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Proper orthogonal decomposition analysis for cycle-to-cycle variations of engine flow. Effect of a control device in an inlet pipe

机译:对发动机流量的逐周期变化进行正确的正交分解分析。控制装置在进水管中的作用

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This paper aims to investigate cycle-to-cycle variations of non-reacting flow inside a motored single-cylinder transparent engine in order to judge the insertion amplitude of a control device able to displace linearly inside the inlet pipe. Three positions corresponding to three insertion amplitudes are implemented to modify the main aerodynamic properties from one cycle to the next. Numerous particle image velocimetry (PIV) two-dimensional velocity fields following cycle database are post-treated to discriminate specific contributions of the fluctuating flow. We performed a multiple snapshot proper orthogonal decomposition (POD) in the tumble plane of a pent roof SI engine. The analytical process consists of a triple decomposition for each instantaneous velocity field into three distinctive parts named mean part, coherent part and turbulent part. The 3rd- and 4th-centered statistical moments of the proper orthogonal decomposition (POD)-filtered velocity field as well as the probability density function of the PIV realizations proved that the POD extracts different behaviors of the flow. Especially, the cyclic variability is assumed to be contained essentially in the coherent part. Thus, the cycle-to-cycle variations of the engine flows might be provided from the corresponding POD temporal coefficients. It has been shown that the in-cylinder aerodynamic dispersions can be adapted and monitored by controlling the insertion depth of the control instrument inside the inlet pipe.
机译:本文旨在研究电动单缸透明发动机内部非反应流的不同周期变化,以判断能够在进气管内部线性移动的控制装置的插入幅度。实施与三个插入幅度相对应的三个位置,以修改一个循环至下一循环的主要空气动力学特性。对循环数据库之后的许多粒子图像测速(PIV)二维速度场进行后处理,以区分波动的特定贡献。我们在屋顶五角星SI发动机的滚落平面中执行了多次快照固有正交分解(POD)。分析过程包括对每个瞬时速度场的三次分解,分为三个不同的部分,分别称为平均部分,相干部分和湍流部分。经正交正交分解(POD)滤波的速度场的以第三和第四为中心的统计矩以及PIV实现的概率密度函数证明,POD提取了不同的流动行为。特别地,假定循环可变性基本上包含在相干部分中。因此,可以从相应的POD时间系数中提供发动机流量的逐周期变化。已经显示,可以通过控制控制仪器在进气管内部的插入深度来适应和监测缸内空气动力分散体。

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