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Small-scale linear Fresnel collector using air as heat transfer fluid: Experimental characterization

机译:小型线性菲涅耳收集器使用空气作为传热流体:实验表征

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Linear Fresnel collectors offer great potential for producing solar heat for industrial processes, both on a small and large scale. Thermal oil, pressurized water, or steam are used as heat transfer fluid in most applications, due to their suitable thermal properties. A heat exchanger is required for thermal power delivery to the user unless the heat transfer fluid is directly used as a medium in the industrial process. For those industrial applications using hot air as a process fluid, direct air heating inside linear Fresnel collectors can be an interesting solution aiming at simplification, cost reduction, and environmental and safety benefits.In this experimental study air is heated inside a commercial small-scale Linear Fresnel collector row of 79.2 m(2) active surface, demonstrating the viability of direct air heating up to 500 degrees C at its outlet. A commercial turbocharger pressurizes the air and reduces the blowing power. The purposely designed test campaign carried out in Madrid (Spain) during spring and summer seasons allowed the experimental contrast of a detailed 1D opto-thermal numerical model. Both static and purposely developed dynamic models of the receiver tube have been scrutinized and tested. The models and the experimental information allowed for the accurate characterization of both thermal losses and optical efficiency. (C) 2021 Elsevier Ltd. All rights reserved.
机译:线性菲涅耳收集器提供了生产工业过程的太阳能热量的巨大潜力,都在小而大规模。由于其合适的热性能,热油,加压水或蒸汽用作大多数应用中的传热流体。除非将传热流体直接用作工业过程中的介质,否则需要热交换器。对于使用热空气作为过程流体的工业应用,线性菲涅耳收集器内的直接空气加热可以是旨在简化,成本降低和环境和安全效益的有趣解决方案。在该实验研究空气中在商业小规模内被加热。线性菲涅耳收集器排79.2 m(2)有源表面,在其出口处展示直接空气的可行性高达500℃。商业涡轮增压器对空气加压并减少吹风。春季和夏季在马德里(西班牙)开展的故意设计的测试活动允许详细的1D光热数模型的实验对比。静态和故意开发的接收管的动态模型都被仔细审查和测试。模型和实验信息允许准确表征热损耗和光学效率。 (c)2021 elestvier有限公司保留所有权利。

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