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A new approach to treating pressure oscillations in combustion instability phenomena

机译:处理燃烧不稳定性现象中压力振荡的新方法

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Developing exact models of combustion instabilities is not an easy task to carry out and requires a great deal of time prior to obtaining success. The present study proposes a low-order model for pressure oscillations that does not require any knowledge of the systems, any new physical findings nor intricate details regarding its operating condition. This new approach is obtained using a Modified Van der Pol's equation (MVDP) which is tuned by use of a Dual Extended Kalman Filter (DKEF) as a recursive estimator with perspectives in control by computer. This phenomenological model is used to predict the pressure signal from a variety of different combustors. Input data were taken from experimental cases such as a Rijke tube, a gas turbine and a liquid-fuel aero-engine combustor. Furthermore, a simulation considering high frequency oscillations to show the capability of the new approach is presented. In all cases, the results demonstrated the feasibility of applying the tractable model MVDP and DKEF running together to investigate pressure oscillations in practical cases. (C) 2016 Elsevier Ltd. All rights reserved.
机译:开发精确的燃烧不稳定性模型并非易事,需要大量时间才能获得成功。本研究提出了一种压力波动的低阶模型,该模型不需要系统的任何知识,任何新的物理发现,也不需要有关其运行状况的复杂细节。这种新方法是使用改良的范德波尔方程(MVDP)获得的,该方程通过使用双重扩展卡尔曼滤波器(DKEF)作为递归估计器进行调整,并具有计算机控制的观点。该现象学模型用于预测来自各种不同燃烧器的压力信号。输入数据来自诸如Rijke管,燃气轮机和液体燃料航空发动机燃烧器等实验案例。此外,提出了一种考虑了高频振荡的仿真,以显示新方法的能力。在所有情况下,结果均表明将MVDP和DKEF易处理模型结合使用以在实际情况下研究压力波动的可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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