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Floating access door for draining and overhauling sluice chamber of hydropower station sluice and using method of floating access door for draining and overhauling sluice chamber of hydropower station sluice
The floating access door comprises a floating door body, a sealing structure arranged at the bottom end of the floating door body, a pump cabin arranged at the bottom of the floating door body and ballast tanks arranged around the pump cabin, the ballast tanks are arranged in mirror symmetry along the middle of the floating door body, and the pump cabin is connected with the ballast tanks. Side face sealing structures are arranged on the two sides of the floating door body. The effects that the posture stability, the operation automation degree, the sealing effect, the drainage efficiency, the safety, the maintenance efficiency and the operation convenience of the floating door are improved are achieved.
本发明公开了一种用于水电站泄水闸闸室排干检修的浮式检修门,包括浮门本体、布置于浮门本体底端的密封结构设置于浮门本体底部泵舱和围绕泵舱布置的压载舱,压载舱沿浮门本体中部镜像对称布置,泵舱连接压载舱,浮门本体两侧均设置有侧面密封结构。产生了提高了浮门的姿态稳定性、操作自动化程度、密封效果、排水效率、安全性、检修效率和操作便利性的效果。
Floating access door for draining and overhauling sluice chamber of hydropower station sluice and using method of floating access door for draining and overhauling sluice chamber of hydropower station sluice
The floating access door comprises a floating door body, a sealing structure arranged at the bottom end of the floating door body, a pump cabin arranged at the bottom of the floating door body and ballast tanks arranged around the pump cabin, the ballast tanks are arranged in mirror symmetry along the middle of the floating door body, and the pump cabin is connected with the ballast tanks. Side face sealing structures are arranged on the two sides of the floating door body. The effects that the posture stability, the operation automation degree, the sealing effect, the drainage efficiency, the safety, the maintenance efficiency and the operation convenience of the floating door are improved are achieved.
本发明公开了一种用于水电站泄水闸闸室排干检修的浮式检修门,包括浮门本体、布置于浮门本体底端的密封结构设置于浮门本体底部泵舱和围绕泵舱布置的压载舱,压载舱沿浮门本体中部镜像对称布置,泵舱连接压载舱,浮门本体两侧均设置有侧面密封结构。产生了提高了浮门的姿态稳定性、操作自动化程度、密封效果、排水效率、安全性、检修效率和操作便利性的效果。
Floating access door for draining and overhauling sluice chamber of hydropower station sluice and using method of floating access door for draining and overhauling sluice chamber of hydropower station sluice
用于水电站泄水闸闸室排干检修的浮式检修门及使用方法
ZHU SISI (Autor:in) / YE DEZHEN (Autor:in) / LIANG QIANG (Autor:in) / JIA HONGGANG (Autor:in) / GENG ZAIMING (Autor:in) / WAN GANG (Autor:in) / ZHANG YI (Autor:in) / ZHU QUANPING (Autor:in) / YANG LINZHEN (Autor:in) / YE QIANG (Autor:in)
31.12.2024
Patent
Elektronische Ressource
Chinesisch
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
Europäisches Patentamt | 2021
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