Hydrodynamics and Sound
暫譯: 流體力學與聲音
M. S. Howe
- 出版商: Cambridge
- 出版日期: 2006-10-23
- 售價: $1,350
- 貴賓價: 9.8 折 $1,323
- 語言: 英文
- 頁數: 480
- 裝訂: Hardcover
- ISBN: 0521868629
- ISBN-13: 9780521868624
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Description
There is a certain body of knowledge and methods that finds application in most branches of fluid mechanics. This book aims to supply a proper theoretical understanding that will permit sensible simplifications to be made in the formulation of problems, and enable the reader to develop analytical models of practical significance. Such analyses can be used to guide more detailed experimental and numerical investigations. As in most technical subjects, such understanding is acquired by detailed study of highly simplified 'model problems'. The first part (Chapters 1 - 4) is concerned entirely with the incompressible flow of a homogeneous fluid. It was written for the Boston University introductory graduate level course 'Advanced Fluid Mechanics'. The remaining Chapters 5 and 6 deal with dispersive waves and acoustics, and are unashamedly inspired by James Lighthill's masterpiece, Waves in Fluids.
• Provides a detailed study of a wide range of highly simplified 'model problems'
• Helps the reader to formulate and develop analytical models of practical significance
• Covers the incompressible flow of a homogeneous fluid, the theory of dispersive waves and an introduction to acoustics
Table of Contents
Preface; 1. Equations of motion; 2. Potential flow of an incompressible fluid; 3. Ideal flow in two dimensions; 4. Rotational incompressible flow; 5. Surface gravity waves; 6. Introduction to acoustics; Bibliography.
商品描述(中文翻譯)
**描述**
流體力學的各個分支中都有一套特定的知識和方法。本書旨在提供適當的理論理解,使得在問題的表述中能夠進行合理的簡化,並使讀者能夠發展出具有實際意義的分析模型。這些分析可以用來指導更詳細的實驗和數值研究。與大多數技術主題一樣,這種理解是通過對高度簡化的「模型問題」的詳細研究來獲得的。第一部分(第1至第4章)完全關注於均質流體的不可壓縮流動。這部分是為波士頓大學的研究生入門課程「高級流體力學」編寫的。剩下的第5和第6章則涉及色散波和聲學,並毫不掩飾地受到詹姆斯·萊特希爾(James Lighthill)名著《流體中的波》(Waves in Fluids)的啟發。
- 提供對各種高度簡化的「模型問題」的詳細研究
- 幫助讀者制定和發展具有實際意義的分析模型
- 涵蓋均質流體的不可壓縮流動、色散波理論及聲學入門
**目錄**
前言;1. 運動方程;2. 不可壓縮流體的勢流;3. 二維理想流動;4. 旋轉不可壓縮流動;5. 表面重力波;6. 聲學入門;參考文獻。