Defect Correction Methods for Fluid Flows at High Reynolds Numbers
暫譯: 高雷諾數流體流動的缺陷修正方法
Labovsky, Alexander E.
- 出版商: CRC
- 出版日期: 2025-07-17
- 售價: $4,970
- 貴賓價: 9.5 折 $4,722
- 語言: 英文
- 頁數: 152
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 1032410434
- ISBN-13: 9781032410432
尚未上市,無法訂購
相關主題
商品描述
Defect Correction Methods for Fluid Flows at High Reynold's Numbers presents the mathematical development of defect correction methods (DCM) in application to fluid flow problems in various settings. We will show several approaches to applying the DCM ideas in computational fluid dynamics (CFD) - from a basic idea of controlling the flow by the means of increased diffusion, to the state-of-the-art family of novel, DCM-based turbulence models. The main idea of the methods presented in this book, is to use defect correction in turbulence modelling; additionally, several methods will also be presented, that aim at reducing the time discretization error.
Features
- Provides a road map, starting from the ideas of minimally invasive controlling of turbulent flows, to the ways of improving the existing regularization techniques with DCM, to the ideas of 'full defect correction' in both space and time and, finally, to the more complex embedding of the DCM into turbulence modelling by the 'correction' of the whole turbulence model
- Can be used for teaching a topics course on a Masters or Ph.D. level. It is even more suitable as a reference for CFD theorists and practitioners, with most of the methods being minimally invasive and, therefore, easy to implement in the existing/legacy codes
- Discusses the current challenges in turbulence modelling with defect correction, showing several possible directions for future developments. Two source codes are provided - one for a regularization technique and another for a novel turbulence model - in order to give an interested researcher a quick start to the topic of DCM in CFD.
商品描述(中文翻譯)
《高雷諾數流體流動的缺陷修正方法》介紹了缺陷修正方法(DCM)在各種流體流動問題中的數學發展。我們將展示幾種在計算流體力學(CFD)中應用DCM思想的方法——從通過增加擴散來控制流動的基本理念,到基於DCM的最新湍流模型系列。本書所介紹方法的主要思想是將缺陷修正應用於湍流建模;此外,還將介紹幾種旨在減少時間離散誤差的方法。
特點:
- 提供了一個路線圖,從對湍流的微創控制理念開始,到利用DCM改進現有正則化技術的方法,再到在空間和時間上進行“完全缺陷修正”的理念,最後是將DCM更複雜地嵌入湍流建模中,通過“修正”整個湍流模型。
- 可用於教授碩士或博士級的主題課程。對於CFD理論家和實踐者來說,它更適合作為參考,因為大多數方法都是微創的,因此易於在現有/舊有代碼中實現。
- 討論了缺陷修正在湍流建模中的當前挑戰,展示了未來發展的幾個可能方向。提供了兩個源代碼——一個用於正則化技術,另一個用於新型湍流模型——以便讓有興趣的研究者快速入門DCM在CFD中的主題。
作者簡介
Alexander Labovsky is an Associate Professor of Mathematical Sciences at Michigan Technological University. His research interests include high accuracy methods for PDEs, multiscale modelling and numerical analysis of turbulence models for Navier-Stokes and coupled Navier-Stokes systems (fluid-fluid interaction, magnetohydrodynamics). He also has ongoing projects in Uncertainty Quantification and modelling of compressible flows.
作者簡介(中文翻譯)
亞歷山大·拉博夫斯基是密西根科技大學數學科學的副教授。他的研究興趣包括偏微分方程的高精度方法、多尺度建模以及納維-斯托克斯方程和耦合納維-斯托克斯系統(流體-流體相互作用、磁流體力學)湍流模型的數值分析。他還在不確定性量化和可壓縮流動建模方面有持續的研究項目。