CN211908729U - Photovoltaic support and photovoltaic power generation device - Google Patents

Photovoltaic support and photovoltaic power generation device Download PDF

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CN211908729U
CN211908729U CN202020549883.2U CN202020549883U CN211908729U CN 211908729 U CN211908729 U CN 211908729U CN 202020549883 U CN202020549883 U CN 202020549883U CN 211908729 U CN211908729 U CN 211908729U
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photovoltaic
support
carrier
bearing frame
support column
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程熳
罗菁
唐可忱
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Shenzhen Antaike Clean Energy Co ltd
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Shenzhen Antaike Energy And Environmental Protection Co ltd
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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
    • F24S30/42Arrangements for moving or orienting solar heat collector modules for rotary movement with only one rotation axis
    • F24S30/425Horizontal axis
    • 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
    • Y02E10/40Solar 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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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Sustainable Development (AREA)
  • Physics & Mathematics (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

本实用新型公开了一种光伏支架和光伏发电装置。其中,光伏支架包括支撑柱;回转驱动系统,所述回转驱动系统设于所述支撑柱;承载架,所述承载架连接于所述回转驱动系统,所述回转驱动系统驱动所述承载架相对于所述支撑柱转动,所述承载架用以安置太阳能光伏板;以及伸缩组件,所述伸缩组件连接于所述支撑柱和所述承载架,并可使所述承载架限位固定于所述支撑柱。本实用新型技术方案提高了太阳能光伏板安装的稳定性。

Figure 202020549883

This utility model discloses a photovoltaic bracket and a photovoltaic power generation device. The photovoltaic bracket includes a support column; a rotary drive system disposed on the support column; a support frame connected to the rotary drive system, the rotary drive system driving the support frame to rotate relative to the support column, the support frame being used to mount solar photovoltaic panels; and a telescopic component connected to the support column and the support frame, which can limit and fix the support frame to the support column. This utility model improves the stability of solar photovoltaic panel installation.

Figure 202020549883

Description

光伏支架和光伏发电装置Photovoltaic brackets and photovoltaic power generation devices

技术领域technical field

本实用新型涉及光伏支架技术领域,特别涉及一种光伏支架和应用该光伏支架的光伏发电装置。The utility model relates to the technical field of photovoltaic supports, in particular to a photovoltaic support and a photovoltaic power generation device applying the photovoltaic support.

背景技术Background technique

太阳能发电分为光热发电和光伏发电,通常所说的太阳能发电指的是太阳能光伏发电,简称光电。光伏发电是利用半导体界面的光生伏特效应而将光能直接转变为电能的一种技术。Solar power generation is divided into photothermal power generation and photovoltaic power generation. Generally speaking, solar power generation refers to solar photovoltaic power generation, abbreviated as photovoltaic. Photovoltaic power generation is a technology that directly converts light energy into electrical energy by utilizing the photovoltaic effect of the semiconductor interface.

太阳能发电主要依靠太阳能光伏板进行太阳能的吸收,并转换为电能。在光伏发电的过程中,太阳能光伏板一般通过光伏支架进行安装固定。为了使得太阳能光伏板能够根据太阳的照射范围而调节安装角度,故而衍生出了安装角度可以调节的光伏支架,以完成对太阳能光伏板的安装角度的调节。然而,该类光伏支架在受到较大的气流冲击时,容易出现晃动,导致影响了光伏板的安装的稳定性。Solar power mainly relies on solar photovoltaic panels to absorb solar energy and convert it into electrical energy. In the process of photovoltaic power generation, solar photovoltaic panels are generally installed and fixed through photovoltaic brackets. In order to enable the solar photovoltaic panel to adjust the installation angle according to the sun's irradiation range, a photovoltaic bracket with an adjustable installation angle is derived to complete the adjustment of the installation angle of the solar photovoltaic panel. However, when this type of photovoltaic support is impacted by a large airflow, it is prone to shaking, which affects the stability of the installation of photovoltaic panels.

上述内容仅用于辅助理解本申请的技术方案,并不代表承认上述内容是现有技术。The above content is only used to assist the understanding of the technical solutions of the present application, and does not mean that the above content is the prior art.

实用新型内容Utility model content

本实用新型的主要目的是提供一种光伏支架,旨在提高太阳能光伏板安装的稳定性。The main purpose of the utility model is to provide a photovoltaic support, which aims to improve the installation stability of solar photovoltaic panels.

为实现上述目的,本实用新型提出的光伏支架包括:In order to achieve the above purpose, the photovoltaic support proposed by the present utility model includes:

支撑柱;support column;

回转驱动系统,所述回转驱动系统设于所述支撑柱;a slewing drive system, the slewing drive system is arranged on the support column;

承载架,所述承载架连接于所述回转驱动系统,所述回转驱动系统驱动所述承载架相对于所述支撑柱转动,并可使所述承载架限位固定于所述支撑柱,所述承载架用以安置太阳能光伏板;以及a carrier, the carrier is connected to the slewing drive system, the slewing drive system drives the carrier to rotate relative to the support column, and can limit the carrier to the support column, so the carrier for mounting the solar photovoltaic panels; and

伸缩组件,所述伸缩组件连接于所述支撑柱和所述承载架,并可使所述承载架限位固定于所述支撑柱。The telescopic assembly is connected to the support column and the bearing frame, and can limit and fix the bearing frame to the support column.

在本实用新型的一实施例中,所述回转驱动系统包括电机和回转减速器,所述电机设于所述支撑柱,所述回转减速器连接于所述电机,并部分结构插入所述承载架内。In an embodiment of the present invention, the slewing drive system includes a motor and a slewing reducer, the motor is arranged on the support column, the slewing reducer is connected to the motor, and a part of the structure is inserted into the bearing inside the rack.

在本实用新型的一实施例中,所述光伏支架还包括夹持件,所述夹持件套设于承载架的外侧,并使所述承载架夹持固定插入所述承载架内的所述回转减速器。In an embodiment of the present invention, the photovoltaic support further includes a clamping member, the clamping member is sleeved on the outer side of the bearing frame, and the bearing frame is clamped and fixedly inserted into the bearing frame. The rotary reducer.

