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Establishment of a Database by Conducting Intake Manifold and In-Cylinder Flow Measurements inside an Internal Combustion Engine Assembly

机译:通过在内燃机组件内进行进气歧管和缸内流动测量来建立数据库

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An experimental study has been conducted to quantify the velocity and pressure inside an idealized intake manifold of a motored internal combustion engine assembly. The aim of this work is to provide the real-time boundary conditions for more accurate multi-dimensional numerical simulations of complex in-cylinder flows in an internal combustion engine as well as the resultant in-cylinder flow patterns. The geometry of the intake manifold is simplified for this purpose. A hot-wire anemometer and a piezoresistive absolute pressure transducer are used to measure the velocity and pressure, respectively, over a plane inside the circular section of the intake manifold. In addition, pressure measurements are performed over an elliptical section near the intake port. Phase-averaged velocity and pressure profiles are then calculated from the instantaneous measurements. Experiments were performed at 900 and 1200 rpm engine speeds with wide open throttle. Results of velocity and pressure measurements show the expected oscillatory nature of flow inside the intake manifold. The in-cylinder flow measurements are performed using the stereoscopic molecular tagging velocimetry technique during the intake and compression strokes.
机译:已经进行了实验研究以量化电动内燃机组件的理想化进气歧管内的速度和压力。这项工作的目的是为内燃机中复合缸内流量的更准确的多维数值模拟提供实时边界条件,以及所得到的缸内流动模式。为了此目的,简化了进气歧管的几何形状。热线风速计和压阻绝对压力传感器用于分别在进气歧管的圆形部分内的平面上测量速度和压力。另外,在进气口附近的椭圆形部分进行压力测量。然后从瞬时测量计算相平方速度和压力轮廓。实验在900和1200 rpm发动机速度下进行,具有宽开口节流阀。速度和压力测量结果显示了进气歧管内部流动的预期振荡性质。使用在摄入和压缩冲程期间的立体分子标记速度技术进行缸内流量测量。

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