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Extension of a coarse grained particle method to simulate heat transfer in fluidized beds

机译:扩展了粗颗粒方法以模拟流化床中的传热

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摘要

The heat transfer in a gas-solids fluidized bed is simulated with computational fluid dynamic-discrete element method (CFD-DEM) and coarse grained particle method (CGPM). In CGPM fewer numerical particles and their collisions are tracked by lumping several real particles into a computational parcel. The assumption is that the real particles inside a coarse grained particle (CGP) are made from same species and share identical physical properties including density, diameter and temperature. The parcel-fluid convection term in CGPM is calculated using the same method as in DEM. For all other heat transfer mechanisms, we derive in this study mathematical expressions that relate the new heat transfer terms for CGPM to those traditionally derived in DEM. This newly derived CGPM model is verified and validated by comparing the results with CFD-DEM simulation results and experiment data. The numerical results compare well with experimental data for both hydrodynamics and temperature profiles. The proposed CGPM model can be used for fast and accurate simulations of heat transfer in large scale gas-solids fluidized beds.
机译:采用计算流体动力学离散元法(CFD-DEM)和粗粒法(CGPM)对气固流化床中的传热进行了模拟。在CGPM中,通过将几个实际粒子集中到一个计算宗地中来跟踪较少的数字粒子及其碰撞。假设是,粗颗粒(CGP)内的真实颗粒是由相同的物种制成,并具有相同的物理特性,包括密度,直径和温度。 CGPM中的包裹流体对流项是使用与DEM中相同的方法计算的。对于所有其他传热机制,我们在本研究中得出数学表达式,这些表达式将CGPM的新传热术语与DEM中传统得出的术语相关联。通过将结果与CFD-DEM仿真结果和实验数据进行比较,可以验证和验证此新导出的CGPM模型。数值结果与流体动力学和温度曲线的实验数据很好地比较。提出的CGPM模型可用于快速,准确地模拟大型气固流化床中的传热。

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