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Effect of scale deposits on the internal surfaces of the tubes on the superheater operation

机译:过热器运行时水垢沉积在管内表面上的影响

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A mathematical model of the steam superheater exchanger with distributed parameters has been developed. Scale deposits were assumed to be present on the internal tube surfaces. It was assumed that the inner tube surfaces are covered by a thin layer of scale deposits. The finite volume method was used to solve partial differential equations describing flue gas, tube wall and steam temperature. The developed modeling technique can especially be used for modeling tube heat exchangers when detail information on the tube wall temperature distribution is needed. The numerical model of the superheater developed in the paper can be used for modeling of the superheaters with complex flow arrangement accounting scales on the internal tube surfaces. Using the model proposed the detailed steam, wall and flue gas temperature distribution over the entire superheater can be determined. The steam pressure distribution along its path flow and the total heat transfer rate can also be obtained. The calculations showed that the presence of scale on the internal surfaces of the tubes cause the steam temperature decrease and the heat flow rate transferred from the flue gas to the steam. Scale deposits on the inner surfaces of the tubes cause the tube wall temperature growth and can lead to premature wear of tubes due to overheating.
机译:建立了具有分布参数的蒸汽过热器换热器的数学模型。假定在内管表面上有水垢沉积物。假定内管表面被一层薄薄的水垢沉积物覆盖。有限体积法用于求解描述烟气,管壁和蒸汽温度的偏微分方程。当需要有关管壁温度分布的详细信息时,可以将开发的建模技术特别用于建模管式热交换器。本文开发的过热器数值模型可用于对内管表面具有复杂流量布置比例的过热器进行建模。使用提出的模型,可以确定整个过热器的详细蒸汽,壁温和烟气温度分布。还可以获得沿其路径流的蒸汽压力分布和总传热率。计算表明,管子内表面上存在水垢会导致蒸汽温度降低,热量流从烟道气传递到蒸汽。管内表面上的水垢沉积会导致管壁温度升高,并可能因过热而导致管过早磨损。

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