CN111442546B - A high-efficiency concentrated solar energy device capable of adjusting angle and focusing area in real time - Google Patents

A high-efficiency concentrated solar energy device capable of adjusting angle and focusing area in real time Download PDF

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Publication number
CN111442546B
CN111442546B CN202010423395.1A CN202010423395A CN111442546B CN 111442546 B CN111442546 B CN 111442546B CN 202010423395 A CN202010423395 A CN 202010423395A CN 111442546 B CN111442546 B CN 111442546B
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arc
concentrating
solar energy
panel
main support
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CN202010423395.1A
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CN111442546A (en
Inventor
嵇峰
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Jiangsu Jingke Tiansheng Energy Co ltd
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Jiangsu Jingke Tiansheng Energy Co ltd
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    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S10/00Solar heat collectors using working fluids
    • F24S10/70Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits
    • F24S10/74Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits the tubular conduits are not fixed to heat absorbing plates and are not touching each other
    • F24S10/742Solar heat collectors using working fluids the working fluids being conveyed through tubular absorbing conduits the tubular conduits are not fixed to heat absorbing plates and are not touching each other the conduits being parallel to each other
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S20/00Solar heat collectors specially adapted for particular uses or environments
    • F24S20/20Solar heat collectors for receiving concentrated solar energy, e.g. receivers for solar power plants
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S23/00Arrangements for concentrating solar-rays for solar heat collectors
    • F24S23/70Arrangements for concentrating solar-rays for solar heat collectors with reflectors
    • 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
    • F24S30/20Arrangements for moving or orienting solar heat collector modules for linear movement
    • 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
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24SSOLAR HEAT COLLECTORS; SOLAR HEAT SYSTEMS
    • F24S23/00Arrangements for concentrating solar-rays for solar heat collectors
    • F24S23/70Arrangements for concentrating solar-rays for solar heat collectors with reflectors
    • F24S2023/83Other shapes
    • 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
    • F24S2030/134Transmissions in the form of gearings or rack-and-pinion transmissions
    • 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
    • Y02E10/44Heat exchange systems
    • 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

The invention relates to a high-efficiency concentrating solar device capable of adjusting angles and concentrating areas in real time in the field of silicon wafer manufacturing, wherein a buffer cushion is arranged between supporting legs and the ground, and a plurality of groups of main support frames are arranged and distributed in an array; each group of the main support frames is provided with a plurality of groups of concentrating solar energy components, the concentrating solar energy components are arranged on the main support frames side by side, and the concentrating solar energy components are arranged on the main support frames at intervals and in parallel; lifting components are matched and arranged on each group of main support frame, and an angle adjusting component is arranged on the concentrating solar component matched with the main support frame; the concentrating solar module is also provided with a reflecting area lifting device in a matched manner; the invention provides a high-efficiency concentrating solar device capable of adjusting angles and concentrating areas in real time, by which the power generation efficiency of the solar device can be improved, meanwhile, the device can always work along with the sunlight direction, and the optimal concentrating angle can be adjusted; the working reliability is improved, and the cost is reduced.

Description

Efficient concentrating solar device capable of adjusting angle and concentrating area in real time
Technical Field
The invention relates to a concentrating solar device in the field of silicon wafer manufacturing.
Background
The photovoltaic energy is used as the most important novel clean energy, and is a new energy project for the important development and popularization of the human in the 21 st century; at present, an important objective in the industry is to reduce the production cost to realize the low-price internet surfing of photovoltaic electric energy, wherein, the improvement of the efficiency of photovoltaic products is an important way for reducing the production cost; the current crystalline silicon battery is limited by the technology, and the structure of the light receiving surface does not achieve an ideal effect yet, so that the light utilization rate is still low; linear concentrating solar power generation (CSP) adopts a line focusing technology, wherein a linear concentrator comprises a parabolic trough system and a linear Fresnel reflection system 2, a very large reflector is utilized to capture solar energy, sunlight is reflected and focused on a focal line, a linear tubular heat collector is arranged on the focal line, the heat collector absorbs focused solar radiation energy, fluid in a heat absorption tube is heated, superheated steam is generated, and a turbine generator is driven to generate electric power; traditional linear Concentrating Solar Power (CSP) has lower power generation efficiency, even in terms of a sun tracking system, but is limited by angle and other reasons, can achieve better concentrating effect, and has low working efficiency and short service life.
