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Comparison of medium-size concentrating solar power plants based on parabolic trough and linear Fresnel collectors

机译:基于抛物面槽和线性菲涅耳收集器的中型集中太阳能发电厂的比较

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This paper compares the performance of medium-size Concentrating Solar Power (CSP) plants based on an Organic Ranlcine Cycle (ORC) power generation unit integrated with parabolic trough and linear Fresnel collectors. The CSP plants studied herein use thermal oil as heat transfer fluid and as storage medium in a two-tank direct thermal storage system. The performance of the CSP plants were evaluated on the basis of a 1 MW ORC unit with a conversion efficiency of about 24% and by considering different values of solar multiple and thermal storage capacity. The comparative performance analysis of the two CSP solutions was carried out with reference to the direct solar energy availability of Cagliari, Italy (1720 kWh/m~2y) on a yearly basis by means of specifically developed simulation models. The results of the performance assessment demonstrate that CSP plants based on linear Fresnel collectors lead to higher values of electrical energy production per unit area of occupied land. The highest specific energy production of CSP plants based on linear Fresnel collectors is about 55-60 kWh/y per m of occupied land and it is achieved with solar multiples in the 1.74-2.5 range and storage capacities in the range of 4-12 hours. The highest specific production of the solutions based on parabolic trough collectors is about 45-50 kWh/y per m~2 of occupied land and is achieved with lower solar multiples (around 1.5-2.3). Owing to their better optical efficiency, the use of parabolic troughs gives better values of energy production per unit area of solar collector (about 180-190 kWh/m~2 vs. 130-140 kWh/m~2).
机译:本文比较了基于有机Ranlcine循环(ORC)发电单元与抛物线槽和线性菲涅耳收集器集成的中等大小集中太阳能(CSP)植物的性能。本文研究的CSP植物在这里使用热油作为传热流体,作为双罐直接储热存储系统中的存储介质。基于1 MW ORC单元评估CSP植物的性能,其转换效率为约24%,并考虑到不同的太阳能多和热存储容量。通过专门开发的模拟模型,参考CAGLiari的直接太阳能可用性(1720 kWh / m〜2y),对两种CSP解决方案进行了比较绩效分析。性能评估的结果表明,基于线性菲涅耳收集器的CSP工厂导致每单位占用土地的电能生产值更高。基于线性菲涅耳收集器的CSP工厂的最高特定能源生产约为每米占用土地约55-60千瓦时/ y,并且在1.74-2.5的范围内的太阳倍数和4-12小时范围内的储存能力实现。 。基于抛物线槽收集器的溶液的最高特异性生产约为45-50千瓦时/米占用土地,通过较低的太阳倍数(1.5-2.3左右)实现。由于其更好的光学效率,抛物线槽的使用提供了每单位面积的太阳能收集器的能量生产值(约180-190千瓦时,则为130-140 kWh / m〜2)。

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