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A NOVEL BOILER DESIGN FOR HIGH-SODIUM COAL IN POWER GENERATION

机译:一种新型煤矿发电高钠锅炉设计

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Considering the severe fouling of high temperature convection pass in the boilers using high-sodium coals, a novel boiler design with a furnace exit gas temperature (FEGT) below 800°C was proposed. The design was evaluated in different kinds of boilers with various capacities by examining thermal system arrangement, heat transfer, ignition and combustion, and steel consumption. The results indicate that, more radiation heating surface should be used in the thermal system arrangement of the novel boiler besides the volume-enlarged furnace. A marked decrease in the converted coefficient of radiation heat transfer is found in a volume-enlarged furnace due to the reduction in the average temperature of the flame. Moreover, the volume-enlarged furnace can adversely affect ignition and combustion. The cyclone-fired boiler is considered to be the most appropriate application for the novel design, for its combustion and heat transfer in furnace are carried out in divided chambers. A comparison of steel consumption demonstrates the expense of the novel boiler is approximately increased by 10% relative to the conventional one. In addition, an improved application with flue gas recirculation is described in detail, owing to its advantages of controlling FEGT and maintaining the level of convection heat transfer capability of the boiler.
机译:考虑使用高钠煤的锅炉中高温对流通道的严重污染,提出了一种新的锅炉设计,炉出口温度(FEGT)低于800℃。通过检查热系统布置,传热,点火和燃烧和钢消耗,在不同种类的锅炉中评价设计。结果表明,除了体积扩大的炉子之外,新颖的锅炉的热系统布置应使用更多辐射加热表面。由于火焰的平均温度的降低,在体积扩大的炉中发现了转换的辐射系数的显着降低。此外,体积扩大的炉子可能对点火和燃烧产生不利影响。旋风式燃烧的锅炉被认为是新型设计中最合适的应用,因为它在熔炉中的燃烧和传热在分开的室中进行。钢消耗的比较表明,相对于常规的锅炉的费用约为10%。此外,由于其控制Fegt并维持锅炉的对流传热能力水平,详细描述了一种改进的具有烟气再循环的应用。

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