陈江林, 吕宏兴, 石 喜, 朱德兰, 王文娥. T型三通管水力特性的数值模拟与试验研究[J]. 农业工程学报, 2012, 28(5): 73-77.
    引用本文: 陈江林, 吕宏兴, 石 喜, 朱德兰, 王文娥. T型三通管水力特性的数值模拟与试验研究[J]. 农业工程学报, 2012, 28(5): 73-77.
    Chen Jianglin, Lü Hongxing, Shi Xi, Zhu Delan, Wang Wene. Numerical simulation and experimental study on hydrodynamic characteristics of T-type pipes[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(5): 73-77.
    Citation: Chen Jianglin, Lü Hongxing, Shi Xi, Zhu Delan, Wang Wene. Numerical simulation and experimental study on hydrodynamic characteristics of T-type pipes[J]. Transactions of the Chinese Society of Agricultural Engineering (Transactions of the CSAE), 2012, 28(5): 73-77.

    T型三通管水力特性的数值模拟与试验研究

    Numerical simulation and experimental study on hydrodynamic characteristics of T-type pipes

    • 摘要: 为研究T型三通管水流的流动特性,该文进行了试验研究和数值模拟。试验中使用压力传感器监测管道动水压强,数值模拟采用SIMPLEC的求解方法求解Navier-Stokes方程和κ-ε湍流方程。分析不同工况下水头损失的产生机理,得到了不同分流比、入口流速、管径比对水头损失系数的影响:单管通水时水头损失系数比双管通水时的水头损失系数约大1.01~1.94倍,当入口雷诺数Re相同时垂直支管的水头损失系数比水平支管的水头损失系数约大2.20~2.55倍,不同管径比对垂直支管的水头损失系数影响不明显,水平支管的水头损失系数随管径比的增大而减小。研究结果表明,数值模拟结果与试验结果吻合较好,得出的结果对工程有指导意义。

       

      Abstract: In order to research flow characteristics of T-type pipeline, experiments and numerical simulations were conducted. Pressure sensors were used to monitor the dynamic water pressure of the pipeline, and SIMPLEC method was applied to solve the Navier-Stokes equations and the κ-ε turbulence equation in Numerical simulation. Mechanism of pressure loss under different operating cases were analyzed, and impacts of different split ratios, entrance velocities, length-diameter ratios on head loss coefficient were obtained. The head loss coefficient of single tube was 1.01-1.94 times larger than that of double-pipe. The pressure loss coefficient of vertical branch pipe was 2.20-2.55 times larger than that of horizontal branch pipe given same inlet Re. The influence of different length-diameter ratio on head loss coefficient of the vertical branch pipe was not obvious, while the head loss coefficient of the horizontal branch increased with decrease of length-diameter ratio. The numerical simulation results accord with the experimental results well, and they are instructive to project applications.

       

    /

    返回文章
    返回