CN209562483U - Single column angle adjustable solar photovoltaic support - Google Patents

Single column angle adjustable solar photovoltaic support Download PDF

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Publication number
CN209562483U
CN209562483U CN201920284959.0U CN201920284959U CN209562483U CN 209562483 U CN209562483 U CN 209562483U CN 201920284959 U CN201920284959 U CN 201920284959U CN 209562483 U CN209562483 U CN 209562483U
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adjustment
column
hole
solar photovoltaic
angle
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马全涛
韩华
杨智华
林明杰
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Shandong Elephant Power Engineering Co ltd
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Shandong Elephant Energy Technology Co Ltd
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • 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
    • 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

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Abstract

单柱式角度可调的太阳能光伏支架,涉及新能源技术领域,特别是属于一种单柱式角度可调的太阳能光伏支架。其特征在于,包括支架本体,所述的支架本体包括在钢筋混凝土基础构件上安装的立柱,立柱上联结有立杆,所述的立杆的顶端与放置太阳能光伏板的斜梁铰接,立柱上设置有角度调节单元,所述的角度调节单元包括调节臂,调节臂上开设有调节孔,立柱开设有贯通的连接槽,且立柱与连接槽垂直的方向上开设有固定孔,调节臂贯穿连接槽,且调节孔、固定孔相配合固定,其中,调节臂的左右两端分别通过支撑架与斜梁固定连接。通过太阳光垂直照射太阳能光伏板获得最大发电量,提高发电效率,具有实用性强的积极效果。

A single-column angle-adjustable solar photovoltaic support relates to the field of new energy technology, in particular to a single-column angle-adjustable solar photovoltaic support. It is characterized in that it includes a bracket body, the bracket body includes a column installed on the reinforced concrete basic component, a column is connected to the column, and the top of the column is hinged to the inclined beam on which the solar photovoltaic panel is placed. An angle adjustment unit is provided, the angle adjustment unit includes an adjustment arm, an adjustment hole is opened on the adjustment arm, a connecting groove is opened through the column, and a fixing hole is opened in the direction perpendicular to the column and the connection groove, and the adjustment arm penetrates through the connection groove, and the adjustment hole and the fixing hole are matched and fixed, wherein, the left and right ends of the adjustment arm are respectively fixedly connected to the inclined beam through the support frame. By vertically irradiating the solar photovoltaic panels with sunlight, the maximum power generation can be obtained, and the power generation efficiency can be improved, which has a positive effect of strong practicability.

Description

单柱式角度可调的太阳能光伏支架Single column angle adjustable solar photovoltaic support

技术领域technical field

本实用新型涉及新能源技术领域,特别是属于一种单柱式角度可调的太阳能光伏支架。The utility model relates to the technical field of new energy sources, in particular to a single-column angle-adjustable solar photovoltaic bracket.

背景技术Background technique

太阳能是一种清洁环保而且可再生的能源。与传统煤电能源相比,可以大大降低碳排放量,减少环境污染,减少生态破坏,节约社会资源。太阳能的应用通常通过太阳能电池板,将吸收的太阳光能转换成电能。太阳能电池板通常通过支架设置在楼顶或地面上。当太阳入射光线方向垂直于太阳能电池板时,太阳能电池板发电效率最高,由于地球的自转及绕日公转等因素的影响,太阳光的方向是随着时间推移不断变化的。因此,随着太阳光的方向的变化,需要对太阳能电池板进行角度调节,才能获得最大的发电效率。Solar energy is a clean, environmentally friendly and renewable energy source. Compared with traditional coal power energy, it can greatly reduce carbon emissions, reduce environmental pollution, reduce ecological damage, and save social resources. The application of solar energy usually converts the absorbed sunlight into electrical energy through solar panels. Solar panels are usually installed on the roof or on the ground through brackets. When the direction of the sun's incident light is perpendicular to the solar panel, the solar panel has the highest power generation efficiency. Due to the influence of factors such as the rotation of the earth and its revolution around the sun, the direction of sunlight changes over time. Therefore, as the direction of sunlight changes, it is necessary to adjust the angle of the solar panel in order to obtain the maximum power generation efficiency.

