首页> 外文期刊>Water Science and Technology >Determining the spill flow discharge of combined sewer overflows using rating curves based on computational fluid dynamics instead of the standard weir equation
【24h】

Determining the spill flow discharge of combined sewer overflows using rating curves based on computational fluid dynamics instead of the standard weir equation

机译:使用基于计算流体动力学而不是标准堰方程的额定曲线确定组合下水道溢流的溢流流量

获取原文
获取原文并翻译 | 示例
       

摘要

It is state of the art to evaluate and optimise sewer systems with urban drainage models. Since spill flow data is essential in the calibration process of conceptual models it is important to enhance the quality of such data. A wide spread approach is to calculate the spill flow volume by using standard weir equations together with measured water levels. However, these equations are only applicable to combined sewer overflow (CSO) structures, whose weir constructions correspond with the standard weir layout. The objective of this work is to outline an alternative approach to obtain spill flow discharge data based on measurements with a sonic depth finder. The idea is to determine the relation between water level and rate of spill flow by running a detailed 3D computational fluid dynamics (CFD) model. Two real world CSO structures have been chosen due to their complex structure, especially with respect to the weir construction. In a first step the simulation results were analysed to identify flow conditions for discrete steady states. It will be shown that the flow conditions in the CSO structure change after the spill flow pipe acts as a controlled outflow and therefore the spill flow discharge cannot be described with a standard weir equation. In a second step the CFD results will be used to derive rating curves which can be easily applied in everyday practice. Therefore the rating curves are developed on basis of the standard weir equation and the equation for orifice-type outlets. Because the intersection of both equations is not known, the coefficients of discharge are regressed from CFD simulation results. Furthermore, the regression of the CFD simulation results are compared with the one of the standard weir equation by using historic water levels and hydrographs generated with a hydrodynamic model. The uncertainties resulting of the wide spread use of the standard weir equation are demonstrated.
机译:使用城市排水模型评估和优化下水道系统是最新技术。由于溢流数据在概念模型的校准过程中至关重要,因此提高此类数据的质量非常重要。一种广泛的方法是通过使用标准堰方程和测得的水位来计算溢出流量。但是,这些方程仅适用于组合式下水道溢流(CSO)结构,其堰结构与标准堰布局相对应。这项工作的目的是概述一种替代方法,该方法可基于声波测深仪的测量结果来获取溢流流量数据。该想法是通过运行详细的3D计算流体动力学(CFD)模型来确定水位与溢流率之间的关系。由于其复杂的结构,特别是在堰结构方面,已经选择了两个现实世界的CSO结构。第一步,分析仿真结果以识别离散稳态的流动条件。可以看出,在溢流管充当受控流出物之后,CSO结构中的流动条件发生了变化,因此,溢流排放无法用标准堰方程描述。第二步,CFD结果将用于得出等级曲线,可以在日常实践中轻松应用。因此,额定曲线是根据标准堰方程和节流孔出口方程得出的。由于两个方程的交点未知,因此放电系数从CFD模拟结果中回归。此外,通过使用历史水位和水动力模型生成的水位图,将CFD模拟结果的回归与标准堰方程之一进行了比较。证明了由于标准堰方程的广泛使用而导致的不确定性。

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