首页> 外文会议>ASME turbo expo: turbine technical conference and exposition >COMPRESSIBLE REYNOLDS-AVERAGED NAVIER-STOKES ANALYSIS OF WIND TURBINE TURBULENT FLOWS USING A FULLY COUPLED LOW-SPEED PRECONDITIONED MULTIGRID SOLVER
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COMPRESSIBLE REYNOLDS-AVERAGED NAVIER-STOKES ANALYSIS OF WIND TURBINE TURBULENT FLOWS USING A FULLY COUPLED LOW-SPEED PRECONDITIONED MULTIGRID SOLVER

机译:利用全耦合低速多重网格求解器对风轮机湍流进行可压缩的雷诺平均航程分析

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The high-fidelity aeromechanical analysis and design of multi-megawatt horizontal axis wind turbines can be performed by means of Reynolds-averaged Navier-Stokes codes. The compressible or incompressible formulation of the fluid equations can be used. One of the objectives of the paper is to quantify the effects of flow compressibility on the aerodynamics of large turbine rotors with particular attention to the tip region of a 82 m rotor blade featuring a relative Mach number of about 0.3 near rated conditions. Noticeable local static pressure variations due to compressibility are observed. Such variations point to the better suitability of compressible solvers for turbine aerodynamics, not only when the solver is used for direct aeroacoustic simulation of the near field noise propagation, but also when it is used to provide the surface static pressure to be used as input for acoustic analogy noise propagation codes. On the numerical side, a novel numerical approach to low-speed preconditioning of the mean flow and turbulence model equations for the fully coupled integration of the flow equations coupled to a two-equation turbulence model is presented and implemented in a compressible Navier-Stokes research code for the steady and yawed wind-induced time-dependent flows analyzed herein.
机译:多兆瓦水平轴风力涡轮机的高保真航空机械分析和设计可以通过雷诺平均Navier-Stokes编码进行。可以使用流体方程的可压缩或不可压缩公式。本文的目的之一是量化流动可压缩性对大型涡轮转子的空气动力学的影响,尤其要注意82 m转子叶片的叶尖区域,该区域的叶片在相对额定条件下的相对马赫数约为0.3。观察到由于可压缩性引起的明显的局部静压力变化。这种变化表明可压缩解算器更适合于涡轮机空气动力学,不仅是在将解算器用于近场噪声传播的直接空气声模拟时,而且还在将解算器用于提供表面静压力用作输入时的情况。声学类比噪声传播代码。在数值方面,提出了一种新颖的数值方法,用于对平均流量和湍流模型方程进行低速预处理,以将耦合至两方程湍流模型的流量方程完全耦合在一起,并在可压缩的Navier-Stokes研究中实现本文分析的稳定和偏航的风诱导时间相关流的代码。

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