Disclosure of Invention
The invention aims to provide a high-efficiency concentrating solar device capable of adjusting angles and concentrating areas in real time, which can improve the power generation efficiency of the solar device, and can always work along with the sunlight direction to adjust the optimal concentrating angle; the working reliability is improved, and the cost is reduced.
The purpose of the invention is realized in the following way: the high-efficiency concentrating solar device comprises a main support frame, wherein the bottom of the main support frame is provided with a plurality of groups of supporting legs, the supporting legs are fixed on the ground through bolts, a buffer cushion is arranged between the supporting legs and the ground, and the main support frame is provided with a plurality of groups and is distributed in an array; each group of main support is provided with a plurality of groups of concentrating solar modules, the concentrating solar modules are arranged on the main support side by side, and the concentrating solar modules are arranged on the main support at intervals and in parallel; lifting components are matched and arranged on each group of main support frame, and angle adjusting components are arranged on the concentrating solar component matched and arranged on the main support frame; and the concentrating solar module is also provided with a reflecting area lifting device in a matched manner.
When the lifting device does not work at night, the lifting connecting rods of the left lifting mechanism and the right lifting mechanism are all in shrinkage arrangement, and the left arc-shaped bracket and the right arc-shaped bracket matched with the left lifting mechanism and the right lifting mechanism are also arranged parallel to the ground, so that the upper side panel and the lower side panel are overlapped together;
In the morning, when the sun rises from the east, the upper side panel close to one side of the sun is driven by the corresponding rotation driving device, and then the upper side panel in an arc shape is arranged towards the east by being matched with the rotation of the rack through the gear, and is perpendicular to the direction of light rays, so that a light source is conveniently focused on the corresponding rotation connecting rod heat collector; the upper side panel close to the sun side in the middle and the upper side panel at the rear are driven by the corresponding rotation driving device, and the angle of the upper side panel is adjusted to meet the light and focus on the rotation connecting rod heat collector; meanwhile, the lifting connecting rod at the front position is fixed, the lifting connecting rod at the middle position is lifted at a low speed, and the lifting connecting rod at the rear position is lifted at a low speed to ensure that the whole branch support frame is stepped to face the sun and focuses;
In the noon period, the sun is in mid-air, the front upper side panel, the middle upper side panel and the rear upper side panel are all arranged upwards, and the lifting connecting rod descends along with the change of the direct angle of the sun and descends in place; because the sunlight irradiates the strongest at noon, the rotating connecting rod heat collector drives the upper side panel connected with the arc-shaped bracket to move towards the upper side or the lower side by the drive of the heat collector driving device, so that the upper side panel and the lower side panel can be ensured to simultaneously focus, and the working surface becomes the previous double area, so that the heat collection effect can be improved by one time instantly;
In the afternoon period, along with the movement of the sun towards the western direction, along with the deficiency of illumination intensity, the arc-shaped bracket drives the upper side panel to gradually overlap with the lower side panel and keeps the upper side panel to independently work; the upper side panel originally close to the solar section becomes an upper side panel far away from the solar end, the position of the middle upper side panel is unchanged, the rear upper side panel becomes an upper side panel close to the solar end, the upper side panel far away from the solar end is lifted at a low speed through a lifting connecting rod, the middle upper side panel is lifted at a low speed, and the lifting connecting rod of the upper side panel close to the solar section does not act; meanwhile, the upper side panel is always arranged towards the sunlight direction under the drive of the heat collector driving device.
The solar energy device has the advantages that the solar energy device can improve the power generation efficiency, can work along with the sunlight direction all the time, and adjusts the optimal light condensation angle; the working reliability is improved, and the cost is reduced.
As a further improvement of the invention, the support of the main support frame is ensured to be reliable, and meanwhile, the working stability is ensured; the main support comprises a plurality of groups of branch support frames which are arranged side by side, and the plurality of groups of branch support frames are independently arranged and connected together through a buffer component; the branch support comprises a left arc-shaped support and a right arc-shaped support, and a concentrating solar module is arranged between the left arc-shaped support and the right arc-shaped support; the concentrating strip solar energy component is fixed between the left arc-shaped support and the right arc-shaped support through the angle adjusting component.
