ左回転レバー25と右回転レバー27を通じて左転輪24と右転輪26が回転できるように設置され、前記調節通し溝20の中間に主軸39を通じて前ライン筒38と後ライン筒37が回転できるように設置され、前記主軸39の後端が前記調節通し溝20の後端壁に設置される回転電機40と動力で接続され、前記左バックル33と前記後ライン筒37の間に左引縄35が接続されるかつ前記左引縄35が前記左転輪24を経って、前記右バックル34と前記前ライン筒38の間に右引縄36が接続されるかつ前記右引縄36が前記右転輪26を経って、前記第二円形基座2の頂端面の外周に軟質座金22が固定に設置され、これにより太陽光発電板32の傾斜角度を調節すぎることによる前記太陽光発電板32と前記第二円形基座2とのぶつかいを防止する。 1 to 4, the solar thermal power generation apparatus of the present invention includes a first circular base 1, a second circular base 2, a center column 3, and a solar power generation plate 32. center of the bottom end surface is engaged for rotation with the center of the top end surface of the first circular base seat 1 via the rotation shaft 5 connected, inner ring to the outer from the inner to the apical surface of the first circular base seat 1 14 And an outer ring 12 are installed, and an inner ball 15 and an outer ball 13 are installed in the inner ring 14 and the outer ring 12, respectively, and the bottom end surface of the second circular base 2 and the inner ball 15 A ball 13 abuts and a rotation chamber 10 is installed on the first circular base 1, and communicates with the rotation chamber 10 on the top end surface of the first circular base 1 between the inner ring ring 14 and the outer ring ring 12. An annular groove 11 is installed, and the bottom end of the second circular base 2 The caught groove 21 on the side that releases far from the rotating shaft 5 is installed, the rotary drive shaft 17 extending vertically intermediate position of the chamber 10 is installed, the top end of the drive shaft 17 is a top end wall of the rotary chamber 10 The rotary block 18 is fixedly installed on the drive shaft 17 and the hook block 19 is fixedly installed at one end of the rotary block 18 far from the drive shaft 17. The hook block 19 extends upward from the annular groove 11 and is inserted into and engaged with the hook groove 21 so that the center column 3 is fixed to the center of the top end surface of the second circular base 2. is installed in the center is installed sink groove 30 penetrating the right and left apical surface of the strut 3, the photovoltaic plate 32 is disposed for rotation within said sink groove 30 through pivot pin 31, before Left buckle 33 and right buckle 34 on the left and right ends of the photovoltaic plate 32 is disposed symmetrically, adjusting the through-slot 20 is installed to penetrate the left and right in the second round group seat 2, right and left ends of the adjusting through-slot 20 The left turning wheel 24 and the right turning wheel 26 can be rotated through the left rotation lever 25 and the right rotation lever 27 respectively at the opening of the front line cylinder 38 and the rear line through the main shaft 39 in the middle of the adjustment through groove 20. A line cylinder 37 is installed so that it can rotate, and the rear end of the main shaft 39 is connected by power to a rotating electrical machine 40 installed on the rear end wall of the adjustment through groove 20, and the left buckle 33 and the rear line cylinder 37. The left line 35 is connected between the left line 35 and the left line 35 via the left wheel 24, and the right line 36 is connected between the right buckle 34 and the front line cylinder 38. Right rope 36 in front After passing through the right rolling wheel 26, the soft washer 22 is fixedly installed on the outer periphery of the top end surface of the second circular base 2, and thereby the solar power generation by adjusting the inclination angle of the solar power generation plate 32 too much. Collision between the plate 32 and the second circular base 2 is prevented.

