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Hydropower station layered water taking and slag removing system
The invention discloses a hydropower station layered water taking and slag removing system, relates to the field of water conservancy projects, solves the problem that the manual sewage removing process of traditional sewage blocking floats and sewage blocking grates is tedious, and adopts the technical scheme that the hydropower station layered water taking and slag removing system comprises side walls arranged on the two sides of the upstream direction of a gate of a water inlet of a dam body; a vertically-arranged retention wall is arranged between the side walls, a lifting door is arranged at the top of the retention wall, the two ends of the trash blocking plate are installed on the inner sides of the two side walls respectively, the cross section of the trash blocking plate is in an L shape, and the trash cleaning plate is installed in an internal corner formed by the vertical portion and the horizontal portion of the trash blocking plate. The trash blocking plate is further provided with a horizontal driving mechanism used for driving the trash cleaning plate to reciprocate in the extending direction of the vertex of the internal corner. Winding devices are installed on the two side walls respectively, one ends of the winding devices are located at the two ends of the trash blocking plate, and the other ends of the winding devices are slag outlet ends located at the tops of the dam body or the side walls. The device is arranged at a water inlet of a dam body and is used for filtering water and automatically cleaning filtered aquatic plants and floating objects.
本发明公开了一种水电站分层取水清渣系统,涉及水利工程领域,解决传统拦污漂和拦污栅手动清污过程繁琐的问题,采用的技术方案是:水电站分层取水清渣系统,包括布置于坝体进水口的闸门上游方向两侧的侧墙,侧墙之间为竖向布置的挡水墙,挡水墙的顶部设置升降门,拦污板的两端分别安装于两堵侧墙的内侧,拦污板在其截面上呈L形,拦污板的竖直部和水平部形成的阴角内安装清污板,拦污板还安装用于驱动清污板沿阴角顶点的延伸方向往复运动的水平驱动机构;两堵侧墙上分别安装卷扬装置,卷扬装置的一端位于拦污板的两端,另一端为位于坝体或侧墙顶部的出渣端。本发明布置于坝体进水口,用于过滤水体,并自动对过滤出来的水草及漂浮物进行清理。
Hydropower station layered water taking and slag removing system
The invention discloses a hydropower station layered water taking and slag removing system, relates to the field of water conservancy projects, solves the problem that the manual sewage removing process of traditional sewage blocking floats and sewage blocking grates is tedious, and adopts the technical scheme that the hydropower station layered water taking and slag removing system comprises side walls arranged on the two sides of the upstream direction of a gate of a water inlet of a dam body; a vertically-arranged retention wall is arranged between the side walls, a lifting door is arranged at the top of the retention wall, the two ends of the trash blocking plate are installed on the inner sides of the two side walls respectively, the cross section of the trash blocking plate is in an L shape, and the trash cleaning plate is installed in an internal corner formed by the vertical portion and the horizontal portion of the trash blocking plate. The trash blocking plate is further provided with a horizontal driving mechanism used for driving the trash cleaning plate to reciprocate in the extending direction of the vertex of the internal corner. Winding devices are installed on the two side walls respectively, one ends of the winding devices are located at the two ends of the trash blocking plate, and the other ends of the winding devices are slag outlet ends located at the tops of the dam body or the side walls. The device is arranged at a water inlet of a dam body and is used for filtering water and automatically cleaning filtered aquatic plants and floating objects.
本发明公开了一种水电站分层取水清渣系统,涉及水利工程领域,解决传统拦污漂和拦污栅手动清污过程繁琐的问题,采用的技术方案是:水电站分层取水清渣系统,包括布置于坝体进水口的闸门上游方向两侧的侧墙,侧墙之间为竖向布置的挡水墙,挡水墙的顶部设置升降门,拦污板的两端分别安装于两堵侧墙的内侧,拦污板在其截面上呈L形,拦污板的竖直部和水平部形成的阴角内安装清污板,拦污板还安装用于驱动清污板沿阴角顶点的延伸方向往复运动的水平驱动机构;两堵侧墙上分别安装卷扬装置,卷扬装置的一端位于拦污板的两端,另一端为位于坝体或侧墙顶部的出渣端。本发明布置于坝体进水口,用于过滤水体,并自动对过滤出来的水草及漂浮物进行清理。
Hydropower station layered water taking and slag removing system
水电站分层取水清渣系统
YANG YUPENG (author) / YAN JIANGPING (author) / YANG JIAO (author) / YANG ANLIN (author) / WANG HAO (author) / JIE BINGHUI (author) / HE BING (author) / ZHANG YAQIN (author)
2024-07-30
Patent
Electronic Resource
Chinese
IPC:
E02B
HYDRAULIC ENGINEERING
,
Wasserbau
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