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FUEL-SPRAY SIMULATION WITH VALVE MOTION PERPENDICULAR TO CLOSING DIRECTION

机译:垂直于关闭方向的阀门运动的喷雾模拟

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Particulate matter (PM) in exhaust gas from automotive engines causes air pollution. Multiple injections of fuel into the combustion chamber is one of the solutions to decrease PM; a uniform air/fuel mixture and short fuel-spray duration by using multiple injections are effective to decrease PM. To form the uniform air/fuel mixture, fuel sprays from fuel injectors needs to be uniform during injections. Unsteady valve-motions, especially those perpendicular to the closing direction, cause spray swings that form un-uniformity of air/fuel mixture. It is difficult to measure valve motions in the space of a few micrometer within a stainless steel body during fuel injections. Fuel-spray simulation is useful to study the effect of valve motion on the un-uniformity of fuel sprays. In fuel-spray simulation, jets passing through nozzles need to be simulated with the valve motion. We previously developed a particle/grid hybrid method that integrated the inner flow simulation using a grid method with a fuel breakup simulation using a particle method. In this study, we studied the effects of valve motions perpendicular to the closing direction on fuel sprays in order to decrease the un-uniformity of air/fuel mixture. First, we observed fuel-spray behaviors during measurements; a fuel injector with multi-holes was selected, and spray patterns were recorded by a CCD camera with a Xenon flash lamp. The jets passing through the nozzles changed their profiles over time, and the widths of the jets changed from thin to thick at almost the same time. The simulated spray behaviors with valve motion in the front-to-rear direction showed the same trends as those in measurement. It is assumed that because the positions of the six nozzles on the orifice cup were assigned asymmetrically in the front-to-rear direction, asymmetric flow distribution caused the valve motion.
机译:来自汽车发动机的废气中的颗粒物质(PM)导致空气污染。将燃料的多次注入燃烧室是减少PM的溶液之一;使用多次注射的均匀空气/燃料混合物和短燃料喷射持续时间有效地降低PM。为了形成均匀的空气/燃料混合物,在注射期间,来自燃料喷射器的燃料喷雾需要均匀。不稳定的阀门运动,尤其是垂直于关闭方向的阀门运动,导致喷射摆动,从而形成空气/燃料混合物的不均匀性。在燃料喷射期间难以测量在不锈钢体内的几微米的空间中的阀运动。燃料喷涂仿真可用于研究阀门运动对燃料喷雾不均匀性的影响。在燃料喷涂仿真中,需要通过阀门运动模拟穿过喷嘴的喷射。我们以前开发了一种粒子/电网混合方法,其使用粒子方法使用燃油分离模拟来集成内部流动模拟。在这项研究中,我们研究了垂直于燃料喷雾上的闭合方向的阀门运动的影响,以降低空气/燃料混合物的不均匀性。首先,我们在测量过程中观察到燃料喷雾行为;选择具有多孔的燃料喷射器,并通过带有氙闪光灯的CCD相机记录喷涂图案。穿过喷嘴的喷气机随着时间的推移而改变了它们的轮廓,并且喷气机的宽度在几乎同时从薄到厚。在前后方向上具有阀运动的模拟喷射行为显示出与测量中相同的趋势。假设由于孔杯上的六个喷嘴的位置在前后方向上不对称地分配,不对称的流量分布导致阀门运动。

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