An Efficient Hybrid Computational Process for Aeroacoustic Vehicle Development Based on Navier-Stokes Equations and Lighthill's Acoustic Analogy
暫譯: 基於Navier-Stokes方程與Lighthill聲學類比的高效混合計算過程於航空聲學車輛開發
Perugini, Carlo Alberto
- 出版商: Springer Vieweg
- 出版日期: 2026-05-27
- 售價: $4,260
- 貴賓價: 9.5 折 $4,047
- 語言: 英文
- 頁數: 116
- 裝訂: Quality Paper - also called trade paper
- ISBN: 3658519762
- ISBN-13: 9783658519766
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相關分類:
流體力學 Fluid-mechanics
海外代購書籍(需單獨結帳)
相關主題
商品描述
Vehicle interior noise at highway speeds is dominated by aerodynamic sources arising from unsteady turbulent flow around external components. Carlo Alberto Perugini presents a hybrid computational methodology for predicting aerodynamic noise sources and their contribution to interior cabin noise in road vehicles. His approach combines unsteady CFD simulations based on the incompressible Navier-Stokes equations with a finite element acoustic model derived from Lighthill's acoustic analogy and a vibro-acoustic model for noise propagation into the cabin. The CFD simulations are performed using a DDES approach to resolve large-scale turbulent structures, while the acoustic propagation is computed using FEM. The resulting pressure fluctuations are used as input for the vibro-acoustic model to evaluate interior noise levels. The methodology is applied to a full-scale production SUV, with a detailed aeroacoustic analysis of the side mirror and roof spoiler regions. Experimental measurements conducted in an aeroacoustic wind tunnel are used for validation, including velocity field data, exterior sound pressure levels, and interior cabin noise measurements. The results show good agreement between numerical predictions and experimental data across the investigated frequency range. The study highlights the contribution of specific flow structures to noise generation and provides a structured and reproducible workflow for aeroacoustic analysis of vehicle components.
商品描述(中文翻譯)
在高速公路行駛時,車輛內部噪音主要來自於外部元件周圍不穩定的湍流流動所產生的空氣動力學來源。Carlo Alberto Perugini 提出了一種混合計算方法,用於預測空氣動力學噪音來源及其對道路車輛內部駕駛艙噪音的貢獻。他的方法結合了基於不可壓縮 Navier-Stokes 方程的非穩態計算流體力學 (CFD) 模擬,與基於 Lighthill 的聲學類比推導出的有限元素聲學模型,以及用於噪音傳播進入駕駛艙的振動聲學模型。CFD 模擬使用 DDES 方法來解析大規模湍流結構,而聲學傳播則使用有限元素法 (FEM) 進行計算。所得到的壓力波動被用作振動聲學模型的輸入,以評估內部噪音水平。該方法應用於一輛全尺寸生產的 SUV,並對側視鏡和車頂擾流板區域進行了詳細的空氣聲學分析。在空氣聲學風洞中進行的實驗測量用於驗證,包括速度場數據、外部聲壓水平和內部駕駛艙噪音測量。結果顯示,在所調查的頻率範圍內,數值預測與實驗數據之間有良好的一致性。該研究突顯了特定流動結構對噪音產生的貢獻,並提供了一個結構化且可重複的工作流程,用於車輛元件的空氣聲學分析。
作者簡介
Carlo Alberto Perugini completed his Ph.D. in Automotive Engineering at the University of Stuttgart (Germany) in 2026. He currently works at a multinational software development company as an Industry Process Consultant Specialist, focusing on computational fluid dynamics solutions for automotive and aerospace applications.
作者簡介(中文翻譯)
卡洛·阿爾貝托·佩魯吉尼於2026年在德國斯圖加特大學完成了汽車工程博士學位。目前,他在一家跨國軟體開發公司擔任產業流程顧問專家,專注於汽車和航空航天應用的計算流體力學解決方案。