JP2005268671A - Tracking type solar panel operating apparatus - Google Patents

Tracking type solar panel operating apparatus Download PDF

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Publication number
JP2005268671A
JP2005268671A JP2004081774A JP2004081774A JP2005268671A JP 2005268671 A JP2005268671 A JP 2005268671A JP 2004081774 A JP2004081774 A JP 2004081774A JP 2004081774 A JP2004081774 A JP 2004081774A JP 2005268671 A JP2005268671 A JP 2005268671A
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Prior art keywords
plate
solar panel
guide rail
angle
bracket
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JP2004081774A
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JP3557204B1 (en
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Junichi Watanabe
順一 渡邉
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HIJI DENKI KK
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HIJI DENKI KK
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S30/00Arrangements for moving or orienting solar heat collector modules
    • F24S30/40Arrangements for moving or orienting solar heat collector modules for rotary movement
    • F24S30/45Arrangements for moving or orienting solar heat collector modules for rotary movement with two rotation axes
    • F24S30/452Vertical primary axis
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S30/00Arrangements for moving or orienting solar heat collector modules
    • F24S2030/10Special components
    • F24S2030/13Transmissions
    • F24S2030/135Transmissions in the form of threaded elements
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S30/00Arrangements for moving or orienting solar heat collector modules
    • F24S2030/10Special components
    • F24S2030/13Transmissions
    • F24S2030/137Transmissions for deriving one movement from another one, e.g. for deriving elevation movement from azimuth movement
    • 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
    • Y02B10/20Solar thermal
    • 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
    • Y02E10/40Solar thermal energy, e.g. solar towers
    • Y02E10/47Mountings or tracking

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  • Engineering & Computer Science (AREA)
  • Physics & Mathematics (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Sustainable Energy (AREA)
  • Thermal Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Combustion & Propulsion (AREA)
  • Mechanical Engineering (AREA)
  • General Engineering & Computer Science (AREA)
  • Photovoltaic Devices (AREA)

Abstract

<P>PROBLEM TO BE SOLVED: To provide a simply structured tracking type solar panel operating apparatus. <P>SOLUTION: In the tracking type solar panel operating apparatus, a rotation axis 4 of a turn table 3, to which a driving gear 2 is fixed, is rotatably mounted to a hollow section of a tubular column 1; a motor 6 equipped with a gear 5 which engages with the driving gear 2 is mounted to the column 1; a solar panel 8 is rotatably mounted to the top surface of the turn table 3; a guide rail 10 is mounted to the column 1; a first plate 11 is horizontally disposed which moves along the guide rail 10; the bottom end of an extendable angle-control screw stock 12 is mounted to the front end of the first plate 11 to stand; the top end of the angle-control screw stock 12 is mounted to a lower position of the center section of the underside of the solar panel 8; and a second plate 14, the front end of which reaches at least the position of the first plate 11 when the first plate 11 is at the lowermost part of the guide rail 10, is mounted to the turn table 3. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

本発明は追尾型ソ−ラパネル稼動装置に関するものである。 The present invention relates to a tracking type solar panel operating device.

従来、追尾型太陽光発電システムのソ−ラパネル稼動装置については、各種構造のものがが開発され、実用化されている(例えば、特許文献1,2。)が、構造が複雑であり、それに伴って価格も高くなるという問題点があった。
特開2003−322418号公報 特開平11−307802号公報
Conventionally, various solar panel operating devices for tracking solar power generation systems have been developed and put into practical use (for example, Patent Documents 1 and 2), but the structure is complicated, and Along with this, there was a problem that the price also increased.
JP 2003-322418 A JP-A-11-307802

この発明は、背景技術で記述した問題点を解消するためになされたもので、構造が簡単な追尾型ソ−ラパネル稼動装置の提供を目的とするものである。 The present invention has been made to solve the problems described in the background art, and an object thereof is to provide a tracking type solar panel operating device having a simple structure.

