湍流自然对流的无量纲物理数学建模

S. A. Verdério Júnior, V. L. Scalon, S. R. Oliveira, P. C. Mioralli, E. Avallone
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引用次数: 1

摘要

自然对流传热存在于热工最多样化的应用中,如电子设备、传输线、冷却盘管、生物系统等。这一现象的正确物理数学建模对于理解其基本原理以及热系统和相关技术的设计至关重要。无因次分析可以应用于流动研究,减少几何和实验依赖,便于建模过程和对主要影响物理参数的理解;除了用于创建模型和原型之外。这项工作提出了一种无因次物理数学建模的方法,自然对流湍流在等温板上,位于“无限”开放环境。针对所研究的问题,定义了统一的无量纲物理数学模型。证明了无量纲数对Grashof、Prandtl和紊流Prandtl的物理影响。讨论了量纲分析和相似理论在建立和简化CFD模拟过程中的应用及其作为工具和数值装置的应用。
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DIMENSIONLESS PHYSICAL-MATHEMATICAL MODELING OF TURBULENT NATURAL CONVECTION
Natural convection heat transfer is present in the most diverse applications of Thermal Engineering, such as in electronic equipment, transmission lines, cooling coils, biological systems, etc. The correct physical-mathematical modeling of this phenomenon is crucial in the applied understanding of its fundamentals and the design of thermal systems and related technologies. Dimensionless analyses can be applied in the study of flows to reduce geometric and experimental dependence and facilitate the modeling process and understanding of the main influence physical parameters; besides being used in creating models and prototypes. This work presents a methodology for dimensionless physical-mathematical modeling of natural convection turbulent flows over isothermal plates, located in an “infinite” open environment. A consolidated dimensionless physical-mathematical model was defined for the studied problem situation. The physical influence of the dimensionless numbers of Grashof, Prandtl, and Turbulent Prandtl was demonstrated. The use of the Theory of Dimensional Analysis and Similarity and its application as a tool and numerical device in the process of building and simplifying CFD simulations were discussed.
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