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The Steady Flow Test and CFD Numerical Simulation on Improving Research of Locomotive Diesel Engine Helical Intake Port

机译:机车柴油机螺旋进气道改进研究的稳态流动试验和CFD数值模拟。

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In order to improve the performance of 16V240ZJB diesel engine, the method of steady flow test and CFD numerical simulation was adopted to do intake port structure optimization study. The previous design model of intake port was tested in the steady flow experiment system which provided the boundary condition for simulation calculation. The three-dimensional CAD model of intake port was built and then it was putted into AVLȁ3;FIRE platform to do CFD simulation with appropriate turbulence models and calculation methods. The detailed information of air flow field and discharge coefficient, swirl ratio of intake port was obtained by CFD simulation. Then the previous intake port structure was optimized to improve intake port performance. The research shows that CFD simulation is an efficient way to design engine intake port; Air flow condition is complex in the intake port and the parts nearing valve seat. Two improvement programs were discussed in this paper that can increase the air flux and improve the air flow condition.
机译:为了提高16V240ZJB柴油机的性能,采用稳流试验和CFD数值模拟的方法进行进气道结构优化研究。在稳定流实验系统中对进气口的先前设计模型进行了测试,该系统为模拟计算提供了边界条件。建立了进气道三维CAD模型,然后将其放入AVLȁ3; FIRE平台,用适当的湍流模型和计算方法进行CFD仿真。通过CFD仿真获得了空气流场和排气系数,进气道涡流比的详细信息。然后,优化先前的进气口结构以改善进气口性能。研究表明,CFD仿真是设计发动机进气道的有效方法。进气口和靠近阀座的零件中的空气流动情况很复杂。本文讨论了两个改进程序,它们可以增加空气流量并改善空气流动状况。

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