この発明の追尾型ソ−ラパネル稼動装置は、筒状の支柱の中空部に、上方に駆動用歯車を固定したタ−ンテ−ブルの回転軸を回動可能に装着し、前記駆動用歯車に噛み合う歯車を主軸に装着したモ−タを前記支柱に取付け、前記タ−ンテ−ブルの上面に固定したブラケットに、ソ−ラパネルの裏面の中央部に固定した第一ブラケットを回動可能に連結し、前記モ−タと反対側の前記支柱の円弧状の表面に略逆V字状のガイドレ−ルを設置し、前記ガイドレ−ルに沿って移動する第一プレ−トを水平に設置し、該第一プレ−トの先端部に、伸縮可能な角度調整ねじ棒の下端部を取付け立設し、該角度調整ねじ棒の上端部を、前記ソ−ラパネルの裏面中央部の下方に固定した第二ブラケットに取付け、前記タ−ンテ−ブルの下面先端部に、前記第一プレ−トが前記ガイドレ−ルの最下端に位置しているとき、先端部が少なくとも前記第一プレ−トの位置まで達する第二プレ−トを、該第二プレ−トの裏面が前記第一プレ−トの表面に当接するように設置していることを特徴とするものである。 According to the tracking type solar panel operating device of the present invention, a rotating shaft of a turntable having a driving gear fixed upward is rotatably mounted in a hollow portion of a cylindrical column, and the driving gear is attached to the driving gear. A motor with a meshing gear mounted on the main shaft is attached to the column, and a first bracket fixed to the center of the rear surface of the solar panel is rotatably connected to a bracket fixed to the upper surface of the turntable. Then, a substantially inverted V-shaped guide rail is installed on the arc-shaped surface of the support on the opposite side of the motor, and a first plate that moves along the guide rail is installed horizontally. The lower end portion of the extendable angle adjusting screw rod is attached to the front end portion of the first plate, and the upper end portion of the angle adjusting screw rod is fixed below the center portion of the back surface of the solar panel. The second bracket is attached to the tip of the lower surface of the turn table. When the plate is positioned at the lowermost end of the guide rail, the second plate reaches at least the position of the first plate, and the back surface of the second plate is the first plate. It is characterized by being installed so as to abut on the surface of one plate.

この発明は上述のように構成されているので、次のような効果を呈する。
(1)タ−ンテ−ブルが回転し、第2プレ−トによって第一プレ−トを押出すと、第一プレ−トはガイドレ−ルに沿って上下動し、それに連動して、角度調整ねじ棒も上下動し、ソ−ラパネルの裏面中央部の下方に固定した第二ブラケットを上下動させ、ソ−ラパネルを傾斜させることができる。
(2)角度調整ねじ棒は、伸縮が可能であるので、春分、夏至、秋分、冬至に合わせて、ソ−ラパネルに太陽光がほぼ直角に射し込むように、傾斜角度を適宜に調整することができる。
(3)ソ−ラパネルに太陽光がほぼ直角に射し込むように、ソ−ラパネルの傾斜角度を変えながら、ソ−ラパネルを回転させることができる。
(4)構造が簡単である。
Since the present invention is configured as described above, the following effects are exhibited.
(1) When the turntable rotates and the first plate is pushed out by the second plate, the first plate moves up and down along the guide rail, and the angle is The adjustment screw rod is also moved up and down, and the second bracket fixed below the center of the back surface of the solar panel can be moved up and down to tilt the solar panel.
(2) Since the angle adjusting screw rod can be expanded and contracted, the angle of inclination can be adjusted appropriately so that sunlight shines into the solar panel at a right angle in accordance with the spring equinox, summer solstice, autumn equinox and winter solstice. it can.
(3) The solar panel can be rotated while changing the inclination angle of the solar panel so that sunlight enters the solar panel at a substantially right angle.
(4) The structure is simple.