在本实用新型的一实施例中,所述夹持件包括上夹持座和下夹持座,所述下夹持座可拆卸地连接于所述上夹持座,并和所述上夹持座相配合套设于承载架的外侧。In an embodiment of the present invention, the clamping member includes an upper clamping base and a lower clamping base, and the lower clamping base is detachably connected to the upper clamping base and communicates with the upper clamping base. The holder is matched and sleeved on the outer side of the bearing frame.

在本实用新型的一实施例中,所述伸缩组件包括伸缩组件、活塞杆以及驱动件;In an embodiment of the present invention, the telescopic assembly includes a telescopic assembly, a piston rod and a driving member;

所述伸缩组件可转动地连接于所述支撑柱和所述承载架的其中之一;The telescopic assembly is rotatably connected to one of the support column and the carrier;

所述活塞杆的一端可移动地设于所述伸缩组件内,另一端可转动地连接于所述支撑柱和所述承载架的其中之另一;One end of the piston rod is movably arranged in the telescopic assembly, and the other end is rotatably connected to the other of the support column and the carrier;

所述驱动件设于所述伸缩组件,所述驱动件驱动所述活塞杆相对于所述伸缩组件移动,并可使所述活塞杆限位固定于所述伸缩组件。The driving member is arranged on the telescopic assembly, and the driving member drives the piston rod to move relative to the telescopic assembly, and can limit and fix the piston rod to the telescopic assembly.

在本实用新型的一实施例中,所述承载架包括横梁和至少两个斜梁;In an embodiment of the present invention, the carrying frame includes a transverse beam and at least two inclined beams;

所述横梁连接于所述回转驱动系统,所述回转驱动系统驱动所述横梁相对于所述支撑柱转动;The beam is connected to the slewing drive system, and the slewing drive system drives the beam to rotate relative to the support column;

至少两个所述斜梁均连接于所述横梁,并和所述横梁呈夹角设置,每相邻的两个所述斜梁形成安置区域,所述太阳能光伏板安置于所述安置区域内;At least two of the oblique beams are connected to the beams, and are arranged at an angle with the beams, each adjacent two oblique beams form a placement area, and the solar photovoltaic panels are placed in the placement area ;

所述伸缩组件远离所述支撑柱的一端连接于所述横梁。One end of the telescopic assembly away from the support column is connected to the beam.

在本实用新型的一实施例中,每相邻的两个所述斜梁形成两个所述安置区域,两个所述安置区域沿所述斜梁的长度方向间隔分布。In an embodiment of the present invention, every two adjacent inclined beams form two placement areas, and the two placement areas are distributed at intervals along the length direction of the inclined beams.

在本实用新型的一实施例中,所述承载架还包括至少两个斜支撑,所述横梁具有呈相对设置的上表面和下表面,至少两个所述斜梁均设于所述横梁上表面,至少两个所述斜支撑设于所述横梁的下表面,一个所述斜支撑和一个所述斜梁呈相对设置,并连接于和该所述斜支撑对应的所述斜梁,每一个所述斜梁和与该斜梁对应的所述斜支撑相配合夹持固定于所述横梁。In an embodiment of the present invention, the carrying frame further includes at least two inclined supports, the cross beam has an upper surface and a lower surface arranged oppositely, and at least two of the inclined beams are arranged on the upper surface of the cross beam, At least two of the oblique supports are arranged on the lower surface of the cross beam, one of the oblique supports and one of the oblique beams are arranged opposite to each other, and are connected to the oblique beams corresponding to the oblique supports, each of which is The inclined beam and the inclined support corresponding to the inclined beam are clamped and fixed to the cross beam in cooperation.

在本实用新型的一实施例中,所述斜梁背离所述斜支撑的一侧设有避让空间,所述光伏支架还包括紧固件,所述紧固件穿过所述斜支撑和所述斜梁,并容置于所述避让空间内,所述紧固件使所述斜支撑连接于所述斜梁。In an embodiment of the present invention, a side of the oblique beam away from the oblique support is provided with an escape space, and the photovoltaic support further includes a fastener, and the fastener passes through the oblique support and the oblique support. The inclined beam is accommodated in the avoidance space, and the fastener connects the inclined support to the inclined beam.

本实用新型还提出一种光伏发电装置,包括光伏支架和太阳能光伏板,所述光伏支架包括:The utility model also proposes a photovoltaic power generation device, comprising a photovoltaic support and a solar photovoltaic panel, and the photovoltaic support includes:

支撑柱;support column;

回转驱动系统,所述回转驱动系统设于所述支撑柱;a slewing drive system, the slewing drive system is arranged on the support column;

承载架,所述承载架连接于所述回转驱动系统,所述回转驱动系统驱动所述承载架相对于所述支撑柱转动,所述承载架用以安置太阳能光伏板;以及a carrier, the carrier is connected to the slewing drive system, the slewing drive system drives the carrier to rotate relative to the support column, and the carrier is used for arranging the solar photovoltaic panel; and

伸缩组件,所述伸缩组件连接于所述支撑柱和所述承载架,并可使所述承载架限位固定于所述支撑柱。The telescopic assembly is connected to the support column and the bearing frame, and can limit and fix the bearing frame to the support column.

所述太阳能光伏板安置于所述承载架。The solar photovoltaic panel is arranged on the carrier.

本实用新型的技术方案的光伏支架用于安装太阳能光伏板时,将太阳能光伏板安置于承载架上,通过回转驱动系统驱动承载架相对于支撑柱转动,使得光伏支架可以根据太阳的照射范围调节承载架与支撑柱之间的夹角大小,以完成太阳能光伏板随着太阳的照射范围调节的改变而调节其与水平面的安装夹角,实现太阳能光伏板对太阳的照射范围的跟踪。在光伏支架受到较大的气流冲击时,回转驱动系统可以通过自身的自锁功能而将承载架限位固定于支撑柱,避免置于承载架上的太阳能光伏板发生晃动,从而提高了置于承载架上的太阳能光伏板的安装的稳定性。When the photovoltaic bracket of the technical solution of the present invention is used for installing solar photovoltaic panels, the solar photovoltaic panels are placed on the bearing frame, and the bearing frame is driven to rotate relative to the support column by the rotary drive system, so that the photovoltaic bracket can be adjusted according to the irradiation range of the sun The size of the included angle between the bearing frame and the support column is used to adjust the installation angle between the solar photovoltaic panel and the horizontal plane with the adjustment of the sun's irradiation range, so as to realize the tracking of the solar photovoltaic panel to the sun's irradiation range. When the photovoltaic support is impacted by a large airflow, the rotary drive system can limit and fix the support frame to the support column through its own self-locking function, so as to prevent the solar photovoltaic panels placed on the support frame from shaking, thereby improving the placement of the support frame. The stability of the installation of solar photovoltaic panels on the carrier frame.

