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Economic impact of latent heat thermal energy storage systems within direct steam generating solar thermal power plants with parabolic troughs

机译:带有抛物槽的直接蒸汽发电太阳能热电厂内潜热热能存储系统的经济影响

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One possible way to further reduce levelized costs of electricity of concentrated solar thermal energy is to directly use water/steam as the primary heat transfer fluid within a concentrated collector field. This so-called direct steam generation offers the opportunity of higher operating temperatures and better exergy efficiency. A technical challenge of the direct steam generation technology compared to oil-driven power cycles is a competitive storage technology for heat transfer fluids with a phase change. Latent heat thermal energy storages are suitable for storing heat at a constant temperature and can be used for direct steam generation power plants. The calculation of the economic impact of an economically optimized thermal energy storage system, based on a latent heat thermal energy storage system with phase change material, is the main focus of the presented work. To reach that goal, a thermal energy storage system for a direct steam generation power plant with parabolic troughs in the solar field was thermally designed to determine the boundary conditions. This paper discusses the economic impact of the designed thermal energy storage system based on the levelized costs of electricity results, provided via a wide parametric study. A state-of-the-art power cycle with a primary and a secondary heat transfer fluid and a two-tank thermal energy storage is used as a benchmark technology for electricity generation with solar thermal energy. The benchmark and direct steam generation systems are compared to each other, based respectively on their annual electricity yields and their levelized costs of electricity at two different sites. A brief comparison of a passive and an active latent heat storage system is included. Finally, specific target costs for the new direct steam generation thermal energy storage system are determined based on the results of the parametric study. (C) 2017 Elsevier Ltd. All rights reserved.
机译:进一步降低集中式太阳能热电成本的一种可能方法是直接使用水/蒸汽作为集中式集热器场内的主要传热流体。这种所谓的直接蒸汽产生提供了更高的工作温度和更好的火用效率的机会。与石油驱动的动力循环相比,直接蒸汽产生技术的技术挑战是具有相变的传热流体的竞争性存储技术。潜热热能储存器适合于在恒定温度下储存热量,并可用于直接蒸汽发电厂。基于具有相变材料的潜热储热系统,对经济优化的储热系统的经济影响进行计算是本研究的主要重点。为了实现该目标,对用于蒸汽直接发电站的热能存储系统进行了热设计,以确定边界条件。本文基于通过广泛的参数研究提供的电费平价化结果,讨论了设计的热能存储系统的经济影响。具有一次和二次传热流体以及两个储罐热能储存器的最新功率循环被用作太阳能热发电的基准技术。分别根据基准年发电量和直接蒸汽发电量的年发电量以及在两个不同地点的平均发电成本进行比较。包括被动和主动潜热存储系统的简要比较。最后,根据参数研究的结果确定新的直接蒸汽产生热能存储系统的特定目标成本。 (C)2017 Elsevier Ltd.保留所有权利。

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