構造が簡単な追尾型ソ−ラパネル稼動装置の提供という目的を、リンク機構により、部品数を増やすことなく、実現できた。 The purpose of providing a tracking type solar panel operating device with a simple structure could be realized without increasing the number of parts by a link mechanism.

この発明の実施の一例を図面を参照しながら説明する。図1に示すように、筒状の支柱1の中空部に、上方に駆動用歯車2を固定したタ−ンテ−ブル3の回転軸4を回動可能に装着している。 An embodiment of the present invention will be described with reference to the drawings. As shown in FIG. 1, a rotating shaft 4 of a turntable 3 having a driving gear 2 fixed thereon is rotatably mounted in a hollow portion of a cylindrical column 1.

駆動用歯車2に噛み合う歯車5を主軸に装着したモ−タ6を、図1に示すように、支柱1に取付けている。したがって、モ−タ6を駆動させると、歯車5が回転し、歯車5に噛み合っている駆動用歯車2が回転し、タ−ンテ−ブル3を回転させることができるようになっている。なお、モ−タ6は、単相100W程度のブレ−キ付きギヤモ−タが適用できる。 As shown in FIG. 1, a motor 6 having a gear 5 meshing with a driving gear 2 mounted on a main shaft is attached to a column 1. Accordingly, when the motor 6 is driven, the gear 5 is rotated, the driving gear 2 meshed with the gear 5 is rotated, and the turn table 3 can be rotated. As the motor 6, a gear motor with a brake of about 100 W of single phase can be applied.

タ−ンテ−ブル3の上面に固定したブラケット7に、ソ−ラセルを配設したソ−ラパネル8の裏面の中央部に固定した第一ブラケット9を回動可能に連結している。したがって、ソ−ラパネル8は、図1において、矢印a1に示すように、上下に回動できるようになっている。 A first bracket 9 fixed to the center of the back surface of a solar panel 8 provided with solar cells is rotatably connected to a bracket 7 fixed to the upper surface of the turntable 3. Therefore, the solar panel 8 can be turned up and down as shown by an arrow a1 in FIG.

モ−タ6と反対側の支柱1の円弧状の表面に、図1〜図2に示すように、略逆V字状のガイドレ−ル10を設置している。
図2(a)は、支柱1に設置しているガ−ドレ−ルの広がりを示す平面図で、図2(b)は展開図である。なお、b1は夏至日の出、b2は春分・秋分日の出、b3は冬至日の出、b4は冬至日の入り、b5は春分・秋分日の入り、b6は夏至日の入りの各位置、Sは南を示し、b1〜b6は、ガイドレ−ル10に沿って移動する第一プレ−ト11の出発点と終点をそれぞれ示している。例えば、夏至では、第一プレ−ト11は、b1から出発し、ガイドレ−ル10を登り、正午にSに達し、正午を過ぎると下りb6で停止するようになっている。なお、図1において、15は、コロで第1プレ−ト11の基部に、ガイドレ−ル10を挟むように取り付けている。
As shown in FIGS. 1 and 2, a substantially inverted V-shaped guide rail 10 is installed on the arc-shaped surface of the support column 1 on the side opposite to the motor 6.
FIG. 2A is a plan view showing the spread of the guard rail installed on the support column 1, and FIG. 2B is a development view. In addition, b1 is the summer solstice sunrise, b2 is the spring solstice sunrise, b3 is the winter solstice sunrise, b4 is the winter solstice sunset, b5 is the spring solstice / autumn sunset, b6 is the summer solstice sunset, S is the south, b1 to b6 are The starting point and the ending point of the first plate 11 moving along the guide rail 10 are shown. For example, at the summer solstice, the first plate 11 starts from b1, climbs up the guide rail 10, reaches S at noon, and stops at db6 after noon. In FIG. 1, reference numeral 15 denotes a roller attached to the base of the first plate 11 so as to sandwich the guide rail 10 therebetween.

