首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part C. Journal of mechanical engineering science >Numerical simulation of the internal flow of swirl atomizer under ambient pressure
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Numerical simulation of the internal flow of swirl atomizer under ambient pressure

机译:常压下旋流雾化器内部流动的数值模拟

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This paper presents the simulation study of internal flow of open-end swirl injectors under steady and oscillating ambient pressures. A two-dimensional swirl axisymmetric model based on the volume of fluid method was developed to study the effect of ambient pressure on the internal flow of open-end swirl injectors. The response of injector flow to the ambient pressure oscillation was investigated by superimposing periodical oscillation of ambient pressure at the spout outlet. The results show that the variation of ambient pressure affects the liquid phase volumetric fraction within the gas-liquid shear layer. The spray angle near the wall remains constant independent of the ambient pressure. The velocity distribution on different axial sections rarely varies with ambient pressure. When the ambient pressure oscillated, the ambient pressure oscillation would cause the flow rate oscillation at the spout. The phase delay between the flow rate oscillation at spout and the ambient pressure oscillation is proportional to the oscillation frequency.
机译:本文介绍了在稳态和振荡环境压力下,开放式涡旋喷油器内部流动的模拟研究。建立了基于流体体积的二维旋流轴对称模型,以研究环境压力对开放式旋流喷射器内部流动的影响。通过在喷嘴出口处叠加环境压力的周期性振荡,研究了喷射器流量对环境压力振荡的响应。结果表明,环境压力的变化会影响气液剪切层内的液相体积分数。壁附近的喷雾角度保持恒定,与环境压力无关。不同轴向截面上的速度分布很少随环境压力而变化。当环境压力振荡时,环境压力振荡将导致喷嘴处的流量振荡。出口处的流量振荡与环境压力振荡之间的相位延迟与振荡频率成正比。

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