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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Influences of turbulence modeling on particle-wall contacts in numerical simulations of industrial furnaces for thermal particle treatment
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Influences of turbulence modeling on particle-wall contacts in numerical simulations of industrial furnaces for thermal particle treatment

机译:湍流建模对工业炉数值模拟中的粒子壁触点,用于热颗粒处理

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摘要

The knowledge of particles that remain in the furnace is important for the efficiency of a thermal particle treatment process. These particles mainly stick to the combustion chamber wall and represent a material loss. To predict the amount of particle-wall contacts in such furnaces, a numerical model based on transient multiphase flow calculations is presented in this work. The proposed model differs from the current state-of-the-art CFD models as follows: Instead of using the commonly used RANS turbulence models (realizable-k-epsilon model, Reynolds stress model) and steady state calculations, large eddy simulations (LES) of the multiphase flow in the furnace in combination with a type of RANS mesh were performed. Furthermore, the applicability of the LES technique was evaluated by comparing the numerical results to measurements. It was found that the proposed numerical model provides more accurate prediction performance than applying common RANS turbulence models. (C) 2020 Elsevier B.V. All rights reserved.
机译:保留在炉中的颗粒的知识对于热颗粒处理过程的效率是重要的。这些颗粒主要粘附到燃烧室壁上并表示材料损失。为了预测这种炉子中的粒子壁触点的量,在这项工作中提出了一种基于瞬态多相流量计算的数值模型。所提出的模型与当前最先进的CFD型号不同,如下所示:而不是使用常用的RAN湍流模型(可实现的k-epsilon模型,reynolds应力模型)和稳态计算,大涡模拟(les )进行炉中的多相流,与一种类型的RAN网组合进行。此外,通过将数值结果与测量比较来评估LES技术的适用性。结果发现,所提出的数值模型提供比应用公共RAN湍流模型更准确的预测性能。 (c)2020 Elsevier B.V.保留所有权利。

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