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Heat transfer in the external heat exchanger of oxy-fuel fluidized bed boilers

机译:含氧流化床锅炉外部热交换器中的热传递

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摘要

The external heat exchanger (EHE) plays an essential role in the adequate control of the heat balance in large-scale oxy-fuel circulating fluidized bed (CFB) boilers. However, the EHE of an oxy-fuel CFB presents two particularities compared to the known air-combustion case: the composition of the fluidizing gas and the higher flow of recycled solids. Both these issues are addressed in this paper: Firstly, heat transfer coefficients are measured in a 90 kW bubbling fluidized bed, operated at different temperatures, with air and with a wide range of O_2/CO_2 mixtures. Thereafter, experiments are also carried out in a cold scaled-down EHE in order to assess the influence of an increment in the solids flow across the EHE on heat transfer. Based on the results of these experiments, an expression for the heat transfer coefficient is proposed which accounts for gas composition and solids flow rate. Finally, a model for the EHE is integrated into a large oxy-fuel CFB model in order to quantify the influence of oxy-fuel operation mode on the heat transfer surfaces required in the EHE.
机译:外部热交换器(EHE)在充分控制大型氧气-燃料循环流化床(CFB)锅炉中的热平衡方面起着至关重要的作用。然而,与已知的空气燃烧情况相比,含氧燃料CFB的EHE具有两个特点:流化气体的成分和较高的循环固体流量。这两个问题都在本文中得到解决:首先,在90 kW鼓泡流化床中测量传热系数,该床在不同温度,空气和各种O_2 / CO_2混合物下运行。此后,还在冷缩规模的EHE中进行实验,以评估通过EHE的固体流量增加对传热的影响。根据这些实验的结果,提出了考虑气体成分和固体流速的传热系数表达式。最后,将EHE的模型集成到大型的含氧燃料CFB模型中,以便量化含氧燃料运行模式对EHE所需的传热表面的影响。

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