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INTEGRAL TECHNO-ECONOMIC ANALYSIS OF SUPERCRITICAL CARBON DIOXIDE CYCLES FOR CONCENTRATED SOLAR POWER

机译:集中太阳能超临界二氧化碳循环的整体技术经济分析

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Previous work by the authors has shown that broader analyses than those typically found in literature (in terms of operating pressures allowed) can yield interesting conclusions with respect to the best candidate cycles for certain applications. This has been tested for the thermodynamic performance (1st and 2nd Laws) but it can also be applied from an economic standpoint. This second approach is introduced in this work where typical operating conditions for CSP applications (current and future generations of solar tower plants) are considered (900°C and 30 MPa). For these, the techno-economic performance of each cycle are assessed in order to identify the most cost-effective layout when it comes to the Overnight Capital Cost. This analysis accounts for the different contributions to the total cost of the plant, including all the major equipment that is usually found in a CSP power plant such as the solar field and thermal energy storage system. The work is thus aimed at providing guidelines to professionals in the area of basic engineering and pre-feasibility study of CSP plants who find themselves in the process of selecting a particular power cycle for a new project (set of specifications and boundary conditions).
机译:前面的作者的工作表明,比文学中通常在文献中发现的那些(允许的操作压力方面)的更广泛的分析可以在某些应用中获得最佳候选周期的有趣结论。这已经测试了热力学性能(第1和第2定律),但也可以从经济角度应用。在这项工作中介绍了第二种方法,其中考虑了CSP应用的典型操作条件(太阳能塔厂的电流和后代)(900°C和30MPa)。为此,评估每个周期的技术经济绩效,以确定当涉及到过夜资本成本时最具成本效益的布局。该分析占工厂总成本的不同贡献,包括通常在太阳能场和热能存储系统等CSP发电厂中发现的所有主要设备。因此,该工作旨在为专业领域的基本工程领域提供指导,以及在为新项目选择特定功率周期的过程中找到自己的CSP工厂(规格和边界条件)的过程中的基本工厂的前易行性研究。

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