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NUMERICAL SIMULATION OF COAL ASH PARTICLE BEHAVIOR IN ENTRAINED FLOW COAL GASIFIER

机译:夹带流动煤气化煤灰粒子行为的数值模拟

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The objective of this study is to develop an evaluation tool for a design and performance of a coal gasifier by a numerical simulation technique. In the present paper, a gas-particle two phase reacting flow calculation is carried out for a prediction of phenomena in an entrained flow coal gasifier due to coal and ash particles behavior, such as ash deposition on the wall. A transportation of the coal particles is modeled via a Lagrangian manner. The ash particle adhesion on the wall of the gasifier is discriminated by an empirical ash adhesion model based on a liquid phase fraction concept in the ash particle. The gas phase properties are calculated by three dimensional time-mean Eulerian conservation equations. The turbulent flow field is determined by the κ-ε two equations model. Radiative heat transfer is calculated by the discrete transfer radiation method. Coal gasification reaction model is composed of three chemical processes in the current model: a pyrolysis, a char gasification and gas phase reactions. 2 tons/day (t/d) air-blown pressurized entrained flow coal gasifier, which has been constructed and operated by Central Research Institute of Electric Power Industry (CRIEPI) was targetted. As a result, a relationship between an operating condition (air ratio) of the gasifier and the gasifier performance is presented. The trend of the ash deposition on the gasifier inner wall is also presented. Comparison between the computational and the experimental results shows that the most feature of the gasifier performance and the profile of the ash deposition have been captured by the present model. It was confirmed that the numerical simulation approach is very useful for the assessment of gasifier performance and operation support.
机译:本研究的目的是通过数值模拟技术开发用于煤气化器的设计和性能的评估工具。在本文中,由于煤和灰分颗粒的行为,例如由于煤和灰分颗粒的行为,例如在墙壁上的灰分沉积,对夹带流动煤气化器中的现象进行预测的气体粒子两相反应流量计算。煤颗粒的运输通过拉格朗日方式进行建模。气化器壁上的灰分颗粒粘附由基于灰粒子中的液相分数概念的经验灰粘附模型来区分。通过三维时间平均欧拉保护方程计算气相特性。湍流流场由κ-ε两方程模型确定。通过离散传递辐射法计算辐射传热。煤气化反应模型由目前模型中的三种化学过程组成:热解,炭气化和气相反应。 2吨/天(T / D)通过中央电力工业(CRIEPI)建造和运营的空气吹塑夹带流动煤气化器是针对性的。结果,提出了气化器的操作条件(空气比)与气化器性能之间的关系。还提出了气化器内壁上的灰分沉积的趋势。计算和实验结果之间的比较表明,本模型捕获了气化器性能和灰分沉积轮廓的最特征。证实,数值模拟方法对于评估气化器性能和操作支持非常有用。

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