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Stochastic techno-economic assessment based on Monte Carlo simulation and the Response Surface Methodology: The case of an innovative linear Fresnel CSP (concentrated solar power) system

机译:基于蒙特卡洛模拟和响应面方法的随机技术经济评估:创新型线性菲涅耳CSP(集中式太阳能)系统的案例

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摘要

Combining technological solutions with investment profitability is a critical aspect in designing both traditional and innovative renewable power plants. Often, the introduction of new advanced-design solutions, although technically interesting, does not generate adequate revenue to justify their utilization. In this study, an innovative methodology is developed that aims to satisfy both targets. On the one hand, considering all of the feasible plant configurations, it allows the analysis of the investment in a stochastic regime using the Monte Carlo method. On the other hand, the impact of every technical solution on the economic performance indicators can be measured by using regression meta-models built according to the theory of Response Surface Methodology. This approach enables the design of a plant configuration that generates the best economic return over the entire life cycle of the plant. This paper illustrates an application of the proposed methodology to the evaluation of design solutions using an innovative linear Fresnel Concentrated Solar Power system. (C) 2016 Elsevier Ltd. All rights reserved.
机译:将技术解决方案与投资收益相结合是设计传统和创新可再生能源发电厂的关键方面。通常,尽管在技术上很有趣,但引入新的高级设计解决方案并不能产生足够的收入来证明其合理性。在这项研究中,开发了一种旨在满足两个目标的创新方法。一方面,考虑所有可行的工厂配置,它允许使用蒙特卡洛方法对随机状态下的投资进行分析。另一方面,每种技术解决方案对经济绩效指标的影响都可以通过使用根据响应面方法论建立的回归元模型来衡量。这种方法可以设计一种能够在整个工厂生命周期内产生最佳经济回报的工厂配置。本文说明了所提出的方法在使用创新的线性菲涅尔聚光太阳能系统的设计解决方案评估中的应用。 (C)2016 Elsevier Ltd.保留所有权利。

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