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World location as associated factor for optimal operation model of Parabolic trough Concentrating Solar Thermal Power plants

机译:世界位置是抛物槽式聚光太阳能热电厂最佳运行模型的相关因素

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Concentrating Solar Thermal Power (CSP) technology provides a competitive source of energy for electricity generation. Within this technology and thanks to its great potential, Cylindrical Parabolic Concentrators (CCP) plants have become the type of electricity generation by renewable solar energy most widely spread around the world [1]. Nonetheless, the plant design and operation model are not unique; they must be adapted to the parameters of solar radiation from each particular location. This work focuses on the search of a mathematical model of CCP for optimal operation options, of double tank molten salt Thermal Energy Storage (TES) size and plant operation, designed for four different world locations. For each world location and within a regulated electric scenario, the analysis of the different ways of operation provides meaningful insights into the electricity generated. Therefore, the plant deployment points of storage tanks size and electric power generation can be established for optimal operation according to each radiation area. This comparative study uses a CCP standard solar thermal plant with 2 blocks of 50MWe net output. Certain parameters have been preset on modelling environment in order to establish a common basis for the model comparisons.
机译:集中式太阳能热电(CSP)技术为发电提供了竞争性的能源。在这项技术中,由于其巨大的潜力,圆柱形抛物面聚光器(CCP)电厂已成为可再生太阳能发电的一种类型,在全球范围内得到最广泛的应用[1]。但是,工厂的设计和运营模型并不是唯一的。它们必须适合每个特定位置的太阳辐射参数。这项工作的重点是针对CCP的数学模型进行搜索,以找到最佳的操作选择,如双罐熔融盐热能存储(TES)大小和工厂操作,这些模型针对四个不同的世界地点而设计。对于每个世界地点,以及在受监管的用电情景中,对不同运行方式的分析都可以对发电产生有意义的见解。因此,可以根据每个辐射区域确定储罐尺寸和发电量的工厂部署点,以实现最佳运行。这项比较研究使用了CCP标准的太阳能热电厂,该电厂有2块50MWe的净输出。某些参数已在建模环境中预设,以便为模型比较建立通用基础。

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