首页> 外文期刊>Experimental Thermal and Fluid Science: International Journal of Experimental Heat Transfer, Thermodynamics, and Fluid Mechanics >Experimental investigation on heat transfer and frictional characteristics of vertical upward rifled tube in supercritical CFB boiler
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Experimental investigation on heat transfer and frictional characteristics of vertical upward rifled tube in supercritical CFB boiler

机译:超临界循环流化床锅炉立式上膛管传热及摩擦特性的实验研究

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摘要

Water wall design is a key issue for supercritical Circulating Fluidized Bed (CFB) boiler. On account of the good heat transfer performance, rifled tube is applied in the water wall design of a 600MW supercritical CFB boiler in China. In order to investigate the heat transfer and frictional characteristics of the rifled tube with vertical upward flow, an in-depth experiment was conducted in the range of pressure from 12 to 30MPa, mass flux from 230 to 1200kg/(m~2s), and inner wall heat flux from 130 to 720kW/m~2. The wall temperature distribution and pressure drop in the rifled tube were obtained in the experiment. The normal, enhanced and deteriorated heat transfer characteristics were also captured. In this paper, the effects of pressure, inner wall heat flux and mass flux on heat transfer characteristics are analyzed, the heat transfer mechanism and the frictional resistance performance are discussed, and the corresponding empirical correlations are presented. The experimental results show that the rifled tube can effectively prevent the occurrence of Departure from Nucleate Boiling (DNB) and keep the tube wall temperature in a permissible range under the operating condition of supercritical CFB boiler.
机译:水壁设计是超临界循环流化床(CFB)锅炉的关键问题。考虑到良好的传热性能,在中国600MW超临界CFB锅炉的水冷壁设计中采用了螺纹管。为了研究垂直向上流动的线膛管的传热和摩擦特性,在压力为12至30MPa,质量通量为230至1200kg /(m〜2s)的范围内进行了深入实验。内壁热通量从130到720kW / m〜2。实验中获得了膛线管壁的温度分布和压降。还捕获了正常,增强和恶化的传热特性。本文分析了压力,内壁热通量和质量通量对传热特性的影响,探讨了传热机理和摩擦阻力性能,并给出了经验关系。实验结果表明,在超临界循环流化床锅炉的工况下,有膛管能有效防止核沸腾(DNB)的发生,并使管壁温度保持在允许的范围内。

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