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EFFICIENT STEADY AND UNSTEADY FLOW MODELING FOR ARBITRARILY MIS-STAGGERED BLADEROW UNDER INFLUENCE OF INLET DISTORTION

机译:在入口失真的影响下任意错误交错的Bladerow的高效稳态和不稳定的流量模型

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Accurate and efficient predictions of the steady and unsteady flow responses due to the blade-to-blade variation as well as due to the non-axisymmetric inlet distortion have been continually pursued. Computation of two problems concurrently has been rarely done in the past partly because of the need to perform whole annulus bladerow simulations, despite the advances in the current state-of-the-art methods with the phase-shift single passage simulations. The current work attempts to deal with this challenge by developing a new computational approach based on the principle of the multiscale method in the framework of a commercial solver (CFX). The methodology formulation relies on summation of the constituent source terms, each of which corresponds to a particular flow perturbation. The source term element corresponding to the blade-to-blade variation effect is linearly superimposed as in the classical Influence Coefficient Method. Only the relative positions between the reference blade and its neighbor matter in this method, thus enables an arbitrarily mis-staggered bladerow to be computed efficiently. In addition, the source term arisen due to the inlet distortion is calculated based on spatial Fourier transform. A key enabler is that the source term can be pre-computed using a small set of identical blade passages. The source term is then propagated to different spatial and temporal locations depending on the combination of the mis-staggering pattern and the inlet distortion. The multiscale treatment makes it possible to predict a high-resolution flow field effects on the base coarse mesh as if the fine mesh is solved, while achieving a computational gain. The source term summation method proposed in the current work has been validated using a uniformly staggered bladerow, and an arbitrarily mis-staggered bladerow in a clean inflow condition as well as that subject to an inlet distortion.
机译:由于叶片到叶片变化以及由于非轴对称入口失真而导致的稳定和不稳定的流量响应的准确和有效预测。尽管当前现有方法具有相移单通道模拟,但是需要执行整个环形虚拟仿真的需要,这两次也很少已经很少完成。目前的工作通过基于商业求解器(CFX)框架中的多尺度方法的原理来开发新的计算方法来解决这一挑战。方法制定依赖于组成源术语的总和,每个术语对应于特定的流动扰动。与叶片到叶片变化效果相对应的源极术语元素如在经典影响系数方法中线性叠加。在该方法中仅在参考刀片和邻居物之间的相对位置,因此可以有效地计算任意错误交错的Bladerow。另外,由于空间傅里叶变换计算出由于入口失真而产生的源术语。关键推动器是可以使用一小组相同的刀片通道预先计算源期限。然后,根据错误交错模式和入口失真的组合,源极限传播到不同的空间和时间位置。多尺度处理使得可以预测基础粗地网格的高分辨率流场效应,因为在实现计算增益的同时解决了细网格。在当前工作中提出的源期术语求和方法使用均匀交错的Bladerow验证,以及在清洁流入条件下的任意错误交错的Bladerow以及受到入口失真的影响。

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