进一步地,本方案中的光伏支架还设有伸缩组件,在光伏支架在遇到较大的气流冲击时,通过该伸缩组件也可以将承载架限位固定于支撑柱显著降低置于承载架上的太阳能光伏板发生晃动的程度,从而进一步地提高了太阳能光伏板安装的稳定性。并在太阳能光伏板对太阳的照射范围进行跟踪时,伸缩组件可以将承载架未限位固定于支撑柱,保证光伏支架的正常工作。Further, the photovoltaic support in this solution is also provided with a telescopic assembly. When the photovoltaic support encounters a large airflow impact, the support frame can also be limited and fixed to the support column through the telescopic assembly, which can be significantly lowered and placed on the support frame. The degree of shaking of the solar photovoltaic panel, thereby further improving the stability of the solar photovoltaic panel installation. And when the solar photovoltaic panel tracks the irradiation range of the sun, the telescopic component can fix the bearing frame to the support column without limit, so as to ensure the normal operation of the photovoltaic support.

附图说明Description of drawings

为了更清楚地说明本实用新型实施例或现有技术中的技术方案,下面将对实施例或现有技术描述中所需要使用的附图作简单地介绍,显而易见地,下面描述中的附图仅仅是本实用新型的一些实施例,对于本领域普通技术人员来讲,在不付出创造性劳动的前提下,还可以根据这些附图示出的结构获得其他的附图。In order to more clearly illustrate the embodiments of the present utility model or the technical solutions in the prior art, the following briefly introduces the accompanying drawings that need to be used in the description of the embodiments or the prior art. Obviously, the accompanying drawings in the following description These are just some embodiments of the present invention, and for those of ordinary skill in the art, other drawings can also be obtained based on the structures shown in these drawings without any creative effort.

图1为本实用新型光伏发电装置一实施例的结构示意图;1 is a schematic structural diagram of an embodiment of the photovoltaic power generation device of the present invention;

图2为图1中光伏发电装置一局部结构示意图;FIG. 2 is a schematic diagram of a partial structure of the photovoltaic power generation device in FIG. 1;

图3为图1中光伏支架一局部结构示意图。FIG. 3 is a schematic diagram of a partial structure of the photovoltaic support in FIG. 1 .

附图标号说明:Description of reference numbers:

标号label 名称name 标号label 名称name 10001000 光伏发电装置Photovoltaic power generation device 55b55b 避让空间avoid space 100100 光伏支架Photovoltaic bracket 5757 斜支撑oblique support 1010 支撑柱support column 7070 伸缩组件Telescopic components 3030 回转驱动系统Slewing drive system 7171 缸体cylinder block 3131 电机motor 7272 活塞杆piston rod 3333 回转减速器Slewing reducer 7373 驱动件driver 5050 承载架carrier 9090 夹持件Holder 5151 横梁beam 9191 上夹持座upper holder 5555 斜梁inclined beam 9292 下夹持座Lower holder 55a55a 安置区域Placement area 300300 太阳能光伏板Solar photovoltaic panels

本实用新型目的的实现、功能特点及优点将结合实施例,参照附图做进一步说明。The realization, functional characteristics and advantages of the purpose of the present utility model will be further described with reference to the accompanying drawings in conjunction with the embodiments.

具体实施方式Detailed ways

下面将结合本实用新型实施例中的附图,对本实用新型实施例中的技术方案进行清楚、完整地描述,显然,所描述的实施例仅仅是本实用新型的一部分实施例,而不是全部的实施例。基于本实用新型中的实施例,本领域普通技术人员在没有作出创造性劳动前提下所获得的所有其他实施例,都属于本实用新型保护的范围。The technical solutions in the embodiments of the present utility model will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, not all of them. Example. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present invention.

需要说明,本实用新型实施例中所有方向性指示(诸如上、下、左、右、前、后……)仅用于解释在某一特定姿态(如附图所示)下各部件之间的相对位置关系、运动情况等,如果该特定姿态发生改变时,则该方向性指示也相应地随之改变。It should be noted that all directional indications (such as up, down, left, right, front, back...) in the embodiments of the present invention are only used to explain the difference between the various components under a certain posture (as shown in the accompanying drawings). If the specific posture changes, the directional indication also changes accordingly.

在本实用新型中,除非另有明确的规定和限定,术语“连接”、“固定”等应做广义理解,例如,“固定”可以是固定连接,也可以是可拆卸连接,或成一体;可以是机械连接,也可以是电连接;可以是直接相连,也可以通过中间媒介间接相连,可以是两个元件内部的连通或两个元件的相互作用关系,除非另有明确的限定。对于本领域的普通技术人员而言,可以根据具体情况理解上述术语在本实用新型中的具体含义。In the present utility model, unless otherwise expressly specified and limited, the terms "connection", "fixed" and the like should be understood in a broad sense, for example, "fixed" can be a fixed connection, a detachable connection, or an integrated; It can be a mechanical connection or an electrical connection; it can be a direct connection or an indirect connection through an intermediate medium, and it can be the internal communication between two elements or the interaction relationship between the two elements, unless otherwise clearly defined. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific situations.

