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Numerical analysis of single and multiple particles of Belchatow lignite dried in superheated steam

机译:过热蒸汽干燥的贝尔恰托褐煤的单颗粒和多颗粒的数值分析

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摘要

Low production costs have contributed to the important role of lignite in the energy mixes of numerous countries worldwide. High moisture content, though, diminishes the applicability of lignite in power generation. Superheated steam drying is a prospective method of raising the calorific value of this fuel. This study describes the numerical model of superheated steam drying of lignite from the Belchatow mine in Poland in two aspects: single and multi-particle. The experimental investigation preceded the numerical analysis and provided the necessary data for the preparation and verification of the model. Spheres of 2.5 to 30 mm in diameter were exposed to the drying medium at the temperature range of 110 to 170 °C. The drying kinetics were described in the form of moisture content, drying rate and temperature profile curves against time. Basic coal properties, such as density or specific heat, as well as the mechanisms of heat and mass transfer in the particular stages of the process laid the foundations for the model construction. The model illustrated the drying behavior of a single particle in the entire range of steam temperature as well as the sample diameter. Furthermore, the numerical analyses of coal batches containing particles of various sizes were conducted to reflect the operating conditions of the dryer. They were followed by deliberation on the calorific value improvement achieved by drying, in terms of coal ingredients, power plant efficiency and dryer input composition. The initial period of drying was found crucial for upgrading the quality of coal. The accuracy of the model is capable of further improvement regarding the process parameters.
机译:低生产成本促使褐煤在全球许多国家的能源结构中发挥了重要作用。但是,高水分含量降低了褐煤在发电中的适用性。过热蒸汽干燥是提高这种燃料热值的一种预期方法。这项研究从两个方面描述了波兰Belchatow矿褐煤过热蒸汽干燥的数值模型:单颗粒和多颗粒。在数值分析之前进行了实验研究,并为模型的准备和验证提供了必要的数据。将直径为2.5至30毫米的球暴露于110至170摄氏度的温度范围内的干燥介质中。干燥动力学以水分含量,干燥速率和温度分布曲线随时间变化的形式描述。煤炭的基本特性,例如密度或比热,以及过程特定阶段的传热和传质机理,为模型构建奠定了基础。该模型说明了单个颗粒在整个蒸汽温度范围内的干燥行为以及样品直径。此外,对包含各种尺寸颗粒的煤批料进行了数值分析,以反映干燥器的操作条件。随后,他们就煤炭成分,发电厂效率和干燥机输入成分方面,探讨了通过干燥实现的发热量提高。发现干燥的初期对于提高煤的质量至关重要。该模型的准确性能够进一步改善工艺参数。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第8期|2215-2230|共16页
  • 作者单位

    Faculty of Energy and Fuels, Department of Fundamental Research in Energy Engineering, AGH University of Science and Technology,Graduate School of Engineering and Science, Division of Regional Environment Systems, Shibaura Institute of Technology;

    Faculty of Energy and Fuels, Department of Fundamental Research in Energy Engineering, AGH University of Science and Technology,Institute of Industrial Science, The University of Tokyo;

    Institute of Industrial Science, The University of Tokyo;

    Fudo Giken Industry Co. Ltd;

    Institute of Industrial Science, The University of Tokyo;

    Institute of Industrial Science, The University of Tokyo;

    College of Systems Engineering and Science, Department of Machinery and Control Systems, Shibaura Institute of Technology;

    Faculty of Energy and Fuels, Department of Fundamental Research in Energy Engineering, AGH University of Science and Technology;

    Institute of Industrial Science, The University of Tokyo;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Superheated steam drying; Low-rank coal; Multi-particle drying; Numerical simulation; Fuel upgrading; Belchatow lignite;

    机译:过热蒸汽干燥低级煤多颗粒干燥数值模拟燃料提质贝尔查托褐煤;

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