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Optimization of the optical particle properties for a high temperature solar particle receiver

机译:优化高温太阳粒子接收器的光学粒子特性

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摘要

A non-homogeneous slab of particle dispersion composed of two-layers at high temperature, submitted to a concentrated and collimated solar radiation flux with a reflective receiver back wall is considered as a model of a solar particle receiver. The Radiative Transfer Equation (RTE) is solved using a two-stream method and an appropriate hybrid modified Eddington-delta function approximation. The single particle optical properties are modeled using the Lorenz-Mie theory, the single particle phase function is approximated by the Henyey-Greenstein phase function. A Particle Swarm Optimization (PSO) algorithm is used to optimize the particle radius (0.1 μm ≤ r ≤ 100 urn), the volume fraction (1 × 10~(-7) ≤f_v≤1 × 10~(-4)) and the refractive index (2.0 ≤ n ≤ 4.5 and 0.0001 ≤ k ≤ 25) of an ideal theoretical material to use in a solar particle receiver. Single- and two-layer receivers with known temperature profiles were optimized to maximize the receiver efficiencies. Spectral selective behavior of the optimized refractive index is discussed with the influence of particle radii and volume fractions. The theoretical ideal optical properties found for the particles have given the maximum efficiency reachable by the studied receivers and have shown that an optimized single-layer receiver will perform as well as a two-layer receiver.
机译:高温下由两层组成的不均匀颗粒分散板,通过反射接收器后壁经受集中和准直的太阳辐射通量,被认为是太阳能颗粒接收器的模型。使用两流方法和适当的混合改进的爱丁顿-德尔塔函数逼近来求解辐射传递方程(RTE)。使用Lorenz-Mie理论对单个粒子的光学特性进行建模,通过Henyey-Greenstein相位函数来近似单个粒子的相位函数。粒子群优化(PSO)算法用于优化粒子半径(0.1μm≤r≤100 urn),体积分数(1×10〜(-7)≤f_v≤1×10〜(-4))和用于太阳能粒子接收器的理想理论材料的折射率(2.0≤n≤4.5和0.0001≤k≤25)​​。优化了具有已知温度曲线的单层和两层接收器,以最大化接收器效率。在粒子半径和体积分数的影响下,讨论了最佳折射率的光谱选择性行为。对于颗粒发现的理论上理想的光学性质赋予了所研究的接收器可达到的最大效率,并表明优化的单层接收器的性能将与两层接收器相同。

著录项

  • 来源
    《Solar Energy》 |2014年第1期|299-311|共13页
  • 作者单位

    Processes, Material and Solar Energy Laboratory, PROMES-CNRS, 7 rue du Four Solaire, 66120 Font-Romeu-Odeillo, France;

    Processes, Material and Solar Energy Laboratory, PROMES-CNRS, 7 rue du Four Solaire, 66120 Font-Romeu-Odeillo, France;

    Florida State University, Department of Mathematics, 1017 Academic Way, Tallahassee, FL, USA;

    Universite Paris-Est, Laboratoire de Modelisation et Simulation Multi Echelle, MSME UMR 8208 CNRS. 5 Bvd Descartes, 77454 Marne-la- Vallee, France;

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

    Solar particle receiver; Receiver efficiency; High temperature; Optimization; Particle-Swarm algorithm; Two-stream method;

    机译:太阳能粒子接收器;接收效率高温;优化;粒子群算法;二流法;

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