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首页> 外文期刊>Journal of Engineering for Gas Turbines and Power >Energetically Consistent Computation of Combustor Stability With a Model Consisting of a Helmholtz Finite Element Method Domain and a Low-Order Network
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Energetically Consistent Computation of Combustor Stability With a Model Consisting of a Helmholtz Finite Element Method Domain and a Low-Order Network

机译:具有由Helmholtz有限元方法结构域和低阶网络组成的模型的燃烧器稳定性的精力一致计算

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An efficient approach for the detection of the acoustic damping of gas turbine combustors is the combination of spatially resolved finite element method (FEM) approaches based on the Helmholtz equation with low-order networks for all elements leading to acoustic damping. A fundamental problem of such hybrid approaches is that the flow is considered in the networks, but not in the spatially resolved FEM area. Without special treatment of the coupling plane and the boundary conditions, this leads to serious errors in the calculation of the damping rate. The purpose of the paper is the derivation of the required correction procedures, which allow the energetically consistent formulation of such hybrid models and lead to correct damping rates. The time-averaged equation of acoustic energy flux for nonuniform fluid flows is expressed in terms of reflection coefficients and compared to the equivalent formulation for vanishing mean flows. An existing transformation for boundary conditions to obtain equal energy flux at the interface between network and Helmholtz domain is analyzed in detail. The findings are then used to derive an energetically consistent transformation of transfer matrices to couple two FEM domains via a network model. The relevance of energetically consistent transfer matrices for stability analysis is demonstrated with a generic test case. The central partition is acoustically characterized via a low-order model considering mean flow. The resulting acoustic two-port is transformed to obtain an energetically consistent transfer matrix for a subsequent FEM discretized eigenvalue analysis of the remaining geometry. The eigenvalues of energetically consistent calculations are finally compared to eigenvalues of energetically inconsistent setups.
机译:一种有效的用于检测燃气轮机燃烧器声阻尼的方法是基于Helmholtz方程的空间分辨的有限元方法(FEM)方法的组合,所述亥姆霍兹方程对于导致声阻尼的所有元件的低位网络。这种混合方法的基本问题是在网络中考虑流动,但不在空间分辨的FEM区域中。在没有耦合平面和边界条件的特殊处理,这导致在阻尼率的计算中发生严重误差。纸张的目的是所需校正程序的推导,其允许对这种混合模型的大力一致配方,并导致校正阻尼率。在反射系数方面表达了非均匀流体流动声能量通量的时间平均等式,并与用于消失平均流动的等效配方进行比较。详细地分析了在网络和亥姆霍兹域之间接口获得相同能量通量的边界条件的现有变换。然后使用该发现来导出转移矩阵的能量一致的变换,以通过网络模型耦合两个有限元域。用通用测试案例对稳定性分析进行了高能量一致的转移矩阵的相关性。考虑平均流量,中央分区正在声学的表征,考虑平均流量。转换所得到的声学双端口以获得剩余几何形状的随后的有限元离散特征值分析的能量总是一致的传输矩阵。最终将精力一致的计算的特征值与能量不一致的设置的特征值相比。

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