然而,目前所使用的支架通常为固定式结构,太阳能电池板固定在支架上后,只能以一个固定的倾角进行放置,当太阳光照射方向改变时,太阳能电池板的发电量会受到很大的影响。However, the brackets currently used are usually fixed structures. After the solar panels are fixed on the brackets, they can only be placed at a fixed angle. When the direction of sunlight changes, the power generation of the solar panels will be greatly affected. Impact.

发明内容Contents of the invention

本实用新型的目的即在于提供一种单柱式角度可调的太阳能光伏支架,以达到提高发电效率以保证最大发电量的目的。The purpose of the utility model is to provide a single-column angle-adjustable solar photovoltaic support to achieve the purpose of improving power generation efficiency and ensuring maximum power generation.

本实用新型所提供的单柱式角度可调的太阳能光伏支架,其特征在于,包括支架本体,所述的支架本体包括在钢筋混凝土基础构件上安装的立柱,立柱上联结有立杆,所述的立杆的顶端与放置太阳能光伏板的斜梁铰接,立柱上设置有角度调节单元,所述的角度调节单元包括调节臂,调节臂上开设有调节孔,立柱开设有贯通的连接槽,且立柱与连接槽垂直的方向上开设有固定孔,调节臂贯穿连接槽,且调节孔、固定孔相配合固定,其中,调节臂的左右两端分别通过支撑架与斜梁固定连接。The single-column angle-adjustable solar photovoltaic bracket provided by the utility model is characterized in that it includes a bracket body, and the bracket body includes a column installed on a reinforced concrete basic component, and a vertical pole is connected to the column. The top of the pole is hinged to the inclined beam on which the solar photovoltaic panel is placed, and an angle adjustment unit is arranged on the pole, and the angle adjustment unit includes an adjustment arm, an adjustment hole is opened on the adjustment arm, and a through connection groove is opened on the pole, and A fixing hole is provided in the direction perpendicular to the column and the connecting groove, and the adjusting arm runs through the connecting groove, and the adjusting hole and the fixing hole are matched and fixed, wherein the left and right ends of the adjusting arm are respectively fixedly connected to the inclined beam through the support frame.

进一步的,调节臂上开设有五个调节孔,五个调节孔形成以立杆顶端与斜梁的铰接点为圆心,半径相同的圆,且相邻两调节孔构成11度的夹角。Further, five adjustment holes are provided on the adjustment arm, and the five adjustment holes form a circle with the same radius centered at the hinge point between the top of the vertical rod and the inclined beam, and two adjacent adjustment holes form an included angle of 11 degrees.

进一步的,在调节臂的一端连接有调节杆体。Further, an adjusting rod is connected to one end of the adjusting arm.

进一步的,调节孔采用腰型孔,包括第一调节孔、第二调节孔、第三调节孔、第四调节孔以及第五调节孔,相邻两调节孔之间以36天为一个调整周期,其中,在第一调节孔与立柱的固定状态下,所对应的调整后的初始时间为冬至日;在第五调节孔与立柱的固定状态下,所对应的调整后的初始时间为夏至日。Further, the adjustment holes adopt waist-shaped holes, including the first adjustment hole, the second adjustment hole, the third adjustment hole, the fourth adjustment hole and the fifth adjustment hole, and the adjustment period between two adjacent adjustment holes is 36 days , wherein, in the fixed state of the first adjustment hole and the column, the corresponding adjusted initial time is the winter solstice; in the fixed state of the fifth adjustment hole and the column, the corresponding adjusted initial time is the summer solstice .

本实用新型所提供的单柱式角度可调的太阳能光伏支架,可以通过调节杆体的作用,调整调节臂改变太阳能光伏板与水平面之间夹角,进而控制当下时间太阳光线与太阳能光伏板之间的角度,通过太阳光垂直照射太阳能光伏板获得最大发电量,提高发电效率,具有实用性强的积极效果。The single-column angle-adjustable solar photovoltaic support provided by the utility model can adjust the angle between the solar photovoltaic panel and the horizontal plane by adjusting the adjustment arm through the action of the rod body, and then control the current time between the sun's rays and the solar photovoltaic panel. The maximum power generation can be obtained by vertically irradiating the solar photovoltaic panel with sunlight, and the power generation efficiency can be improved, which has a positive effect of strong practicability.

