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Experimental Investigation of Two-Phase Flow Instabilities in Low-Mass-Flux Water Wall Tubes of Supercritical Circular Fluidized Bed Boilers

机译:超临界循环流化床锅炉低通量水冷壁管内两相流不稳定性的实验研究

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摘要

For the purpose of disclosing the hydrodynamic flow characteristics, under the low mass velocity conditions of the 600-MW supercritical circular fluidized beds boilers, experimental studies on instability of two-phase flow in parallel vertical internally ribbed tubes were conducted. Two kinds of oscillations, pressure-drop oscillation and density-wave oscillation, have been observed. In the range of test parameters the effects of pressure, mass flux, inlet subcooling, compressible volume, exit throttle, and asymmetric heat flux to the two-phase instability were explored and analyzed. Indications from experiment data are: To increase system pressure, mass flux and inlet subcooling will intensify the stability of water wall tubes. To increase exit throttle will intensify the instability of water wall tubes. The bounding pressure and bounding mass flux of density-wave oscillations and the bounding pressure of pressure-drop oscillation have been obtained. Based on the results of testing and using a homogeneous model, the threshold relational expressions of instability were obtained. The results may be used for the design and safe operation of parallel vertical rifled water wall tubes of supercritical circular fluidized beds boilers.
机译:为了揭示流体动力特性,在600 MW超临界圆形流化床锅炉的低质速条件下,对平行竖向内肋肋管内两相流的不稳定性进行了实验研究。已经观察到两种振荡,压降振荡和密度波振荡。在测试参数范围内,研究并分析了压力,质量通量,入口过冷,可压缩体积,出口节流阀和不对称热通量对两相不稳定性的影响。实验数据表明:为了增加系统压力,质量流量和入口过冷会增强水冷壁管的稳定性。增加出口节流阀将加剧水冷壁管的不稳定性。得到了密度波振荡的边界压力和边界质量通量以及压降振荡的边界压力。根据测试结果并使用齐次模型,获得了不稳定性的阈值关系表达式。研究结果可用于超临界循环流化床锅炉的平行竖向立式水冷壁管的设计和安全运行。

著录项

  • 来源
    《Heat Transfer Engineering》 |2011年第12期|p.928-935|共8页
  • 作者单位

    State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, China;

    State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, China;

    State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, China;

    State Key Laboratory of Multiphase Flow in Power Engineering, Xi'an Jiaotong University, Xi'an, China;

    Key Laboratory of Photoelectricity Gas & Oil Logging and Detecting Ministry of Education, Xi'an Petroleum University,Xi'an, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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