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RESEARCH ON HEAT TRANSFER INSIDE THE FURNACE OF LARGE SCALE CFB BOILERS

机译:大型CFB锅炉炉膛内传热的研究

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Field tests in one unit of 135MWe and two units of 300MWe commercial Circulating Fluidized bed (CFB) boilers (A&B) with different structures were carried out. The influence of operating conditions on the thermal boundary layer, local heat transfer coefficient and peripheral distribution of heat transfer coefficient were studied. It was found that, in the 135MWe and 300MWe-A CFB furnace, the thickness of the thermal boundary layer was almost constant, about 100mm, and independent of the height above the distributor and the boiler load. The local heat transfer coefficient increased with increasing load as well as the coal feeding rate and air volume in both the 135MWe and 300MWe-A CFB boilers. The boiler structure and heating surface layout had a great influence on the distribution of the heat transfer coefficient in the large-scale CFB boilers. In both the 135MWe furnace and the 300MWe-B CFB boilers, the heat transfer coefficient was lower in the center than near the corner due to higher suspension density in the corner. In the 300MWe-B CFB with heating surfaces in the furnace, because of the uneven layout of the heating surface and the mal-distribution of gas-solid flow caused by the asymmetric arrangement of cyclones, heat transfer coefficients tended to be higher in the middle part than at the walls.
机译:在具有不同结构的一台135MWe机组和两台300MWe商用循环流化床(CFB)锅炉(A&B)中进行了现场测试。研究了工作条件对热边界层,局部传热系数和传热系数周边分布的影响。结果发现,在135MWe和300MWe-A CFB炉中,热边界层的厚度几乎恒定,约为100mm,并且与分配器上方的高度和锅炉负荷无关。 135MWe和300MWe-A CFB锅炉的局部传热系数都随着负荷的增加以及给煤量和送风量的增加而增加。锅炉的结构和受热面的布置对大型CFB锅炉的传热系数分布有很大的影响。在135MWe炉和300MWe-B CFB锅炉中,由于转角处的悬浮密度较高,因此中心的传热系数低于转角处的传热系数。在带有加热表面的300MWe-B CFB炉中,由于加热表面的布局不均匀以及旋风分离器的不对称布置引起的气固流分布不均,中间的传热系数往往会更高部分比在墙壁上。

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