首页> 外文会议>ASME Joint US-European Fluids Engineering Division summer meeting;FEDSM2010 >INVESTIGATION OF POD BASES FOR FLOW CONTROL ON DISK WAKES
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INVESTIGATION OF POD BASES FOR FLOW CONTROL ON DISK WAKES

机译:用于盘流控制的POD基的研究

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This work investigates the effects of flow control on the near wake region of a disk in a water flow, utilizing the POD reconstructed time dependent velocity fields. Velocity measurements were collected using time resolved particle image velocimetry (TRPIV) at a Reynolds number of 20,000 based on the disk diameter, both with and without control. An open-loop control was applied via periodic synthetic jet excitation from the disk edge. With the advantage of a time resolved velocity database, we have the ability to reconstruct the time dependent velocity field in the wake of the disk. This reconstruction is done for the baseline and controlled cases using various POD truncations to observe velocity reconstructions, based on the overall energy of the system. In doing so, we will consider the convergence rate of the spatial eigenvalues when conducting our POD reconstruction of the fluctuating velocity field, for both the baseline and controlled cases.Since a complex flow exists in the wake of the disk, the goal will be to form a state space representation of the flow in the form of a linear time invariant (LTI) system. This model is simply a linearization of the flow around the baseline. Furthermore, our knowledge of the input control signal will allow us to predict the flow at a later instant in time. We would like to extract the most energetic modes of the system and thereby form our observer-based controller to close the loop. In order to accomplish this, and with a rich open-loop dataset at our disposal, we will first form the POD reconstruction of the baseline. We then form anew basis, obtained by taking the actuated (controlled) data and subtracting from it the components of the flow that fall in the subspace spanned by the baseline flow. This will characterize the flow field by capturing the effect of the control input (actuation), from which the parameters of the LTI system can be identified. Preliminary POD reconstruction shows that 60% of the energy is recovered from 20 POD modes of the total 511 modes for the baseline case; similarly 60% of the energy is also recovered from 100 POD modes of the total 1,024 modes for the actuated case.
机译:这项工作利用POD重建的时间相关速度场,研究了流量控制对水流中磁盘近尾流区域的影响。速度测量是使用时间分辨粒子图像测速仪(TRPIV)进行的,基于磁盘直径,雷诺数为20,000,有控制和无控制。通过从圆盘边缘的周期性合成射流激励施加开环控制。利用时间分辨速度数据库的优势,我们能够在磁盘唤醒后重建与时间有关的速度场。基于系统的整体能量,使用各种POD截断为基线和受控案例进行了此重构,以观察速度重构。这样,在进行基线速度和受控情况下的波动速度场的POD重构时,我们将考虑空间特征值的收敛速度。 由于磁盘唤醒后存在复杂的流,因此目标是以线性时不变(LTI)系统的形式形成流的状态空间表示。该模型只是基线周围流量的线性化。此外,我们对输入控制信号的了解将使我们能够在稍后的某个时刻预测流量。我们想提取系统中最活跃的模式,从而形成基于观察者的控制器来闭合循环。为了做到这一点,并使用我们丰富的开环数据集,我们将首先形成基线的POD重建。然后我们形成一个 通过获取激活的(受控)数据并从中减去落入由基线流跨越的子空间中的流的分量而获得的新基础。这将通过捕获控制输入(促动)的作用来表征流场,从中可以识别LTI系统的参数。初步的POD重建表明,在基准情况下,从511种模式中的20种POD模式中回收了60%的能量;类似地,也从被驱动的情况下总共1,024个模式中的100个POD模式中回收了60%的能量。

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