Department of Energy and Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China.
Department of Energy and Chemical Engineering, East China University of Science and Technology, Shanghai 200237, China.
Waste Manag. 2020 Mar 1;104:183-191. doi: 10.1016/j.wasman.2020.01.016. Epub 2020 Jan 22.
CFD modelling and simulation is an effective means of optimizing the design and operation of moving grate waste incinerators. Conventional approach models the grate combustion and the furnace combustion separately by using an in-bed/over-bed coupling procedure. In this paper, a comprehensive two-fluid reacting model that integrates the gas-solid grate incineration and the gas turbulent combustion in one scheme is developed for industrial incinerators. Realistic grate geometry and direct simultaneous coupling of the fuel bed and the freeboard gas phase are realized. According to different treatments of the solid phase, the whole incinerator is divided into three regions, namely the packed bed region, the fall region and the furnace region. The kinetic theory of granular flow (KTGF) is introduced to describe the rheological properties of waste particles, and the Ergun model is used for the gas-solid drag. Thermal conversion of wastes is characterized by the heterogeneous reactions of moisture evaporation, devolatilization, char-O combustion and the homogeneous reactions of hydrocarbons combustion. Distributions of temperatures and gas species are predicted and validated by measurements. Particle properties are calculated to reveal the grate incineration characteristics. Effects of waste throughput on the incineration are also investigated. Overall, the present model provides a new methodology of in-bed and over-bed integration for the moving grate incinerator simulation.
计算流体力学(CFD)建模和模拟是优化移动炉排焚烧炉设计和运行的有效手段。传统方法通过使用床内/床外耦合程序分别对炉排燃烧和炉膛燃烧进行建模。本文为工业焚烧炉开发了一种综合的两流体反应模型,将气固炉排焚烧和气体湍流燃烧集成在一个方案中。实现了真实的炉排几何形状和燃料床与自由空间气相的直接同步耦合。根据固相的不同处理方式,整个焚烧炉被分为三个区域,即填充床区、下落区和炉膛区。颗粒流动力学理论(KTGF)用于描述废物颗粒的流变特性,而 Ergun 模型用于气固曳力。废物的热转化由水分蒸发、挥发分脱除、炭-氧燃烧的多相反应以及碳氢化合物燃烧的均相反应来表征。通过测量对温度和气体种类的分布进行预测和验证。计算颗粒特性以揭示炉排焚烧的特性。还研究了废物吞吐量对焚烧的影响。总的来说,本模型为移动炉排焚烧炉模拟提供了一种新的床内和床外集成方法。