As a further improvement of the invention, the working efficiency of the concentrating solar module is high, the working is reliable, and the applicability is good; the concentrating solar module comprises a concentrating panel which is arranged in an arc shape, a fixed frame which is matched with the concentrating panel, and a reflecting area lifting device which is matched with the arc surface of the concentrating panel and is fixed on the concentrating panel; the light-gathering panel is provided with double layers and comprises an upper side panel and a lower side panel, wherein the lower side panel is installed on the fixed frame, and a gap is formed between adjacent light-gathering panels.
As a further improvement of the invention, the working efficiency is improved in order to ensure that the reflecting area is effectively improved; the reflecting area lifting device comprises a plurality of groups of arc-shaped supports fixed on the upper side panel, a rotating connecting rod heat collector penetrating through the top of the arc-shaped supports, a heat collector driving device is arranged on the side face of the rotating connecting rod heat collector in a matched mode, and the arc-shaped supports are provided with three groups and are respectively arranged on the left side, the right side and the middle of the light condensation panel.
As a further improvement of the invention, the arc-shaped bracket is ensured to be supported reliably and the work is ensured to be stable; the arc-shaped brackets are arranged in a triangle shape, the middle positions of the arc-shaped brackets are provided with reinforcing ribs, and the arc-shaped surfaces of the arc-shaped brackets are respectively bonded with the left side, the right side and the middle part of the upper side panel; the heat collector driving device drives the rotary connecting rod heat collector to rotate and drives the upper side panel to slide left and right.
As a further improvement of the invention, the angle adjusting assembly is convenient to work and adjust, and the working efficiency is high; the angle adjusting assembly comprises a rotating main shaft, a gear sleeved on the rotating main shaft, a rack arranged at the bottom of the lower side panel, a rotating seat used for fixing the rotating main shaft on the lower side panel and a rotating driving device used for driving the rotating main shaft to rotate; the rotation driving device drives the rotation main shaft to enable the gear to rotate on the rack and drive the light condensing panel to conduct angle adjustment.
As a further improvement of the invention, in order to ensure that the lifting assembly can normally lift and work and ensure that the always-on sunward surface always keeps high-efficiency work; the lifting components are arranged on two sides of the branch supporting frame respectively and correspond to the left arc-shaped support and the right arc-shaped support respectively, the lifting components comprise a left lifting mechanism and a right lifting mechanism, the left lifting mechanism and the right lifting mechanism are symmetrically arranged, and a plurality of groups of lifting connecting rods are respectively arranged on the left lifting mechanism and the right lifting mechanism from front to back.
As a further improvement of the invention, the lifting connecting rod is reliably lifted, works stably and can prolong the service life; the lifting connecting rod is hinged with the left arc-shaped bracket and the right arc-shaped bracket respectively, and the left arc-shaped bracket and the right arc-shaped bracket are made of high-strength materials; the lifting connecting rod is also made of high-strength materials.
The invention has the beneficial effects that: the efficient concentrating solar device with the real-time angle and concentrating area adjusted can improve the power generation efficiency of the solar device, can work along with the sunlight direction all the time, and adjusts the optimal concentrating angle; the working reliability is improved, and the cost is reduced.
Drawings
Fig. 1 is a structural diagram of the present invention.
Fig. 2 is an enlarged view at a in fig. 1.
Fig. 3 is a side view of a condensing panel.
Fig. 4 is a front view of the condensing panel.
Fig. 5 is a sliding view of the upper side panel.
The solar energy collecting device comprises a main support frame 1, support feet 2, a branch support frame 3, an arc support frame 4 on the left side, an arc support frame 5 on the right side, a concentrating solar energy component 6, a fixed frame 7, an upper side panel 8, a lower side panel 9, an arc support frame 10, reinforcing ribs 11, a rotary connecting rod heat collector 12, a rotary driving device 13, a rack 14, a gear 15, a rotary main shaft 16, a rotary seat 17 and a lifting connecting rod 18.
