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Designing capillary systems to enhance heat transfer in LS3 parabolic trough collectors for direct steam generation (DSG)

机译:设计毛细管系统以增强LS3抛物槽收集器中的热传递,以直接产生蒸汽(DSG)

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摘要

Direct steam generation (DSG) has been the main research line in parabolic trough technology for many years now, due to its potential to improve the global efficiency of the power generation process. Based on the research performed, there is sufficient knowledge to design a pre-commercial power plant between 3 MWe and 5 MWe. In this design, the process parameters (flow rate, pressure and temperature) are being chosen to assure a reliable and flexible operation. The present point in time, with preparations being made for the actual construction of such a plant, seems an ideal moment for proposals in order to optimize the process for future plants. This paper proposes to incorporate capillary systems on the inner surface of the absorber pipes for DSG. A capillary system enhances the solar energy transfer to the internal fluid flow because, on one hand, it supports the wetting of the inner surface of absorbers under a stratified environment - due to capillary pumping - and, on the other hand, it promotes vaporization - nucleate boiling in the case of a porous medium or thin film evaporation in the case of a micro-channeled pipe. This paper presents a description of the required properties and characteristics of a capillary system (etched micro-channels or a porous coating) to be integrated in LS3 receivers in accordance with operating temperature limitations and the imposed solar heat flux.
机译:多年来,直接蒸汽发电(DSG)一直是抛物线槽技术的主要研究领域,因为它具有提高发电过程的全球效率的潜力。根据进行的研究,有足够的知识来设计3 MWe和5 MWe之间的商业前发电厂。在此设计中,选择了工艺参数(流速,压力和温度)以确保可靠且灵活的操作。目前的时间点,正在为这种工厂的实际建设做准备,这似乎是提出建议的理想时机,以优化未来工厂的流程。本文建议在DSG吸收器管的内表面上合并毛细管系统。毛细管系统增强了太阳能向内部流体流动的传递,这是因为,一方面,它在分层环境下(由于毛细管泵送作用)支持吸收器内表面的润湿;另一方面,它促进了汽化-如果是多孔介质,则成核沸腾;如果是微通道管,则成薄膜蒸发。本文介绍了根据工作温度限制和施加的太阳热通量,要集成到LS3接收器中的毛细管系统(蚀刻的微通道或多孔涂层)所需的特性和特征。

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