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Development of an innovative code for the design of thermodynamic solar power plants part B: Performance assessment of commercial and innovative technologies

机译:开发热力太阳能发电厂的设计创新守则B部分:商业和创新技术的性能评估

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This paper presents the development and testing of an innovative code for the prediction of thermodynamic performances at nominal conditions, as well as a preliminary plant sizing and investment costs estimation for different parabolic trough solar fields. Part A of the paper presented in detail the model and validated it toward existing plants. This part discusses potentialities of the PATTO code (Parabolic Trough Thermodynamic Optimization) in terms of the capability (ⅰ) to compare the HCEs performances of various manufacturers, (ⅱ) to accomplish an economic analysis and evaluate the specific investment costs of different technologies, (ⅲ) to carry out a sensitivity analysis on the HCE performances and (ⅳ) to implement innovative plant configurations. The potentiality of the economic analysis has been tested toward the recently built Nevada Solar One plant, while the sensitivity analysis of collector performances has been validated with a parametric study found in literature. PATTO allowed to propose and test an original hybrid solution with potential thermodynamic and economic advantages: results obtained by the code at nominal conditions show an efficiency gain of 1.2% points and potential investment costs saving of 6.5% with respect to a state-of-the-art reference plant.
机译:本文介绍了用于预测标称条件下热力学性能的创新代码的开发和测试,以及针对不同抛物线槽太阳能场的初步工厂规模估算和投资成本估算。本文的A部分详细介绍了该模型,并针对现有工厂对其进行了验证。本部分从能力(ⅰ)比较各个制造商的HCE性能(ⅱ)进行经济分析并评估不同技术的特定投资成本的能力(ⅰ)来讨论PATTO代码(抛物线槽热力学优化)的潜力,(ⅱ) ⅲ)对HCE性能进行敏感性分析,以及(ⅳ)实施创新的工厂配置。经济分析的潜力已针对最近建成的内华达太阳能一号电厂进行了测试,而集热器性能的敏感性分析已通过文献中的参数研究得到验证。 PATTO允许提出和测试具有潜在热力学和经济优势的原始混合动力解决方案:通过代码在标称条件下获得的结果表明,相对于目前的状态,效率提高了1.2%点,潜在的投资成本节省了6.5%先进的参考植物。

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