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Study on functional integration of the SKA and the solar thermal power system

机译:SKA与太阳能热发电系统功能集成研究

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A separate building of solar power plants may take hundreds of millions of euros. The dish-stirling system is one of theconcentrating solar thermal power (CSP) technologies. Considering the dish-stirling system is structurally similar to aradio telescope, with its diameter similar to the antenna that is used in the SKA, It is assumed that a radio telescope andthe dish-stirling system could be functionally integrated in the design for time-based sharing, thus to reduce the SKA andthe dish-stirling system in the repeated construction costs on the reflecting surface, the two-axis tracking mechanism, thecivil engineering, and the roads, etc. Based on the above idea on the functional integration of devices, whilst takingaccount on the functional requirements of the SKA and the dish-stirling system, the Principle design of functionalintegration is conducted. In addition, the control system and multi-functional reflector regarding its processing andcoating technology is covered.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:单独建造一座太阳能发电厂可能要花费数亿欧元。碟式搅拌系统是集中式太阳能热电(CSP)技术之一。考虑到碟式搅拌系统在结构上类似于射电望远镜,其直径与SKA中使用的天线相似,因此假设射电望远镜和碟式搅拌系统可以在功能上集成到基于时间的设计中共享,从而减少了SKA和碟式搅拌系统在反射面,两轴跟踪机制,土木工程和道路等方面的重复建设成本。基于以上关于设备功能集成的想法,在考虑到SKA和菜式搅拌系统的功能要求的同时,进行了功能集成的原理设计。此外,还介绍了有关控制系统和多功能反射器的处理和镀膜技术。©(2012)版权所有,美国光电仪器工程师学会(SPIE)。摘要的下载仅允许个人使用。

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