OPTIMIZATION OF OPERATING MODES OF POWER UNITS OF NUCLEAR POWER PLANTS

O. Yefimov, Valery Kavertsev, L. Tiutiunyk, T. Harkusha, A. Motovilnik, Igor Sydorkin
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Abstract

The materials of the article consider the main methodological provisions of calculations and optimization of NPP power unit equipment parameters using mathematical modeling methods. For the effective implementation of tasks related to determining the optimal parameters and structures of NPP power unit equipment using mathematical modeling and well-developed multifactor optimization methods, it is necessary to fulfill a number of requirements at their productions. Practice shows that it is impractical to optimize with the help of a single mathematical (simulation) model the entire set of parameters characterizing a given power unit, because with such a formulation, the optimization tasks are often mutually incorrect due to a significant discrepancy in the accuracy of various source information, unequal influence of parameters on the target function, specific differences in the mathematical description of various units and elements of the power unit. In order to effectively optimize the parameters of NPP power units, it is necessary to create a system of interconnected mathematical models, which include: a group of detailed mathematical models of individual units and elements of power unit equipment; more generalized mathematical models for the main equipment of power units built on their basis; complete mathematical model of power units.
核电站动力机组运行模式优化
本文的材料考虑了用数学建模方法计算和优化核电站机组设备参数的主要方法规定。为了利用数学建模和完善的多因素优化方法有效地完成确定核电站机组设备最优参数和结构的任务,必须在生产中满足许多要求。实践表明,借助单一的数学(仿真)模型来优化表征给定功率单元的整个参数集是不切实际的,因为在这样的公式下,由于各种源信息的精度存在显著差异,参数对目标函数的影响不相等,功率单元的各个单元和元件的具体数学描述存在差异,因此优化任务往往相互不正确。为了有效地优化核电机组的参数,需要建立一个相互关联的数学模型系统,其中包括:一组详细的机组和机组设备元件的数学模型;在此基础上建立了更广义的发电机组主设备数学模型;完整的动力单元数学模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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