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ROBUST OPTIMAL DESIGN IN MULTISTAGE EXPANSION OF A GAS TURBINE COGENERATION PLANT UNDER UNCERTAIN ENERGY DEMANDS

机译:不确定能源需求燃气轮机热电联产厂多级扩展的鲁棒优化设计

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In designing cogeneration plants, the estimation of energy demands is an important work. However, many conditions under which energy demands are estimated have some uncertainty at the design stage. Therefore, designers should consider that energy demands have some uncertainty, evaluate the robustness in the performance under uncertain energy demands, and design plants rationally in consideration of the robustness. The authors have developed a robust optimal design method based on the minimax regret criterion for the single-stage planning of energy supply plants. In this paper, the method is extended for the multistage expansion planning. Under uncertain energy demands increasing stepwise, equipment capacities and utility contract demands as well as energy flow rates for each expansion period are determined in consideration of their sequential relationships to minimize the maximum regret in the annual total cost and satisfy all the possible energy demands for all the expansion periods. Through a case study on a gas turbine cogeneration plant for district energy supply, features of the economic robustness and the robust optimal design are clarified in relation to the uncertainty in energy demands and the numbers of years for the expansion periods.
机译:在设计热电联产厂时,能源需求的估计是一个重要的工作。然而,估计能源需求的许多条件在设计阶段具有一些不确定性。因此,设计人员应考虑能源需求具有一些不确定性,评估在不确定的能源需求下性能的稳健性,以及考虑到稳健性,理性地设计植物。基于Limonax遗憾标准,作者开发了一种强大的最佳设计方法,用于能源供应厂的单级规划。在本文中,该方法延长了多级扩展规划。在不确定的能源需求下,考虑到他们的顺序关系,确定设备容量和公用事业合约要求以及每个扩展期的能量流速,以尽量减少年度总成本中最大遗憾,并满足所有可能的能源需求扩张期。通过对地区能源供应的燃气轮机热电联产工厂的案例研究,经济稳健性的特征和强大的最佳设计阐明了能源需求的不确定性和扩张期的多年的数量。

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