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A novel energy supply and demand matching model in park integrated energy system

机译:园区综合能源系统中新的能源供需匹配模型

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The study of supply and demand match increasingly becomes an enormous challenge in park integrated energy system (PIES) because it has a comprehensive relationship between multiple energy sources and multiple energy demand. This paper proposes a new type of supply and demand matching to accomplish the economic optimality of match under the same criteria, considering supply and demand changing simultaneously. The quantitative indexes of supply and demand energy conversion technologies (ECTs) is established considering the economic and technical characteristics of full life cycle comprehensively, which are defined as supplied technical cost level and demand technical cost level. Then, the novel energy supply and demand matching model is established. The loop iteration algorithm of the new matching model is established based on linear programming model. Numerical study is introduced based on the data of the cooling, heating and electrical load in a typical day. The results show that the priority order of each ECT is different when the output of all ECTs increasing gradually. The investment payback period is only 1.94 years. The new supply and demand matching model can reduce carbon emissions by 80,555 tons. (C) 2019 Elsevier Ltd. All rights reserved.
机译:供需匹配的研究越来越多地成为公园综合能源系统(PIES)中的一项巨大挑战,因为它在多种能源和多种能源需求之间有着广泛的关系。本文提出了一种新型的供需匹配方法,该方法在考虑供需同时变化的情况下,在相同条件下实现匹配的经济最优性。综合考虑整个生命周期的经济技术特征,建立供需能源转换技术的定量指标,分别定义为供需技术成本水平和需求技术成本水平。然后,建立了新的能源供需匹配模型。基于线性规划模型,建立了新匹配模型的循环迭代算法。基于典型一天中的冷却,加热和电力负荷的数据,进行了数值研究。结果表明,当所有ECT的输出逐渐增加时,每个ECT的优先级顺序是不同的。投资回收期仅为1.94年。新的供需匹配模型可以减少80555吨的碳排放。 (C)2019 Elsevier Ltd.保留所有权利。

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