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Multi-objective optimization of hot steam injection variables to control wetness parameters of steam flow within nozzles

机译:热蒸汽喷射变量的多目标优化,以控制喷嘴内蒸汽流的湿度参数

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The formation of liquid droplets in the low pressure steam turbines has devastating impacts on the turbine adiabatic efficiency and also causes the mechanical damage of blades due to the occurrence of severe erosion phenomenon. Previous investigations have shown that the injection of steam can decrease liquid mass fraction as well as the size of the averaged radius of droplets. To exploit the maximum potentials of this method, the optimization of injection variables is necessary. In the present study, the numerical solution of wet steam flow by the injection of hot steam within convergent divergent nozzles together with a multi-objective genetic algorithm method are used to evaluate the appropriate injection parameters. It is concluded that to reduce liquid droplet size by 66% and liquid mass fraction by 13%, an injection steam flow rate of 4% of the main stream flow rate with a temperature 1.8 times of inlet steam temperature is required. Such a reduction of liquid droplet size has an enormous effect on lowering the erosion damages of blades. Furthermore, the injection drives the liquid droplets away from the solid boundaries, which is also expected to reduce the possible mechanical damages to the blades and the casings of turbine. (C) 2017 Elsevier Ltd. All rights reserved.
机译:低压蒸汽涡轮机中液滴的形成对涡轮机绝热效率具有毁灭性的影响,并且由于发生严重的腐蚀现象还导致叶片的机械损坏。先前的研究表明,注入蒸汽可以降低液体质量分数以及平均液滴半径的大小。为了最大程度地利用这种方法,必须优化注入变量。在本研究中,通过在收敛的发散喷嘴内注入热蒸汽的湿法流动的数值解以及多目标遗传算法方法被用于评估合适的注入参数。得出的结论是,要使液滴尺寸减小66%,使液体质量分数减小13%,需要注入蒸汽流速为主流流速的4%,且温度应为入口蒸汽温度的1.8倍。液滴尺寸的这种减小对降低叶片的腐蚀损伤具有巨大的作用。此外,喷射驱动液滴远离固体边界,这也有望减少对涡轮机叶片和壳体的可能的机械损坏。 (C)2017 Elsevier Ltd.保留所有权利。

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