首页> 外文会议>International conference on nuclear engineering;ICONE17 >CREATION OF AUTOMATIC SYSTEM FOR MONITORING, FORECASTING AND CONTROL OF CONDITION OF LEAD-BISMUTH (LEAD) COOLANT AND SURFACES OF CIRCUITS OF NUCLEAR POWER PLANTS
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CREATION OF AUTOMATIC SYSTEM FOR MONITORING, FORECASTING AND CONTROL OF CONDITION OF LEAD-BISMUTH (LEAD) COOLANT AND SURFACES OF CIRCUITS OF NUCLEAR POWER PLANTS

机译:建立用于核电厂的铅铋冷却液和表面状况的自动监测,预测和控制系统

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Lead-bismuth coolant is preferable for the medium size reactors, since, in contrast to the sodium coolant, it does not interact with water and air, it is radiation resistant, insignificantly activated and it is not combustible [1]. Combination of natural properties of lead-based coolants, mono-nitride fuel, fast reactor neutronics and design approaches used for the reactor core and heat removal system brings SVBR 75/100 NPP [2] to achieve a new safety level and assures its stability without operation of active safety systems even under severe accident conditions. Analysis of possible sequences of the events even under conditions of such severe accidents as addition of total excess reactivity or all pumps trip accompanied by safety system failure leads to the conclusion on that power unit with SVBR 75/100 reactor plant (RP) has high safety level.
机译:铅铋冷却液是中型反应堆的首选,因为与钠冷却液相比,铅铋冷却液不与水和空气相互作用,具有抗辐射,微不足道的活化性和不可燃性[1]。铅基冷却剂,单氮化物燃料,快速反应堆中子的自然属性以及用于反应堆堆芯和排热系统的设计方法相结合,使SVBR 75/100 NPP [2]达到了新的安全水平,并确保了其稳定性而无需主动安全系统的运行,即使在严重事故条件下也是如此。分析事件发生的可能顺序,即使在发生严重事故(例如增加总超额反应性或所有泵跳闸并伴有安全系统故障)的情况下,得出的结论是,装有SVBR 75/100反应堆工厂(RP)的动力装置具有很高的安全性等级。

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