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Influence of the incident radiation on the energy performance of two small-scale solar Organic Rankine Cycle trigenerative systems: A simulation analysis

机译:事件辐射对两种小型太阳能有机朗肯循环三级系统的能量性能的影响:模拟分析

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In this paper, two innovative small-scale solar Organic Rankine Cycle (ORC) trigeneration plants are investigated and compared using a simulation analysis. In particular, the first plant (Plant 1) consists of a 146 m(2) Compound Parabolic Collectors (CPC) solar field, a 3 m(3) diathermic oil storage tank, a 3.5 kWe ORC plant and a 17 kWc absorption chiller, while the second plant (Plant 2) consists of a Linear Fresnel Reflectors (LFR) solar field of equal reflecting area, a phase change material storage tank equipped with reversible heat pipes, a 3.2 kWe ORC unit and the same 17 kWc absorption chiller as the former.The dynamic performance of the considered plants has been assessed for two Italian locations representative of the European Mediterranean area, Napoli and Messina, having a similar global radiation but a significantly different ratio of direct normal irradiance to diffuse irradiance. The comparison between the two different solar ORC trigeneration systems has revealed the great influence of the solar radiation on the effectiveness of such systems even for locations at similar latitudes. The energy production has been analysed both on a monthly and daily basis. Results have shown that while the performance of Plant 1 is not so sensitive to location and radiation conditions, Plant 2 is greatly affected by these parameters. Moreover, the higher condensing temperatures necessary in summer to supply the absorption chiller significantly limit the electrical efficiency of the solar CPC ORC. On the contrary, the LFR technology allows the achievement of higher temperatures and conversion efficiencies in summer, thus resulting especially suitable for solar cooling applications. In conclusion, this study has highlighted the importance of adequate technology selection with different radiation conditions in order to better exploit the potential of trigenerative solar ORC systems.
机译:本文研究了两种创新的小型太阳能有机兰丝循环(ORC)三级植物,并使用模拟分析进行比较。特别是,第一植物(植物1)由146米(2)复合抛物线收集器(CPC)太阳能电场,3米(3)型透热储油罐,3.5kWe兽人厂和17 kWC吸收冷水机组组成,虽然第二植物(工厂2)由线性菲涅耳反射器(LFR)太阳能电场等于相等的反射区域,但是配备有可逆热管的相变材料储罐,3.2 kWe兽人单元和相同的17 kWc吸收冷水机前者。常见的植物的动态表现已被评估为欧洲地中海地区,诺普利和墨西州的两种意大利地点,具有类似的全球辐射,但直接正常辐照度与漫反射辐照度明显不同。两种不同的太阳能兽人三能做系统之间的比较揭示了太阳辐射对这种系统的有效性的影响,即使在类似纬度的位置也是如此。每月和日期都分析了能源生产。结果表明,虽然植物1的性能对位置和辐射条件不太敏感,但植物2受到这些参数的大大影响。此外,夏季供应吸收冷却器的较高冷凝温度显着限制了太阳能CPC ORC的电效率。相反,LFR技术允许在夏季实现更高的温度和转化效率,因此尤其适用于太阳能冷却应用。总之,本研究强调了具有不同辐射条件的充足技术选择的重要性,以便更好地利用三合一太阳能兽人系统的潜力。

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