核电站蒸汽系统超声信号传播特性的数值计算

Jiahong Zhu, Jiming Wen, Bo Wang, Yuansheng Lin, Ruifeng Tian
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引用次数: 1

摘要

核电站湿蒸汽工作介质所携带的液滴对核电站的经济性和安全性构成威胁。蒸汽的湿度直接关系到核电站的工作效率。本文计算了单相饱和蒸汽中的超声衰减系数。基于简化的长波区ECAH模型,对核电站蒸汽系统中不同频率下的超声衰减系数以及液滴大小与湿度的关系进行了数值模拟。对液滴尺寸、超声频率、蒸汽湿度和超声能量衰减系数之间的关系进行了计算和分析。结果与结论:通过数值模拟,滞回衰减系数对单相饱和蒸汽介质中总超声衰减系数的影响可达90%。在单相蒸汽介质中,温度和压力的波动对超声波衰减系数的影响较小,而超声波频率的偏差会对蒸汽中的超声波衰减系数产生较大的误差。超声波衰减法在核电站蒸汽湿度在线测量中是可行的。与核电站其他工况下的蒸汽环境相比,超声波衰减法更适合湿度小于9%、液滴尺寸大于4μm条件下的湿蒸汽湿度测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Calculation of Ultrasonic Signal Propagation Characteristics in Steam System of Nuclear Power Plant
The droplets entrained by the wet steam working medium of nuclear power plant pose a threat to the economy and safety of nuclear power plant. The humidity of steam is directly related to the working efficiency of nuclear power plant. In this paper, the ultrasonic attenuation coefficient in single-phase saturated steam is calculated. Based on the simplified ECAH model in the long wave region, the ultrasonic attenuation coefficient at different frequencies and the relationship between droplet size and humidity in the steam system of nuclear power plant are numerically simulated. For the relationship between droplet size, ultrasonic frequency, steam humidity and ultrasonic energy attenuation coefficient, the results are calculated and analyzed. Results and conclusion: through numerical simulation, the influence of hysteresis attenuation coefficient on the total ultrasonic attenuation coefficient in single-phase saturated steam medium can reach 90%. In single-phase steam medium, the fluctuation of temperature and pressure has little influence on the ultrasonic attenuation coefficient, while the deviation of ultrasonic frequency will have a large error on the ultrasonic attenuation coefficient in steam. The ultrasonic attenuation method is feasible for on-line measurement of steam humidity in nuclear power plant. Compared with the steam environment under other working conditions of nuclear power plant, the ultrasonic attenuation method is more suitable for the measurement of wet steam humidity under the conditions of humidity less than 9% and droplet size greater than 4μm.
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