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CFD-DEM bidirectional coupling simulation and experimental investigation of particle ejections and energy conversion in a spouted bed

机译:CFD-DEM双向耦合仿真及其在喷射床中颗粒喷射和能量转化的实验研究

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摘要

Fluidized bed has gained popularity in the renewable energy industry due to its superior thermo-chemical conversion efficiency. Investigating the flow patterns inside the fluidized bed is of great importance to obtain detailed knowledge of the energy conversion of biofuel and to further optimize the combustion performance. In this paper, the effect of different inlet gas flow rates on bed hydrodynamics parameters such as bed height, equivalent bubble diameter, and particle ejection were studied by the high-speed photography technology and numerical simulation methods. The results show that changes in the particle bed height and bubble area can be accurately predicted by numerical simulation. The mechanism of particle ejection is varied under different inlet flow conditions. At the low inlet flow rate of 300 L/min, the particles ejected into the freeboard region are only from the bursting bubbles. As the inlet flow rate increases to 400 L/min, the ejected particles are not only from the bursting bubble but also from the bubble wakes. Particle ejection is mainly caused by the bubble expansion rate. These findings could serve as the reference for the optimal design of fluidized beds to achieve higher combustion efficiency.
机译:由于其卓越的热化学转换效率,流化床在可再生能源产业中受到普及。研究流化床内的流动模式非常重视,以获得生物燃料能量转换的详细知识,进一步优化燃烧性能。本文采用高速摄影技术和数值模拟方法研究了不同入口气体流速对床流体动力学参数的影响,如床高度,等效气泡直径和颗粒喷射。结果表明,可以通过数值模拟准确地预测颗粒床高度和气泡区域的变化。在不同的入口流动条件下颗粒喷射机制变化。在300L / min的低入口流速下,喷射到收集气泡中的颗粒仅来自爆破气泡。随着入口流量增加到400升/分钟,喷射的颗粒不仅来自爆破泡沫而且来自气泡唤醒。颗粒喷射主要由气泡膨胀率引起。这些发现可以作为流化床最佳设计的参考,以实现更高的燃烧效率。

著录项

  • 来源
    《Energy》 |2020年第2期|118672.1-118672.14|共14页
  • 作者单位

    Research Center of Fluid Machinery Engineering & Technology Jiangsu University Zhenjiang 212013 China;

    Research Center of Fluid Machinery Engineering & Technology Jiangsu University Zhenjiang 212013 China;

    Research Center of Fluid Machinery Engineering & Technology Jiangsu University Zhenjiang 212013 China;

    Research Center of Fluid Machinery Engineering & Technology Jiangsu University Zhenjiang 212013 China;

    Research Center of Fluid Machinery Engineering & Technology Jiangsu University Zhenjiang 212013 China;

    School of Mechanical Engineering Nantong University Nantong 226019 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CFD-DEM; Spouted bed; High-speed photography; Particle ejection;

    机译:CFD-DEM;喷床;高速摄影;颗粒喷射;

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