Journal Title:Progress In Computational Fluid Dynamics
CFD is now considered an indispensable analysis/design tool in an ever-increasing range of industrial applications. Practical flow problems are often so complex that a high level of ingenuity is required. Thus, besides the development work in CFD, innovative CFD applications are also encouraged. PCFD's ultimate goal is to provide a common platform for model/software developers and users by balanced international/interdisciplinary contributions, disseminating information relating to development/refinement of mathematical and numerical models, software tools and their innovative applications in CFD.
Topics covered include:
-Turbulence-
Two-phase flows-
Heat transfer-
Chemical reactions and combustion-
Acoustics-
Unsteady flows-
Free-surfaces-
Fluid-solid interaction-
Navier-Stokes solution techniques for incompressible and compressible flows-
Discretisation methods and schemes-
Convergence acceleration procedures-
Grid generation and adaptation techniques-
Mesh-free methods-
Distributed computing-
Other relevant topics
CFD 现在被认为是越来越广泛的工业应用中不可或缺的分析/设计工具。实际的流动问题通常非常复杂,需要高度的独创性。因此,除了 CFD 的开发工作外,还鼓励创新的 CFD 应用。 PCFD 的最终目标是通过平衡的国际/跨学科贡献,传播与数学和数值模型、软件工具及其在 CFD 中的创新应用的开发/改进相关的信息,为模型/软件开发人员和用户提供一个通用平台。
涵盖的主题包括:
-湍流-
两相流-
传热-
化学反应和燃烧-
声学-
不稳定的流动-
自由曲面-
流固相互作用-
不可压缩和可压缩流的 Navier-Stokes 求解技术-
离散化方法和方案-
收敛加速程序-
网格生成和适应技术-
无网格方法-
分布式计算-
其他相关主题
大类学科 | 小类学科 | 分区 | Top期刊 | 综述期刊 |
工程技术 | MECHANICS 力学 THERMODYNAMICS 热力学 | 4区 | 是 | 是 |
大类学科 | 小类学科 | 分区 |
工程技术 | MECHANICS 力学 THERMODYNAMICS 热力学 | 4区 |
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