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Modelling the radiolysis of RSG-GAS primary cooling water

机译:塑性RSG气体初级冷却水的辐射分析

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Water chemistry control for light water coolant reactor required a reliable understanding of radiolysis effect in mitigating corrosion and degradation of reactor structure material. It is known that oxidator products can promote the corrosion, cracking and hydrogen pickup both in the core and in the associated piping components of the reactor. The objective of this work is to provide the radiolysis model of RSG GAS cooling water and further more to predict the oxidator concentration which can lead to corrosion of reactor material. Direct observations or measurements of the chemistry in and around the high-flux core region of a nuclear reactor are difficult due to the extreme conditions of high temperature, pressure, and mixed radiation fields. For this reason, chemical models and computer simulations of the radiolysis of water under these conditions are an important route of investigation. FACSIMILE were used to calculate the concentration of O_2 formed at relatively long-time by the pure water γ and neutron irradiation (pH=7) at temperature between 25 and 50 °C. This simulation method is based on a complex chemical reaction kinetic. In this present work, 300 MeV-proton were used to mimic γ-rays radiolysis and 2 MeV fast neutrons. Concentration of O_2 were calculated at 10~(-6) - 10~6 s time scale.
机译:轻水冷却剂反应器的水化学控制需要可靠地理解减轻反应器结构材料的缓解和降解的放射性作用。已知氧化剂产品可以促进核心和反应器的相关管道组分中的腐蚀,开裂和氢拾液。这项工作的目的是提供RSG气体冷却水的放射性分解模型,进一步提高氧化剂浓度,这会导致反应器材料的腐蚀。由于高温,压力和混合辐射场的极端条件,核反应堆的高通量芯区域和围绕的化学的直接观察或测量。出于这个原因,在这些条件下,水的辐射分析的化学模型和计算机模拟是一个重要的调查途径。 FACSIMILE用于在25至50℃的温度下计算纯水γ和中子辐射(pH = 7)在相对长时间形成的O_2的浓度。该模拟方法基于复杂的化学反应动力学。在本工作中,300mev-proton用于模拟γ射线辐射和2mev快上的含量。 O_2的浓度在10〜( - 6) - 10〜6秒的时间尺度下计算。

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