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A novel exergy optimization of Bushehr nuclear power plant by gravitational search algorithm (GSA)

机译:重力搜索算法(GSA)对布什尔核电站的火用优化

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摘要

In recent years metaheuristic optimization algorithms have been widely developed. These algorithms are inspired from nature for solving complicated engineering problems. In this work, gravitational search algorithm (GSA) based on Newton's law of gravity is introduced for exergy optimization of the Bushehr nuclear power plant (BNPP). The main objective in this work is to minimize exergy destruction in the BNPP. In this analysis, beside the GSA, Genetic Algorithm (GA) is applied and the performances of these algorithms in two different cases are compared. In first case, the sphere function as a challenging optimization problem is investigated and it is demonstrated that the GSA has reliable fitness values (3.7602e-17). In the next case, the exergy destruction of the BNPP is studied and the exergy efficiencies of all components in the BNPP are evaluated. The reactor core (pressure vessel) and steam generator with 1511.35 MWth and 146.65 MWth of exergy destructions and irreversibility ratios of 50.34% and 4.88%, are introduced as the main irreversible components, respectively. The exergy destruction in the BNPP with the application of the GSA and GA is minimized and the optimum operating parameters in desired streams are reported. The exergy destruction of the BNPP (1968.95 MWth) is minimized to 1965.9 MWth. The results indicate the effectiveness of the GSA and it is shown that the method has robust high-quality solution for exergy destruction optimization. (C) 2018 Elsevier Ltd. All rights reserved.
机译:近年来,已经广泛开发了元启发式优化算法。这些算法从自然界中获得灵感,可以解决复杂的工程问题。在这项工作中,引入了基于牛顿重力定律的重力搜索算法(GSA),以对布什尔核电站(BNPP)进行火用优化。这项工作的主要目的是最大程度地减少BNPP中的火用破坏。在此分析中,除了GSA之外,还应用了遗传算法(GA),并比较了这两种算法在两种不同情况下的性能。在第一种情况下,研究了球面函数作为具有挑战性的优化问题,并证明了GSA具有可靠的适应度值(3.7602e-17)。在下一种情况下,研究了BNPP的火用破坏,并评估了BNPP中所有成分的火用效率。作为主要不可逆成分,分别引入了1511.35 MWth和146.65 MWth的本能破坏和50.34%和4.8%的不可逆比率的反应堆堆芯(压力容器)和蒸汽发生器。应用GSA和GA可以最大程度地减少BNPP的火用破坏,并报告所需流中的最佳运行参数。 BNPP(1968.95 MWth)的火用破坏最小化至1965.9 MWth。结果表明了GSA的有效性,并且表明该方法具有用于火用破坏优化的鲁棒高质量解决方案。 (C)2018 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Energy》 |2018年第1期|373-385|共13页
  • 作者单位

    Shahid Beheshti Univ, Engn Dept, GC, Tehran 1983963113, Iran;

    Shahid Beheshti Univ, Engn Dept, GC, Tehran 1983963113, Iran;

    Shahid Beheshti Univ, Engn Dept, GC, Tehran 1983963113, Iran;

    Shahid Beheshti Univ, Engn Dept, GC, Tehran 1983963113, Iran;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Exergy; Energy; Destruction; BNPP; GSA; Optimization;

    机译:火用;能量;破坏;BNPP;GSA;优化;

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