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首页> 外文期刊>International journal of comadem >Performance improvement of a Circulating Fluidized Bed Boiler through flow modifications in Primary Air Supply System
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Performance improvement of a Circulating Fluidized Bed Boiler through flow modifications in Primary Air Supply System

机译:通过改变一次空气供应系统中的流量来改善循环流化床锅炉的性能

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The primary air supply system is a key component of a Circulating Fluidized Bed (CFB) boiler. The uniformity of air flow through the primary air supplysystem is important for highly efficient operation of the CFB boiler. Non-uniform air flow distribution within the primary air supply system can affect theboiler's combustion adversely, resulting in higher energy consumptions. An effective measure to solve this problem is to install an air flow modifier in theprimary air supply system. Thus, extensive numerical investigations have been carried out to design a suitable air flow modifier in order to improveoperational efficiency of the CFB boiler. It has been shown that inhomogeneity in the air flow velocity, at a control cross-section of the wind-box, reducesfrom 65.79% to 21.25% when flow modifier is used. In order to validate the numerical results, visual and velocity distribution uniformity experiments havebeen conducted under five different test conditions. For this purpose, a small-scale model of a 220t/hr CFB boiler has been used. The experimental resultssubstantiate the numerical predictions. Moreover, the same methodology has been implemented to a full-scale 220t/hr CFB boiler. The hot test resultsdepict that the thermal efficiency of the boiler has increased from 85.71% to 88.34% when tested with an air flow modifier in place, which is equivalent to asaving of 5,000 tons of coal per year. The economic benefits of this energy-saving technology have been shown to be very significant, clearlydemonstrating the effectiveness of the air flow modifier.
机译:一次空气供应系统是循环流化床(CFB)锅炉的关键组件。通过一次供气系统的气流均匀性对于CFB锅炉的高效运行非常重要。一次供气系统内的气流分布不均匀会不利地影响锅炉的燃烧,从而导致更高的能耗。解决此问题的有效措施是在主供气系统中安装空气流量调节器。因此,为了提高CFB锅炉的运行效率,已经进行了广泛的数值研究以设计合适的空气流量调节器。已经显示,当使用流量调节器时,在风箱的控制横截面上,空气流速的不均匀性从65.79%降低到21.25%。为了验证数值结果,在五个不同的测试条件下进行了视觉和速度分布均匀性实验。为此,已经使用了220t / hr CFB锅炉的小型模型。实验结果证实了数值预测。此外,对全尺寸220t / hr CFB锅炉也采用了相同的方法。热测试结果表明,在安装了空气流量调节器的情况下,锅炉的热效率从85.71%提高到88.34%,相当于每年节省5,000吨煤。事实证明,这种节能技术的经济效益非常显着,明显证明了空气流量调节器的有效性。

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