首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >Investigation of the Influence of Injection Rate Shaping on the Spray Characteristics in a Diesel Common Rail System Equipped with a Piston Amplifier
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Investigation of the Influence of Injection Rate Shaping on the Spray Characteristics in a Diesel Common Rail System Equipped with a Piston Amplifier

机译:配备活塞放大器的柴油共轨系统中喷射速率整形对喷雾特性的影响的研究

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The quality of the mixing process of fuel and air in a direct injection diesel engine relies heavily on the way the spray develops when injected into the combustion chamber.Among other factors,the spray development depends on the injection rate of the fuel delivered by the injector.The paper presents a study,at both a macroscopic and microscopic level,of a Diesel spray generated by a common-rail injection system featuring a piston pressure amplifier.By modifying the timing and the duration of the injector and amplifier piston actuation,it is possible to obtain high injection pressures up to 180 MPa,and different shapes for the injection rate,which would not be achievable with a regular common rail injection system.The spray evolution produced by three different injection rate shapes (square,ramp,and boot) has been investigated in an injection test rig,by means of visualization and PDPA techniques,at different injection conditions.The main conclusions are the important effect on spray penetration of the initial injection rate evolution and the small influence of the maximum injection pressure attained at the end of the injection event.Smaller or even negligible effects have been found on the spray cone angle and on the droplet Sauter mean diameter.
机译:直喷式柴油发动机中燃料和空气的混合过程的质量在很大程度上取决于喷射到燃烧室中时喷雾的形成方式。在其他因素中,喷雾的产生取决于喷射器输送的燃料的喷射速率。本文从宏观和微观两个层面对由具有活塞压力放大器的共轨喷射系统产生的柴油喷雾进行了研究。通过改变喷射器和放大器活塞致动的时间和持续时间,可以可以获得高达180 MPa的高喷射压力以及不同的喷射速率形状,这是常规共轨喷射系统无法实现的。由三种不同的喷射速率形状(正方形,斜坡和靴子)产生的喷雾演变已通过可视化和PDPA技术,在不同的注入条件下,在注入试验台上进行了研究。主要结论是对喷雾剂的重要影响。初始注入速率的演变以及在注入事件结束时获得的最大注入压力的影响很小。已发现对喷雾锥角和液滴Sauter平均直径的影响较小甚至可以忽略不计。

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