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Steel pipe pile photovoltaic support foundation capable of preventing foundation soil from frost heaving
The invention discloses a steel pipe pile photovoltaic support foundation capable of preventing frost heaving of foundation soil. Comprising a concrete pile, a buttress, a steel pipe pile body, filling plastic foam, a through hole, a first connecting column, a spherical hinge support, a second through groove, a cross beam, a vertical beam, an illumination sensor, a gyroscope, a first servo motor, a first screw rod, a fixing screw, a buckle, a second limiting block, a second servo motor and a second screw rod. The pile foundation structure combining the concrete pile foundation and the steel pipe pile foundation is designed, the contact area between the concrete piles and the soil foundation is enlarged, the influence of frost heaving force is effectively reduced, meanwhile, the hollow filling plastic foam structure is adopted, the weight of the pile foundation is effectively reduced, and when frozen soil melts, frost heaving force is effectively reduced. The stable fixing effect can be achieved by combining the steel pipe piles, and the settlement phenomenon is not prone to occurring; through the automatic inclination angle adjusting structure, the inclination angle of the support can be adjusted according to real-time illumination changes, so that the photovoltaic power generation system achieves the optimal power generation efficiency.
本发明公开了一种防地基土壤冻胀的钢管桩光伏支架基础,包括混凝土桩、支墩、钢管桩本体、填充塑料泡沫、通孔、第一连接柱、球铰支座、第二通槽、横梁、竖梁、光照传感器、陀螺仪、第一伺服电机、第一螺杆、固定螺丝、环扣、第二限位块、第二伺服电机和第二螺杆;本发明设计有混凝土桩基础与钢管桩基础相结合的桩基础结构,通过混凝土桩扩大与土壤地基的接触面积,有效降低冻胀力的影响,同时采用中空填充塑料泡沫结构,有效减轻桩基础重量,在冻土融化时,结合钢管桩可以达到稳定的固定效果,不易发生沉降现象;通过自动倾角调节结构,可以根据实时光照变化进行支架倾角调节,使得光伏发电系统达到最佳的发电效率。
Steel pipe pile photovoltaic support foundation capable of preventing foundation soil from frost heaving
The invention discloses a steel pipe pile photovoltaic support foundation capable of preventing frost heaving of foundation soil. Comprising a concrete pile, a buttress, a steel pipe pile body, filling plastic foam, a through hole, a first connecting column, a spherical hinge support, a second through groove, a cross beam, a vertical beam, an illumination sensor, a gyroscope, a first servo motor, a first screw rod, a fixing screw, a buckle, a second limiting block, a second servo motor and a second screw rod. The pile foundation structure combining the concrete pile foundation and the steel pipe pile foundation is designed, the contact area between the concrete piles and the soil foundation is enlarged, the influence of frost heaving force is effectively reduced, meanwhile, the hollow filling plastic foam structure is adopted, the weight of the pile foundation is effectively reduced, and when frozen soil melts, frost heaving force is effectively reduced. The stable fixing effect can be achieved by combining the steel pipe piles, and the settlement phenomenon is not prone to occurring; through the automatic inclination angle adjusting structure, the inclination angle of the support can be adjusted according to real-time illumination changes, so that the photovoltaic power generation system achieves the optimal power generation efficiency.
本发明公开了一种防地基土壤冻胀的钢管桩光伏支架基础,包括混凝土桩、支墩、钢管桩本体、填充塑料泡沫、通孔、第一连接柱、球铰支座、第二通槽、横梁、竖梁、光照传感器、陀螺仪、第一伺服电机、第一螺杆、固定螺丝、环扣、第二限位块、第二伺服电机和第二螺杆;本发明设计有混凝土桩基础与钢管桩基础相结合的桩基础结构,通过混凝土桩扩大与土壤地基的接触面积,有效降低冻胀力的影响,同时采用中空填充塑料泡沫结构,有效减轻桩基础重量,在冻土融化时,结合钢管桩可以达到稳定的固定效果,不易发生沉降现象;通过自动倾角调节结构,可以根据实时光照变化进行支架倾角调节,使得光伏发电系统达到最佳的发电效率。
Steel pipe pile photovoltaic support foundation capable of preventing foundation soil from frost heaving
一种防地基土壤冻胀的钢管桩光伏支架基础
LYU QUANWEI (author) / WANG JIANBAO (author) / WANG XIANGYU (author) / WANG RUIFENG (author) / HU HUI (author) / QIAO SHAOFENG (author) / CHEN QUAN (author)
2024-08-06
Patent
Electronic Resource
Chinese
IPC:
E02D
FOUNDATIONS
,
Gründungen
/
H02S
GENERATION OF ELECTRIC POWER BY CONVERSION OF INFRA-RED RADIATION, VISIBLE LIGHT OR ULTRAVIOLET LIGHT, E.G. USING PHOTOVOLTAIC [PV] MODULES
,
Erzeugung elektrischer Energie durch Umwandlung von Infrarot-Strahlung, sichtbarem Licht oder ultraviolettem Licht, z.B. unter Verwendung von Photovoltaik [PV]-Modulen
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