ガイドレ−ル10に沿って移動する第一プレ−ト11を水平に設置し、第一プレ−ト11の先端部aに、伸縮可能な角度調整ねじ棒12の下端部を取付け立設し、角度調整ねじ棒12の上端部を、ソ−ラパネル8の裏面中央部の下方に固定した第二ブラケット13に取付けている。 The first plate 11 that moves along the guide rail 10 is installed horizontally, and the lower end portion of the angle-adjustable screw rod 12 that can be expanded and contracted is attached to the front end portion a of the first plate 11 and erected. The upper end portion of the angle adjusting screw rod 12 is attached to the second bracket 13 fixed below the center portion of the back surface of the solar panel 8.

伸縮可能な角度調整ねじ棒12は、例えば、図示は省略したが、互いに逆ねじを刻設した2本のボルトを適宜長のナットに螺着し、ナットの回転方向によって、2本のボルトを接近又は離隔させることによって、図1において矢印a2に示すように、伸縮できるようになっている。 The angle-adjustable screw rod 12 that can be expanded and contracted is, for example, omitted in the drawing, but two bolts with oppositely threaded screws are screwed onto an appropriately long nut, and the two bolts are attached depending on the rotation direction of the nut. By approaching or separating, as shown by an arrow a2 in FIG. 1, it can be expanded and contracted.

タ−ンテ−ブル3の下面先端部に、図1に示すように、第一プレ−ト11がガイドレ−ル10の最下端(図2(a)におけるb1の位置)に位置しているとき、先端部が少なくとも第一プレ−ト11の位置まで達する第二プレ−ト14を、第二プレ−ト14の裏面が第一プレ−ト11の表面に当接するように設置している。 When the first plate 11 is positioned at the lowermost end of the guide rail 10 (position b1 in FIG. 2A) at the tip of the lower surface of the turntable 3 as shown in FIG. The second plate 14 whose tip end reaches at least the position of the first plate 11 is installed so that the back surface of the second plate 14 abuts the surface of the first plate 11.

したがって、モ−タ6を駆動し、タ−ンテ−ブル3が回転すると、第2プレ−ト14によって第一プレ−ト11が押出され、第一プレ−ト11はガイドレ−ル10に沿って上下動し、それに連動して、角度調整ねじ棒12が上下動し、ソ−ラパネル8の裏面中央部の下方に固定した第二ブラケット13を上下動させ、ソ−ラパネル8の傾斜角度を時々刻々と変化させることができるようになっている。 Accordingly, when the motor 6 is driven and the turn table 3 rotates, the first plate 11 is pushed out by the second plate 14, and the first plate 11 is moved along the guide rail 10. The angle adjusting screw rod 12 is moved up and down in conjunction with this, and the second bracket 13 fixed below the center of the back surface of the solar panel 8 is moved up and down, so that the inclination angle of the solar panel 8 is increased. It can be changed from moment to moment.

本願の追尾型ソ−ラパネル稼動装置を設置する際には、その地方の春分・秋分、夏至、冬至の日の出、日の入りの時間、太陽の軌道を確認しておき、例えば、その地方の夏至の日の出が午前5時で日の入りが午後7時の場合の例で説明すると、午前5時に、ソ−ラパネル8が東の方向を向き、かつ太陽光がソ−ラパネル8に直角に当たるように、角度調整ねじ棒12を調整し、第一プレ−ト11をガイドレ−ル10の最下端(図2(a)におけるb1の位置)に静止させ、正午にガイドレ−ル10のS点に達し、日の入りの午後7時で該装置の稼動が停止するように、タイマ−によって、モ−タ6の駆動を制御するようにしている。該装置の稼動が停止すると、図示は省略したセンサ−により、モ−タ6が元位置に復帰するようになっている。したがって、モ−タ6の復帰に連動して、第一プレ−ト11も元位置(日の出の位置)に復帰する。 When installing the tracking type solar panel operation device of this application, check the local equinox / autumn, summer solstice, winter solstice sunrise, sunset time, solar orbit, for example, the local summer solstice sunrise In the example of 5 o'clock in the morning and 7 pm in the sunset, the angle adjusting screw is set so that at 5 am the solar panel 8 faces east and the sunlight strikes the solar panel 8 at a right angle. The rod 12 is adjusted, the first plate 11 is stopped at the lowermost end of the guide rail 10 (position b1 in FIG. 2A), reaches the S point of the guide rail 10 at noon, and the afternoon of sunset The driving of the motor 6 is controlled by a timer so that the operation of the apparatus stops at 7 o'clock. When the operation of the apparatus is stopped, the motor 6 is returned to the original position by a sensor (not shown). Accordingly, in conjunction with the return of the motor 6, the first plate 11 also returns to the original position (sunrise position).

