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中试规模直接熔融炉中城市固体废弃物气化的计算流体动力学-离散单元法模拟

CFD-DEM simulations of municipal solid waste gasification in a pilot-scale direct-melting furnace.

作者信息

Zhang Hui, Okuyama Keiichi, Higuchi Shinji, Soon Genevieve, Lisak Grzegorz, Law Adrian Wing-Keung

机构信息

JFE Engineering Corporation Singapore Branch, 1 CleanTech Loop, Singapore 637141, Singapore.

Environmental Process Modelling Centre, Nanyang Environment and Water Research Institute, Nanyang Technological University, 1 CleanTech Loop, Singapore 637141, Singapore.

出版信息

Waste Manag. 2023 May 1;162:43-54. doi: 10.1016/j.wasman.2023.03.008. Epub 2023 Mar 16.

Abstract

A multiphase CFD-DEM model was built to simulate the waste-to-energy gasifying and direct melting furnace in a pilot demonstration facility. The characterizations of feedstocks, waste pyrolysis kinetics, and charcoal combustion kinetics were first obtained in the laboratory and used as model inputs. The density and heat capacity of waste and charcoal particles were then modelled dynamically under different status, composition, and temperature. A simplified ash melting model was developed to track the final fate of waste particles. The simulation results were in good agreement with the site observations in both temperature and slag/fly-ash generations, verifying the CFD-DEM model settings and gas-particle dynamics. More importantly, the 3-D simulations quantified and visualized the individual functioning zones in the direct-melting gasifier as well as the dynamic changes throughout the whole lifetime of waste particles, which is otherwise technically unachievable for direct plant observations. Hence, the study demonstrates that the established CFD-DEM model together with the developed simulation procedures can be used as a tool for the optimisation of operating conditions and scaled-up design for future prototype waste-to-energy gasifying and direct melting furnace.

摘要

建立了一个多相计算流体力学-离散单元法(CFD-DEM)模型,对中试示范装置中的垃圾焚烧气化直接熔融炉进行模拟。首先在实验室中获得了原料性质、垃圾热解动力学和木炭燃烧动力学,并将其用作模型输入。然后对不同状态、成分和温度下的垃圾和木炭颗粒的密度和热容量进行动态建模。开发了一个简化的灰分熔化模型,以追踪垃圾颗粒的最终去向。模拟结果在温度和炉渣/飞灰生成方面与现场观测结果吻合良好,验证了CFD-DEM模型设置和气固动力学。更重要的是,三维模拟对直接熔融气化炉中的各个功能区以及垃圾颗粒整个生命周期内的动态变化进行了量化和可视化,而这对于直接的工厂观测在技术上是无法实现的。因此,该研究表明,所建立的CFD-DEM模型以及所开发的模拟程序可作为优化运行条件和未来原型垃圾焚烧气化直接熔融炉放大设计的工具。

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