Investigation of an energy pile application and its economic analysis

Sertaç Coşman, O. Kincay
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Abstract

In this study, the heating and cooling needs of an airplane hangar by integrating a heat pump system into bored piles were investigated. For this purpose, U-type pile heat exchangers were installed inside the piles. 600 bored piles were integrated with heat exchangers depending on the heating requirements of the hangar. Energy calculations were performed for a single pile, and the total amount of energy that could be extracted from the ground was determined. The main goal is to supply cooling and heating for the hangar throughout the year without the use of any additional conventional system. Thus, cost-analysis results for both the heat pump and traditional system using levelized cost method were presented. The study results showed that the annual operating cost (COM)PW, total operating cost (IOM)PW, equivalent annual operating cost (COM), and total annual cost (CT) for the present condition reduced by nearly 38.5%, 35%, 35%, and 34% against the conventional system, respectively. The simple payback period was calculated as 1.1 years. Finally, it was seen that using the energy piles can provide the heating and cooling requirements of the hangar throughout the year without any additional conventional system.
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能源堆应用调查及其经济分析
本研究通过在钻孔桩中安装热泵系统,对飞机库的供热和制冷需求进行了调查。为此,在桩内安装了 U 型桩热交换器。根据机库的供热要求,600 根钻孔桩与热交换器集成在一起。对单根桩进行了能量计算,并确定了可从地下提取的能量总量。主要目标是全年为机库提供制冷和供暖,而无需使用任何额外的传统系统。因此,采用平准化成本法对热泵和传统系统进行了成本分析。研究结果表明,与传统系统相比,当前条件下的年运行成本 (COM)PW、总运行成本 (IOM)PW、等效年运行成本 (COM) 和年总成本 (CT) 分别降低了近 38.5%、35%、35% 和 34%。计算得出的简单投资回收期为 1.1 年。最后,可以看出,使用能源堆可以满足机库全年的供暖和制冷需求,而无需额外的传统系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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