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Modeling of heat transfer and turbulent flows inside industrial furnaces

机译:工业炉内传热和湍流模型

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摘要

In this work, we present a three-dimensional computational fluid-dynamics model for simulating complex industrial furnaces. The focus in set on the mathematical modeling of heated solids inside the furnace. A stabilized finite element method is used to numerically solve time-dependent, three-dimensional, conjugate heat transfer and turbulent fluid flows. In order to simulate the fluid-solid interaction, we propose the immersed volume method combined with a direct anisotropic mesh adaptation process enhancing the interface representation. The method demonstrates the capability of the model to simulate an unsteady heat transfer flow of natural convection, conduction and radiation in a complex 3D industrial furnace with the presence of six conducting steel solids.
机译:在这项工作中,我们提出了用于模拟复杂工业炉的三维计算流体动力学模型。着重研究炉内加热固体的数学模型。稳定的有限元方法用于数值求解时间相关的三维共轭传热和湍流。为了模拟流固耦合,我们提出了浸入体积法与直接各向异性网格自适应过程相结合的方法来增强界面表示。该方法证明了该模型能够模拟存在六种导电钢固体的复杂3D工业炉中自然对流,传导和辐射的不稳定传热流。

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