Assessment of concentrated solar power (CSP) technologies based on a modified intuitionistic fuzzy topsis and trigonometric entropy weights

Assessment of concentrated solar power (CSP) technologies based on a modified intuitionistic fuzzy topsis and trigonometric entropy weights
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DOI:
10.1016/j.techfore.2018.12.009
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发表时间:
2019-03-01
影响因子:
12
通讯作者:
Mardani, Abbas
Mardani, Abbas
中科院分区:
管理学1区
文献类型:
--
作者:
Cavallaro, Fausto;Zavadskas, Edmundas Kazimieras;Mardani, Abbas

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聚光太阳能发电(CSP)技术已经显示出相当大的长期增长,多年来有不同程度的高峰发展和停滞阶段。越来越多的国家发现CSP技术对电力生产和其他应用具有吸引力。CSP提供了各种可以适当使用太阳能的应用,尽管关于哪种CSP技术具有更好的未来前景的争论仍在进行中。这个技术领域已经看到了许多进步和技术创新。这些改进主要涉及集热器的设计和相关材料,它们是由,传热过程,以及生产和积累的能量。为了评估这些CSP技术,本文中,我们提出了一个模糊多准则方法。然后,太阳能塔(ST),抛物面太阳能槽(PST),紧凑型线性菲涅尔反射器(CLFR),和碟式斯特林(DS)的评价使用改进的直觉模糊TOPSIS与三角熵向量权重。
Concentrated solar power (CSP) technology has shown considerable long-term growth with varying levels of peak development and stall phases over the years. More and more countries are finding CSP technology attractive for the production of electricity and other applications. CSP offers a variety of applications where solar power can be used appropriately, although the debate about which CSP technology has a better future perspective is still ongoing. This technology sector has seen a multitude of advancements and technological innovations. These improvements are primarily concerned with the design of the collectors and the related materials they are made from, the heat transfer processes, and the production and accumulation of energy.In order to assess these CSP technologies, in this paper we propose a fuzzy multi-criteria method. Then, Solar tower (ST), Parabolic solar trough (PST), Compact linear Fresnel reflector (CLFR), and Dish Stirling (DS) are evaluated using a modified intuitionistic fuzzy TOPSIS with a trigonometric entropy vector weight.