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Performance Analysis Of The Power Conversion Unit Of A Solar Chimney Power Plant

机译:太阳能烟囱电厂功率转换装置的性能分析

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The power conversion unit (PCU) of a large solar chimney power plant consists of one or several turbogenerators, power electronics, a grid interface and the flow passage from collector exit to chimney inlet. The main goals of this paper are to analyze the performance of the PCU and its interaction with the plant as well as to compare three configurations from an efficiency and energy yield point of view. First, a reference plant is defined and the plant performance data taken from simulations with a model found in the literature are analyzed, and the matching of the turbine(s) to the characteristic of the plant is discussed. It was found that a well designed turbine can be run at high efficiency over the entire operating range, as the plant performance data can be fitted using the ellipse law of Stodola. Loss models for all components of the power conversion unit are then defined, and the impact of the various losses on the overall performance is assessed. Three configurations of the PCU are compared, i.e. the single vertical axis, the multiple vertical axis and the multiple horizontal axis turbine configuration. It is found that the single vertical axis turbine has a slight advantage with regards to efficiency and energy yield because certain loss mechanisms are not present. But its output torque is tremendous, making its feasibility questionable. It is shown that with designing the flow passage in an appropriate manner the aerodynamic losses can be kept low. The assumption made by many other researchers that the total-to-total efficiency of the PCU is 80 % has been confirmed with the present model. Further, it has been shown that the PCU efficiency deteriorates significantly with increasing diffuser area ratio but improves only slightly with reducing the diffuser area ratio below unity.
机译:大型太阳能烟囱发电站的功率转换单元(PCU)由一个或几个涡轮发电机,电力电子设备,电网接口以及从集热器出口到烟囱入口的流道组成。本文的主要目标是分析PCU的性能及其与工厂之间的相互作用,并从效率和能源产量的角度比较三种配置。首先,定义了一个参考工厂,并分析了采用文献中找到的模型从仿真中获得的工厂性能数据,并讨论了涡轮与工厂特性的匹配。人们发现,精心设计的涡轮机可以在整个工作范围内高效运行,因为可以使用斯托多拉的椭圆定律拟合电厂性能数据。然后定义功率转换单元所有组件的损耗模型,并评估各种损耗对整体性能的影响。比较了PCU的三种配置,即单个垂直轴,多个垂直轴和多个水平轴涡轮机配置。已经发现,由于不存在某些损失机制,所以单个垂直轴涡轮机在效率和能量产量方面具有轻微的优势。但是其输出扭矩巨大,使其可行性值得怀疑。结果表明,通过以适当的方式设计流动通道,可以将空气动力学损失保持在较低水平。本模型已经证实了许多其他研究人员所做的假设,即PCU的总效率为80%。此外,已经显示出,PCU效率随着扩散器面积比的增加而显着劣化,但是随着将扩散器面积比减小到低于1而仅稍微改善。

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