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CSPonD Demonstrative Project: Start-up Process of a 25 kW Prototype

机译:CSPOND演示项目:25 KW原型的启动过程

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The current concept of commercial concentrated solar power (CSP) plants, based on the concept of a solar field, receiver, storage and power block, experienced significant growth in the past decades. The power block is the most well know part of the plant, while solar field depends on the receiver technology. The dominant receiver technologies are parabolic troughs and central towers. Most thermal energy storage (TES) relies on two tanks of molten salts, one hot and one cold serviced by pumps and piping systems. In spite of the technical development level achieved by these systems, efficiency is limited, mainly caused by thermal losses in piping, parasitic losses due to electric tracing and pumping and receiver limitations. In order to mitigate the these issues, a new concept called Concentrated Solar Power on Demand (CSPonD), was developed, consisting of a direct absorption Solar Salt CSP receiver which simultaneously acts as TES tank. Currently, in the frame of the flagship collaborative project between the Masdar Institute (UAE) and the Massachusetts Institute of Technology (USA) a 25 kW demonstrative prototype is in its final building phase at the Masdar Institute Solar Platform. The present paper, explains the demonstration prototype based on the CSPonD concept, with emphasis on the planned start-up process for the facility.
机译:基于太阳能场,接收器,储存和动力块的概念,商业集中太阳能(CSP)植物的目前的概念在过去几十年中经历了显着的增长。电源块是植物最熟悉的一部分,而太阳能场取决于接收器技术。主导的接收器技术是抛物面低谷和中塔。大多数热能储存(TES)依赖于两个熔盐的罐,一次热和一个冷,由泵和管道系统提供服务。尽管这些系统实现的技术开发水平,效率是有限的,主要是由管道的热损失引起的,由于电追踪和泵送和接收机限制而引起的寄生损失。为了减轻这些问题,开发了一种新的概念,称为集中的太阳能(CSPOND),由直接吸收太阳能盐CSP接收器组成,该接收器同时用作TES罐。目前,在马斯达尔研究所(阿联酋)与马萨诸塞州技术研究所(美国)之间的旗舰协作项目框架中,25千瓦的示范原型是在马斯达尔研究所太阳能平台的最终建设阶段。本文介绍了基于CSPOND概念的示范原型,重点是该设施的计划启动过程。

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