基于滑动网格界面法的VAWT二维CFD仿真气动对比分析及并行性能研究

IF 1.5 4区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING Concurrency and Computation-Practice & Experience Pub Date : 2025-01-13 DOI:10.1002/cpe.8353
Hüseyin Can Önel, Ali Ata Adam, Nilay Sezer Uzol
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引用次数: 0

摘要

随着计算机硬件和数值模拟方法的快速发展,计算流体力学(CFD)在模拟复杂流动方面取得了突出的成就。随着并行计算成为行业标准,仿真的计算效率变得至关重要。垂直轴风力涡轮机(VAWT)的流动具有复杂的动力学和具有挑战性的旋转几何形状,是CFD研究的一个有趣案例。本研究采用开源CFD求解器SU2和OpenFOAM对h型Darrieus VAWT的不可压缩、非定常流场和湍流场进行了二维模拟。研究了空间和时间离散化参数,以平衡计算成本和准确性,揭示了对功率预测的显着影响。在相同条件下进行的模拟可以比较SU2和OpenFOAM在三种不同叶尖速比(tsr)下的预测和并行性能。研究结果表明,离散化参数在不同的tsr下表现不同。虽然SU2和OpenFOAM的功率预测通常与实验数据一致,并且彼此一致,但在较低的tsr下出现差异,推力预测显示出更好的一致性。尽管OpenFOAM在所有并行配置中提供了更快的解决方案,但SU2展示了卓越的并行可伸缩性,实现了更高的加速和效率。
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Comparative Aerodynamic Analysis and Parallel Performance of 2D CFD Simulations of a VAWT Using Sliding Mesh Interface Method

With rapid advancements in computer hardware and numerical modeling methods, Computational Fluid Dynamics (CFD) has gained prominence in simulating complex flows. As parallel computation becomes an industry standard, the computational efficiency of simulations has become critical. The flow around a Vertical Axis Wind Turbine (VAWT), characterized by complex dynamics and challenging rotating geometry, serves as an intriguing case for CFD studies. This study employs the open-source CFD solvers SU2 and OpenFOAM to simulate the incompressible, unsteady, and turbulent flow around an H-type Darrieus VAWT in two dimensions. Spatial and temporal discretization parameters are examined to balance computational cost and accuracy, revealing notable effects on power predictions. Simulations conducted under identical conditions allow for a comparison of the predictions and parallel performances of SU2 and OpenFOAM across three distinct tip speed ratios (TSRs). The findings show that discretization parameters behave differently at various TSRs. While power predictions from SU2 and OpenFOAM generally align with experimental data and with each other, discrepancies arise at lower TSRs, with thrust predictions showing better consistency. Although OpenFOAM provides a faster solution across all parallel configurations, SU2 demonstrates superior parallel scalability, achieving higher speedup and efficiency.

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来源期刊
Concurrency and Computation-Practice & Experience
Concurrency and Computation-Practice & Experience 工程技术-计算机:理论方法
CiteScore
5.00
自引率
10.00%
发文量
664
审稿时长
9.6 months
期刊介绍: Concurrency and Computation: Practice and Experience (CCPE) publishes high-quality, original research papers, and authoritative research review papers, in the overlapping fields of: Parallel and distributed computing; High-performance computing; Computational and data science; Artificial intelligence and machine learning; Big data applications, algorithms, and systems; Network science; Ontologies and semantics; Security and privacy; Cloud/edge/fog computing; Green computing; and Quantum computing.
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