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Flow Field Analysis of Gas Jets from Nozzles For Gas-assisted Laser Cutting

机译:气体辅助激光切割喷嘴气射流的流场分析

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The gas jets from the conical and new designed supersonic nozzles on different working pressure are simulated by a computational fluid dynamics code, FLUENT, using standard k-s model and unstructured grid finite volume method with compressible axis-symmetry N-S equation. Under the same condition of pressure-inlet, the distribution of symmetry velocity and that of static pressure are compared. The result of the analysis indicates that conical nozzle outlet can reach subsonic or sonic flow. It is fit for low speed and low pressure situation. The gas jet from the new design supersonic nozzle working at design work pressure has better properties than those of other nozzles. So it is better for thick-plate and or high-speed laser cutting. It is obvious that the results of CFD numerical analysis are consistent with the shadowgraph. Thereby it is an effective way to optimize the nozzle according to the performance of flow field.
机译:来自锥形和新设计的超音速喷嘴的气体喷嘴通过计算流体动力学码,使用标准K-S模型和非结构化电网有限体积法模拟了具有可压缩轴对称N-S方程的计算流体动力学码。在相同的压力入口条件下,比较对称速度的分布和静压的分布。分析结果表明锥形喷嘴出口可以达到亚音速或声波流量。它适合低速和低压情况。在设计工作压力下工作的新设计超音速喷嘴的气体射流具有比其他喷嘴更好的性能。因此,厚板和高速激光切割更好。很明显,CFD数值分析的结果与影子图一致。因此,它是根据流场的性能优化喷嘴的有效方法。

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