Design and Proof of Concept of an Innovative Very High Temperature Ceramic Solar Absorber

被引:7
|
作者
Leray, Cedric [1 ,2 ]
Ferriere, Alain [1 ,2 ]
Toutant, Adrien [1 ,2 ]
Olalde, Gabriel [1 ,2 ]
Peroy, Jean-Yves [1 ,2 ]
Chereau, Patrick [3 ]
Ferrato, Marc [3 ]
机构
[1] CNRS, PROMES, 7 Rue Four Solaire, F-66120 Font Romeu, France
[2] UPVD, 7 Rue Four Solaire, F-66120 Font Romeu, France
[3] Soc MERSEN BOOSTEC, F-65460 Bazet, France
关键词
D O I
10.1063/1.4984375
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Hybrid solar gas-turbine (HSGT) is an attractive technology to foster market penetration of CSP. HSGT offers some major advantages like for example high solar-to-electric conversion efficiency, reduced water requirement and low capital cost. A very high temperature solar receiver is needed when elevated solar share is claimed. A few research works, as reported by Karni et al. [8] and by Buck et al. [1], have been dedicated to solar receiver technologies able to deliver pressurized air at temperature above 750 degrees C. The present work focuses on research aiming at developing an efficient and reliable solar absorber able to provide pressurized air at temperature up to 1000 degrees C and more. A surface absorber technology is selected and a modular design of receiver is proposed in which each absorber module is made of BOOSTEC (R) SiC ceramic (silicon carbide) as bulk material with straight air channels inside. Early stage experimental works done at CNRS/PROMES on lab-scale absorbers showed that the thermo-mechanical behavior of this material is a critical issue, resulting in elevated probability of failure under severe conditions like large temperature gradient or steep variation of solar flux density in situations of cloud covering. This paper reports on recent progress made at CNRS/PROMES to address this critical issue. The design of the absorber has been revised and optimized according to thermo-mechanical numerical simulations, and an experimental proof of concept has been done on a pilot-scale absorber module at Themis solar tower facility.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] A design of selective solar absorber for high temperature applications
    AL-Rjoub, A.
    Rebouta, L.
    Costa, P.
    Barradas, N. P.
    Alves, E.
    Ferreira, P. J.
    Abderrafi, K.
    Matilainen, A.
    Pischow, K.
    SOLAR ENERGY, 2018, 172 : 177 - 183
  • [2] Experimental study of ceramic foams used as high temperature volumetric solar absorber
    Mey-Cloutier, S.
    Caliot, C.
    Kribus, A.
    Gray, Y.
    Flamant, G.
    SOLAR ENERGY, 2016, 136 : 226 - 235
  • [3] Experimental Evaluation of Volumetric Solar Absorbers - Ceramic Foam vs. an Innovative Rotary Disc Absorber Concept
    Zaversky, Fritz
    Sanchez, Marcelino
    Isabel Roldan, M.
    Avila-Marin, Antonio L.
    Fuessel, Alexander
    Adler, Joerg
    Knoch, Martin
    Dreitz, Andreas
    INTERNATIONAL CONFERENCE ON CONCENTRATING SOLAR POWER AND CHEMICAL ENERGY SYSTEMS (SOLARPACES 2017), 2018, 2033
  • [4] Design and Manufacture of the Prototype of an Innovative Pump for 'Proof of Concept' Test
    Ahmed, N. A.
    Day, T. R.
    MACHINE DESIGN AND MANUFACTURING ENGINEERING III, 2014, : 536 - 541
  • [5] High-temperature ceramic concept
    不详
    AEROSPACE ENGINEERING, 2001, 21 (07) : 32 - 34
  • [6] Optimal Design for an Innovative Very-High-Temperature Hybrid SAW Sensor
    Nicolay, Pascal
    Naumenko, Natalya
    2017 IEEE INTERNATIONAL ULTRASONICS SYMPOSIUM (IUS), 2017,
  • [7] Toward high-temperature thermal tolerance in solar selective absorber coatings: choosing high entropy ceramic HfNbTaTiZrN
    He, Cheng-Yu
    Gao, Xiang-Hu
    Yu, Dong-Mei
    Zhao, Shuai-Sheng
    Guo, Hui-Xia
    Liu, Gang
    JOURNAL OF MATERIALS CHEMISTRY A, 2021, 9 (37) : 21270 - 21280
  • [8] Spectral characterisation of high temperature solar absorber coatings
    Herding, Leslie
    Caron, Simon
    Nickich, Volker
    Sutter, Florian
    2018 7TH INTERNATIONAL ENERGY AND SUSTAINABILITY CONFERENCE (IESC), 2018,
  • [9] Optimization of high temperature SiC volumetric solar absorber
    Mey, S.
    Caliot, C.
    Flamant, G.
    Kribus, A.
    Gray, Y.
    PROCEEDINGS OF THE SOLARPACES 2013 INTERNATIONAL CONFERENCE, 2014, 49 : 478 - 487
  • [10] High temperature solar absorber material measurement technique
    Bonometti, JA
    Hawk, CW
    JOURNAL OF SOLAR ENERGY ENGINEERING-TRANSACTIONS OF THE ASME, 2001, 123 (03): : 216 - 219