首页> 外文期刊>Journal of engineering physics and thermophysics >EVOLUTION OF A TWO-LAYER OXIDE COATING ON THE STEEL SURFACE OF THE PRIMARY COOLANT CIRCUIT IN THE COURSE OF NUCLEAR POWER PLANT OPERATION
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EVOLUTION OF A TWO-LAYER OXIDE COATING ON THE STEEL SURFACE OF THE PRIMARY COOLANT CIRCUIT IN THE COURSE OF NUCLEAR POWER PLANT OPERATION

机译:核电站运行过程中主冷却剂电路钢表面上的两层氧化膜的演变

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摘要

An analysis of the laws governing mass transfer in a uniform oxide coating on the surface of a circuit is presented. As a result of calculations, the distribution of the fluxes of magnetite and of the particles of corrosion product suspensions depositing on the surface of the throughput section, as well as the distribution of the fluxes of dissolved iron, emerging from steel, along the length of the hydraulic system of the primary coolant circuit of the BREST-type plant, have been refined. The laws governing the process of mass transfer in the BREST-type primary coolant circuit with account for the oxide coating thickness variable in time have been obtained. The distribution of the thicknesses of the magnetite and spinel layers on the steel surface along the length of the BREST-type circulation loop after 365 days from the start of operation in a nominal regime is shown.
机译:提出了对控制电路表面均匀氧化物涂层中传质的规律的分析。计算的结果是,磁铁矿通量和沉积在通量区表面上的腐蚀产物悬浮颗粒的分布以及沿钢的长度方向从钢中冒出的溶解的铁通量的分布。 BREST型设备的主冷却剂回路的液压系统已经过改进。已经获得了控制BREST型一次冷却剂回路中传质过程的定律,该定律考虑了随时间变化的氧化物涂层厚度。显示了从名义运行开始运行365天后,沿BREST型循环回路长度分布的钢表面磁铁矿和尖晶石层的厚度分布。

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