Detailed Description
As shown in fig. 1-5, the object of the present invention is achieved by: the utility model provides a high-efficient spotlight solar device of real-time angle regulation and spotlight area, includes main support frame 1, and the bottom of main support frame 1 is provided with a plurality of groups supporting legs 2, and supporting legs 2 pass through the bolt fastening on ground, be provided with the blotter between supporting legs 2 and the ground, main support frame 1 is provided with a plurality of groups and is the array distribution; each group of main support frames 1 is provided with a plurality of groups of concentrating solar modules 6, the concentrating solar modules 6 are arranged on the main support frames 1 side by side, and the concentrating solar modules 6 are arranged on the main support frames 1 at intervals and in parallel; Lifting components are matched and arranged on each group of main support frames 1, and angle adjusting components are arranged on the concentrating solar components 6 matched with the main support frames 1; the concentrating solar module 6 is also provided with a reflecting area lifting device in a matched mode; the main support frame 1 comprises a plurality of groups of branch support frames 3 which are arranged side by side, and the plurality of groups of branch support frames 3 are independently arranged and connected together through a buffer component; the branch bracket 3 comprises a left arc-shaped bracket 4 and a right arc-shaped bracket 5, and a concentrating solar component 6 is arranged between the left arc-shaped bracket 4 and the right arc-shaped bracket 5; the concentrating strip solar energy component is fixed between the left arc-shaped bracket 4 and the right arc-shaped bracket 5 through the angle adjusting component; The concentrating solar module 6 comprises a concentrating panel which is arranged in an arc shape, a fixed frame 7 which is matched with the concentrating panel, and a reflecting area lifting device which is matched with the arc surface of the concentrating panel and is fixed on the concentrating panel; the light-gathering panels are provided with double layers and comprise an upper side panel 8 and a lower side panel 9, the lower side panel 9 is arranged on the fixed frame 7, and a gap is arranged between adjacent light-gathering panels; the reflecting area lifting device comprises a plurality of groups of arc-shaped brackets 10 fixed on the upper side panel 8, a rotary connecting rod heat collector 12 penetrating through the top of the arc-shaped brackets 10, a heat collector driving device is arranged on the side face of the rotary connecting rod heat collector 12 in a matched mode, and the arc-shaped brackets 10 are provided with three groups and are respectively arranged at the left side, the right side and the middle part of the light condensation panel; the arc-shaped support 10 is arranged in a triangle shape, a reinforcing rib 11 is arranged in the middle of the arc-shaped support 10, and the arc-shaped surface of the arc-shaped support 10 is respectively bonded with the left side, the right side and the middle of the upper side panel 8; the collector driving device drives the rotary connecting rod collector 12 to rotate and drives the upper side panel 8 to slide left and right; the angle adjusting assembly comprises a rotating main shaft 16, a gear 15 sleeved on the rotating main shaft 16, a rack 14 arranged at the bottom of the lower side panel 9, a rotating seat 17 used for fixing the rotating main shaft 16 on the lower side panel 9, and a rotating driving device 13 used for driving the rotating main shaft 16 to rotate; The rotation driving device 13 drives the rotation main shaft 16 to enable the gear 15 to rotate on the rack 14 and drive the light condensing panel to perform angle adjustment; the lifting components are respectively arranged at two sides of the branch bracket 3 and respectively correspond to the left arc-shaped bracket 4 and the right arc-shaped bracket 5, the lifting components comprise a left lifting mechanism and a right lifting mechanism, the left lifting mechanism and the right lifting mechanism are symmetrically arranged, and the left lifting mechanism and the right lifting mechanism are respectively provided with a plurality of groups of lifting connecting rods 18 from front to back; the lifting connecting rod 18 is respectively hinged with the left arc-shaped bracket 4 and the right arc-shaped bracket 5, and the left arc-shaped bracket 4 and the right arc-shaped bracket 5 are made of high-strength materials; the lifting link 18 is also made of a high strength material.