另外,在本实用新型中涉及“第一”、“第二”等的描述仅用于描述目的,而不能理解为指示或暗示其相对重要性或者隐含指明所指示的技术特征的数量。由此,限定有“第一”、“第二”的特征可以明示或者隐含地包括至少一个该特征。另外,全文中出现的“和/或”的含义为,包括三个并列的方案,以“A和/或B为例”,包括A方案,或B方案,或A和B同时满足的方案。另外,各个实施例之间的技术方案可以相互结合,但是必须是以本领域普通技术人员能够实现为基础,当技术方案的结合出现相互矛盾或无法实现时应当认为这种技术方案的结合不存在,也不在本实用新型要求的保护范围之内。In addition, the descriptions involving "first", "second", etc. in the present invention are only for description purposes, and should not be understood as indicating or implying their relative importance or implicitly indicating the number of indicated technical features. Thus, a feature delimited with "first", "second" may expressly or implicitly include at least one of that feature. In addition, the meaning of "and/or" appearing in the whole text includes three parallel schemes, and taking "A and/or B as an example", it includes scheme A, scheme B, or scheme that A and B satisfy at the same time. In addition, the technical solutions between the various embodiments can be combined with each other, but must be based on the realization by those of ordinary skill in the art. When the combination of technical solutions is contradictory or cannot be realized, it should be considered that the combination of such technical solutions does not exist. , is not within the scope of protection required by the present utility model.

请结合参考图1和图2,本实用新型提出一种光伏支架100。Please refer to FIG. 1 and FIG. 2 , the present invention provides a photovoltaic support 100 .

在本实用新型的一实施例中,该光伏支架100包括支撑柱10、回转减速器33、承载架50以及伸缩组件70;其中,回转驱动系统30设于支撑柱10;承载架50连接于回转驱动系统30,回转驱动系统30驱动承载架50相对于支撑柱10转动,承载架50用以安置太阳能光伏板300;伸缩组件70连接于支撑柱10和承载架50,并可使承载架50限位固定于支撑柱10。In an embodiment of the present invention, the photovoltaic support 100 includes a support column 10, a rotary reducer 33, a carrier frame 50 and a telescopic assembly 70; wherein, the rotary drive system 30 is arranged on the support column 10; the carrier frame 50 is connected to the rotary The drive system 30, the rotary drive system 30 drives the carrier 50 to rotate relative to the support column 10, the carrier 50 is used to place the solar photovoltaic panel 300; the telescopic assembly 70 is connected to the support column 10 and the carrier 50, and can make the carrier 50 limit It is fixed to the support column 10 .

在本实用新型的一实施例中,支撑柱10主要用于支撑承载架50,其可以是固定于地面混凝土桩,也可以是固定于螺旋桩上,并可通过螺钉进行锁紧,以保证支撑柱10安装的稳定性。为了便于支撑柱10的安装固定,支撑柱10的底端可以设有连接盘,并在该连接盘上设有供螺钉穿过的腰型孔。而为了提高该连接盘和支撑柱10的连接强度,可以在支撑柱10和连接盘的连接处设有至少两个加强筋。至少两个加强筋围绕连接盘的中心呈均匀间隔分布,以避免造成应力集中。进一步地,为了提高支撑柱10的支撑效果,光伏支架100可以包括两个、三个或者更多个支撑柱10,且每一个支撑柱10均与承载架50连接。承载架50主要用于安置太阳能光伏板300,其与支撑柱10转动连接。回转驱动系统30即为电机31和回转减速器33的组合,回转减速器33内设有蜗轮蜗杆机构或者齿轮组机构。回转驱动系统30主要用于提供动力,以驱动承载架50相对于支撑柱10转动,完成置于承载架50上的太阳能光伏板300对太阳的照射范围的跟踪。同时,在光伏支架100受到较大的气流冲击时,回转驱动系统30可以通过自身的自锁功能实现对承载架50限位固定,避免承载架50发生晃动而影响置于承载架50上的太阳能光伏板300安装的稳定性。其中,回转驱动系统30可以先将承载架50驱动至水平状态,以降低气流对光伏支架100的冲击效果,再通过自锁对承载架50进行限位固定;而回转驱动系统30的自锁功能可以是通过内部的蜗轮蜗杆机构或者齿轮组实现,由于回转驱动系统30为现有技术,故在此对其工作原理不作详述。进一步地,为了便于对回转驱动系统30的维修更换,回转驱动系统30可以是可拆卸地连接于支撑柱10。具体地,可以是通过螺钉、卡扣或者磁铁的方式进行可拆卸固定。承载架50主要用于安置太阳能光伏板300,并在回转驱动系统30的驱动下带动太阳能光伏板300转动,实现对太阳的照射范围的跟踪。其中,承载架50和支撑柱10可以是呈一体结构,以提高两者连接的稳定性。当然也可以是呈可拆卸地分体结构,以便在承载架50发生损坏时可以将其拆卸而进行维修更换。In an embodiment of the present invention, the support column 10 is mainly used to support the bearing frame 50, which can be fixed on the ground concrete pile or on the screw pile, and can be locked by screws to ensure the support Stability of post 10 installation. In order to facilitate the installation and fixation of the support column 10, the bottom end of the support column 10 may be provided with a connecting plate, and the connecting plate is provided with a waist-shaped hole for the screw to pass through. In order to improve the connection strength between the connection plate and the support column 10, at least two reinforcing ribs may be provided at the connection between the support column 10 and the connection plate. At least two reinforcing ribs are evenly spaced around the center of the connecting disc to avoid stress concentration. Further, in order to improve the supporting effect of the support column 10 , the photovoltaic support 100 may include two, three or more support columns 10 , and each support column 10 is connected with the carrier frame 50 . The carrier frame 50 is mainly used for arranging the solar photovoltaic panel 300 , which is rotatably connected with the support column 10 . The rotary drive system 30 is the combination of the motor 31 and the rotary reducer 33 , and the rotary reducer 33 is provided with a worm gear mechanism or a gear set mechanism. The slewing drive system 30 is mainly used to provide power to drive the carrier 50 to rotate relative to the support column 10 to complete the tracking of the solar photovoltaic panel 300 placed on the carrier 50 to the irradiation range of the sun. At the same time, when the photovoltaic support 100 is impacted by a large airflow, the rotary drive system 30 can limit and fix the carrier 50 through its own self-locking function, so as to prevent the carrier 50 from shaking and affecting the solar energy placed on the carrier 50 The stability of the photovoltaic panel 300 installation. The slewing drive system 30 can first drive the carrier frame 50 to a horizontal state to reduce the impact effect of the airflow on the photovoltaic support 100, and then limit and fix the carrier frame 50 through self-locking; and the self-locking function of the slewing drive system 30 It can be realized by an internal worm gear mechanism or a gear set. Since the rotary drive system 30 is in the prior art, its working principle will not be described in detail here. Further, in order to facilitate maintenance and replacement of the swing drive system 30 , the swing drive system 30 may be detachably connected to the support column 10 . Specifically, it can be detachably fixed by means of screws, snaps or magnets. The carrier 50 is mainly used to place the solar photovoltaic panel 300, and drives the solar photovoltaic panel 300 to rotate under the driving of the rotary drive system 30, so as to realize the tracking of the irradiation range of the sun. Wherein, the carrier frame 50 and the support column 10 may be an integral structure, so as to improve the stability of the connection between the two. Of course, it can also be a detachable split structure, so that when the carrier 50 is damaged, it can be disassembled for maintenance and replacement.

