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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Assessment of six turbulence models for modeling and predicting narrow passage flows, part 2: Pin fin arrays
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Assessment of six turbulence models for modeling and predicting narrow passage flows, part 2: Pin fin arrays

机译:评估用于建模和预测窄通道流动的六个湍流模型,第2部分:针鳍阵列

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摘要

The current study focuses on numerical investigation of narrow passage flows with pin fin arrays. Six different turbulence models, including linear eddy viscosity models, an explicit algebraic Reynolds stress model, and a V2f model, are explored as they are utilized with k-epsilon and k- platforms. The main objective of the work is to study numerical performance and accuracy of models when applied in the simulation of blade pin fin arrays. The main objective is comparison of the numerical accuracy of models, when applied for the simulation of complex flows within narrow passages. Numerical results obtained with the different models are compared to the experimental data from the literature. As such, comparisons are performed of different flow field quantities, including mean velocity components, Reynolds stress tensor components, and surface Nusselt number distributions.
机译:目前的研究集中在针翅阵列的窄通道流动的数值研究上。当它们与k-ε和k-平台一起使用时,探索了六个不同的湍流模型,包括线性涡流粘度模型,显式代数雷诺应力模型和V2f模型。这项工作的主要目的是研究应用于叶片销鳍阵列的仿真时模型的数值性能和准确性。主要目的是比较模型的数值精度,该模型适用于模拟狭窄通道内的复杂流动。将使用不同模型获得的数值结果与文献中的实验数据进行比较。因此,对不同的流场量进行了比较,包括平均速度分量,雷诺应力张量分量和表面Nusselt数分布。

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