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Computational Simulation of Heat Transfer from Alternant Heating Sources

机译:交替加热源热传递的计算模拟

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The alternant heat transfer induced by particle packet and gas bubbles on an object surface in a gas fluidised bed is computationally studied. The particle packet and bubble are modelled by a DPPM (double particle-layer and Porous Medium) model and a hemispherical model, respectively. Different meshing schemes are applied and different mesh sizes are used in meshing particle packet and heated object and a very large geometrical size difference between them was considered. Two parallel solver processes were proposed to perform the simulation of heat transfer for different purposes and implemented with the Fluent CFD package.
机译:通过计算颗粒包和气泡在气体流化床中的物体表面上引起的交替传热被计算研究。粒子分组和气泡分别由DPPM(双重粒子层和多孔介质)模型和半球形模型进行建模。应用不同的啮合方案,并且不同的网格尺寸用于啮合粒子分组和加热物体,并且考虑它们之间的非常大的几何尺寸差异。提出了两个平行的求解器工艺以进行不同目的的传热模拟,并用流畅的CFD封装实现。

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