本实用新型的技术方案的光伏支架100用于安装太阳能光伏板300时,将太阳能光伏板300安置于承载架50上,通过回转驱动系统30驱动承载架50相对于支撑柱10转动,使得光伏支架100可以根据太阳的照射范围调节承载架50与支撑柱10之间的夹角大小,以完成太阳能光伏板300随着太阳的照射范围调节的改变而调节其与水平面的安装夹角,实现太阳能光伏板300对太阳的照射范围的跟踪。在光伏支架100受到较大的气流冲击时,回转驱动系统30可以通过自身的自锁功能而将承载架50限位固定于支撑柱10,显著降低置于承载架50上的太阳能光伏板300发生晃动的程度,从而提高了置于承载架50上的太阳能光伏板300的安装的稳定性。When the photovoltaic bracket 100 of the technical solution of the present invention is used for installing the solar photovoltaic panel 300, the solar photovoltaic panel 300 is placed on the carrier frame 50, and the carrier frame 50 is driven to rotate relative to the support column 10 by the rotary drive system 30, so that the photovoltaic bracket is 100 can adjust the size of the angle between the carrier 50 and the support column 10 according to the irradiation range of the sun, so as to complete the adjustment of the installation angle between the solar photovoltaic panel 300 and the horizontal plane with the adjustment of the irradiation range of the sun, and realize the solar photovoltaic panel 300. Tracking of the exposure range of the sun by the panel 300 . When the photovoltaic bracket 100 is impacted by a large airflow, the rotary drive system 30 can limit and fix the carrier 50 to the support column 10 through its self-locking function, which significantly reduces the occurrence of solar photovoltaic panels 300 placed on the carrier 50. The degree of shaking, thereby improving the installation stability of the solar photovoltaic panel 300 placed on the carrier 50 .

进一步地,本方案中的光伏支架100还设有伸缩组件70,在光伏支架100在遇到较大的气流冲击时,通过该伸缩组件70也可以将承载架50限位固定于支撑柱10,避免置于承载架50上的太阳能光伏板300发生晃动,从而进一步地提高了太阳能光伏板300安装的稳定性。并在太阳能光伏板300对太阳的照射范围进行跟踪时,伸缩组件70可以将承载架50未限位固定于支撑柱10,保证光伏支架100的正常工作。Further, the photovoltaic support 100 in this solution is further provided with a telescopic assembly 70. When the photovoltaic support 100 encounters a large airflow impact, the support frame 50 can also be limited and fixed to the support column 10 through the telescopic assembly 70. The solar photovoltaic panel 300 placed on the carrier frame 50 is prevented from shaking, thereby further improving the installation stability of the solar photovoltaic panel 300 . And when the solar photovoltaic panel 300 tracks the irradiation range of the sun, the telescopic assembly 70 can fix the carrier 50 to the support column 10 without limit, so as to ensure the normal operation of the photovoltaic support 100 .

请参考图2,在本实用新型的一实施例中,回转驱动系统30包括电机31和回转减速器33,电机31设于支撑柱10,回转减速器33连接于电机31,并部分结构插入承载架50内。Referring to FIG. 2 , in an embodiment of the present invention, the rotary drive system 30 includes a motor 31 and a rotary reducer 33 , the motor 31 is arranged on the support column 10 , and the rotary reducer 33 is connected to the motor 31 , and a part of the structure is inserted into the bearing inside the rack 50.

可以理解,回转减速器33即为上述的回转驱动系统30内的蜗轮蜗杆机构或者齿轮组机构,将回转减速器33的部分结构插入承载架50内,可以增大两者的接触面积而提高回转减速器33和承载架50连接的稳定性,保证承载架50稳定的跟随回转减速器33进行转动。It can be understood that the rotary reducer 33 is the worm gear mechanism or the gear set mechanism in the above-mentioned rotary drive system 30. Inserting part of the structure of the rotary reducer 33 into the carrier frame 50 can increase the contact area between the two and improve the rotation. The stability of the connection between the reducer 33 and the carrier frame 50 ensures that the carrier frame 50 rotates stably following the rotary reducer 33 .

在本实用新型的一实施例中,光伏支架100还包括夹持件90,夹持件90套设于承载架50的外侧,并使承载架50夹持固定插入承载架50内的回转减速器33。In an embodiment of the present invention, the photovoltaic support 100 further includes a clamping member 90 . The clamping member 90 is sleeved on the outer side of the carrier frame 50 and enables the carrier frame 50 to clamp and fix the rotary reducer inserted into the carrier frame 50 . 33.

可以理解,如此设置可以无需设于回转减速器33和承载架50上设置连接结构,避免了因为设有连接结构而影响两者的强度。当然,本申请不限于此,于其他实施例中,回转减速器33和承载架50也可以是通过焊接固定或者螺钉直接连接等,并通过夹持件90的夹持作用以提高两者在连接处的连接强度。It can be understood that, in this way, it is not necessary to provide a connection structure on the rotary reducer 33 and the carrier frame 50, so as to avoid the strength of the two from being affected due to the connection structure. Of course, the present application is not limited to this. In other embodiments, the rotary reducer 33 and the carrier frame 50 may also be fixed by welding or directly connected with screws, etc., and the clamping effect of the clamping member 90 is used to improve the connection between the two. connection strength.

在本实用新型的一实施例中,夹持件90包括上夹持座91和下夹持座92,下夹持座92可拆卸地连接于上夹持座91,并和上夹持座91相配合套设于承载架50的外侧。In an embodiment of the present invention, the clamping member 90 includes an upper clamping base 91 and a lower clamping base 92 . The lower clamping base 92 is detachably connected to the upper clamping base 91 and is connected to the upper clamping base 91 . The outer side of the carrier frame 50 is matched and sleeved.

