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Arrangement design method for distributed photovoltaic power station assembly on roof of hot rolling plant
The invention discloses a hot rolling plant roof distributed photovoltaic power station assembly arrangement design method. The method comprises the following steps: 1) collecting data; 2) determining a roof area which can be used for arranging the photovoltaic module; (3) rechecking and checking roof conditions; (4) according to the result of rechecking and checking, if the load meets the requirement, entering the step (5), if the load does not meet the requirement, judging whether the project is subjected to structural reinforcement or not, if reinforcement measures are adopted, entering the step (5), and if the reinforcement measures are not adopted, judging that construction conditions are not met, and ending the design; 5) determining an assembly arrangement area meeting the photovoltaic assembly bearing and roof tile mounting conditions; 6) determining an assembly arrangement area S2; 7) performing field recheck to determine a final available area; (8) arranging and designing components; (9) evaluating the influence of a hot rolling process strong heat source radiation area on roof component arrangement; and 10) according to an evaluation result, determining whether assembly arrangement design is completed or not. Therefore, the design accuracy and the convenience of construction, operation and maintenance are improved.
本申请公开了一种热轧厂房屋顶分布式光伏电站组件布置设计方法。该方法包括:1)收集资料;2)确定可用于光伏组件布置的屋面区域;3)对屋面情况复核验算;4)根据复核验算的结果,若荷载满足要求,则进入步骤5),若荷载不满足要求,则项目是否进行结构加固,若采用加固措施,则再进入步骤5),若不采用加固措施,则不满足建设条件,设计结束;5)确定满足光伏组件承载、屋面瓦安装条件的组件布置区域;6)确定用于组件布置区域S2;7)现场复核确定最终可用区域;8)组件布置设计;9)评估热轧工艺强热源辐射区域对屋面组件布置影响;10)根据评估结果,确定是否完成组件布置设计。由此,提高设计的准确性和施工及运维的便利性。
Arrangement design method for distributed photovoltaic power station assembly on roof of hot rolling plant
The invention discloses a hot rolling plant roof distributed photovoltaic power station assembly arrangement design method. The method comprises the following steps: 1) collecting data; 2) determining a roof area which can be used for arranging the photovoltaic module; (3) rechecking and checking roof conditions; (4) according to the result of rechecking and checking, if the load meets the requirement, entering the step (5), if the load does not meet the requirement, judging whether the project is subjected to structural reinforcement or not, if reinforcement measures are adopted, entering the step (5), and if the reinforcement measures are not adopted, judging that construction conditions are not met, and ending the design; 5) determining an assembly arrangement area meeting the photovoltaic assembly bearing and roof tile mounting conditions; 6) determining an assembly arrangement area S2; 7) performing field recheck to determine a final available area; (8) arranging and designing components; (9) evaluating the influence of a hot rolling process strong heat source radiation area on roof component arrangement; and 10) according to an evaluation result, determining whether assembly arrangement design is completed or not. Therefore, the design accuracy and the convenience of construction, operation and maintenance are improved.
本申请公开了一种热轧厂房屋顶分布式光伏电站组件布置设计方法。该方法包括:1)收集资料;2)确定可用于光伏组件布置的屋面区域;3)对屋面情况复核验算;4)根据复核验算的结果,若荷载满足要求,则进入步骤5),若荷载不满足要求,则项目是否进行结构加固,若采用加固措施,则再进入步骤5),若不采用加固措施,则不满足建设条件,设计结束;5)确定满足光伏组件承载、屋面瓦安装条件的组件布置区域;6)确定用于组件布置区域S2;7)现场复核确定最终可用区域;8)组件布置设计;9)评估热轧工艺强热源辐射区域对屋面组件布置影响;10)根据评估结果,确定是否完成组件布置设计。由此,提高设计的准确性和施工及运维的便利性。
Arrangement design method for distributed photovoltaic power station assembly on roof of hot rolling plant
一种热轧厂房屋顶分布式光伏电站组件布置设计方法
HE XIONGFENG (Autor:in) / YIN HONGSHUN (Autor:in) / ZHANG YAWEI (Autor:in) / LIU GUANZHONG (Autor:in) / KE GUANG (Autor:in) / ZHANG LIQIANG (Autor:in) / WANG SHUQI (Autor:in) / CHU CHENYANG (Autor:in) / ZHAO FENGYING (Autor:in)
03.03.2023
Patent
Elektronische Ressource
Chinesisch
IPC:
E04G
SCAFFOLDING
,
Baugerüste
/
E04D
ROOF COVERINGS
,
Dacheindeckungen
/
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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