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Performance of casting aluminum-silicon alloy condensing heating exchanger for gas-fired boiler

机译:燃气锅炉铸铝硅合金冷凝热交换器的性能

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摘要

Condensing gas boilers are widely used due to their high heat efficiency, which comes from their ability to use the recoverable sensible heat and latent heat in flue gas. The condensed water of the boiler exhaust has strong corrosion effect on the heat exchanger, which restricts the further application of the condensing gas boiler. In recent years, a casting aluminum-silicon alloy (CASA), which boasts good anti-corrosion properties, has been introduced to condensing hot water boilers. In this paper, the heat transfer performance, CO and NOx emission concentrations and CASA corrosion resistance of a heat exchanger are studied by an efficiency bench test of the gas-fired boiler. The experimental results are compared with heat exchangers produced by Honeywell and Beka. The results show that the excess air coefficient has a significant effect on the heat efficiency and CO and NOx emission of the CASA water heater. When the excess air coefficient of the CASA gas boiler is 1.3, the CO and NOx emission concentration of the flue gas satisfies the design requirements, and the heat efficiency of water heater is 90.8%. In addition, with the increase of heat load rate, the heat transfer coefficient of the heat exchanger and the heat efficiency of the water heater are increased. However, when the heat load rate is at 90%, the NOx emission in the exhaust gas is the highest. Furthermore, when the temperature of flue gas is below 57 °C, the condensation of water vapor occurs, and the pH of condensed water is in the 2.5~5.5 range. The study shows that CASA water heater has good corrosion resistance and a high heat efficiency of 88%. Compared with the heat exchangers produced by Honeywell and Beka, there is still much work to do in optimizing and improving the water heater.
机译:冷凝式燃气锅炉由于具有很高的热效率而被广泛使用,这归因于其利用烟气中的可回收显热和潜热的能力。锅炉排气中的冷凝水对热交换器的腐蚀作用很强,限制了冷凝式燃气锅炉的进一步应用。近年来,具有良好防腐性能的铸铝硅合金(CASA)已被引入冷凝式热水锅炉中。本文通过燃气锅炉的效率台架试验研究了换热器的传热性能,CO和NOx排放浓度以及CASA耐腐蚀性。将实验结果与Honeywell和Beka生产的热交换器进行了比较。结果表明,过量空气系数对CASA热水器的热效率以及CO和NOx排放有显着影响。当CASA燃气锅炉的剩余空气系数为1.3时,烟气的CO和NOx排放浓度满足设计要求,热水器的热效率为90.8%。另外,随着热负荷率的增加,热交换器的传热系数和热水器的热效率增加。但是,当热负荷率为90%时,排气中的NOx排放量最高。此外,当烟气温度低于57°C时,会发生水蒸气的冷凝,冷凝水的pH值在2.5〜5.5范围内。研究表明,CASA热水器具有良好的耐腐蚀性和88%的高热效率。与霍尼韦尔(中国)和贝卡(Beka)生产的热交换器相比,在优化和改进热水器方面还有许多工作要做。

著录项

  • 来源
    《Heat and mass transfer》 |2018年第7期|1951-1960|共10页
  • 作者单位

    Tianjin Key Laboratory of Indoor Air Environmental Quality Control, School of Environmental Science and Engineering, Tianjin University;

    School of Energy and Safety Engineering, Tianjin Chengjian University;

    Tianjin Key Laboratory of Indoor Air Environmental Quality Control, School of Environmental Science and Engineering, Tianjin University;

  • 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
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