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Nozzle tip wetting in gasoline direct injection injector and its link with nozzle internal flow

机译:喷嘴尖端在汽油直喷式喷射器中润湿及其与喷嘴内部流动的连杆

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摘要

Fuel film in the gasoline direct injection injector tip, or so-called nozzle tip wetting, has been found to be an important contributor of particle emissions. Attempts have been made to reduce the nozzle tip wetting by optimizing nozzle geometry designs. However, the inherent mechanism of the nozzle tip wetting formation and its link with nozzle internal flow is still unclear yet due to the lack of direct observations. To overcome this insufficiency, the nozzle internal flow and the formation process of the nozzle tip wetting were visualized in the real-scale aluminum nozzles using the X-ray phase-contrast technique. Results showed that the needle bouncing, injection pressure, and hole configuration affect the formation of the nozzle tip wetting, while the influence of needle bouncing is the most critical. A further study was conducted to examine the effect of nozzle counterbore diameter on the nozzle tip wetting. It was found that with an increase in counterbore diameter, the nozzle tip wetting slightly increased first and then decreased sharply after the counterbore diameter exceeded 0.40 mm. The mechanisms of the aforementioned phenomena were discussed in detail, which can contribute to the better understandings and control strategies of nozzle tip wetting.
机译:已经发现汽油直喷式喷射器尖端或所谓的喷嘴尖端润湿剂是颗粒排放的重要因素。通过优化喷嘴几何设计,已经尝试减少喷嘴尖端润湿。然而,由于缺乏直接观察,喷嘴尖端润湿地层的固有机理及其与喷嘴内部流动的连杆仍然不清楚。为了克服这种不足,使用X射线相位对比度技术在真正的铝喷嘴中可视化喷嘴内部流量和喷嘴尖端润湿的形成过程。结果表明,针弹跳,注射压力和孔配置会影响喷嘴尖端润湿的形成,而针弹跳的影响是最关键的。进行进一步的研究以检查喷嘴抵抗孔直径对喷嘴尖端润湿的影响。发现,随着抵抗直径的增加,首先润湿喷嘴尖端稍微增加,然后在沉孔直径超过0.40mm后急剧下降。详细讨论了上述现象的机制,这可以有助于更好的磨牙润湿的谅解和控制策略。

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