首页> 外文期刊>Journal of Hydraulic Engineering >Converging Stepped Spillways: Simplified Momentum Analysis Approach
【24h】

Converging Stepped Spillways: Simplified Momentum Analysis Approach

机译:汇聚阶梯溢洪道:简化动量分析方法

获取原文
获取原文并翻译 | 示例
       

摘要

Roller compacted concrete (RCC) stepped spillways are growing in popularity for providing overtopping protection for aging watershed dams with inadequate auxiliary spillway capacity and for the construction of new dams. Site conditions, such as limited right-of-way, topography, and geological formations, often dictate that these spillways converge. Convergence increases the flow depth near the training walls and alters the stilling basin design requirements as compared with traditional straight spillways. A simplified control volume momentum analysis is presented for predicting the minimum vertical training wall height necessary to prevent wall overtopping in converging stepped spillways. An expression is developed to predict vertical training wall height as a function of centerline flow depth, centerline velocity, chute slope, and convergence angle. A three-dimensional 3(H):1(V) sloping stepped spillway model with an ogee crest and convergence ranging from 0-70° was constructed to verify this relationship. The evaluation showed approximately 2% error for all combined convergences. Because the relationship is based on momentum principles, it provides design engineers with a method for determining minimum training wall height requirements under nonair entrained flow conditions for a range of design conditions (e.g., chute slopes, convergences, and step heights).
机译:碾压混凝土(RCC)阶梯式溢洪道日益流行,其目的是为辅助溢洪道能力不足的老化流域大坝提供过顶保护,并为新水坝的建设提供保护。诸如有限的通行权,地形和地质构造等现场条件通常指示这些溢洪道会聚。与传统的笔直溢洪道相比,会聚增加了训练壁附近的水流深度,并改变了消水池的设计要求。提出了一种简化的控制体积动量分析,用于预测在收敛的阶梯式溢洪道中防止壁超顶所需的最小垂直训练壁高。开发了一个表达式来预测垂直训练壁的高度,该高度是中心线流动深度,中心线速度,滑道斜率和会聚角的函数。构造了一个具有三尖峰和收敛范围为0-70°的三维3(H):1(V)倾斜阶梯式溢洪道模型,以验证这种关系。对于所有合并的收敛,评估显示大约2%的误差。因为这种关系是基于动量原理的,所以它为设计工程师提供了一种方法,用于在一定范围的设计条件(例如斜槽坡度,会聚度和台阶高度)下,在非空气夹带流动条件下确定最低训练壁高要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号