春分・秋分、夏至、冬至になると、それぞれ日の出、日の入り時間及び太陽の軌道が変わってくるので、例えば、春分・秋分、夏至、冬至の各1.5ヶ月前に、第一プレ−ト11のガイドレ−ル10における始点及び終点の位置を調整するとともに、例えば、図3に示すように、夏至、冬至、春分・秋分に応じて、ソ−ラパネル8の傾斜角度が変わるように、角度調整ねじ棒12を調整するようにしている。図3の(a)は夏至、(b)は冬至、(c)は春分・秋分の一例で、点線はソ−ラパネル6が最大に傾いたときの状態を示す。 Since the spring, autumn, summer solstice, and winter solstice change, the sunrise, sunset, and solar orbit change. For example, the first plate 11 As shown in FIG. 3, for example, as shown in FIG. 3, the angle adjusting screw adjusts the position of the solar panel 8 so that the inclination angle of the solar panel 8 changes according to the summer solstice, winter solstice, spring equinox, and autumn equinox. The rod 12 is adjusted. 3A shows an example of the summer solstice, FIG. 3B shows an example of the winter solstice, FIG. 3C shows an example of the spring equinox and autumn equinox, and the dotted line shows the state when the solar panel 6 is tilted to the maximum.

なお、これらの調整は、該装置を設置する地方の春分・秋分、夏至、冬至の日の出、日の入りの時間及び太陽の軌道等のデ−タを入力しているプログラムによって、例えば、春分・秋分、夏至、冬至の日の各1.5ヶ月前になると、自動的に調整できるようになっている。 These adjustments can be made by a program that inputs data such as the equinox / autumn of the region where the apparatus is installed, the summer solstice, the sunrise of the winter solstice, the sunset time and the sun's orbit, etc. It can be adjusted automatically at 1.5 months before the summer solstice and winter solstice days.

本例では年4回の調整を行う場合について説明したが、これに限定されるものではなく、調整回数については、適宜に選択できる。 In this example, the case where the adjustment is performed four times a year has been described, but the present invention is not limited to this, and the number of adjustments can be appropriately selected.

設置場所の春分・秋分、夏至、冬至の日の出、日の入りの時間、太陽の軌道のデ−タによってソ−ラパネルの回転角度や傾斜角度を簡単に調整できるので、一般家庭用の追尾型ソ−ラパネル稼動装置として利用できる。 The solar panel rotation angle and tilt angle can be easily adjusted according to the installation location of spring / autumn, summer solstice, winter solstice sunrise, sunset time, and solar trajectory data. It can be used as an operating device.

本発明の一実施例を示す一部切欠側面図Partially cutaway side view showing an embodiment of the present invention ガイドレ−ルの説明図Illustration of guide rail ソ−ラパネルの夏至、冬至、春分・秋分時における傾きの一例を示す説明図Explanatory drawing showing an example of the solar panel's summer solstice, winter solstice, and spring / autumn

