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A techno-economic assessment on the adoption of latent heat thermal energy storage systems for district cooling optimal dispatch & operations

机译:关于采用地区冷却最佳调度和运营潜热热能储存系统的技术经济评估

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The adoption of high-density phase change materials as cold thermal energy storage media have been considered as potential alternatives to water and ice. In this paper, the implementation of these media has been investigated in the context of district cooling in mixed-used building micro-grids whereby the cold thermal energy storage is retrofitted into an existing eco-building cluster. The techno-economic feasibility of implementing phase change materials, which includes eutectic salt, polyethylene glycol and paraffin as cold thermal energy storage media for district cooling, have been evaluated by computing the economic dispatch of a cooling bus network using mixed integer quadratic programming. Furthermore, the impact of high-density storage media with a reduced footprint on the integration and design of cold thermal energy storage systems in district cooling has been included in the analysis. The capital expenditure of cold thermal energy storage systems, the land rental price for required occupancy and operating expenditure are used to determine the net present value after 20 years. Through peak shaving, optimally sized cold thermal energy storage has shown a better alternative substituting one of the two chillers. The smaller chiller (1200 kWc) is no longer required in the plant, giving significant savings in capital expenditure. The cost-benefit analysis also showed that only eutectic salt phase change materials are competitive with ice, with a net present value approaching 200,000 $ after 20 years. When phase change materials are adopted, especially if compared with water, the building operations and related costs are significantly less affected by large fluctuations in land rental price given its smaller footprint, thus posing significantly lower financial risks.
机译:作为冷热能量存储介质的使用高密度相变材料被认为是水和冰的潜在替代品。在本文中,在混合使用的建筑微网的地区冷却的背景下研究了这些媒体的实施,其中冷热储能被改装成现有的生态建筑物群。通过计算使用混合整数二次编程计算冷却总线网络的经济调度,通过计算冷却总线网络的经济调度,从而包括共晶盐,聚乙二醇和石蜡作为区域冷却的冷热储能介质的技术经济可行性。此外,在分析中,高密度存储介质对Chard Coard的冷热能量存储系统的集成和设计的占用占用的影响。冷热储能系统的资本支出,所需占用和运营支出的土地租金用于在20年后确定净目前的价值。通过峰值剃须,最佳尺寸的冷热储能已经显示出一种更好的替代品,其中一个冷却器中的一个。工厂不再需要较小的冷却器(1200 kWc),从而高度节省资本支出。成本效益分析还表明,只有共晶盐相变材料与冰具有竞争力,净目前价值在20年后接近20万美元。当采用相变材料时,特别是如果与水相比,建筑运营和相关成本受到较小占地面积的较小租金价格的大幅波动显着较低,因此显着降低了金融风险。

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