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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Ejection characteristics of micropumps for motorcycle fuel atomizer in high-temperature environment
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Ejection characteristics of micropumps for motorcycle fuel atomizer in high-temperature environment

机译:高温环境下摩托车燃油雾化器微型泵的喷射特性

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摘要

This study applied thermal bubble micropump on motorcycle fuel atomizer which is installed on the upper end of intake manifold and 20 cm away from the engine, and used ink and Stoddard solvent as work liquid. Based on computational fluid dynamics (CFD) simulation, it discussed the ejection characteristics of a single micropump and two adjacent micropumps with time-lagged ejections in a high-temperature environment, the temperature is higher than room temperature and lower than water boiling temperature. The results showed that due to contact with high-temperature external air, the surface tension of the ejected droplet string decreases. Therefore, the volume of the main ejected droplet decreases, and the neck and tail of the droplet string are scattered. The flying velocity of ejected droplet decreases as well. As the surface tension of the work liquid inside the micropump decreases, the air trapped inside the micropump is less obvious. As a result, the work liquid replenishes more smoothly, and the starting time of replenishment is advanced. Consequently, the work liquid replenishment rate is improved. The shape and velocity of droplet strings ejected from two adjacent micropumps are approximate. Because the density of Stoddard solvent is low, as it is driven by flowing external air, the offset value of the movement track of ejected droplet is large. As a result, the particle shape of ejected droplet is irregular. If the external air is still, the starting time of the same work liquid replenishment for both single and two adjacent micropumps is approximate. The starting time for Stoddard solvent is faster than that for ink, but the replenishment rates for both are very close, with the rate for two adjacent micropumps is higher than that for a single micropump. The flowing external air has insignificant effect on the work liquid replenishment rate for two adjacent micropumps in a high-temperature environment.
机译:该研究将热气泡微型泵应用于摩托车燃油雾化器,该雾化器安装在进气歧管的上端且距发动机20厘米,并使用墨水和Stoddard溶剂作为工作液。基于计算流体动力学(CFD)仿真,讨论了高温环境下温度高于室温且低于水沸腾温度的单个微型泵和两个相邻微型泵的时滞喷射时的喷射特性。结果表明,由于与高温外部空气接触,所喷射的液滴串的表面张力降低。因此,主要喷射的液滴的体积减小,并且液滴串的颈部和尾部分散。喷射液滴的飞行速度也降低。随着微型泵内部工作液的表面张力降低,滞留在微型泵内部的空气变得不太明显。结果,工作液补充更顺畅,补充的开始时间提前。因此,提高了工作液的补充率。从两个相邻的微型泵喷出的液滴串的形状和速度是近似的。由于Stoddard溶剂的密度低,在外部空气流动的驱动下,所喷射液滴运动轨迹的偏移值较大。结果,喷射液滴的颗粒形状是不规则的。如果外部空气仍然静止,则为单个和两个相邻的微型泵补充相同的工作液的开始时间是近似的。 Stoddard溶剂的启动时间比墨水的启动时间快,但是两者的补给率都非常接近,两个相邻的微型泵的补给率都比单个微型泵的补给率高。在高温环境下,流动的外部空气对两个相邻的微型泵的工作液补充率影响不大。

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