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Sensitivity analysis of several operational parameters on gas temperature deviation in a tangential firing boiler

机译:切向燃烧锅炉气温偏差若干操作参数的敏感性分析

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In this work, an integrated numerical model combining combustion and fluid heating was established for a 660 MW coal-fired boiler. To validate the accuracy of the developed model, related experiment was also conducted, and shows that the relative errors (REs) of several predicted parameters on both flue-gas side and water-steam side of the boiler are less than 7 %, which meets the requirement of analysis. The results indicate that the effect of SOFA tilt angle on gas temperature deviation (GTD) is greatest, and that of SOFA’s proportion follows; while GTD presents a smallest sensitivity to the concentration of O2. This is because O2 concentration mainly affects the average value of the gas temperature, but barely changes its distribution. By contrast, altering SOFA’s tilt angle and its proportion directly varies the shape, location, and area of the high-temperature and low-temperature regions at the entrance profile of the horizontal crossover pass, so these two factors play a more important role in the variation of GTD.
机译:在这项工作中,为660 MW燃煤锅炉建立了组合燃烧和流体加热的集成数值模型。为了验证开发模型的准确性,还进行了相关的实验,并表明锅炉的两个烟道气侧和水蒸汽侧上的几个预测参数的相对误差(RE)小于7%,其符合分析的要求。结果表明,沙发倾斜角度对气体温度偏差(GTD)的影响是最大的,并且在沙发比例之后遵循;虽然GTD对O2的浓度提出了最小的敏感性。这是因为O2浓度主要影响气体温度的平均值,但几乎没有改变其分布。相比之下,改变沙发的倾斜角度及其比例直接在水平交叉通行证的入口曲线上的高温和低温区域的形状,位置和面积变化,因此这两个因素在此方面发挥了更重要的作用GTD的变异。

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