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Modeling and sizing of a MW solar DSG plant

机译:MW太阳能DSG植物的建模与尺寸

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摘要

Direct Steam Generation (DSG) Concentrated Solar technology, based on Linear Fresnel Reflectors (LFR) and aimed at supplying saturated steam to industrial processes, is a promising application; nevertheless, nowadays few case studies and very few installations have been developed. A methodology for the design optimization of a MW solar DSG plant is presented in this article and applied to a real case study of a Brazilian tire manufacturing facility. A steady-state model, with spatial discretization of the ordinary equations, allows characterizing the physical phenomena such as pressure drop and heat transfer, and therefore to determine the pressure and specific enthalpy trend along the recirculation loop. For each receiver tube of the solar collectors, the occurring single or two-phase flow pattern is calculated based on specific empirical equations developed for evaporation in horizontal tubes. Two reference operating conditions have been identified for the present case study, at which the optimal field layout results to be a series connection of all the collectors, and the optimal nominal flow rate to avoid possible harmful operating conditions for the absorber tubes is 1.0 kg/s.
机译:直接蒸汽发电(DSG)集中的太阳能技术,基于线性菲涅耳反射器(LFR)并旨在向工业过程提供饱和蒸汽,是一个有前途的应用;尽管如此,目前几个案例研究和很少的装置已经开发出来。本文提出了一种用于MW太阳能DSG工厂的设计优化的方法,并应用于巴西轮胎制造设施的实际案例研究。具有普通方程的空间离散化的稳态模型允许表征诸如压降和传热等的物理现象,从而确定沿再循环回路的压力和特定的焓趋势。对于太阳能集热器的每个接收管,基于在水平管中蒸发的特定经验方程来计算出现的单相或两相流动图案。已经识别出目前案例研究的两个参考操作条件,其中最佳场布局结果是所有收集器的串联连接,以及最佳的标称流速,以避免吸收管可能的有害操作条件为1.0 kg / s。

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