滨海核电厂平面布置方案优化以冷却方式和排水工程优化为例

    Optimization of Layout Plan for Coastal Nuclear Power Plant: A Case Study on Optimization of Cooling Method and Drainage Engineering

    • 摘要: 介绍了当前滨海核电厂直流冷却和二次循环冷却两种主流的冷却方式及其特点,分析了采用两种冷却方式的排水工程环境和经济效应,包括暗管排水和明渠排水两种形式及其优缺点。比选山东某核电厂的冷却方式和排水方案,并对优化案例开展对比分析,结果表明,采用二次循环冷却系统后的温排水量明显小于直流方案的温排水量,4 °C温升包络线面积仅为直流方案用海面积的3%,促使温排水的用海面积大幅减少,以及由核电取排水造成的海洋生物损失大幅降低,符合节约集约用海的要求。因此,滨海核电厂采用二次循环冷却和排水工程优化方案,可有效减少滨海核电厂对海洋生态环境的影响,实现经济、社会和环境的和谐发展。

       

      Abstract: This paper introduces the two main cooling methods of the current coastal nuclear power plant: once-through cooling and secondary circulation cooling, as well as their characteristics, advantages and disadvantages. It analyzes the differences of the drainage engineering of the two cooling methods, including subsurface pipe drainage and open channel drainage, and discusses the advantages and disadvantages of each type of drainage system. Combined with the cooling method and drainage scheme comparison and optimization case of Shandong a nuclear power project, this research demonstrates that adopting a secondary circulation cooling system significantly reduces the volume of warm water discharge compared to the once-through cooling method. Specifically, the area of 4 °C temperature rise envelope is only 3% of the sea area of once-through cooling scheme, which not only reduces the sea area of the temperature drainage significantly, but also greatly reduces the nuclear power withdrawal drainage. It not only greatly reduces the sea area use for warm water discharge, but also greatly reduces the loss of marine life. This approach aligns with the project's requirements for efficient and economical use of the sea. Therefore, the adoption of secondary circulation cooling and optimized drainage engineering in coastal nuclear power plants can effectively mitigate the impact on marine ecosystems, promoting harmonious development between the economy, society, and the environment.

       

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