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Multidimensional modeling of the scavenging and injection processes of a small two-stroke engine compared to LDV measurements

机译:与LDV测量相比,小二冲程发动机的清除和注射过程的多维建模

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The scavenging and injection processes on a 50 cc crankcase-scavenged compressed air-assisted direct fuel injection 2-stroke engine are analyzed by means of multidimensional CFD modeling. A moving mesh including the intake ports, cylinder and exhaust port has been built, solving the interface at ports. The information at boundaries is obtained from a one-dimensional wave action model. A detailed analysis of the scavenging process is presented. A motored engine with suitable optical access has been used to measure in-cylinder velocities by Laser Doppler Velocimetry LDV. Due to the small engine size some technical problems had to be solved to carry out the measurements. The comparison between the modeled and measured velocities shows good agreement. Finally, the validated multidimensional modeling has been used for the optimization of the injection process in terms of fuel short-circuit to the exhaust and also of mixture quality. A study of the fuel injection timing and location shows the key points to optimize injection and mixing process.
机译:通过多维CFD建模分析了50CC曲轴箱清除压缩空气辅助的直接燃料引擎的50cc曲轴箱清除压缩空气辅助的直接燃料喷射工艺。包括进气口,圆柱和排气口的移动网格已经构建,解决了端口的界面。边界处的信息是从一维波动模型获得的。提出了对清除过程的详细分析。具有合适的光学接入的电动发动机已用于通过激光多普勒速度LDV测量缸内速度。由于发动机尺寸小,必须解决一些技术问题以进行测量。建模和测量速度之间的比较显示了良好的一致性。最后,经过验证的多维建模已经用于在燃料短路上优化注射过程,以使排气和混合质量的燃料短路。对燃料喷射时序和位置的研究显示了优化喷射和混合过程的关键点。

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