その中に、前記主軸39の先端と前記調節通し溝20の前端壁が回転できるように係合し接続され、前記前ライン筒38と後ライン筒37が前後対称に設置され、前記前ライン筒38と前記右転輪26が相対し設置され、前記後ライン筒37と前記左転輪24が相対し設置され、前記前ライン筒38及び後ライン筒37が前記主軸39と固定に接続され、前記左転輪24が前記左回転レバー25と固定に接続され、前記右転輪26が前記右回転レバー27と固定に接続され、前記左転輪24と右転輪26の直径が同じく、前記前ライン筒38と後ライン筒37の直径が同じである。 Therein, the tip and the front end wall of the adjusting through-slot 20 of the spindle 39 is engaged for rotation connected to the front line tube 38 the rear line tube 37 is placed symmetrically before and after the previous line tube 38 and the right rolling wheel 26 are opposed to each other, the rear line cylinder 37 and the left rolling wheel 24 are opposed to each other, and the front line cylinder 38 and the rear line cylinder 37 are fixedly connected to the main shaft 39, The left wheel 24 is fixedly connected to the left rotation lever 25, the right wheel 26 is fixedly connected to the right rotation lever 27, and the diameters of the left wheel 24 and the right wheel 26 are the same. The diameters of the front line cylinder 38 and the rear line cylinder 37 are the same.

その中に、前記駆動軸17の底端が前記回転チャンバ10の底端壁と回転できるように係合し接続され、前記第二円形基座2の底端面が前記回転軸5と固定に接続され、前記回転ピン31が前記太陽光発電板32の中心を前後に貫通するかつ前記太陽光発電板32と固定に接続され、前記回転ピン31の前後両端が前記沈み溝30の前後両端壁と回転できるように係合し接続される。 Therein, said bottom end of the drive shaft 17 is the engaged for rotation with the bottom end wall of the rotating chamber 10 is connected, connect the bottom end face of the second circular base seat 2 within a fixed and the rotary shaft 5 The rotating pin 31 penetrates the center of the photovoltaic power generation plate 32 back and forth and is fixedly connected to the photovoltaic power generation plate 32, and the front and rear ends of the rotating pin 31 are the front and rear end walls of the sink groove 30. It is engaged so that it can rotate connection.

その中に、前記第二円形基座2の中に前記調節通し溝20の上に蓄電池23が設置され、前記蓄電池23が前記太陽光発電板32と電気で接続され、前記太陽光発電板32と前記蓄電池23の間に変換装置が接続され、これにより前記太陽光発電板32を通じて太陽光を吸収して発電し、電気エネルギーを前記蓄電池23に蓄え、他の電気を使う設備に給電する。 In the second circular base 2, a storage battery 23 is installed on the adjustment through-groove 20, the storage battery 23 is electrically connected to the solar power generation plate 32, and the solar power generation plate 32. Is connected between the storage battery 23 and the solar battery plate 32 to absorb the sunlight through the solar power generation plate 32 to generate electric power, store electric energy in the storage battery 23, and supply power to facilities using other electricity.

その中に、前記内ボール15と外ボール13がいずれも球状であるかつ体積が同じく、これにより前記第二円形基座2の回転が便利になり、前記第二円形基座2と前記第一円形基座1の直接な接触による割と大きな磨損を防止する。 Among them, the inner ball 15 and the outer ball 13 are both spherical and have the same volume, which makes the rotation of the second circular base 2 convenient, and the second circular base 2 and the first ball It prevents cracking due to direct contact with the circular base 1.

