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Photovoltaic power plant reinforcing method
The invention relates to the technical field of photovoltaic plant strengthening, and discloses a photovoltaic power plant strengthening method which comprises the steps that plant roof parameters are obtained, a plant roof evaluation value is generated according to the plant roof parameters, and a first strengthening scheme is formulated; determining a first reference point, optimizing the first reinforcement scheme according to the characteristic parameters of the photovoltaic panel at the first reference point, and generating a second reinforcement scheme; performing simulation construction simulation according to the second reinforcement scheme, generating an application evaluation value according to a simulation result, and judging whether a construction instruction is generated or not according to the application evaluation value; the factory building roof evaluation value is obtained according to the factory building roof parameters, the reinforcement scheme is formulated, the reinforcement scheme is optimized according to the bearing capacity threshold value at the first reference point, the optimized reinforcement scheme is subjected to simulation construction simulation, and the feasibility, safety and required cost of the current reinforcement scheme are obtained according to the simulation result. The safety performance of the plant is ensured, the resource cost is saved, and the construction difficulty and the risk coefficient are reduced.
本申请涉及光伏厂房加固技术领域,公开了一种光伏发电厂房加固方法,该方法包括:获取厂房屋面参数,根据厂房屋面参数生成厂房屋面评价值并制定第一加固方案;确定第一参考点,根据第一参考点处光伏板的特征参数对第一加固方案进行优化,生成第二加固方案;按照第二加固方案进行仿真施工模拟,根据模拟结果生成应用评价值,根据应用评价值判断是否生成施工指令;本发明根据厂房屋面参数得到厂房屋面评价值并制定加固方案,根据第一参考点处的承载力阈值对加固方案进行优化,将优化后的加固方案进行仿真施工模拟,根据模拟结果得到当前加固方案的可行性、安全性以及所需成本,确保厂房的安全性能并节省资源成本,降低了建设难度与风险系数。
Photovoltaic power plant reinforcing method
The invention relates to the technical field of photovoltaic plant strengthening, and discloses a photovoltaic power plant strengthening method which comprises the steps that plant roof parameters are obtained, a plant roof evaluation value is generated according to the plant roof parameters, and a first strengthening scheme is formulated; determining a first reference point, optimizing the first reinforcement scheme according to the characteristic parameters of the photovoltaic panel at the first reference point, and generating a second reinforcement scheme; performing simulation construction simulation according to the second reinforcement scheme, generating an application evaluation value according to a simulation result, and judging whether a construction instruction is generated or not according to the application evaluation value; the factory building roof evaluation value is obtained according to the factory building roof parameters, the reinforcement scheme is formulated, the reinforcement scheme is optimized according to the bearing capacity threshold value at the first reference point, the optimized reinforcement scheme is subjected to simulation construction simulation, and the feasibility, safety and required cost of the current reinforcement scheme are obtained according to the simulation result. The safety performance of the plant is ensured, the resource cost is saved, and the construction difficulty and the risk coefficient are reduced.
本申请涉及光伏厂房加固技术领域,公开了一种光伏发电厂房加固方法,该方法包括:获取厂房屋面参数,根据厂房屋面参数生成厂房屋面评价值并制定第一加固方案;确定第一参考点,根据第一参考点处光伏板的特征参数对第一加固方案进行优化,生成第二加固方案;按照第二加固方案进行仿真施工模拟,根据模拟结果生成应用评价值,根据应用评价值判断是否生成施工指令;本发明根据厂房屋面参数得到厂房屋面评价值并制定加固方案,根据第一参考点处的承载力阈值对加固方案进行优化,将优化后的加固方案进行仿真施工模拟,根据模拟结果得到当前加固方案的可行性、安全性以及所需成本,确保厂房的安全性能并节省资源成本,降低了建设难度与风险系数。
Photovoltaic power plant reinforcing method
一种光伏发电厂房加固方法
TANG WENHAO (author) / GUO XIAOBIN (author) / YANG JIUTAO (author)
2024-07-05
Patent
Electronic Resource
Chinese
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
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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