附图说明Description of drawings

附图部分公开了本实用新型具体实施例,其中,The accompanying drawings partly discloses the specific embodiment of the utility model, wherein,

图1为本实用新型的结构示意图;Fig. 1 is the structural representation of the utility model;

图2为本实用新型立杆顶部的局部放大示意图;Fig. 2 is the partially enlarged schematic view of the top of the utility model pole;

图3为本实用新型支撑架端部的局部放大示意图;Fig. 3 is the partially enlarged schematic diagram of the end of the support frame of the present invention;

图4为本实用新型斜梁与太阳能光伏板连接处的局部放大图;Fig. 4 is a partial enlarged view of the connection between the inclined beam of the utility model and the solar photovoltaic panel;

图5为本实用新型调节臂的结构示意图;Fig. 5 is the structural representation of the utility model regulating arm;

图6为本实用新型五个调节孔分别与立柱固定时的调整状态图。Fig. 6 is a diagram of the adjustment state when the five adjustment holes of the utility model are respectively fixed to the columns.

具体实施方式Detailed ways

如图1-6所示,本实用新型所提供的单柱式角度可调的太阳能光伏支架,包括支架本体,支架本体包括在钢筋混凝土基础构件8上依次安装的立柱1以及立柱上方的立杆2。立杆的顶端与放置太阳能光伏板4的斜梁3铰接。在立柱上设置有角度调节单元,角度调节单元包括调节臂5,调节臂上开设有调节孔,在立柱上开设有左右贯通的连接槽,且立柱与连接槽垂直的方向上开设有固定孔6,调节臂贯穿连接槽,且调节孔、固定孔通过螺栓配合固定,其中,调节臂的左右两端分别通过支撑架7与斜梁固定联结。具体地,调节臂上开设有五个调节孔,五个调节孔形成以立杆顶端与斜梁的铰接点为圆心,半径相同的圆,且相邻两调节孔构成11度的夹角,根据测算,能够通过在调节不同调节孔的在立柱上的固定位置,调整太阳能光伏板与与水平面的夹角,以保证太阳能光线的垂直照射,进而提高太阳能光伏板的发电效率,增大太阳能光伏板的发电量。优选地,调节孔采用腰型孔,当然,在具体实施例中,立柱上所开设的固定孔也可以采用腰型孔,以便于具体实施应用过程中的灵活性紧固。在本实施例中,调节孔包括第一调节孔5-1、第二调节孔5-2、第三调节孔5-3、第四调节孔5-4以及第五调节孔5-5,且相邻的两调节孔之间以36天为一个时间调整周期,其中,在第一调节孔与立柱的固定状态下,所对应的调整后的初始时间为冬至日;在第五调节孔与立柱的固定状态下,所对应的调整后的初始时间为夏至日。As shown in Figures 1-6, the single-column angle-adjustable solar photovoltaic bracket provided by the utility model includes a bracket body, and the bracket body includes a column 1 sequentially installed on a reinforced concrete basic component 8 and a vertical pole above the column 2. The top of the pole is hinged to the inclined beam 3 on which the solar photovoltaic panel 4 is placed. An angle adjustment unit is arranged on the column, the angle adjustment unit includes an adjustment arm 5, an adjustment hole is provided on the adjustment arm, a connecting groove through which the left and right sides are opened on the column, and a fixing hole 6 is provided on the vertical direction of the column and the connection groove , the adjustment arm runs through the connecting groove, and the adjustment hole and the fixing hole are fixed by bolts, wherein, the left and right ends of the adjustment arm are fixedly connected to the inclined beam through the support frame 7 respectively. Specifically, five adjustment holes are opened on the adjustment arm, and the five adjustment holes form a circle with the same radius centered on the hinge point between the top of the vertical rod and the inclined beam, and two adjacent adjustment holes form an included angle of 11 degrees, according to It is estimated that by adjusting the fixed position of different adjustment holes on the column, the angle between the solar photovoltaic panel and the horizontal plane can be adjusted to ensure the vertical irradiation of solar light, thereby improving the power generation efficiency of the solar photovoltaic panel and increasing the size of the solar photovoltaic panel. of power generation. Preferably, the adjustment hole is a waist-shaped hole. Of course, in a specific embodiment, the fixing hole on the column can also be a waist-shaped hole, so as to facilitate flexible fastening during the application process. In this embodiment, the adjustment holes include a first adjustment hole 5-1, a second adjustment hole 5-2, a third adjustment hole 5-3, a fourth adjustment hole 5-4 and a fifth adjustment hole 5-5, and Between two adjacent adjustment holes, 36 days is used as a time adjustment cycle, wherein, in the fixed state of the first adjustment hole and the column, the corresponding adjusted initial time is the winter solstice day; between the fifth adjustment hole and the column In the fixed state of , the corresponding adjusted initial time is the summer solstice.

