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黄水沟分洪枢纽溢洪堰底栏栅消能设计施工简介
引用本文:董斌. 黄水沟分洪枢纽溢洪堰底栏栅消能设计施工简介[J]. 中国农村水电及电气化, 2014, 0(1): 48-49,47
作者姓名:董斌
作者单位:新疆塔河流域巴音郭楞管理局解放二渠管理站,新疆和静841300
摘    要:摘要:黄水沟分洪枢纽溢洪堰底栏栅消能曾采用硅粉混凝土和铺设橡胶的方式,但由于混凝土刚性材料与橡胶的连接及橡胶老化等原因,不能满足要求。后采用钢钻杆,按水流方向纵排列布置于底板之上来抗冲砸,因钢钻杆强度极高,但造价不高,与钢结构和混凝土连接牢固,对巨石冲砸起到了十分满意的效果。本文对此加以介绍。

关 键 词:钢钻杆  抗冲砸  消能设计施工

Introduction of Bottom Grid Energy Dissipation Design and Construction of Huangshuigou Flood Diversion Hinge Spillway Weir
DONG Bin. Introduction of Bottom Grid Energy Dissipation Design and Construction of Huangshuigou Flood Diversion Hinge Spillway Weir[J]. Rural Hydropower & Electrification in China, 2014, 0(1): 48-49,47
Authors:DONG Bin
Affiliation:DONG Bin ( Xinjiang Tahe River Basin Bayinguoleng Authority Liberation No. 2 Channel Management Station, Hejing 841300, China)
Abstract:Abstract: Silica powder concrete and rubber laying mode were adopted in Huangshuigou Flood Diversion Hinge Spillway Weir Bottom Grid Energy Dissipation Project. However, the method can not meet the requirements due to connection between concrete rigid materials and rubber, rubber aging and other reasons. Steel drill rods were adopted, which are arranged vertically and transversely on the bottom board according to water flow direction for resisting crash. Steel drill rods can sufficiently resist crash of huge stone since they have extremely high strength, low cost and firm connection with steel structure and concrete. Concrete conditions will be introduced in the paper.
Keywords:steel drill rod  crash resistance  design and construction of energy dissipation
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