When the invention does not work at night, a plurality of groups of lifting connecting rods 18 of the left lifting mechanism and the right lifting mechanism are all contracted, the left arc-shaped bracket 4 and the right arc-shaped bracket 5 matched with the left lifting mechanism and the right lifting mechanism are also arranged parallel to the ground, and the upper side panel 8 and the lower side panel 9 are overlapped together;
In the morning, when the sun rises from the east, the upper side panel 8 on the side close to the sun is driven by the corresponding rotation driving device 13, and then the upper side panel 8 which is in an arc shape is arranged towards the east by the rotation of the gear 15 and the rack 14, and is perpendicular to the direction of light rays, so that a light source is conveniently focused on the corresponding rotation connecting rod heat collector 12; the upper side panel 8 and the rear upper side panel 8 close to the sun side in the middle are driven by the corresponding rotation driving device 13 to adjust the angle to meet the light and focus the light on the rotation connecting rod heat collector 12; at the same time, the lifting connecting rod 18 at the front position is fixed, the lifting connecting rod 18 at the middle position is lifted at a low speed, and the lifting connecting rod 18 at the rear position is lifted at a low speed to ensure that the whole branch bracket 3 faces the sun in a ladder shape and focuses;
In the noon period, the sun is in mid-air, the front upper side panel 8, the middle upper side panel 8 and the rear upper side panel 8 are all arranged upwards, and the lifting connecting rod 18 descends along with the change of the direct angle of the sun and descends to the proper position; because the sunlight irradiates the strongest in the noon period, the rotating connecting rod heat collector 12 drives the upper side panel 8 connected with the arc-shaped bracket 10 to move towards the upper side or towards the lower side by the drive of the heat collector driving device, so that the upper side panel 8 and the lower side panel 9 can be ensured to simultaneously focus, and the working surface becomes the previous double area at the moment, so that the heat collection effect can be doubled instantaneously;
In the afternoon period, along with the movement of the sun towards the western direction, along with the deficiency of illumination intensity, the arc-shaped bracket 10 drives the upper side panel 8 to gradually coincide with the lower side panel 9 and keeps the upper side panel 8 to independently work; the upper side panel 8 originally close to the solar section becomes an upper side panel 8 far away from the solar end, the position of the middle upper side panel 8 is unchanged, the rear upper side panel 8 becomes an upper side panel 8 close to the solar end, the upper side panel 8 far away from the solar end is lifted at a low speed through the lifting connecting rod 18, the middle upper side panel 8 is lifted at a low speed, and the lifting connecting rod 18 of the upper side panel 8 close to the solar section does not act; meanwhile, the upper side panel 8 is always arranged towards the sunlight direction under the drive of the heat collector driving device.
The invention is not limited to the above embodiments, and based on the technical solution disclosed in the invention, a person skilled in the art may make some substitutions and modifications to some technical features thereof without creative effort according to the technical content disclosed, and all the substitutions and modifications are within the protection scope of the invention.

Claims (3)

1.一种实时调节角度及聚光面积的高效聚光太阳能装置,包括主支撑架,其特征在于,主支撑架的底部设置有若干组支撑脚,支撑脚通过螺栓固定在地面上,所述支撑脚与地面之间设置有缓冲垫,所述主支撑架设置有若干组并呈阵列分布;每组主支撑架上设置有若干组聚光太阳能组件,所述聚光太阳能组件在主支撑架上并排设置有若干组,所述聚光太阳能组件在主支撑架上间隔并平行设置有若干排;每组主支撑架上均配合设置有升降组件,所述聚光太阳能组件配合主支撑架设置有角度调节组件;所述聚光太阳能组件上还配合设置有反射面积提升装置;所述主支撑架包括若干组并排设置的分支撑架,若干组分支撑架之间均独立设置并通过缓冲组件连接在一起;所述分支撑架包括左侧弧形支架和右侧弧形支架,设置在左侧弧形支架和右侧弧形支架之间的聚光太阳能组件;聚光太阳能组件通过角度调节组件固定在左侧弧形支架和右侧弧形支架之间;所述聚光太阳能组件包括呈弧形设置的聚光面板,配合聚光面板设置的固定框架,匹配聚光面板的弧形面设置并固定在聚光面板上的反射面积提升装置;所述聚光面板设置有双层并包括上侧面板和下侧面板,所述下侧面板安装在固定框架上,相邻的聚光面板之间设置有间隙;所述反射面积提升装置包括固定在上侧面板上的若干组弧形支架,贯穿在弧形支架顶部的转动连杆集热器,转动连杆集热器的侧面配合设置有集热器驱动装置,所述弧形支架设置有三组并分别设置在聚光面板的左侧、右侧及中间部位;所述弧形支架呈三角形设置,弧形支架的中间位置设置有加强筋,所述弧形支架的弧形面分别与上侧面板的左侧、右侧和中间部位粘接在一起;集热器驱动装置带动转动连杆集热器转动并带动上侧面板进行左右滑动;所述升降组件分别设置在分支撑架的两侧并分别对应左侧弧形支架和右侧弧形支架设置,所述升降组件包括左侧升降机构和右侧升降机构,左侧升降机构和右侧升降机构对称设置,所述左侧升降机构和右侧升降机构从前到后分别设置有若干组升降连杆。