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Three-dimensional CFD modelling and thermal performance analysis of porous volumetric receivers coupled to solar concentration systems

机译:多孔体积接收器耦合太阳集中系统的三维CFD建模和热性能分析

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摘要

Porous volumetric receivers is a promising technology to improve the thermal performance of a new generation of concentrated solar power (CSP) plants. In this sense, this work addresses the Computational Fluid Dynamics (CFD) modelling and thermal performance analysis of porous volumetric receivers coupled to solar concentration systems. A cylindrical receiver element made of open-cell SiC ceramic foam was considered. The fluid flow and heat transfer processes in the porous media are modelled through volume averaged mass, momentum and energy conservation equations, considering the local thermal non-equilibrium (LTNE) approach, while the thermal radiation transfer is described by the P1 spherical harmonics method, using an open source software (OpenFOAM). An in-house algorithm based on the Monte Carlo Ray Tracing (MCRT) method was developed and coupled to the CFD mesh to model the propagation and absorption of solar radiation. The modelling of the receiver boundary conditions were improved, and a detailed analysis of a reference configuration of the receiver was conducted using a parabolic dish with a concentration ratio of 500 to generate the concentrated solar radiation field and a receiver element with diameter 5 cm, height 5 cm, pore size 3mm and porosity 0.9. The thermal power output, thermal efficiency, mean fluid temperature at the outlet and pressure drop of this reference configuration are 628.92 W, 85.46%, 474.22 K and 103.10 Pa, respectively. The use of receivers with high porosity and pores size increases the thermal efficiency slightly and decreases the pressure drop substantially. The convergent incidence of solar rays at the inlet of the receiver leads to high peaks of temperature in the porous structure and fluid, and a way to decrease these peaks is to design the concentration system or place the receiver in such way to obtain lower incidence angles at the inlet.
机译:多孔容积接收器是一种有前途的技术,可以改善新一代集中式太阳能(CSP)电厂的热性能。从这个意义上讲,这项工作解决了计算流体动力学(CFD)建模和耦合到太阳能集中系统的多孔容积接收器的热性能分析。考虑了由开孔SiC陶瓷泡沫制成的圆柱形接收器元件。考虑到局部热非平衡(LTNE)方法,通过体积平均质量,动量和能量守恒方程对多孔介质中的流体流动和传热过程进行建模,而热辐射传递通过P1球谐方法进行描述,使用开源软件(OpenFOAM)。开发了一种基于蒙特卡洛射线追踪(MCRT)方法的内部算法,并将其与CFD网格耦合以对太阳辐射的传播和吸收进行建模。改进了接收器边界条件的建模,并使用浓度比为500的抛物面形天线对接收器的参考配置进行了详细分析,以生成集中的太阳辐射场,并使用直径为5 cm,高度为5的接收器元件5厘米,孔径3毫米,孔隙度0.9。该参考配置的热功率输出,热效率,出口处的平均流体温度和压降分别为628.92 W,85.46%,474.22 K和103.10 Pa。使用具有高孔隙率和孔隙尺寸的接收器可以稍微提高热效率,并大大降低压降。太阳射线在接收器入口处的会聚入射会导致多孔结构和流体中温度升高,而降低这些峰值的一种方法是设计聚光系统或以这种方式放置接收器以获得更低的入射角在入口处。

著录项

  • 来源
    《Applied Energy》 |2019年第15期|113433.1-113433.15|共15页
  • 作者单位

    Univ Evora Inst Ciencias Terra Rua Romao Ramalho 59 P-7000671 Evora Portugal;

    Univ Evora Inst Ciencias Terra Rua Romao Ramalho 59 P-7000671 Evora Portugal|Univ Evora Dept Fis Escola Ciencias & Tecnol Rua Romao Ramalho 59 P-7000671 Evora Portugal;

    Univ Evora Inst Ciencias Terra Rua Romao Ramalho 59 P-7000671 Evora Portugal|Univ Evora Catedra Energias Renovaveis P-7002554 Evora Portugal;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Porous volumetric receiver; Solar concentration; Fluid flow; Heat transfer; Radiative transfer;

    机译:多孔容积接收器;太阳光流体流量;传播热量;辐射传递;

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