环形射流泵排泥效果及结构优化数值模拟

    Numerical simulation of sediment discharge effect and structural optimization of annular jet pump

    • 摘要: 为探究影响射流泵工作性能的主要参数,提升其排泥能力,基于VOF模型和Realizable k-ε模型,选取剪切稀化的非牛顿流体模拟泥沙相,应用STARCCM+软件对环形射流泵的内部流场进行了数值模拟。结果表明:增大面积比能有效提升射流泵的排泥能力,改变喷嘴安装角会影响射流泵的能量损失从而影响其排泥能力;具体到模型实例中,面积比为12.15时射流泵的最佳喷嘴安装角为32°,面积比为25.00时最佳喷嘴安装角为28°。模拟结果可为大型射流式挖沟机的抽吸系统参数设计提供参考。

       

      Abstract: In order to investigate the parameters affecting the performance of annular jet pumps and improve their sediment discharge capacity, a numerical simulation on the internal flow field was conducted using STAR-CCM+ software, in which the VOF (Volume of Fluid) model and the Realizable k-ε turbulence model were used and the sediment phase was simulated by a shear-thinning non-Newtonian fluid.The results demonstrated that increasing the area ratio (defined as the throat cross-sectional area to the nozzle outlet area ratio) can significantly enhance the sediment discharge capacity of annular jet pumps.The nozzle installation angle influences the energy loss of the pump, thereby affecting its sediment discharge performance.For the studied model, when the area ratio was 12.15, the optimal nozzle installation angle was 32, and when the area ratio was increased to 25, the optimal angle was 28°.These findings provide valuable insights for the design of suction systems in large jet trenchers used in marine engineering applications.

       

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