此外,为了便于调节臂的调节,在调节臂的一端还设置有调节杆体9。具体设置时,调节杆体的顶端开设有螺栓孔,对应调节臂的一端部设置的连接孔10,使调节杆体的顶端部通过螺栓联结,固定安装在调节臂的一端部。In addition, in order to facilitate the adjustment of the adjustment arm, an adjustment rod body 9 is also provided at one end of the adjustment arm. During specific arrangement, the top of the adjusting rod body is provided with a bolt hole, corresponding to the connection hole 10 provided at one end of the adjusting arm, so that the top end of the adjusting rod body is connected by bolts and fixedly installed on one end of the adjusting arm.

本装置在具体使用时,包括以下步骤:When the device is used specifically, the following steps are included:

步骤1:冬至日当天,通过调节杆体转动调节臂,使调节臂上的第一调节孔与立柱上的固定孔配合联结固定;Step 1: On the day of the winter solstice, turn the adjusting arm through the adjusting rod, so that the first adjusting hole on the adjusting arm is connected with the fixing hole on the column;

步骤2:36天后,通过调节杆体转动调节臂,使调节臂上的第二调节孔与立柱上的固定孔配合联结固定,按36天的时间调整周期依次调整转动调节臂,并依次配合调节臂上的调节孔与立柱的上固定孔的联结固定,使得第三调节孔、第四调节孔分别与立柱上的固定孔配合并联结固定,直至调节臂上的第五调节孔与立柱上的固定孔配合,此时,第五调节孔与立柱上的固定孔联结固定后所对应调整后的初始时间为夏至日;Step 2: After 36 days, turn the adjusting arm by adjusting the rod body, so that the second adjusting hole on the adjusting arm is connected with the fixing hole on the column, and adjust and rotate the adjusting arm in turn according to the 36-day adjustment cycle, and then cooperate with the adjusting arm in turn The connection and fixation of the upper adjustment hole and the upper fixing hole of the column makes the third adjustment hole and the fourth adjustment hole cooperate with the fixing hole on the column respectively and connect and fix until the fifth adjustment hole on the adjustment arm is fixed with the fixing hole on the column. At this time, after the fifth adjustment hole is connected and fixed with the fixing hole on the column, the corresponding adjusted initial time is the summer solstice;

步骤3:反方向转动调节臂,以36天的时间调整周期,从第五调节孔依次经36天的时间调整周期反方向转动调节臂,并依次配合调节臂上的调节孔与立柱的上固定孔的联结固定,使得调节臂上的第四调节孔、第三调节孔分别与立柱上的固定孔配合并联结固定,直至调节臂上的第一调节孔与立柱上的固定孔配合,此时,第一调节孔与立柱上的固定孔联结固定后所对应调整后的初始时间为冬至日。Step 3: Turn the adjusting arm in the opposite direction to adjust the cycle in 36 days, turn the adjusting arm in the opposite direction from the fifth adjusting hole through the 36-day adjusting cycle, and cooperate with the adjusting hole on the adjusting arm and the upper fixing of the column in turn The connection and fixation of the holes makes the fourth adjustment hole and the third adjustment hole on the adjustment arm cooperate with the fixing hole on the column respectively and connect and fix until the first adjustment hole on the adjustment arm cooperates with the fixing hole on the column. After the first adjustment hole is connected and fixed with the fixing hole on the column, the corresponding adjusted initial time is the winter solstice day.

通过本装置的使用,能够人工调整光伏板与太阳光线的角度,使得太阳光线接近于垂直照射太阳光伏板的状态,从而获得最大发电量,提高发电效率,具有简便易行、实用性强的效果。Through the use of this device, the angle between the photovoltaic panel and the sun's rays can be manually adjusted, so that the sun's rays are close to the state of vertically irradiating the solar photovoltaic panel, so as to obtain the maximum power generation and improve the power generation efficiency, which is simple and practical. .

