首页> 外文会议>Biennial Conference on Engineering Systems Design and Analysis >A THERMOECONOMICS-BASED APPROACH TO THE INTEGRATED OPTIMIZATION OF DESIGN AND OPERATION FOR DECENTRALISED ENERGY SYSTEMS AND VARIABLE LOAD CONDITIONS
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A THERMOECONOMICS-BASED APPROACH TO THE INTEGRATED OPTIMIZATION OF DESIGN AND OPERATION FOR DECENTRALISED ENERGY SYSTEMS AND VARIABLE LOAD CONDITIONS

机译:基于热经济学的方法,用于分散能量系统的设计和操作的集成优化和可变负载条件

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The many comprehensive approaches formulated for the optimization of large industrial energy systems have been rarely applied to small and medium scale units, because of the difficulties in handling a continuously variable energy demand and of the lower margins for energy and emissions saving. Today, the growing interest for decentralised energy systems in the civil sector stimulates major efforts for the optimization of such plants, with a particular focus on the control system and on a management strategy able to exploit the opportunities existing in the free energy market. In this paper a methodology is proposed for the optimization of design and operation of variable demand systems supplying different non-storable products. In such systems, efficiency penalty due to off-design operation is usually assumed as a key issue; the proposed method, however, introduces an original and meaningful interpretation of the capital depreciation cost and keeps into account the possibility for grid connected power systems to produce surplus electricity to be sold. The proposed optimization process, based on the Lagrange multipliers method, assumes either an economic indicator (the Net Present Value, NPV or the Net Cash Flow, NCF) or a function depending only on fuel consumption (as usually proposed in literature) as objective function. Main advantages of the proposed method are the high level of integration between the optimization of design and operation and the possibility to automate the algorithm in order to drive a real-time optimized control system aiming to achieve the maximum profitability or the maximum primary energy saving.
机译:为优化大型工业能源系统提供的许多综合方法已经很少应用于中小型单位,因为处理连续可变的能源需求和较低的能量和排放储蓄的较低的利润率难以实现困难。今天,民事部门的分散能源系统的兴趣日益促进了优化这些植物的重大努力,特别关注控制系统以及能够利用自由能源市场中存在的机会的管理策略。本文提出了一种用于优化提供不同不可储存产品的可变需求系统的设计和操作的方法。在这种系统中,通常认为由于非设计操作而导致的效率惩罚是一个关键问题;然而,拟议的方法介绍了对资本折旧成本的原始和有意义的解释,并考虑到网格连接电力系统生产剩余电力的可能性。基于拉格朗日乘法器方法的所提出的优化过程假设经济指标(净目前值,NPV或净现金流,NCF)或仅根据燃料消耗(如文学中的通常提出)作为客观函数。所提出的方法的主要优点是设计和操作的优化之间的高度集成以及自动化算法的可能性,以驱动实时优化的控制系统,旨在实现最大的盈利能力或最大的初级节能。

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