本発明を使う時に、前記回転電機40を回転させて前記主軸39を回転させて前記前ライン筒38と後ライン筒37を同時に回転させ、これにより前記前ライン筒38の縄をセッティングアウトさせ、前記後ライン筒37が縄を納め、これにより前記太陽光発電板32を左から右まで上へ傾け、また回転電機40を逆転させて前記太陽光発電板32を右から左まで上へ傾けることで、前記太陽光発電板32の傾斜角度を調節し、更に、太陽光発電板32の向きを調節する時に、前記駆動電機16を回転させ、前記駆動電機16の回転によって前記駆動軸17を回転させ、前記駆動軸17の回転によって前記回転ブロック18を回転させ、前記回転ブロック18の回転によって前記引掛りブロック19を前記環状溝11を回って回転させ、前記引掛りブロック19によって前記第二円形基座2を前記回転軸5を回って回転させ、これにより前記太陽光発電板32の向きを調節し、太陽光発電板32がもっとよく太陽光を吸収して発電でき、前記太陽光発電板32が太陽光の照射角度により調節でき、前記太陽光発電板32の発電効率を高める。 When using the present invention, the rotating electrical machine 40 is rotated to rotate the main shaft 39 to simultaneously rotate the front line cylinder 38 and the rear line cylinder 37, thereby setting out the rope of the front line cylinder 38, The rear line cylinder 37 holds a rope, thereby tilting the photovoltaic power generation plate 32 from left to right, and rotating the rotating electrical machine 40 to tilt the photovoltaic power generation plate 32 from right to left. Then, when adjusting the inclination angle of the photovoltaic power generation plate 32 and further adjusting the direction of the photovoltaic power generation plate 32, the drive electric machine 16 is rotated, and the drive shaft 17 is rotated by the rotation of the drive electric machine 16. The rotation block 18 is rotated by the rotation of the driving shaft 17, the hook block 19 is rotated around the annular groove 11 by the rotation of the rotation block 18, The second circular base 2 is rotated around the rotary shaft 5 by the hanging block 19, thereby adjusting the direction of the solar power generation plate 32, and the solar power generation plate 32 absorbs sunlight better. The solar power generation plate 32 can be adjusted according to the irradiation angle of sunlight, and the power generation efficiency of the solar power generation plate 32 is increased.

以上に本発明の基本原理、主な特徴と本発明の長所を表明し説明した。本業界の技術者が了解すべきなのは本発明は上記の実施例の制限を受けなく、上記の実施例と説明書に説明したのは本発明の原理で、本発明の意義と原理から離れない前提に本発明に各種の変化と改善があり、これらの変化と改善が本発明の保護範囲にある。本発明の保護範囲は添付の権利要求書と同等内容に画定される。 The basic principle, main features and advantages of the present invention have been described and explained above. It should be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, and the above-described embodiments and the description are the principles of the present invention, and do not depart from the significance and principles of the present invention. There are various changes and improvements in the present invention on the premise, and these changes and improvements are within the protection scope of the present invention. The scope of protection of the present invention is defined as equivalent to the attached rights request.

Claims (1)

