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Techno-economic performance evaluation of solar tower plants with integrated multilayered PCM thermocline thermal energy storage: a comparative study to conventional two-tank storage systems

机译:综合多层pCm温跃层热能储存太阳能塔厂的技术经济性评价:对传统双罐储存系统的比较研究

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摘要

Solar Tower Power Plants with thermal energy storage are a promising technology for dispatchable renewable energy in the near future. Storage integration makes possible to shift the electricity production to more profitable peak hours. Usually two tanks are used to store cold and hot fluids, but this means both higher investment costs and difficulties during the operation of the variable volume tanks. Instead, another solution can be a single tank thermocline storage in a multi-layered configuration. In such tank both latent and sensible fillers are employed to decrease the related cost up to 30% and maintain high efficiencies. This paper analyses a multi-layered solid PCM storage tank concept for solar tower applications, and describes a comprehensive methodology to determine under which market structures such devices can outperform the more conventional two tank storage systems. A detail model of the tank has been developed and introduced in an existing techno-economic tool developed by the authors (DYESOPT). The results show that under current cost estimates and technical limitations the multi-layered solid PCM storage concept is a better solution when peaking operating strategies are desired, as it is the case for the two-tier South African tariff scheme.
机译:具有蓄热能力的太阳能塔式发电厂在不久的将来是可调度可再生能源的有前途的技术。集成存储可以将电力生产转移到更有利可图的高峰时段。通常使用两个水箱来存储冷,热流体,但这意味着较高的投资成本和可变容积水箱运行期间的困难。替代地,另一解决方案可以是多层构造的单罐温床存储。在这种储罐中,采用了潜伏性和合理性的填料,可将相关成本降低多达30%,并保持较高的效率。本文分析了用于太阳能塔应用的多层固态PCM储罐概念,并描述了一种综合的方法来确定这种设备在哪种市场结构下可以胜过更传统的两个储罐系统。已经开发出了这种水箱的详细模型,并引入了作者开发的现有技术经济工具(DYESOPT)中。结果表明,在目前的成本估算和技术限制下,多层分层PCM存储概念是理想的解决方案,当需要达到峰值运行策略时,南非两级电价方案就是这种情况。

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