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Numerical Simulation on Wet Steam Flow in the Last Stage of Steam Turbine in Nuclear Power Plant

机译:核电站汽轮机末级湿蒸汽流动的数值模拟。

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High-capacity, low inlet parameters and huge flow are the characteristics of the nuclear steam turbine. As a result of adopting saturation steam and long blade, water erosion of last stage blade become more prominent. The secondary droplets' continuously dynamic impact to the movable vanes in the wake of hollow stationary blade is the main reason for water erosion. So, it is necessary to research wet steam flow, vapor-liquid two phase flow, movement of droplets of different size and volume of sediment. The results of numerical simulation on wet steam two-phase flow in the last stage of nuclear turbine based on FLUENT software can show the flow characteristics of the wet steam. The most effective measure to prevent or mitigate the water erosion is that slotting suction ports in suitable locations of the hollow stationary blades' concave surface or convex surface. Research shows that, suction slot should be set up in and around the hollow stationary blades, in a relatively wide of the near 0.8.
机译:高容量,低进气参数和大流量是核蒸汽轮机的特点。由于采用饱和蒸汽和长叶片,最后一级叶片的水蚀变得更加突出。在中空固定叶片之后,次级液滴对可动叶片的持续动态冲击是水蚀的主要原因。因此,有必要研究湿蒸汽流,气液两相流,不同大小和沉积物的液滴的运动。基于FLUENT软件对核电汽轮机末级湿蒸汽两相流进行数值模拟,结果表明了湿蒸汽的流动特性。防止或减轻水蚀的最有效措施是在中空固定叶片的凹面或凸面的合适位置开槽。研究表明,应该在空心固定叶片的内部和周围设置吸气槽,其宽度应接近0.8。

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