Wanzheng Ai, Pengfei Zhu
Zhejiang Ocean University, Zhoushan, P.R. China.
Yinchuan Energy Institute, Yinchuan, P.R. China.
Sci Prog. 2021 Apr-Jun;104(2):368504211018571. doi: 10.1177/00368504211018571.
A lot of studies have shown that the hydraulic characteristics of orifice plate are mainly controlled by its contraction ratio, but the thickness of square-edged orifice plate also has many impacts on energy loss characteristics. The primary objective of this study was to investigated the effects of square-edged orifice plate thickness on energy loss characteristics. In this paper, the effects of square-edged orifice plate thickness on energy loss characteristics are investigated by numerical simulation using CFD. Orifice plate discharge tunnel is axial symmetric, two dimensional numerical simulations of orifice plate discharge tunnel flow was used. The equation (9) for calculating energy loss coefficient of square-edged orifice plate energy dissipater considering the influence of thickness is proposed. The results of the present research demonstrate that energy loss coefficient decreases with increase of the orifice plate thickness. The results of model experiment are consistence with the results calculated by using rectified equation in present paper. The CFD simulations and Model experiment for the flow through an orifice plate are carried out. For square-edged orifice plate energy dissipater, the relative orifice plate thickness T/D has remarkable impacts on its energy loss coefficient ξ. The Traditional equation (8) is corrected by numerical results. The equation (9) for calculating energy loss coefficient of square-edged orifice plate energy dissipater considering the influence of thickness is proposed and this equation is available in the condition of = 0.4-0.8, = 0.05-0.25, and > 105(Re is Reynolds number). Comparing with the physical model experimental data, the relative errors of equation (9) is smaller than 15%.
大量研究表明,孔板的水力特性主要受其收缩比控制,但方边孔板的厚度对能量损失特性也有诸多影响。本研究的主要目的是探究方边孔板厚度对能量损失特性的影响。本文通过使用计算流体力学(CFD)进行数值模拟,研究了方边孔板厚度对能量损失特性的影响。孔板泄水洞为轴对称,对方边孔板泄水洞水流进行了二维数值模拟。提出了考虑厚度影响的方边孔板消能工能量损失系数的计算公式(9)。本研究结果表明,能量损失系数随孔板厚度的增加而减小。模型试验结果与本文用修正公式计算的结果一致。对通过孔板的水流进行了CFD模拟和模型试验。对于方边孔板消能工,相对孔板厚度T/D对其能量损失系数ξ有显著影响。传统公式(8)根据数值结果进行了修正。提出了考虑厚度影响的方边孔板消能工能量损失系数的计算公式(9),该公式在=0.4 - 0.8、=0.05 - 0.25且>105(Re为雷诺数)的条件下适用。与物理模型试验数据相比,公式(9)的相对误差小于15%。