太陽熱発電装置であって、第一円形基座、第二円形基座、中心支柱と太陽光発電板を含み、前記第二円形基座の底端面の中心が回転軸を通じて前記第一円形基座の頂端面の中心と回転できるように係合し接続され、前記第一円形基座の頂端面に内から外まで内輪リングと外輪リングが設置され、前記内輪リングと外輪リングの中に回転できる内ボールと外ボールがそれぞれ設置され、前記第二円形基座の底端面と前記内ボールと外ボールが当接し、前記第一円形基座に回転チャンバが設置され、前記第一円形基座の頂端面に前記内輪リングと外輪リングの間に前記回転チャンバと相通する環状溝が設置され、前記第二円形基座の底端面に前記回転軸から遠離する側に引掛り溝が設置され、前記回転チャンバの中間位置に上下に伸びる駆動軸が設置され、前記駆動軸の頂端が前記回転チャンバの頂端壁に設置される駆動電機と動力で接続され、前記駆動軸に回転ブロックが固定に設置され、前記回転ブロックの前記駆動軸から遠離する一端に引掛りブロックが固定に設置され、前記引掛りブロックが上へ前記環状溝から伸び出して前記引掛り溝に挿入し係合し接続され、前記中心支柱が前記第二円形基座の頂端面の中心に固定に設置され、前記中心支柱の頂端面に左右に貫通する沈み溝が設置され、前記太陽光発電板が回転ピンを通じて前記沈み溝の中に回転できるように設置され、前記太陽光発電板の左右両端に左バックルと右バックルが対称に設置され、前記第二円形基座に左右に貫通する調節通し溝が設置され、前記調節通し溝の左右両端の開口のところにそれぞれ左回転レバーと右回転レバーを通じて左転輪と右転輪が回転できるように設置され、前記調節通し溝の中間に主軸を通じて前ライン筒と後ライン筒が回転できるように設置され、前記主軸の後端が前記調節通し溝の後端壁に設置される回転電機と動力で接続され、前記左バックルと前記後ライン筒の間に左引縄が接続されるかつ前記左引縄が前記左転輪を経って、前記右バックルと前記前ライン筒の間に右引縄が接続されるかつ前記右引縄が前記右転輪を経って、前記第二円形基座の頂端面の外周に軟質座金が固定に設置され、前記主軸の先端と前記調節通し溝の前端壁が回転できるように係合し接続され、前記前ライン筒と後ライン筒が前後対称に設置され、前記前ライン筒と前記右転輪が相対し設置され、前記後ライン筒と前記左転輪が相対し設置され、前記前ライン筒及び後ライン筒が前記主軸と固定に接続され、前記左転輪が前記左回転レバーと固定に接続され、前記右転輪が前記右回転レバーと固定に接続され、前記左転輪と右転輪の直径が同じく、前記前ライン筒と後ライン筒の直径が同じく、前記駆動軸の底端が前記回転チャンバの底端壁と回転できるように係合し接続され、前記第二円形基座の底端面が前記回転軸と固定に接続され、前記回転ピンが前記太陽光発電板の中心を前後に貫通するかつ前記太陽光発電板と固定に接続され、前記回転ピンの前後両端が前記沈み溝の前後両端壁と回転できるように係合し接続され、前記第二円形基座の中に前記調節通し溝の上に蓄電池が設置され、前記蓄電池が前記太陽光発電板と電気で接続され、前記太陽光発電板と前記蓄電池の間に変換装置が接続され、前記内ボールと外ボールがいずれも球状であるかつ体積が同じであることを特徴とする太陽熱発電装置 A solar thermal power generation apparatus comprising a first circular base, a second circular base, a central support column and a solar power generation plate, wherein the center of the bottom end surface of the second circular base is the first circular base through a rotation axis is engaged for rotation with the center of the top end surface of the connection, the inner ring ring and the outer ring the ring from the inner to the outer is placed on the apical surface of the first circular base seat can be rotated in the inner ring and the outer ring ring An inner ball and an outer ball are installed , the bottom end surface of the second circular base is in contact with the inner ball and the outer ball , a rotation chamber is installed in the first circular base, and the first circular base is installed the rotating chamber and the phase Tsusuru annular groove between the inner ring and the outer ring ring apical surface, the second circular base seat the side to catch groove that apart far from the rotating shaft to the bottom end surface of is installed, the a drive shaft extending vertically middle position of the rotary chamber One end is location, the top end of the drive shaft is connected with the driving electric and power installed in the top end wall of the rotary chamber, the rotary to the driving shaft block is installed in a fixed, that apart far from the drive shaft of the rotary block A hooking block is fixedly installed, the hooking block extends upward from the annular groove , is inserted into the hooking groove , is engaged and connected, and the central column is a top end surface of the second circular base seat Is fixedly installed at the center of the center post, and a sunken groove penetrating left and right is installed on the top end surface of the central column, and the solar power generation plate is installed so as to be able to rotate in the sunken groove through a rotating pin. A left buckle and a right buckle are installed symmetrically on the left and right ends of the power generation plate, and adjustment through-grooves penetrating left and right are installed in the second circular base. Leva And through the right rotation lever left rolling wheel and Migitenwa disposed for rotation, the line tube and the rear line tube before through the spindle in the middle of the regulation through groove is disposed so as to be rotated, the rear end of the main shaft It is connected by power to a rotating electrical machine installed on the rear end wall of the adjustment through groove, a left rope is connected between the left buckle and the rear line cylinder, and the left rope is passed through the left wheel. A right rope is connected between the right buckle and the front line cylinder, and the right rope passes through the right wheel, and a soft washer is fixed to the outer periphery of the top end face of the second circular base. is installed, the tip and the front end wall of the adjusting through-slot of the spindle is engaged to be rotatable connection, the front line tube and the rear line tube is placed symmetrically before and after, the right rolling and the front line tube Wheels are installed facing each other, and the rear line cylinder and the left rolling wheel are installed facing each other. The front line cylinder and the rear line cylinder are fixedly connected to the main shaft, the left wheel is fixedly connected to the left rotation lever, the right wheel is fixedly connected to the right rotation lever, and also the diameter of Hidaritenwa and Migitenwa, the diameter of the front line tube and the rear line tube is likewise the bottom end of the drive shaft is engaged for rotation with the bottom end wall of the rotary chamber are connected, The bottom end surface of the second circular base is fixedly connected to the rotating shaft, the rotating pin penetrates the center of the photovoltaic power generation plate back and forth and is fixedly connected to the photovoltaic power generation plate, and the rotating pin the front and rear ends engage for rotation the front and rear end wall of the sink groove connection, battery over the adjusting through-slot is disposed in said second circular group seat, the battery is the photovoltaic Electrically connected to the plate, between the photovoltaic plate and the storage battery Converter is connected, solar power generation device, wherein the inner ball and the outer ball is a and volume the same spherical none.
JP2018125632A 2018-05-14 2018-06-30 Solar power generator Expired - Fee Related JP6564984B1 (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
CN201810457431.9A CN108599697A (en) 2018-05-14 2018-05-14 A kind of device of solar generating
CN201810457431.9 2018-05-14

