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Experimental investigation of a multi-generation energy system for a nearly zero-energy park: A solution toward sustainable future

机译:接近零能源园区的多代能源系统的实验研究:实现可持续未来的解决方案

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In the current paper, the performance of a solar-based multi-generation system was experimentally investigated for one year. The system was composed of a photovoltaic section and a hybrid thermal and desalination section with a linear parabolic solar collector. Results indicate that besides entirely complies with the electricity, drinking water and hot water needs, utilization of the system for a nearly zero-energy park prevents 342 tons of CO2 net annual greenhouse gas emission. Furthermore, the performance of the linear parabolic solar collector was experimentally investigated and compared using both water and Al2O3-water nanofluid as the heat transfer fluids. Results show that using the nanofluid, a noticeable decrease (31%) in the total thermal loss coefficient led to a significant increase (70%) in the thermal efficiency of the system. Calculating the simple and equity paybacks, as well as the Internal Rate of Return, revealed the economic viability of the proposed multi-generation system. The capacity of the proposed system could be easily extended, and the pattern of the nearly zero-energy park in the current study could be applied in other urban areas to pursue a more sustainable future.
机译:在当前的论文中,对基于太阳能的多代系统的性能进行了一年的实验研究。该系统由一个光伏部分和一个带有线性抛物面太阳能集热器的混合热和淡化部分组成。结果表明,除了完全符合电力,饮用水和热水需求外,该系统在几乎零能耗的公园中的使用还防止了每年342吨的二氧化碳净排放。此外,实验研究了线性抛物线型太阳能集热器的性能,并使用水和Al2O3-水纳米流体作为传热流体进行了比较。结果表明,使用纳米流体,总热损失系数显着降低(31%),导致系统的热效率显着提高(70%)。计算简单和公平的投资回报率以及内部收益率,可以看出拟议的多代系统的经济可行性。拟议系统的容量可以轻松扩展,本研究中几乎为零能耗的园区模式可以应用于其他城市地区,以追求更可持续的未来。

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