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首页> 外文期刊>Computers & Fluids >Measurement-integrated simulation of wall pressure measurements using a turbulent model for analyzing oscillating orifice flow in a circular pipe
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Measurement-integrated simulation of wall pressure measurements using a turbulent model for analyzing oscillating orifice flow in a circular pipe

机译:使用湍流模型对壁压力测量进行测量集成模拟,以分析圆形管道中的节流孔口流量

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摘要

The development of a highly functionalized orifice flowmeter with high accuracy under realistic conditions is desired. This paper presents a method for analyzing oscillating air flow through an orifice in a circular pipe. A measurement-integrated (Ml) simulation using a standard k-e model was used to reduce the computation time. In a previous study, the feedback law of the MI simulation was determined by considering the effect of the computational fluid dynamics (CFD) grid on contracted flow. However, the previous method required the measurement of inlet flow rate, which is not feasible in many applications. Therefore, an MI simulation was proposed that only requires wall pressures, which are much simpler to measure than flow rate. In this MI simulation, the wall pressure downstream of an orifice was measured, and a new proportional-integral controller feedback algorithm was developed to control the inlet flow rate in the computed flow field. The proposed MI simulations were performed for steady and oscillatory flow rates up to 10 Hz. It was found that this MI simulation provides accurate solutions at a significantly shorter computation time than conventional CFD analysis.
机译:需要开发在实际条件下具有高精度的高度功能化的孔板流量计。本文提出了一种分析通过圆管孔口的振荡气流的方法。使用标准k-e模型的测量集成(M1)仿真可减少计算时间。在先前的研究中,通过考虑计算流体动力学(CFD)网格对收缩流的影响来确定MI模拟的反馈律。然而,先前的方法需要测量入口流速,这在许多应用中是不可行的。因此,提出了一种只需要壁压力的MI模拟方法,该方法比流速要容易得多。在此MI模拟中,测量了孔口下游的壁压力,并开发了一种新的比例积分控制器反馈算法来控制计算流场中的入口流速。提出的MI模拟是针对高达10 Hz的稳定和振荡流量执行的。已经发现,与常规CFD分析相比,这种MI模拟以显着更短的计算时间提供了精确的解决方案。

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