Publications (2)

Publication Number Publication Date
JP6564984B1 true JP6564984B1 (en) 2019-08-28
JP2019201539A JP2019201539A (en) 2019-11-21

Family

ID=63637414

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2018125632A Expired - Fee Related JP6564984B1 (en) 2018-05-14 2018-06-30 Solar power generator

Country Status (2)

Country Link
JP (1) JP6564984B1 (en)
CN (1) CN108599697A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111555703A (en) * 2020-05-19 2020-08-18 河北驷乾新能源科技有限公司 Guide tracked photovoltaic module
CN111900919A (en) * 2020-09-18 2020-11-06 正信光电科技股份有限公司 Self-adjusting device of solar photovoltaic panel
CN112600496A (en) * 2021-01-06 2021-04-02 董可俊 Solar DC compressor
CN114362651A (en) * 2022-01-26 2022-04-15 徐州谷阳新能源科技有限公司 Photovoltaic equipment with all-round absorption sunshine

Families Citing this family (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111464116B (en) * 2020-03-25 2021-02-19 熊红 Integrated angle modulation frame for solar panel
CN113824389A (en) * 2021-08-25 2021-12-21 重庆锦森腾建筑工程咨询有限公司 Photovoltaic adjusting device for dome roof
CN113883456A (en) * 2021-11-03 2022-01-04 倪井兵 Energy-saving environment-friendly LED lamp
CN116315367B (en) * 2023-02-02 2023-11-03 深圳市泰德炜电子科技有限公司 Portable solar energy storage device and energy storage control method thereof

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2005317588A (en) * 2004-04-27 2005-11-10 Kyocera Corp Photovoltaic power generating apparatus
US8609977B2 (en) * 2008-01-29 2013-12-17 Sunpower Corporation Self ballasted celestial tracking apparatus
JP2012119661A (en) * 2010-11-08 2012-06-21 Katsuyo Tawara Rotation platform for solar panel
JP2013089844A (en) * 2011-10-20 2013-05-13 Panasonic Corp Tracking type solar cell device
CN104022724B (en) * 2014-02-21 2016-05-04 谢宏力 A kind of solar energy automatic positioning equipment
TWM491812U (en) * 2014-07-15 2014-12-11 Big Sun Energy Technology Inc Steel-cable-controlling sun-tracking type solar power generation facility with tilted anchor portion
JP2016092969A (en) * 2014-11-05 2016-05-23 株式会社ジェンク Variable angle solar power system
TWM508024U (en) * 2015-04-08 2015-09-01 Big Sun Energy Technology Inc Semi-movable cable connecting assembly and solar tracking equipment using the same

