零能耗建筑光伏系统优化规模建模

Morteza Thaherkhani, M. Ahmadi, S. Chandra, M. Nasiri, S. McCormack
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引用次数: 0

摘要

考虑到日益加剧的全球变暖和可再生能源的贡献,使用传统发电方式最大限度地减少住宅建筑的能源消耗是一个关键问题。在近零能耗建筑(NZEB)中,建筑消耗的总能量是通过可再生能源在现场产生的。本文提出了一个随机优化模型来设计最优的光伏并网系统,为NZEB设计提供最优的电力和热负荷。该模型的目标函数是优化光伏系统、供热系统和电力负荷的成本,以及向电网出售剩余电力的利润。结果表明,在优化光伏系统的基础上设计最优的NZEB时,最优的空间热负荷和电负荷是至关重要的。该模型应用于爱尔兰都柏林的一个样本建筑,以显示基于太阳辐射不确定性的不同情景下所提出方法的可操作性。
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Modelling Optimal PV System Sizing for Zero Energy Buildings
Considering increasing global warming and the contribution of renewable energy resources, minimizing supply the energy consumption of residential buildings using conventional generation is a critical issue. In a Nearly zero-energy building (NZEB), the total amount of energy consumed by the building is produced onsite through renewables energy resources. In this paper, a stochastic optimization model is presented to design an optimal grid-connected Photovoltaic (PV) system to supply the optimum electrical and heating loads for NZEB designs. The objective function of the proposed model is to optimize costs of the PV system, heating system, and electrical loads, and profit of selling surplus power into the grid. The results illustrate that when designing an optimal NZEB based on the optimum PV system, optimal space heating load and electrical loads are vital. This model is applied to a sample building in Dublin, Ireland to show the operability of the proposed methodology for different scenarios based on the solar radiation uncertainty.
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