1. A high-efficiency concentrated solar energy device with real-time adjustment of angle and concentrated area, comprising a main support frame, characterized in that a plurality of groups of support feet are arranged at the bottom of the main support frame, the support feet are fixed to the ground by bolts, a buffer pad is arranged between the support feet and the ground, and the main support frame is provided with a plurality of groups and distributed in an array; a plurality of groups of concentrated solar energy components are arranged on each group of main support frames, and a plurality of groups of the concentrated solar energy components are arranged side by side on the main support frames, and a plurality of rows of the concentrated solar energy components are arranged at intervals and in parallel on the main support frames; a lifting assembly is provided on each group of main support frames, and the concentrated solar energy components are provided in parallel on the main support frames. The solar energy assembly is equipped with an angle adjustment assembly in conjunction with the main support frame; the concentrating solar energy assembly is also equipped with a reflection area lifting device; the main support frame includes a plurality of sub-support frames arranged side by side, and the plurality of component support frames are independently arranged and connected together through a buffer assembly; the sub-support frame includes a left arc-shaped bracket and a right arc-shaped bracket, and the concentrating solar energy assembly is arranged between the left arc-shaped bracket and the right arc-shaped bracket; the concentrating solar energy assembly is fixed between the left arc-shaped bracket and the right arc-shaped bracket through an angle adjustment assembly; the concentrating solar energy assembly includes a concentrating panel arranged in an arc shape, and cooperates with the concentrating The panel is provided with a fixed frame, and a reflective area enhancement device is provided on the curved surface of the concentrating panel and fixed on the concentrating panel; the concentrating panel is provided with a double layer and includes an upper side panel and a lower side panel, the lower side panel is installed on the fixed frame, and a gap is provided between adjacent concentrating panels; the reflective area enhancement device includes a plurality of groups of arc brackets fixed on the upper side panel, a rotating connecting rod collector penetrating the top of the arc bracket, and a collector driving device is provided on the side of the rotating connecting rod collector, and the arc bracket is provided with three groups and is respectively provided on the left side, right side and middle part of the concentrating panel; the arc The bracket is arranged in a triangular shape, and a reinforcing rib is arranged in the middle position of the arc bracket. The arc surface of the arc bracket is respectively bonded to the left side, the right side and the middle part of the upper panel; the collector driving device drives the rotating connecting rod collector to rotate and drives the upper panel to slide left and right; the lifting components are respectively arranged on both sides of the sub-support frame and correspond to the left arc bracket and the right arc bracket respectively, and the lifting components include a left lifting mechanism and a right lifting mechanism, which are symmetrically arranged, and the left lifting mechanism and the right lifting mechanism are respectively provided with a plurality of lifting connecting rods from front to back. 2.根据权利要求1所述的一种实时调节角度及聚光面积的高效聚光太阳能装置,其特征在于:所述角度调节组件包括转动主轴,套装在转动主轴上的齿轮,设置在下侧面板底部的齿条,用于将转动主轴固定在下侧面板上的转动座,用于驱动转动主轴进行转动的转动驱动装置;所述转动驱动装置通过驱动转动主轴使得齿轮在齿条上进行转动并带动聚光面板进行角度调节。2. According to claim 1, a high-efficiency concentrating solar energy device with real-time adjustment of angle and focusing area is characterized in that: the angle adjustment component includes a rotating main shaft, a gear mounted on the rotating main shaft, a rack arranged at the bottom of the lower side panel, a rotating seat for fixing the rotating main shaft on the lower side panel, and a rotating drive device for driving the rotating main shaft to rotate; the rotating drive device drives the rotating main shaft to rotate the gear on the rack and drives the focusing panel to adjust the angle. 3.根据权利要求1或2所述的一种实时调节角度及聚光面积的高效聚光太阳能装置,其特征在于:所述升降连杆分别和左侧弧形支架、右侧弧形支架之间铰接设置,左侧弧形支架和右侧弧形支架采用高强度材料制成;所述升降连杆也采用高强度材料制成。3. According to claim 1 or 2, a high-efficiency concentrating solar energy device with real-time adjustment of angle and focusing area is characterized in that: the lifting connecting rod is hinged to the left arc bracket and the right arc bracket respectively, and the left arc bracket and the right arc bracket are made of high-strength material; the lifting connecting rod is also made of high-strength material.
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