可以理解,如此设置使得夹持件90无需从承载架50的一端进行套设,在所需要安装的位置将上夹持座91和下夹持座92相互对应靠近配合夹持于承载架50即可,从而简化了夹持件90的组装过程。其中,上夹持座91和下夹持座92可以是可拆卸连接,以使其可以拆卸下来进行维修更换。具体地可以为螺钉连接或者卡扣连接。进一步地,还可以通过螺钉穿过夹持件90、承载架50以及回转减速器33,以进一步地提高几者之间的固定效果。It can be understood that this arrangement makes it unnecessary to set the clamping member 90 from one end of the carrier frame 50 , and the upper clamping seat 91 and the lower clamping seat 92 are correspondingly close to each other and clamped to the carrier frame 50 at the required installation position. Yes, thereby simplifying the assembly process of the clip 90 . Wherein, the upper clamping base 91 and the lower clamping base 92 can be detachably connected, so that they can be disassembled for maintenance and replacement. Specifically, it may be a screw connection or a snap connection. Further, screws can be passed through the clamping member 90 , the carrier frame 50 and the rotary reducer 33 to further improve the fixing effect between them.

在本实用新型的一实施例中,伸缩组件70包括缸体71、活塞杆72以及驱动件73;缸体71可转动地连接于支撑柱10和承载架50的其中之一;活塞杆72的一端可移动地设于缸体71内,另一端可转动地连接于支撑柱10和承载架50的其中之另一;驱动件73设于缸体71,驱动件73驱动活塞杆72相对于缸体71移动,并可使活塞杆72限位固定于缸体71。In an embodiment of the present invention, the telescopic assembly 70 includes a cylinder 71, a piston rod 72 and a driving member 73; the cylinder 71 is rotatably connected to one of the support column 10 and the carrier 50; One end is movably arranged in the cylinder 71, and the other end is rotatably connected to the other of the support column 10 and the carrier 50; the driving member 73 is arranged in the cylinder 71, and the driving member 73 drives the piston rod 72 relative to the cylinder The body 71 moves, and the piston rod 72 can be limited and fixed to the cylinder body 71 .

具体地,伸缩组件70可以为电动推杆,活塞杆72的丝杆和螺母具有自锁功能,在驱动件73通电的状态下,驱动件73可驱动活塞杆72相对于缸体71移动,以适应承载架50相对于支撑柱10的转动。而在驱动件断电的情况下,活塞杆72的丝杆和螺母可以通过自锁功能而使活塞杆72限位固定于缸体71。此时支撑柱10和横梁51通过电动推杆构成刚性连接,实现承载架50的限位固定,从而提高光伏支架100的抗风性能,以保证太阳能光伏安装板的稳定性。由于电动推杆为现有技术,故在此对其的工作原理不作详述。可以理解,采用电动推杆作为伸缩组件70,不但可以在承载架50受到较大的气流冲击时对承载件进行限位固定,还可以在承载架50相对于支撑柱10转动时提供动力,驱动承载架50相对于支撑柱10转动,提高承载架50的转动动力。当然,本申请不限于此,于其他实施例中,伸缩组件70也可以是包括第一段体、第二段体以及气缸。第一段体连接于支撑柱10,第二段体可移动地设于第一段体,并连接于承载架50,气缸设于第一段体,并可抵接于第二段体,使第二段体限位固定于第一段体。也即,在承载架50需要进行转动时,在第二段体可在第一段体上发生相对移动;在承载架50需要进行限位固定时,气缸的伸缩端靠近第二段体并抵紧于第二段体。Specifically, the telescopic assembly 70 can be an electric push rod, and the screw rod and the nut of the piston rod 72 have a self-locking function. When the driving member 73 is powered on, the driving member 73 can drive the piston rod 72 to move relative to the cylinder 71 to Rotation of the carrier 50 relative to the support column 10 is accommodated. When the driving element is powered off, the screw rod and the nut of the piston rod 72 can limit and fix the piston rod 72 to the cylinder body 71 through the self-locking function. At this time, the support column 10 and the beam 51 are rigidly connected by electric push rods to realize the limit and fixation of the carrier frame 50, thereby improving the wind resistance of the photovoltaic support 100 to ensure the stability of the solar photovoltaic installation panel. Since the electric push rod is in the prior art, its working principle will not be described in detail here. It can be understood that using the electric push rod as the telescopic assembly 70 can not only limit and fix the bearing member when the bearing frame 50 is impacted by a large airflow, but also provide power when the bearing frame 50 rotates relative to the support column 10 to drive The carrier 50 rotates relative to the support column 10 , so as to increase the rotational power of the carrier 50 . Of course, the present application is not limited to this, and in other embodiments, the telescopic assembly 70 may also include a first segment body, a second segment body and a cylinder. The first segment body is connected to the support column 10, the second segment body is movably arranged on the first segment body, and is connected to the carrier frame 50, and the cylinder is arranged on the first segment body and can abut against the second segment body, so that the The second segment body is limited and fixed to the first segment body. That is, when the carrier frame 50 needs to be rotated, the second segment body can move relatively on the first segment body; when the carrier frame 50 needs to be limited and fixed, the telescopic end of the cylinder is close to the second segment body and abuts against it. close to the second segment.

请参考图3,在本实用新型的一实施例中,承载架50包括横梁51和至少两个斜梁55;横梁51连接于回转驱动系统30,回转驱动系统30驱动横梁51相对于支撑柱10转动;至少两个斜梁55均连接于横梁51,并和横梁51呈夹角设置,每相邻的两个斜梁55形成安置区域55a,太阳能光伏板300安置于安置区域55a内;伸缩组件70远离支撑柱10的一端连接于横梁51。Please refer to FIG. 3 , in an embodiment of the present invention, the carrier 50 includes a cross beam 51 and at least two inclined beams 55 ; Rotation; at least two inclined beams 55 are connected to the cross beam 51, and are arranged at an angle with the cross beam 51, each adjacent two inclined beams 55 form a placement area 55a, and the solar photovoltaic panel 300 is placed in the placement area 55a; telescopic components One end of 70 away from the support column 10 is connected to the beam 51 .

