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Fluid Dynamics of Axial Turbomachinery: Blade- and Stage-Level Simulations and Models
Annual Review of Fluid Mechanics ( IF 27.7 ) Pub Date : 2022-01-05 , DOI: 10.1146/annurev-fluid-031221-105530
Richard D. Sandberg 1 , Vittorio Michelassi 2
Affiliation  

The current generation of axial turbomachines is the culmination of decades of experience, and detailed understanding of the underlying flow physics has been a key factor for achieving high efficiency and reliability. Driven by advances in numerical methods and relentless growth in computing power, computational fluid dynamics has increasingly provided insights into the rich fluid dynamics involved and how it relates to loss generation. This article presents some of the complex flow phenomena occurring in bladed components of gas turbines and illustrates how simulations have contributed to their understanding and the challenges they pose for modeling. The interaction of key aerodynamic features with deterministic unsteadiness, caused by multiple blade rows, and stochastic unsteadiness, i.e., turbulence, is discussed. High-fidelity simulations of increasingly realistic configurations and models improved with help of machine learning promise to further grow turbomachinery performance and reliability and, thus, help fluid mechanics research have a greater industrial impact.

中文翻译:


轴向涡轮机械的流体动力学:叶片级和级级仿真和模型

当前这一代轴流涡轮机是数十年经验的结晶,对基础流体物理的详细了解是实现高效率和可靠性的关键因素。在数值方法的进步和计算能力的不断增长的推动下,计算流体动力学越来越多地提供了对所涉及的丰富流体动力学及其与损失产生的关系的见解。本文介绍了燃气轮机叶片部件中发生的一些复杂流动现象,并说明了模拟如何有助于理解这些现象以及它们对建模提出的挑战。讨论了关键空气动力学特征与由多排叶片引起的确定性不稳定和随机不稳定(即湍流)之间的相互作用。

更新日期:2022-01-06
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