Modeling Transient Mixed Flows in Drainage Networks With Smoothed Particle Hydrodynamics

被引:0
作者
Wenke Song
Hexiang Yan
Tao Tao
Mingfu Guan
Fei Li
Kunlun Xin
机构
[1] Tongji University,College of Environmental Science and Engineering
[2] Shanghai Institute of Pollution Control and Ecological Security,Department of Civil Engineering
[3] The University of Hong Kong,Department of Civil and Environmental Engineering
[4] The Hong Kong Polytechnic University,undefined
来源
Water Resources Management | 2024年 / 38卷
关键词
Smoothed particle hydrodynamics; Transient mixed flows; Two-component Pressure Approach; Drainage networks;
D O I
暂无
中图分类号
学科分类号
摘要
Transitions between free-surface and pressurized flows (transient mixed flows) are common and complex phenomena in urban drainage systems. Currently, the free-surface-pressurized flow models are mainly solved by grid-based numerical schemes, while the application of meshless methods to such problems remains relatively unexplored. Therefore, this study proposes a novel meshless model based on Smoothed Particle Hydrodynamics coupled with the Two-component Pressure Approach (SPH-TPA) to simulate transient mixed flows. To extend the applicability of the SPH-TPA model to drainage networks, a junction boundary model is developed based on the flow regimes in the junction and inflowing/outflowing pipes. Three idealized cases and two experimental cases are investigated for model validation and parameter sensitivity analysis. The results indicate the capability of the SPH-TPA model to deal with various flow conditions and capture transition interfaces accurately. Furthermore, a hypothetical drainage network is applied to evaluate the performance of the SPH-TPA model for simulating mixed flows in complex drainage systems, and the results of the SPH-TPA model demonstrate better accuracy and stability compared to the SWMM (Storm Water Management Model). The proposed SPH-TPA model provides an alternative tool to investigate transient mixed flows in urban drainage systems.
引用
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页码:861 / 879
页数:18
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