可以理解,将承载架50由横梁51和斜梁55组装而成可以使得各个零件独立生产制造,从而简化了承载架50的成型的复杂度,提高生产效率。其中,横梁51与斜梁55之间可以是通过螺钉、卡扣或者焊接等方式固定。而横梁51可以是呈一体结构设置,以提高横梁51的强度;当然也可以是呈多段分体拼接结构,以简化每一段体的成型的模具,同时也使得各个段体可以通过螺钉实现可拆卸连接,以便某一段体发生损坏时可以仅针对某一段体进行维修更换。另外,请结合参考图1、图2以及图3,伸缩组件70的活塞杆72可以是转动连接于承载架50的横梁51,回转驱动系统30的回转减速器33的部分结构插入横梁51内,夹持件90的上夹持座91和下夹持座92相配合套设于横梁51的外侧。It can be understood that the assembly of the carrier frame 50 from the beams 51 and the inclined beams 55 enables independent production of each part, thereby simplifying the molding complexity of the carrier frame 50 and improving the production efficiency. Wherein, the cross beam 51 and the inclined beam 55 may be fixed by means of screws, snaps or welding. The beam 51 can be provided in an integrated structure to improve the strength of the beam 51; of course, it can also be a multi-segment splicing structure to simplify the molding die of each segment, and at the same time, each segment can be detached by screws. Connection, so that when a certain section is damaged, only a certain section can be repaired and replaced. In addition, please refer to FIG. 1 , FIG. 2 and FIG. 3 , the piston rod 72 of the telescopic assembly 70 can be rotatably connected to the beam 51 of the carrier 50 , and the partial structure of the slewing reducer 33 of the slewing drive system 30 is inserted into the beam 51 , The upper clamping seat 91 and the lower clamping seat 92 of the clamping member 90 are matched and sleeved on the outer side of the beam 51 .

请结合参考图1和图3,在本实用新型的一实施例中,每相邻的两个斜梁55形成两个安置区域55a,两个安置区域55a沿斜梁55的长度方向间隔分布。Please refer to FIGS. 1 and 3 , in an embodiment of the present invention, each adjacent two inclined beams 55 form two placement areas 55 a , and the two placement areas 55 a are spaced along the length direction of the inclined beams 55 .

可以理解,两个安置区域55a的设置使得承载架50于每两个相邻的斜梁55之间可以安置两个太阳能光伏板300,从而提高了该承载架50对太阳能光伏板300的承载能力。It can be understood that the arrangement of the two placement areas 55a enables the carrier 50 to accommodate two solar photovoltaic panels 300 between every two adjacent inclined beams 55, thereby improving the bearing capacity of the carrier 50 for the solar photovoltaic panels 300 .

在本实用新型的一实施例中,承载架50还包括至少两个斜支撑57,横梁51具有呈相对设置的上表面和下表面,至少两个斜梁55均设于横梁51上表面,至少两个斜支撑57设于横梁51的下表面,一个斜支撑57和一个斜梁55呈相对设置,并连接于和该斜支撑57对应的斜梁55,每一个斜梁55和与该斜梁55对应的斜支撑57相配合夹持固定于横梁51。In an embodiment of the present invention, the carrier 50 further includes at least two inclined supports 57 , the cross beam 51 has an upper surface and a lower surface arranged oppositely, at least two inclined beams 55 are arranged on the upper surface of the cross beam 51, at least Two inclined supports 57 are arranged on the lower surface of the cross beam 51, one inclined support 57 and one inclined beam 55 are arranged oppositely, and are connected to the inclined beam 55 corresponding to the inclined support 57, each inclined beam 55 and the inclined beam 55. The diagonal supports 57 corresponding to 55 are clamped and fixed to the beam 51 in cooperation with each other.

可以理解,斜支撑57的设置可以对承载架50提供支撑作用,从而能够提高斜梁55安装的稳定性,进而提高了置于斜梁55上的太阳能光伏板300的安置的稳定性。而每一个斜梁55和与该斜梁55对应的斜支撑57相配合夹持固定于横梁51的设置,简化了斜梁55和斜支撑57与横梁51的连接结构,将斜梁55和斜支撑57进行固定即可实现三者的固定,从而提高了光伏支架100的组装效率。其中,斜梁55大致呈V形状设置,其中部抵接于横梁51的下表面,两端分别连接于斜梁55的两端。进一步地,为了提高对斜梁55和斜支撑57在横梁51上限位固定效果,横梁51的上表面和下表面设有限位槽,斜梁55和斜支撑57的部分结构均嵌设于该限位槽内,并抵接于限位槽之槽壁。如此进一步地减少斜梁55和斜支撑57在横梁51之长度方向发生移动的可能。It can be understood that the arrangement of the oblique supports 57 can provide support for the carrier frame 50 , thereby improving the installation stability of the oblique beams 55 , thereby improving the installation stability of the solar photovoltaic panels 300 placed on the oblique beams 55 . And each inclined beam 55 and the inclined support 57 corresponding to the inclined beam 55 are clamped and fixed to the cross beam 51, which simplifies the connection structure of the inclined beam 55 and the inclined support 57 and the cross beam 51. Fixing the support 57 can realize the fixing of the three, thereby improving the assembly efficiency of the photovoltaic support 100 . The oblique beam 55 is generally arranged in a V shape, the middle part abuts against the lower surface of the cross beam 51 , and the two ends are respectively connected to the two ends of the oblique beam 55 . Further, in order to improve the upper position fixing effect of the inclined beam 55 and the inclined support 57 on the cross beam 51, the upper surface and the lower surface of the cross beam 51 are provided with limit grooves, and part of the structure of the inclined beam 55 and the inclined support 57 are embedded in the limit. in the position slot, and abuts against the groove wall of the position limit slot. This further reduces the possibility of movement of the oblique beam 55 and the oblique support 57 in the length direction of the beam 51 .

