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A Small-Scale Flow Rig for Swirl Studies of a Single-Valve, Reverse Uniflow 2S Engine

机译:用于单阀的旋流研究的小型流量钻机,反向uniflow 2s发动机

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small-scale flow rig has been constructed to investigate the swirl behavior of various intake manifold configurations. This effort is to support the development of a 10-cc-size, single-valve reverse uniflow 2S engine. In this reverse uniflow geometry the incoming charge enters through a single valve in the engine head, and the burned gases are exhausted through symmetrically arranged ports in the cylinder wall near bottom dead center. Port-directioning of the fresh charge, used in conventional (bottom-up) uniflow arrangements, is not available with this geometry, so another means to control the cylinder sweeping is sought. The flow rig has been constructed on a 2:1 scale, and three preliminary intake manifold configurations have been prototyped using a 3D printing machine. A straight manifold, a ramped tangential manifold and a basic helical design were manufactured. The rig has used charging pressures up to 0.75 bars above ambient where the swirl, flow and discharge coefficients can be characterized for various designs. PIV studies of the in-cylinder fluid dynamics, including recirculation regions near the valve, are also possible through the use of fused silica piping for the cylinder.
机译:已经建造了小型流量钻机以研究各种进气歧管配置的旋流行为。这项努力是支持开发10-CC尺寸的单阀反向uniflow 2S发动机。在该反向uniflow几何形状中,进入的电荷通过发动机头部的单个阀进入,并且燃烧的气体通过在底部死中心附近的气缸壁中的对称排列的端口来排出。在传统(自下而上)uniflow布置中使用的新电荷的端口方向,不适用于该几何形状,因此寻求另一种控制汽缸扫描的手段。流量钻机已在2:1的尺度上构造,并且使用3D印刷机已经破坏了三种初步进气歧管配置。制造了一个直的歧管,斜坡切向歧管和基本的螺旋设计。钻机使用高达0.75巴的充电压力在环境温度上,其中旋流,流量和放电系数可以特征在于各种设计。通过使用用于汽缸的熔融二氧化硅管道,还可以通过使用圆柱体的缸内流体动力学的PIV研究,包括阀门附近的再循环区域。

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