CSP-DSW设施的面向对象建模

D. R. Corbett, Manuel Blanco, A. Bonanos, Marios C. Georgiou, C. Papanicolas, C. Roussos, E. Stiliaris, K. Stokos, E. Votyakov
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引用次数: 1

摘要

在塞浦路斯太阳能研究、观测和技术应用平台(PROTEAS)设施中,选择了面向对象的非正式语言Modelica来开发塞浦路斯研究所聚光太阳能(CSP)和海水淡化(DSW)概念验证的整体系统级模型。该模型建立在SolarTherm的系统级和组件模型之上,SolarTherm是一个开源的Modelica集中太阳能热组件库,是澳大利亚太阳能热研究计划(ASTRI)的一部分。本文详细描述了在CSP-DSW组件建模中使用的实际特设方法,解释了选择它们的原因,它们的优点和局限性。2016年7月和2018年1月在PROTEAS进行的两次实验验证了该模型。使用开发的Modelica模型对这些实验进行了模拟。模型估计值与试验测量值之间的比较产生了相对较好的一致性,特别是在稳定状态下。除了展示结果之外,本文还讨论了从这个实验比较中获得的经验教训,包括模型的质量、如何改进模型,以及需要执行哪些额外的测试才能完全验证模型。在塞浦路斯太阳能研究、观测和技术应用平台(PROTEAS)设施中,选择了面向对象的非正式语言Modelica来开发塞浦路斯研究所聚光太阳能(CSP)和海水淡化(DSW)概念验证的整体系统级模型。该模型建立在SolarTherm的系统级和组件模型之上,SolarTherm是一个开源的Modelica集中太阳能热组件库,是澳大利亚太阳能热研究计划(ASTRI)的一部分。本文详细描述了在CSP-DSW组件建模中使用的实际特设方法,解释了选择它们的原因,它们的优点和局限性。2016年7月和2018年1月在PROTEAS进行的两次实验验证了该模型。使用开发的Modelica模型对这些实验进行了模拟。模型估计值与试验测量值之间的比较产生了一个r…
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Object oriented modelling of the CSP-DSW facility
The acausal and object-oriented language Modelica was chosen to develop the overall system-level model of the Cyprus Institute’s Concentrating Solar Power (CSP) and Desalination of Sea Water (DSW) proof-of-concept at the Platform for Research, Observation, and Technological Applications in Solar Energy (PROTEAS) facility in Cyprus. This model builds upon the system level and component models that are part of SolarTherm, an open-source Modelica library of concentrating solar thermal components, developed as part of the Australian Solar Thermal Research Initiative (ASTRI). The article describes the practical ad-hoc approaches used in modelling the components of the CSP-DSW in detail, explaining the reasons for their selection, their advantages and limitations. Two experiments conducted at PROTEAS in July 2016 and January 2018 were used to validate the model. Those experiments were simulated using the developed Modelica model. The comparison between the model’s estimates and the test measurements produce a relatively good agreement, particularly in steady state. In addition to presenting the results, the article discusses the lessons learned from this experimental comparison regarding the quality of the model, how to improve it, and what additional tests to perform to fully validate it.The acausal and object-oriented language Modelica was chosen to develop the overall system-level model of the Cyprus Institute’s Concentrating Solar Power (CSP) and Desalination of Sea Water (DSW) proof-of-concept at the Platform for Research, Observation, and Technological Applications in Solar Energy (PROTEAS) facility in Cyprus. This model builds upon the system level and component models that are part of SolarTherm, an open-source Modelica library of concentrating solar thermal components, developed as part of the Australian Solar Thermal Research Initiative (ASTRI). The article describes the practical ad-hoc approaches used in modelling the components of the CSP-DSW in detail, explaining the reasons for their selection, their advantages and limitations. Two experiments conducted at PROTEAS in July 2016 and January 2018 were used to validate the model. Those experiments were simulated using the developed Modelica model. The comparison between the model’s estimates and the test measurements produce a r...
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