首页> 外文期刊>Thermal science >THREE PHASE EULERIAN-GRANULAR MODEL APPLIED ON NUMERICAL SIMULATION OF NON-CONVENTIONAL LIQUID FUELS COMBUSTION IN A BUBBLING FLUIDIZED BED
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THREE PHASE EULERIAN-GRANULAR MODEL APPLIED ON NUMERICAL SIMULATION OF NON-CONVENTIONAL LIQUID FUELS COMBUSTION IN A BUBBLING FLUIDIZED BED

机译:三相欧拉-颗粒模型在鼓泡流化床非常规液体燃料燃烧数值模拟中的应用

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摘要

The paper presents a two-dimensional CFD model of liquid fuel combustion in bubbling fluidized bed. The numerical procedure is based on the two-fluid Euler-Euler approach, where the velocity field of the gas and particles are modeled in analogy to the kinetic gas theory. The model is taking into account also the third - liquid phase, as well as its interaction with the solid and gas phase. The proposed numerical model comprise energy equations for all three phases, as well as the transport equations of chemical components with source terms originated from the component conversion. In the frame of the proposed model, user sub-models were developed for heterogenic fluidized bed combustion of liquid fuels, with or without water. The results of the calculation were compared with experiments on a pilot-facility (power up to 100 kW), combusting, among other fuels, oil. The temperature profiles along the combustion chamber were compared for the two basic cases: combustion with or without water. On the basis of numerical experiments, influence of the fluid-dynamic characteristics of the fluidized bed on the combustion efficiency was analyzed, as well as the influence of the fuel characteristics (reactivity, water content) on the intensive combustion zone. [Projekat Ministarstva nauke Republike Srbije, br. TR33042: Improvement of the industrial fluidized bed facility, in scope of technology for energy efficient and environmentally feasible combustion of various waste materials in fluidized bed]
机译:本文提出了鼓泡流化床中液体燃料燃烧的二维CFD模型。数值过程是基于双流体Euler-Euler方法的,其中,气体和颗粒的速度场的模拟类似于动气理论。该模型还考虑了第三相-液相及其与固相和气相的相互作用。所提出的数值模型包括所有三相的能量方程式,以及具有源于成分转换的源项的化学成分的输运方程式。在所提出模型的框架中,开发了用户子模型,用于有水或无水的液体燃料的异质流化床燃烧。将计算结果与试验设施(功率高达100 kW),燃烧燃料等燃料进行了比较。比较了两种基本情况下沿燃烧室的温度分布:有水或无水燃烧。在数值实验的基础上,分析了流化床的流体动力学特性对燃烧效率的影响,以及燃料特性(反应性,水含量)对密集燃烧区的影响。 [Projekat Ministarstva nauke Republike Srbije,br。 TR33042:改进工业流化床设施,使之适用于在流化床中对各种废物进行节能和环境上可行的燃烧的技术]

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