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Technical and Economic Performance of Best Practice SHC Plants– A Compilation of IEA SHC Task 53 Results

机译:最佳实践SHC工厂的技术和经济表现 - IEA SHC任务的汇编53结果

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Assessing the performance of solar heating and cooling (SHC) systems in a common comparable format iscomplicated by the numerous alternative energy sources and design possibilities. A generalized technical andeconomic assessment methodology was developed and tested in the course of IEA SHC Task 53 and isimplemented into an excel tool called T53E4 Tool.Finally, IEA SHC Task 53 is ending and twenty-eight best practice plants are analyzed and compared in acomprehensive format. The systems represent a wide mixture of technologies, applications and locations. Allplants are analyzed and assessed regarding their technical and economic performance and a sensitivity analysis toidentify the importance of the main boundary conditions is performed.The results are showing interesting trends, (ⅰ) under certain conditions SHC can be cost competitive and showlevelized costs of energy below those of pre-defined reference systems, (ⅱ) from technical and environmentalpoint of view, most of the plants can reach non-renewable primary energy savings greater 50% and up to 95%,depending on their solar fraction (thermal or electrical).
机译:以常见的可比格式评估太阳能加热和冷却(SHC)系统的性能众多替代能源和设计可能性。广义的技术和在IEA SHC任务53的过程中开发和测试了经济评估方法,是实现为称为T53E4工具的Excel工具。最后,IEA SHC任务53结束,分析了二十八家最佳实践植物综合格式。该系统表示技术,应用和位置的广泛混合。全部分析并评估其技术和经济绩效以及敏感性分析的植物确定进行主要边界条件的重要性。结果表明有趣的趋势,(Ⅰ)在某些条件下,SHC可能具有成本竞争和展示预定义的参考系统的能量的稳定性成本,(Ⅱ)来自技术和环境观点来看,大多数植物可达到不可再生的主要能源节省50%,高达95%,取决于他们的太阳能分数(热或电气)。

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