在本实用新型的一实施例中,斜梁55背离斜支撑57的一侧设有避让空间55b,光伏支架100还包括紧固件,紧固件穿过斜支撑57和斜梁55,并容置于避让空间55b内,紧固件使斜支撑57连接于斜梁55。In an embodiment of the present invention, the side of the inclined beam 55 away from the inclined support 57 is provided with an escape space 55b, and the photovoltaic support 100 further includes a fastener, which passes through the inclined support 57 and the inclined beam 55, and accommodates Placed in the avoidance space 55b, the fastener connects the oblique support 57 to the oblique beam 55.

可以理解,避让空间55b的设置避免了紧固件凸出斜梁55的表面,导致影响对斜梁55上的太阳能光伏板300的安装,从而保证了太阳能光伏板300紧贴于斜梁55的表面而提高太阳能光伏板300安置的稳定性。其中,紧固件可以为螺钉,而斜梁55的避让空间55b可以贯穿斜梁55的上表面以及相对的两端面,以便于避让空间55b的成型。It can be understood that the setting of the avoidance space 55b prevents the fasteners from protruding from the surface of the inclined beam 55, which affects the installation of the solar photovoltaic panel 300 on the inclined beam 55, thereby ensuring that the solar photovoltaic panel 300 is closely attached to the inclined beam 55. surface to improve the stability of the placement of the solar photovoltaic panel 300 . The fasteners may be screws, and the avoidance space 55b of the inclined beam 55 may penetrate through the upper surface and opposite end surfaces of the inclined beam 55, so as to facilitate the formation of the avoidance space 55b.

本实用新型还提出一种光伏发电装置1000,该光伏发电装置1000包括光伏支架100和太阳能光伏板300,该光伏支架100的具体结构参照上述实施例,由于本光伏发电装置1000采用了上述所有实施例的全部技术方案,因此至少具有上述实施例的技术方案所带来的所有有益效果,在此不再一一赘述。太阳能光伏板300安置于光伏支架100的承载架50上。The present utility model also proposes a photovoltaic power generation device 1000, the photovoltaic power generation device 1000 includes a photovoltaic support 100 and a solar photovoltaic panel 300. The specific structure of the photovoltaic support 100 refers to the above-mentioned embodiment, because the photovoltaic power generation device 1000 adopts all the above-mentioned implementations. All the technical solutions of the above-mentioned embodiments have at least all the beneficial effects brought by the technical solutions of the above-mentioned embodiments, and will not be repeated here. The solar photovoltaic panel 300 is placed on the carrier 50 of the photovoltaic support 100 .

以上仅为本实用新型的优选实施例,并非因此限制本实用新型的专利范围,凡是在本实用新型的发明构思下,利用本实用新型说明书及附图内容所作的等效结构变换,或直接/间接运用在其他相关的技术领域均包括在本实用新型的专利保护范围内。The above are only the preferred embodiments of the present utility model, and are not intended to limit the scope of the present utility model patent. Under the inventive concept of the present utility model, any equivalent structural transformations made by using the contents of the present utility model description and accompanying drawings, or directly/ Indirect applications in other related technical fields are included in the scope of patent protection of the present invention.

Claims (10)

1. A photovoltaic support, comprising:
a support pillar;
the rotary driving system is arranged on the supporting column;
the bearing frame is connected to the rotary driving system, the rotary driving system drives the bearing frame to rotate relative to the support column, the bearing frame can be limited and fixed on the support column, and the bearing frame is used for placing a solar photovoltaic panel; and
the telescopic assembly is connected to the supporting column and the bearing frame and can enable the bearing frame to be limited and fixed on the supporting column.
2. The photovoltaic rack of claim 1, wherein the rotational drive system comprises a motor and a rotational reducer, the motor is disposed on the support column, and the rotational reducer is connected to the motor and partially inserted into the carrier.
3. The photovoltaic support according to claim 2, further comprising a clamping member, wherein the clamping member is sleeved outside the carrier and enables the carrier to clamp and fix the rotation reducer inserted into the carrier.
4. The photovoltaic bracket of claim 3, wherein the clamping member comprises an upper clamping seat and a lower clamping seat, and the lower clamping seat is detachably connected to the upper clamping seat and is matched with the upper clamping seat to be sleeved outside the bearing frame.
5. The photovoltaic rack of any one of claims 1-4, wherein the telescoping assembly comprises a telescoping assembly, a piston rod, and a drive;
the telescopic assembly is rotatably connected to one of the supporting column and the bearing frame;
one end of the piston rod is movably arranged in the telescopic assembly, and the other end of the piston rod is rotatably connected to the other one of the supporting column and the bearing frame;
the driving piece is arranged on the telescopic assembly and drives the piston rod to move relative to the telescopic assembly, and the piston rod can be limited and fixed on the telescopic assembly.
6. The photovoltaic rack of any one of claims 1 to 4, wherein the carrier comprises a crossbeam and at least two stringers;
the cross beam is connected to the rotary driving system, and the rotary driving system drives the cross beam to rotate relative to the supporting column;
the at least two oblique beams are connected to the cross beam and arranged at included angles with the cross beam, every two adjacent oblique beams form a mounting area, and the solar photovoltaic panel is mounted in the mounting area;
one end of the telescopic assembly, which is far away from the supporting column, is connected to the cross beam.
7. The photovoltaic bracket of claim 6, wherein each adjacent two of the angled beams define two of the seating regions, the two seating regions being spaced apart along the length of the angled beams.
8. The photovoltaic support according to claim 6, wherein the carrier further comprises at least two braces, the cross member has an upper surface and a lower surface that are opposite to each other, at least two of the braces are disposed on the upper surface of the cross member, at least two of the braces are disposed on the lower surface of the cross member, one of the braces and one of the braces are opposite to each other and are connected to the corresponding brace, and each of the braces and the corresponding brace are engaged and clamped to the cross member.
9. The photovoltaic bracket of claim 8, wherein an escape space is provided on a side of the angled beam facing away from the angled support, the photovoltaic bracket further comprising a fastener, the fastener passing through the angled support and the angled beam and being received in the escape space, the fastener connecting the angled support to the angled beam.
10. A photovoltaic power generation apparatus, comprising:
the photovoltaic support of any one of claims 1 to 9; and
a solar photovoltaic panel disposed in the carrier.
CN202020549883.2U 2020-04-14 2020-04-14 Photovoltaic support and photovoltaic power generation device Active CN211908729U (en)

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