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Solar Tower Power Plant Using a Particle-Heated Steam Generator: Modeling and Parametric Study

机译:使用粒子加热蒸汽发生器的太阳能塔发电厂:建模和参数研究

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摘要

Within the framework of the project HiTExStor II, a system model for the entire power plant consisting of volumetric air receiver, air-sand heat exchanger, sand storage system, steam generator and water-steam cycle was implemented in software “Ebsilon Professional”. As a steam generator, the two technologies fluidized bed cooler and moving bed heat exchangers were considered. Physical models for the non-conventional power plant components as airsand heat exchanger, fluidized bed coolers and moving bed heat exchanger had to be created and implemented in the simulation environment. Using the simulation model for the power plant, the individual components and subassemblies have been designed and the operating parameters were optimized in extensive parametric studies in terms of the essential degrees of freedom. The annual net electricity output for different systems was determined in annual Performance calculations at a selected location (Huelva, Spain) using the optimized values for the studied parameters. The solution with moderate regenerative feed water heating has been found the most advantageous. Furthermore, the system with moving bed heat exchanger prevails over the system with fluidized bed cooler due to a 6 % higher net electricity yield.
机译:在HiTExStor II项目的框架内,在软件“ Ebsilon Professional”中实现了整个电厂的系统模型,该系统模型由容积式空气接收器,气砂热交换器,沙子存储系统,蒸汽发生器和水蒸汽循环组成。作为蒸汽发生器,考虑了两种技术:流化床冷却器和移动床热交换器。必须在模拟环境中创建并实现非常规电厂部件的物理模型,如气砂热交换器,流化床冷却器和移动床热交换器。使用用于电厂的仿真模型,设计了单个组件和子组件,并在广泛的参数研究中根据基本自由度对运行参数进行了优化。使用研究参数的最佳值,在选定位置(西班牙韦尔瓦)的年度性能计算中确定不同系统的年度净电力输出。已经发现具有适度的再生给水加热的解决方案是最有利的。此外,由于带动床换热器的系统的净发电量高出6%,因此优于带流化床冷却器的系统。

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