Cited By (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN111555703A (en) * 2020-05-19 2020-08-18 河北驷乾新能源科技有限公司 Guide tracked photovoltaic module
CN111555703B (en) * 2020-05-19 2023-01-06 河北驷乾新能源科技股份有限公司 Guide tracked photovoltaic module
CN111900919A (en) * 2020-09-18 2020-11-06 正信光电科技股份有限公司 Self-adjusting device of solar photovoltaic panel
CN111900919B (en) * 2020-09-18 2024-04-09 正信光电科技股份有限公司 Self-adjusting device of solar photovoltaic panel
CN112600496A (en) * 2021-01-06 2021-04-02 董可俊 Solar DC compressor
CN114362651A (en) * 2022-01-26 2022-04-15 徐州谷阳新能源科技有限公司 Photovoltaic equipment with all-round absorption sunshine
CN114362651B (en) * 2022-01-26 2022-11-11 徐州谷阳新能源科技有限公司 Photovoltaic equipment with all-round absorption sunshine

Also Published As

Publication number Publication date
CN108599697A (en) 2018-09-28
JP2019201539A (en) 2019-11-21

Similar Documents

Publication Publication Date Title
JP6564984B1 (en) Solar power generator
JP6551711B1 (en) Energy-saving solar power generator
CN207354199U (en) Base station based on the power supply of solar energy single shaft automatic tracing
CN209893282U (en) Adjustable support piece of outdoor solar lamp body
CN206637537U (en) A kind of solar street light of automatic sun-tracking
CN105099353A (en) Solar power generation device
CN213333393U (en) Wind-solar complementary monitoring equipment
CN105576802A (en) Household photovoltaic power generation system
CN205938954U (en) Wind and solar hybrid street lamp
CN210537114U (en) Transmitter instrument shell with solar power supply
CN210600837U (en) Base-adjustable photovoltaic power generation device capable of improving power generation efficiency
CN210297869U (en) Intelligent monitoring camera utilizing environment-friendly energy
CN204832972U (en) Solar energy two dimension tracking means
CN107543108A (en) Solar LED illumination of plant building lamp
CN209402469U (en) A kind of power supply module of solar recharging
CN208890701U (en) Energy-saving monitoring system
CN209375543U (en) A kind of solar energy mounting rack convenient for adjusting
CN210273937U (en) Concrete roof photovoltaic power station support
CN212063896U (en) Chargeable microelectronic component circuit control panel
CN213783190U (en) Solar energy utilization conversion device based on lens matrix
CN209105096U (en) A kind of tin perovskite inorganic hole solar battery
CN216447049U (en) Wind energy and photovoltaic energy storage integrated device
CN204203777U (en) Sphere type solar energy Blast Furnace Top Gas Recovery Turbine Unit (TRT)
CN208723839U (en) A kind of universal sun-following device
CN217741641U (en) Solar power generation device with automatic control function

Legal Events

Date Code Title Description
A871 Explanation of circumstances concerning accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A871

Effective date: 20181101

A975 Report on accelerated examination

Free format text: JAPANESE INTERMEDIATE CODE: A971005

Effective date: 20190222

A131 Notification of reasons for refusal

Free format text: JAPANESE INTERMEDIATE CODE: A131

Effective date: 20190327

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A523

Effective date: 20190331

TRDD Decision of grant or rejection written
A01 Written decision to grant a patent or to grant a registration (utility model)

Free format text: JAPANESE INTERMEDIATE CODE: A01

Effective date: 20190515

A711 Notification of change in applicant

Free format text: JAPANESE INTERMEDIATE CODE: A711

Effective date: 20190612

A61 First payment of annual fees (during grant procedure)

Free format text: JAPANESE INTERMEDIATE CODE: A61

Effective date: 20190612

A521 Request for written amendment filed

Free format text: JAPANESE INTERMEDIATE CODE: A821

Effective date: 20190614

R150 Certificate of patent or registration of utility model

Ref document number: 6564984

Country of ref document: JP

Free format text: JAPANESE INTERMEDIATE CODE: R150

LAPS Cancellation because of no payment of annual fees