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Design of a novel geothermal heating and cooling system: Energy and economic analysis

机译:新型地热加热和冷却系统的设计:能源和经济分析

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摘要

A dynamic simulation study in TRNSYS environment has been carried out to evaluate energy and economic performance of a novel heating and cooling system based on the coupling between a low or medium-enthalpy geothermal source and an Air Handling Unit, including a Desiccant Wheel. During summer season, a Downhole Heat Exchanger supplies heat to regenerate the desiccant material, while a certain amount of geothermal fluid is continuously extracted by the well in order to maintain high operating temperatures. Simultaneously, the extracted geothermal fluid drives an absorption chiller, producing chilled water to the cooling coil of the Air Handling Unit. Conversely, during the winter season, geothermal energy is used to cover a certain amount of the space heating demand. In both summer and winter operation modes, a geothermal energy is also used to supply Domestic Hot Water. A case study was analyzed, in which an existing low-enthalpy geothermal well (96 degrees C), located in Ischia (an island close to Naples; Southern Italy), is used to drive the geothermal system. Results showed that the performance of the proposed system is significantly affected by the utilization factor of Domestic Hot Water. In fact, considering a range of variation of such parameter between 5% and 100%, Primary Energy Saving increase from 77% to 95% and Pay-Back Period decreases from 14 years to 1.2 years, respectively. The simulations proved the technical and economic viability of the proposed system. In fact, a comparison with similar systems available in literature pointed out that the layout proposed in this work is characterized by better energy and economic performance, especially in the best scenario. Finally, a sensitivity analysis showed that the system performance is mainly affected by the nominal geothermal flow rate and by natural gas cost. (C) 2015 Elsevier Ltd. All rights reserved.
机译:已经在TRNSYS环境中进行了动态仿真研究,以基于低或中焓地热源与空气处理单元(包括除湿轮)之间的耦合来评估新型加热和冷却系统的能源和经济性能。在夏季,井下热交换器提供热量以使干燥剂材料再生,同时井不断抽取一定量的地热流体以维持较高的工作温度。同时,提取的地热流体会驱动吸收式制冷机,从而将冷水送至空气处理机组的冷却盘管。相反,在冬季,地热能被用来满足一定数量的空间供暖需求。在夏季和冬季两种运行模式下,地热能还用于供应生活热水。分析了一个案例研究,其中使用位于伊斯基亚(靠近那不勒斯的一个岛;意大利南部)的现有低焓地热井(96摄氏度)来驱动地热系统。结果表明,所提出系统的性能受到生活热水利用率的显着影响。实际上,考虑到该参数在5%到100%之间的变化范围,一次能源节省从77%增加到95%,投资回收期从14年减少到1.2年。仿真证明了该系统的技术和经济可行性。实际上,与文献中类似系统的比较指出,这项工作中提出的布局具有更好的能源和经济性能的特点,尤其是在最佳情况下。最后,敏感性分析表明,系统性能主要受标称地热流量和天然气成本的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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