Optimization Design for the Configuration Parameters of Helical-Coil Steam Generator Volume

Fang Hongyu, L. Wang, Zhu Dahuan, C. Rong, Jiang Xiaowei, Zhang Dan, Libo Qian, Dan Wu
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Abstract

With the development of the nuclear energy industry, small modular reactors (SMRs) have become an important option in China’s energy development due to their advantages in terms of safety and economics. The helical-coil steam generator is an important part of SMR, and the structure parameters need to be optimized urgently to reduce costs and improve safety. In this paper, various thermohydraulic parameters were used as indicators for the design quality of the helical-coil steam generator, such as the volume of the equipment, velocity of the flow, maximum temperature of the tubes, and natural circulation capability. The optimization of these target parameters has important theoretical and practical values. The genetic algorithm method is widely used to processes data efficiently, and it is able to reach a optimum design rapidly, which makes it a good choice for the optimization of parameters. The results show that this method could efficiently reduce the volume of the helical coil steam generator.
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随着核能工业的发展,小型模块化反应堆因其在安全性和经济性方面的优势,已成为中国能源发展的重要选择。螺旋盘管蒸汽发生器是SMR的重要组成部分,为了降低成本和提高安全性,迫切需要对其结构参数进行优化。本文采用各种热工参数作为螺旋盘管蒸汽发生器设计质量的指标,如设备体积、流速、管道最高温度、自然循环能力等。这些目标参数的优化具有重要的理论和实用价值。遗传算法处理数据效率高,且能快速达到最优设计,是参数优化的良好选择。结果表明,该方法可以有效地减小螺旋盘管蒸汽发生器的体积。
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