Basic models and approximation for the engineering description of the kinetics of the oxide layer of steel in a flow of heavy liquid metal coolant under various oxygen conditions

A. Avdeenkov, O. I. Achakovsky, V. Ketlerov, V. Kumaev, A. I. Orlov
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引用次数: 2

Abstract

The article presents the results of corrosion processes, kinetics and changes in the oxide layer modeling using MASKA-LM software complex. The complex is intended for a numerical simulation of three-dimensional non-stationary processes of mass transfer and interaction of impurity components in a heavy liquid metal coolant (HLMC: lead, lead-bismuth). The software complex is based on the numerical solution of coupled three-dimensional equations of hydrodynamics, heat transfer, formation and convective-diffusive transport of chemically interacting components of impurities. Examples of calculations of mass transfer processes and interaction of impurity components in HLMC, formation of protective oxide films on the surfaces of steels are given to justify the coolant technology.
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在各种氧条件下,重液态金属冷却剂流动中钢氧化层动力学工程描述的基本模型和近似
本文介绍了使用MASKA-LM软件对腐蚀过程、动力学和氧化层变化进行建模的结果。该配合物用于重液态金属冷却剂(HLMC:铅,铅-铋)中杂质组分的三维非平稳传质和相互作用过程的数值模拟。该软件是基于流体力学、传热、形成和杂质化学相互作用组分对流扩散输运的耦合三维方程的数值解。文中给出了计算HLMC中杂质组分的传质过程和相互作用、钢表面氧化保护膜形成的实例,以证明冷却剂技术的合理性。
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