偏斜式储料斗在水利水电工程布料中的应用
作者:
作者单位:

(1.中国水利水电第八工程局有限公司,湖南 长沙410004;2.中国华能集团有限公司,北京100031;3.华能澜沧江水电股份有限公司托巴水电工程建设管理局,云南 迪庆674608 )

作者简介:

肖维良(1972—),男,工程师,主要从事水利水电工程技术管理工作。 E-mail:104594335@qq.com

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中图分类号:

TV53+2

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Application of skewed storage hopper in fabric of water conservancy and hydropower projects
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Affiliation:

(1.Sinohydro Engineering Bureau 8.Co., Ltd., Changsha 410004, China;2.China Huaneng Group Co., Ltd., Beijing 100031, China;3.Tuoba Hydroelectric Engineering Construction Management Bureau of Huaneng Lancang River Hydropower Inc., Diqing 674608, China)

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    摘要:

    碾压混凝土大坝在采用胶带机供料系统或满管供料系统进行混凝土输送时,常在供料系统起始端布置一个能够调节卸料量大小的储料斗,传统水电工程施工中,主要采用正锥形储料斗,TB水电工程施工过程中分别设计采用了正锥形储料斗和偏斜式储料斗。结合实际应用效果,从多方面分析了正锥形储料斗应用过程中存在的问题和偏斜式储料斗的优势,结果表明,偏斜式储料斗在与胶带机机尾适配性、胶带机水平布置适配性、满管供料系统水平和竖向安装角度的适配性等方面都更优于正锥形储料斗,转料效率上也更具优势。

    Abstract:

    When the roller compacts concrete dam adopts the belt machine feeding system or the full pipe feeding system to transport concrete, a storage hopper that can adjust the discharge volume is usually arranged at the beginning end of the feeding system. In the traditional hydropower construction, the positive conical storage hopper is mainly used. In the construction process of TB Hydropower Project, the positive conical storage hopper and the skewed storage hopper are respectively designed. Based on practical application effects, the problems in the application process of the positive conical storage hopper and the advantages of the skewed storage hopper were analyzed from multiple aspects. The results showed that the skewed storage hopper was better than the positive conical storage hopper in terms of adaptability to the tail of the belt conveyor, adaptability to the horizontal layout of the belt conveyor, and adaptability to the horizontal and vertical angles of the full pipe feeding system. It also had more advantages in material transfer efficiency.

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肖维良,周山,谭锋,等.偏斜式储料斗在水利水电工程布料中的应用[J].水利水电科技进展,2024,44(z1):155-158.(XIAO Weiliang, ZHOU Shan, TAN Feng, et al. Application of skewed storage hopper in fabric of water conservancy and hydropower projects[J]. Advances in Science and Technology of Water Resources,2024,44(z1):155-158.(in Chinese))

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  • 收稿日期:2024-09-29
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  • 在线发布日期: 2025-04-06
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