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Optimal design of a wet-type desulphurization absorber by the numerical simulation method

机译:数值模拟法对湿式脱硫吸收塔的优化设计

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Numerical study of gas-liquid flow in a wet-type desulphurization absorber is presented and the influences of different inlet and deflector structures on the device performance are identified for optimizing its structure. The dependability of numerical model is validated by the good agreement between the measured and predicted results. Besides, the results of droplet trajectories analyzed by the mechanical formulas are consistent with the simulation results as well. The performance of gas flow field is affected significantly by the inlet structures. The main reason for uneven distribution of liquid-phase is the first layer deflector rather than the gas flow. After removing the first layer deflector, the mass percentage distribution of liquid-phase in the near-wall region is reduced from 68-87% to 25-40%. The temperature distribution and relative humidity depend largely on the distribution of liquid-phase and the gas flow field. Optimized structures improve the pressure drop of device.
机译:给出了湿式脱硫吸收塔内气液两相流的数值研究,并确定了进气和导流板结构对装置性能的影响,以优化其结构。数值模型的可靠性通过测量结果与预测结果之间的良好一致性来验证。此外,通过机械公式分析的液滴轨迹结果也与仿真结果相吻合。进气口结构显着影响气流场的性能。液相分布不均匀的主要原因是第一层导流板而不是气流。在去除第一层偏转器之后,近壁区域中液相的质量百分比分布从68-87%减小到25-40%。温度分布和相对湿度在很大程度上取决于液相和气体流场的分布。优化的结构改善了设备的压降。

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