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Turbulent swirling flow in a dynamic model of a uniflow-scavenged two-stroke engine

机译:湍流旋转流动在一个uniflow-扫除的双冲程发动机的动态模型中

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摘要

It is desirable to use computational fluid dynamics for optimization of the in-cylinder processes in low-speed two-stroke uniflow-scavenged marine diesel engines. However, the complex nature of the turbulent swirling in-cylinder flow necessitates experimental data for validation of the used turbulence models. In the present work, the flow in a dynamic scale model of a uniflowscavenged cylinder is investigated experimentally. The model has a transparent cylinder and a moving piston driven by a linear motor. The flow is investigated using phase-locked stereoscopic particle image velocimetry (PIV) and time-resolved laser Doppler anemometry (LDA). Radial profiles of the phase-locked mean and rms velocities are computed from the velocity fields recorded with PIV, and the accuracy of the obtained profiles is demonstrated by comparison with reference LDA measurements. Measurements are carried out at five axial positions for 15 different times during the engine cycle and show the temporal and spatial development of the swirling in-cylinder flow. The tangential velocity profiles in the bottom of the cylinder near the end of the scavenge process are characterized by a concentrated swirl resulting in wake-like axial velocity profiles and the occurrence of a vortex breakdown. After scavenge port closing, the axial velocity profiles indicate that large transient swirl-induced structures exist in the cylinder. Comparison with profiles obtained under steady-flow conditions shows that the scavenge flow cannot be assumed to be quasi-steady. The temporal development of the swirl strength is investigated by computing the angular momentum. The swirl strength shows an exponential decay from scavenge port closing to scavenge port opening corresponding to a reduction of 34 %, which is in good agreement with theoretical predictions.
机译:期望利用计算流体动力学来优化低速二冲程uniflow-清除船用柴油发动机的缸内过程。然而,湍流旋流缸内流动的复杂性质需要实验数据来验证使用的湍流模型。在目前的工作中,实验研究了单带引人注目的气缸的动态刻度模型中的流动。该模型具有透明圆筒和由线性电动机驱动的移动活塞。使用相位锁定的立体粒子图像速度(PIV)和时间分辨激光多普勒风速谱(LDA)研究流程。通过用PIV记录的速度场计算锁相平均值和rms速度的径向轮廓,并通过与参考LDA测量进行比较来证明所获得的轮廓的精度。在发动机循环期间,测量在五个轴向位置进行15个不同时间,并显示旋转缸流量的时间和空间开发。在清除过程的末端附近的圆柱底部的切向速度曲线,其特征在于浓缩的旋流,从而产生唤醒轴向速度分布和涡流击穿的发生。在清除端口关闭后,轴向速度曲线表明圆柱体中存在大的瞬态旋流诱导的结构。与稳定条件下获得的曲线的比较表明,不能假设清除流动是准稳定的。通过计算角动量来研究涡流强度的时间发展。旋流力量显示了从清扫端口关闭的指数衰减,以淘汰港口开口,对应于34%的减少,这与理论预测良好。

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