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CFD-DEM coupled with thermochemical sub-models for biomass gasification: Validation and sensitivity analysis

机译:CFD-DEM与用于生物质气化的热化学子模型:验证和敏感性分析

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摘要

A user-defined solver towards the high-fidelity CFD-DEM method with thermochemical sub-models integrating is developed based on the open-source MFIX-DEM software for simulating biomass gasification in a fluidized bed reactor. In this method, the fluid phase is solved under Eulerian framework while the solid motion is solved under Lagrangian framework. The inter-particle and inter-phase interactions, heat and mass transfer, gas turbulence, radiation, particle conversion, drying, pyrolysis, and homogeneous reactions are synthetically considered. The method is validated with experimental data and simulation results, and the sensitivity analysis is conducted for assessing the influence of contact and drag models on the CFD-DEM simulation of biomass gasification. Results show that the magnitude of total calculation time for the non-linear Hertzian contact model is 6.8 times of that for the linear LSD contact model. The drag models significantly affect the gas-solid flow dynamics while having a slight influence on the thermochemical results obtained at the reactor exit. As a result, the present work delivers a promising perspective for modeling thermochemical processes (e.g., fast pyrolysis, coal combustion, iron smelting, and tablet coating) in dense reactive particulate systems by using the open-source MFIX-DEM software. (C) 2020 Elsevier Ltd. All rights reserved.
机译:基于用于在流化床反应器中模拟生物质气化的开源MFIX-DEM软件,开发了具有热化学子模型集成的高保真SUM模型的用户定义的求解器。在该方法中,在欧拉框架下求解流体相,而实体运动在拉格朗日框架下解决。合成溶液和相相相互作用,热量和传质,气体湍流,辐射,颗粒转化,干燥,热解和均相反应。该方法用实验数据和仿真结果验证,并进行了灵敏度分析,以评估接触和拖曳模型对生物质气化的CFD-DEM模拟的影响。结果表明,线性LSD触点型号为6.8倍的非线性Hertzian触点型号的总计算时间的大小。阻力模型显着影响气体固体流动动态,同时对反应器出口处获得的热化学结果产生轻微影响。结果,目前的作品通过使用开源MFIX-DEM软件,提供了用于在致密的反应颗粒系统中建模的热化学方法(例如,快速热解,煤燃烧,铁冶炼和片剂涂层)的前景。 (c)2020 elestvier有限公司保留所有权利。

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