次声
解算器
水准点(测量)
航程(航空)
涡轮机
趋同(经济学)
风力发电
风速
计算机科学
气象学
理论(学习稳定性)
环境科学
分段线性函数
分段
曲线坐标
计算流体力学
大气模式
海洋工程
声学
计算机模拟
空气声学
地质学
时间尺度
空气动力学
遥感
风向
作者
Ken Mattsson,Gustav Eriksson,Leif Persson,José Chilo,Kourosh Tatar
标识
DOI:10.1016/j.apacoust.2025.111156
摘要
We present a high-fidelity simulation tool for accurate acoustic modeling across a wide range of applications. The numerical method is based on diagonal-norm Summation-By-Parts (SBP) finite-difference operators, which guarantee linear stability on piecewise curvilinear multi-block grids. Realistic three-dimensional atmospheric and topographic data are directly incorporated into the simulations, and the solver is implemented in CUDA to achieve high computational efficiency. Verification is performed through convergence studies against highly resolved benchmark problems in both two and three spatial dimensions, while validation is carried out using high-quality infrasound measurements from two modern wind farms in Sweden. The results show that modern, large-scale wind turbines generate infrasound levels significantly higher than those reported for older, smaller turbines. These findings advance the understanding of the acoustic characteristics of contemporary wind turbines and provide important guidance for assessing their potential environmental and societal impacts.
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