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首页> 外文期刊>Journal of hydraulic research >Numerical investigation of entrapped air pockets on pressure surges and flow structure in a pipe
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Numerical investigation of entrapped air pockets on pressure surges and flow structure in a pipe

机译:管道压力浪涌和流动结构上夹带气口的数值研究

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This research presents a numerical investigation of two-phase flow during the expulsion of entrapped air in a non-confined pipe. A modified version of the volume of fluid (VOF) approach is employed considering the effect of compressibility in the liquid. A modification is introduced to the original approach relating the density changes in the liquid to the pressure changes using the fluid bulk modulus. The bulk modulus is also modified to consider the pipe elasticity, the air bubble entrainment and the two-phase flow regime in a pipe. Fluid-structure interaction (FSI) code is developed and used to calculate the motion of the downstream orifice wall during the impact of the water column on the pipe end wall. The numerical results of the pressure variation agree well with experimental data. The two-phase flow structure and physics behind the pressure waves are investigated. The numerical results show that to capture the amplitude and time interval of the pressure surges, the effect of FSI should be considered during the expulsion of the entrapped air. Additionally, the effects of initial air pocket size, supply pressure and orifice size on the pressure increase are investigated. The developed VOF-FSI approach can be employed as a numerical tool to investigate the transient flow during pipe filling.
机译:该研究呈现了在非限制性管道驱逐夹带空气中的两相流的数值研究。考虑液体中可压缩性的效果,采用改进的流体(VOF)方法的改进版本。将修改引入原始方法,将液体中的密度变化与使用流体散装模量的压力变化相关。还修改了体积模量以考虑管道弹性,气泡夹带和管中的两相流量。流体结构相互作用(FSI)代码被开发并用于计算在管端壁上的水柱的冲击期间下游孔壁的运动。压力变化的数值结果与实验数据很好。研究了两相流动结构和压力波背后的物理。数值结果表明,为了捕获压力浪涌的幅度和时间间隔,应在排出夹带空气期间考虑FSI的效果。另外,研究了初始空气口袋尺寸,供应压力和孔口尺寸对压力增加的影响。开发的VOF-FSI方法可以用作数值工具,以研究管道填充过程中的瞬态流动。

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