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首页> 外文期刊>Thermal engineering >The Effectiveness of Power-Generating Complexes Constructed on the Basis of Nuclear Power Plants Combined with Additional Sources of Energy Determined Taking Risk Factors into Account
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The Effectiveness of Power-Generating Complexes Constructed on the Basis of Nuclear Power Plants Combined with Additional Sources of Energy Determined Taking Risk Factors into Account

机译:在考虑了风险因素的基础上,结合核能确定了基于核电厂建造的发电复合体的有效性

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摘要

The effectiveness of combining nuclear power plants equipped with water-cooled water-moderated power-generating reactors (WER) with other sources of energy within unified power-generating complexes is analyzed. The use of such power-generating complexes makes it possible to achieve the necessary load pickup capability and flexibility in performing the mandatory selective primary and emergency control of load, as well as participation in passing the night minimums of electric load curves while retaining high values of the capacity utilization factor of the entire power-generating complex at higher levels of the steam-turbine part efficiency. Versions involving combined use of nuclear power plants with hydrogen toppings and gas turbine units for generating electricity are considered. In view of the fact that hydrogen is an unsafe energy carrier, the use of which introduces additional elements of risk, a procedure for evaluating these risks under different conditions of implementing the fuel-and-hydrogen cycle at nuclear power plants is proposed. Risk accounting technique with the use of statistical data is considered, including the characteristics of hydrogen and gas pipelines, and the process pipelines equipment tightness loss occurrence rate. The expected intensities of fires and explosions at nuclear power plants fitted with hydrogen toppings and gas turbine units are calculated. In estimating the damage inflicted by events (fires and explosions) occurred in nuclear power plant turbine buildings, the US statistical data were used. Conservative scenarios of fires and explosions of hydrogen-air mixtures in nuclear power plant turbine buildings are presented. Results from calculations of the introduced annual risk to the attained net annual profit ratio in commensurable versions are given. This ratio can be used in selecting projects characterized by the most technically attainable and socially acceptable safety.
机译:分析了将装有水冷式温控发电反应堆(WER)的核电厂与其他能源在统一的发电综合体中结合的有效性。通过使用此类发电设备,可以实现必要的负载提取能力和灵活性,以执行强制性的选择性主负载和紧急负载控制,并参与通过电力负载曲线的夜间最小值,同时保持较高的功率值。在更高水平的汽轮机部件效率下,整个发电综合体的容量利用率。考虑了涉及将具有氢覆盖物的核电厂和燃气轮机单元组合使用来发电的版本。鉴于氢是不安全的能源载体,使用氢会带来额外的风险因素,因此提出了一种在核电厂实施燃料和氢循环的不同条件下评估这些风险的程序。考虑使用统计数据的风险会计技术,包括氢气和天然气管道的特性以及工艺管道设备密封性损失的发生率。计算了装有氢气浇注装置和燃气轮机的核电厂的预期火势和爆炸强度。在估算核电站涡轮机建筑物中发生的事件(火灾和爆炸)造成的损害时,使用了美国统计数据。介绍了在核电站涡轮机建筑物中氢气和空气混合物着火和爆炸的保守场景。给出了引入的年度风险与可实现版本中获得的年度净利润比率的计算结果。该比率可用于选择以技术上最可实现且社会上可接受的安全为特征的项目。

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