Claims (4)

1.一种单柱式角度可调的太阳能光伏支架,其特征在于,包括支架本体,所述的支架本体包括在钢筋混凝土基础构件上安装的立柱,立柱上联结有立杆,所述的立杆的顶端与放置太阳能光伏板的斜梁铰接,立柱上设置有角度调节单元,所述的角度调节单元包括调节臂,调节臂上开设有调节孔,立柱开设有贯通的连接槽,且立柱与连接槽垂直的方向上开设有固定孔,调节臂贯穿连接槽,且调节孔、固定孔相配合固定,其中,调节臂的左右两端分别通过支撑架与斜梁固定连接。1. A single-column angle-adjustable solar photovoltaic support, characterized in that it includes a support body, and the support body includes a column installed on a reinforced concrete base member, and a vertical pole is connected to the vertical column, and the vertical column The top of the rod is hinged to the inclined beam on which the solar photovoltaic panel is placed, and an angle adjustment unit is arranged on the column. The angle adjustment unit includes an adjustment arm, and an adjustment hole is provided on the adjustment arm. A fixing hole is provided in the vertical direction of the connecting groove, and the adjusting arm runs through the connecting groove, and the adjusting hole and the fixing hole are matched and fixed, wherein, the left and right ends of the adjusting arm are respectively fixedly connected to the inclined beam through the support frame. 2.根据权利要求1所述的单柱式角度可调的太阳能光伏支架,其特征还在于,调节臂上开设有五个调节孔,五个调节孔形成以立杆顶端与斜梁的铰接点为圆心,半径相同的圆,且相邻两调节孔构成11度的夹角。2. The single-column angle-adjustable solar photovoltaic support according to claim 1, further characterized in that five adjustment holes are provided on the adjustment arm, and the five adjustment holes form the hinge points between the top of the vertical pole and the inclined beam. is the center of the circle, a circle with the same radius, and two adjacent adjustment holes form an included angle of 11 degrees. 3.根据权利要求1所述的单柱式角度可调的太阳能光伏支架,其特征还在于,在调节臂的一端连接有调节杆体。3. The single-column angle-adjustable solar photovoltaic bracket according to claim 1, further characterized in that an adjusting rod is connected to one end of the adjusting arm. 4.根据权利要求1-3中任意一项所述的单柱式角度可调的太阳能光伏支架,其特征还在于,调节孔采用腰型孔,包括第一调节孔、第二调节孔、第三调节孔、第四调节孔以及第五调节孔,相邻两调节孔之间以36天为一个调整周期,其中,在第一调节孔与立柱的固定状态下,所对应的调整后的初始时间为冬至日;在第五调节孔与立柱的固定状态下,所对应的调整后的初始时间为夏至日。4. The single-column angle-adjustable solar photovoltaic support according to any one of claims 1-3, further characterized in that the adjustment hole adopts a waist-shaped hole, including a first adjustment hole, a second adjustment hole, a second adjustment hole, and a second adjustment hole. The three adjustment holes, the fourth adjustment hole and the fifth adjustment hole, the adjustment period between two adjacent adjustment holes is 36 days, wherein, in the fixed state of the first adjustment hole and the column, the corresponding adjusted initial The time is the winter solstice; in the fixed state of the fifth adjustment hole and the column, the corresponding adjusted initial time is the summer solstice.
CN201920284959.0U 2019-03-07 2019-03-07 Single column angle adjustable solar photovoltaic support Active CN209562483U (en)

Priority Applications (1)

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CN201920284959.0U CN209562483U (en) 2019-03-07 2019-03-07 Single column angle adjustable solar photovoltaic support

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Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109802629A (en) * 2019-03-07 2019-05-24 山东大象能源科技有限公司 The solar photovoltaic bracket and its adjusting method of open side type adjustable angle
CN114337507A (en) * 2021-12-31 2022-04-12 锦州阳光能源有限公司 Foldable solar cell module

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN109802629A (en) * 2019-03-07 2019-05-24 山东大象能源科技有限公司 The solar photovoltaic bracket and its adjusting method of open side type adjustable angle
CN109802629B (en) * 2019-03-07 2024-02-09 山东大象能源科技有限公司 Single-column type angle-adjustable solar photovoltaic bracket and adjusting method thereof
CN114337507A (en) * 2021-12-31 2022-04-12 锦州阳光能源有限公司 Foldable solar cell module
CN114337507B (en) * 2021-12-31 2024-01-16 锦州阳光能源有限公司 Foldable solar cell module

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