Hydrodynamic and Magnetohydrodynamic Turbulent Flows: Modelling and Statistical Theory
暫譯: 流體動力學與磁流體動力學的湍流流動:建模與統計理論
Yoshizawa, A.
- 出版商: Springer
- 出版日期: 1998-09-30
- 售價: $10,100
- 貴賓價: 9.5 折 $9,595
- 語言: 英文
- 頁數: 416
- 裝訂: Hardcover - also called cloth, retail trade, or trade
- ISBN: 0792352254
- ISBN-13: 9780792352259
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相關分類:
數值分析 Numerical-analysis、Data Science、流體力學 Fluid-mechanics
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相關主題
商品描述
TUrbulence modeling encounters mixed evaluation concerning its impor- tance. In engineering flow, the Reynolds number is often very high, and the direct numerical simulation (DNS) based on the resolution of all spatial scales in a flow is beyond the capability of a computer available at present and in the foreseeable near future. The spatial scale of energetic parts of a turbulent flow is much larger than the energy dissipative counterpart, and they have large influence on the transport processes of momentum, heat, matters, etc. The primary subject of turbulence modeling is the proper es- timate of these transport processes on the basis of a bold approximation to the energy-dissipation one. In the engineering community, the turbulence modeling is highly evaluated as a mathematical tool indispensable for the analysis of real-world turbulent flow. In the physics community, attention is paid to the study of small-scale components of turbulent flow linked with the energy-dissipation process, and much less interest is shown in the foregoing transport processes in real-world flow. This research tendency is closely related to the general belief that universal properties of turbulence can be found in small-scale phenomena. Such a study has really contributed much to the construction of statistical theoretical approaches to turbulence. The estrangement between the physics community and the turbulence modeling is further enhanced by the fact that the latter is founded on a weak theoretical basis, compared with the study of small-scale turbulence.
商品描述(中文翻譯)
湍流模型在其重要性方面遭遇了混合評價。在工程流動中,雷諾數通常非常高,而基於對流動中所有空間尺度進行解析的直接數值模擬(DNS)超出了目前可用計算機的能力,並且在可預見的未來也無法實現。湍流中能量部分的空間尺度遠大於能量耗散部分的空間尺度,並且它們對動量、熱量、物質等的傳輸過程有著重大影響。湍流模型的主要課題是基於對能量耗散的粗略近似,對這些傳輸過程進行正確的估算。在工程界,湍流模型被高度評價為分析現實世界湍流不可或缺的數學工具。在物理界,則更關注與能量耗散過程相關的湍流小尺度組件的研究,而對現實流動中前述的傳輸過程則興趣較少。這一研究趨勢與普遍認為湍流的普遍性質可以在小尺度現象中找到的觀點密切相關。這樣的研究確實對湍流的統計理論方法的構建做出了很大貢獻。物理界與湍流模型之間的疏離感進一步加強,因為與小尺度湍流的研究相比,湍流模型建立在較弱的理論基礎上。