符号の説明Explanation of symbols

1 支柱
2 駆動用歯車
3 タ−ンテ−ブル
4 回転軸
5 歯車
6 モ−タ
7 ブラケット
8 ソ−ラパネル
9 第一ブラケット
10 ガイドレ−ル
11 第一プレ−ト
12 角度調整ねじ棒
13 第二ブラケット
14 第2プレ−ト
15 コロ
a 第一プレ−トの先端部
a1,a2 矢印
b1 夏至日の出の位置
b2 春分・秋分日の出の位置
b3 冬至日の出の位置
b4 冬至日の入りの位置
b5 春分・秋分日の入りの位置
b6 夏至日の入りの位置
S 南
DESCRIPTION OF SYMBOLS 1 Support | pillar 2 Drive gear 3 Turn table 4 Rotating shaft 5 Gear 6 Motor 7 Bracket 8 Solar panel 9 First bracket 10 Guide rail 11 First plate 12 Angle adjustment screw rod 13 Second bracket 14 second plate 15 roller a first plate tip a1, a2 arrow b1 summer solstice sunrise position b2 spring equinox / autumn sunrise position b3 winter solstice sunrise position b4 winter solstice sunset position b5 spring equinox / autumn sunset position b6 Summer solstice sunset position S South

Claims (1)

(イ)筒状の支柱(1)の中空部に、上方に駆動用歯車(2)を固定したタ−ンテ−ブル(3)の回転軸(4)を回動可能に装着し、
(ロ)前記駆動用歯車(2)に噛み合う歯車(5)を主軸に装着したモ−タ(6)を前記支柱(1)に取付け、
(ハ)前記タ−ンテ−ブル(3)の上面に固定したブラケット(7)に、ソ−ラパネル(8)の裏面の中央部に固定した第一ブラケット(9)を回動可能に連結し、
(ニ)前記モ−タ(6)と反対側の前記支柱(1)の円弧状の表面に略逆V字状のガイドレ−ル(10)を設置し、
(ホ)前記ガイドレ−ル(10)に沿って移動する第一プレ−ト(11)を水平に設置し、該第一プレ−ト(11)の先端部(a)に、伸縮可能な角度調整ねじ棒(12)の下端部を取付け立設し、該角度調整ねじ棒(12)の上端部を、前記ソ−ラパネル(8)の裏面中央部の下方に固定した第二ブラケット(13)に取付け、
(ヘ)前記タ−ンテ−ブル(3)の下面先端部に、前記第一プレ−ト(11)が前記ガイドレ−ル(10)の最下端に位置しているとき、先端部が少なくとも前記第一プレ−ト(11)の位置まで達する第二プレ−ト(14)を、該第二プレ−ト(14)の裏面が前記第一プレ−ト(11)の表面に当接するように設置している、
以上のことを特徴とする追尾型ソ−ラパネル稼動装置
(A) A rotating shaft (4) of a turntable (3) having a driving gear (2) fixed thereon is rotatably mounted in the hollow portion of the cylindrical support (1).
(B) A motor (6) mounted on the main shaft with a gear (5) meshing with the drive gear (2) is attached to the column (1),
(C) A first bracket (9) fixed to the center of the back surface of the solar panel (8) is rotatably connected to a bracket (7) fixed to the upper surface of the turntable (3). ,
(D) A substantially inverted V-shaped guide rail (10) is installed on the arc-shaped surface of the support (1) opposite to the motor (6);
(E) A first plate (11) that moves along the guide rail (10) is installed horizontally, and an angle at which the tip (a) of the first plate (11) can be expanded and contracted. A second bracket (13) in which the lower end portion of the adjustment screw rod (12) is attached and erected, and the upper end portion of the angle adjustment screw rod (12) is fixed below the center of the back surface of the solar panel (8). Mounted on the
(F) When the first plate (11) is positioned at the lowermost end of the guide rail (10) at the tip of the lower surface of the turntable (3), the tip is at least The second plate (14) reaching the position of the first plate (11) is placed so that the back surface of the second plate (14) contacts the surface of the first plate (11). Are installed,
Tracking type solar panel operating device characterized by the above
JP2004081774A 2004-03-22 2004-03-22 Tracking type solar panel operation device Expired - Fee Related JP3557204B1 (en)

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