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Fully-assembled main control building for 500kV transformer substation in high-altitude and high-intensity seismic region
The invention provides a fully-assembled main control building for a 500kV transformer substation in a high-altitude and high-intensity seismic region. A main frame structure comprises a plurality of main frame columns, a plurality of main frame beams and a plurality of secondary beams, wherein the same-layer-height plane of the main frame columns is partitioned into a plurality of square grids by the plurality of main frame beams; in each square grid, the main frame beams are fixedly connected between two transversely-adjacent main frame columns and two longitudinally-adjacent main frame columns respectively; the secondary beams are fixedly connected between two opposite main frame beams; the sections of the main frame columns, the main frame beams and the secondary beams are H-shaped. The conventional construction way of building member field manufacturing is changed, the field high-altitude welding operation is greatly reduced, and the overall seismic performance and construction efficiency of the main control building are greatly improved. Meanwhile, the field construction labor force is saved, the labor intensity of field construction personnel is effectively lowered, and the building progress of the main control building is accelerated.
Fully-assembled main control building for 500kV transformer substation in high-altitude and high-intensity seismic region
The invention provides a fully-assembled main control building for a 500kV transformer substation in a high-altitude and high-intensity seismic region. A main frame structure comprises a plurality of main frame columns, a plurality of main frame beams and a plurality of secondary beams, wherein the same-layer-height plane of the main frame columns is partitioned into a plurality of square grids by the plurality of main frame beams; in each square grid, the main frame beams are fixedly connected between two transversely-adjacent main frame columns and two longitudinally-adjacent main frame columns respectively; the secondary beams are fixedly connected between two opposite main frame beams; the sections of the main frame columns, the main frame beams and the secondary beams are H-shaped. The conventional construction way of building member field manufacturing is changed, the field high-altitude welding operation is greatly reduced, and the overall seismic performance and construction efficiency of the main control building are greatly improved. Meanwhile, the field construction labor force is saved, the labor intensity of field construction personnel is effectively lowered, and the building progress of the main control building is accelerated.
Fully-assembled main control building for 500kV transformer substation in high-altitude and high-intensity seismic region
LU YI (Autor:in) / ZHONG SHAN (Autor:in) / FENG XIAOMING (Autor:in) / YU BO (Autor:in) / XU XIAOLI (Autor:in) / YANG GUAN (Autor:in) / FENG RENDE (Autor:in) / MAO YU (Autor:in) / ZHOU HUAQIANG (Autor:in) / HE YONG (Autor:in)
06.05.2015
Patent
Elektronische Ressource
Englisch
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