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Measurements of the Intake and In-Cylinder Flow Field to Investigate the Reliability of CFD Steady-State Simulations for Actual Engines

机译:摄入和缸内流场的测量,研究了实际发动机的CFD稳态模拟的可靠性

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The design of intake manifolds and valve ports in internal combustion engines is a fundamental aspect of obtaining high volumetric efficiency and originating in-cylinder flows of proper intensity. CFD calculations using the RANS approach may support steady-state flow measurements in the design of intake manifolds, valve passages, and combustion chambers. On the other hand, the geometrical complexity of these engine parts hardly allows to mesh them by means of fully hexahedral grids and the accuracy of computations is strongly compromised. The paper presents the results of an experimental and numerical study performed on the head of a motorbike high-speed spark ignition engine. The work aims at investigating the reliability of CFD RANS computations performed on polyhedral grids of different size and assessing the mesh size required for accurate computations on such a type of grid. Discharge flow coefficients of the intake valves, in-cylinder tumble intensity, and static pressure along the surface of intake manifolds have been measured in a discharge flow test rig operating in steady-state conditions. Detailed geometry of actual bell-mouth inlet, intake ports and valves, combustion chamber roof, and cylinder wall has been obtained by using a reverse engineering technique. The geometry is used to build a CFD model which allowed to simulate the steady flow field measured during the experiments for several values of valve lift.
机译:内燃机中的进气歧管和阀口的设计是获得高容量效率和源自柱塞流量的基本方面。使用RAN方法的CFD计算可以在进气歧管,阀门通道和燃烧室的设计中支持稳态流量测量。另一方面,这些发动机部件的几何复杂性几乎允许通过完全六面向网格网,并强烈损害计算的准确性。本文提出了在摩托车高速火花点火发动机的头部进行的实验和数值研究的结果。该工作旨在调查对不同尺寸的多面体网格上的CFD RAN计算的可靠性,并评估准确计算所需的网格尺寸。在在稳态条件下操作的排出流动试验台上,在稳态条件下的排出流动试验台上测量进气阀的排出流量系数和沿着进气歧管表面的静压。通过使用逆向工程技术获得了实际钟口入口,进气口和阀门,燃烧室屋顶和圆柱壁的详细几何。几何形状用于构建CFD模型,该模型允许模拟在实验期间测量的稳态流场,以实现阀门升力的几个值。

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