School of Civil and Environmental Engineering, Ningbo University, Ningbo, Zhejiang 315211, China E-mail:
Water Sci Technol. 2022 Mar;85(5):1351-1362. doi: 10.2166/wst.2022.056.
Plunge dropshafts are widely used in urban drainage systems, but they can carry large amounts of air into the system, endangering the safety of the system. In this paper, a 3D numerical model is established to investigate the water flow configuration and air characteristics in a helicoidal ramp dropshaft. The simulations under different outlet pressures and water flow rates were simulated, and the results show that the air demand decreases with the increase of outlet pressure, especially in the case of low water flow. In the case of higher outlet pressure, the air demand first increases then decreases with the increase of the water flow rate. The dragging force of water has little effect on the pressure gradient in the dropshaft. The increase of ramp turns leads to the increase of terminal velocity at the same flow rate, and the air demand first increases and then decreases with the increase of ramp turns.
竖管跌水井广泛应用于城市排水系统中,但它会将大量空气带入系统,从而危及系统的安全。本文建立了一个三维数值模型,研究了螺旋形斜坡式跌水井中的水流形态和空气特性。模拟了不同出口压力和水流速率下的情况,结果表明,空气需求量随出口压力的增加而减小,特别是在低水流速率的情况下。在较高的出口压力下,空气需求量随水流速率的增加先增加后减少。水的拖曳力对跌水井中的压力梯度影响很小。增加斜坡的匝数会导致在相同流量下末端速度增加,并且空气需求量随斜坡匝数的增加先增加后减少。