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Experimental and Numerical Study on Vapor Condensation of Wet Flue Gas in Chimney

机译:烟囱中湿烟气蒸汽冷凝的实验与数值研究

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Increase of the emission of CO2, which is mostly the result of the combusted fossil fuels into the atmosphere, exponentially increases Through increased energy efficiency there is lower CO2 emission. There is a tendency to reduce exhaust gases temperatures down from their original value referred to as "acid dew point", 115-160°C A result is vapor condensation of wet flue in chimney. Condensation occurs when the surface temperature is below the dew point of the vapor-gas mixture. Therefore, Vapor-Liquid Equilibrium models are required in order to determine the dew point of the mixture. Wet flue gas is simulated with vapor-air mixture. A numerical model was presented to calculate the velocity and thermal field of turbulent vapor-air mixture flow trough a chimney. The momentum and temperature field were calculated via a finite-volume CFD code, using the k - e turbulence model. The validation of this calculation was conducted employing an experimental set for heat and mass transfer in vertical upward vapor-air mixture. Measurements were done using a stainless steel tube of 13.2 mm ID. (internal diameter) and 70 ID. lengths. Flow rates of steam and air were varied as the experimental parameters.The experiment involves two-phase, two-component, heat and mass transfer Comparisons of wall temperature and condensate rate were made and the model was shown to give an acceptable results.
机译:CO2排放量的增加(主要是化石燃料燃烧后排放到大气中的结果)以指数方式增加。通过提高能源效率,降低了CO2排放量。有一种趋势是将废气温度从称为“酸露点”的原始值降低到115-160°C。结果是烟囱中湿烟道的蒸汽冷凝。当表面温度低于蒸汽-气体混合物的露点时发生冷凝。因此,需要蒸气-液体平衡模型来确定混合物的露点。用蒸气-空气混合物模拟湿烟气。提出了一个数值模型来计算通过烟囱的湍流蒸气-空气混合物的速度和热场。动量和温度场是使用k-e湍流模型通过有限体积的CFD代码计算的。使用用于垂直向上的蒸气-空气混合物中的传热和传质的实验装置进行此计算的验证。使用13.2 mm ID的不锈钢管进行测量。 (内径)和70 ID。长度。改变蒸汽和空气的流速作为实验参数。该实验涉及两相,两组分,传热和传质。比较了壁温和凝结水率,结果表明该模型给出了可接受的结果。

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