Optimization of heat transfer through heat carriers in Bio-H2 production using CFD simulation

被引:0
|
作者
Nakayama H. [1 ]
Kameyama M. [2 ]
Kamiuchi H. [2 ]
Dowaki K. [1 ]
机构
[1] Department of Industrial Administration, Graduate School of Science and Technology, Tokyo University of Science, 2641, Yamazaki, Chiba, Noda-shi
[2] Japan Blue Energy Co., Ltd.
关键词
Bio-H[!sub]2[!/sub; CFD modeling; Indirect biomass gasification;
D O I
10.3775/JIE.100.194
中图分类号
学科分类号
摘要
Hydrogen (H2) is one of the most promising secondary energy resources expected to contribute to the prevention of global warming. Bio-H2, which is derived from biomass feedstock, is more environmentally friendly than hydrogen synthesized from fossil fuels. In our indirect thermochemical processes with solid-gas reactions, the effective heat transfer, which is accomplished by circulation of alumina balls acting as heat carriers (HCs), is a critical issue, and it is necessary to achieve circulation of the heat transfer medium that maximizes production efficiency. In this study, the heat transfer performance of a small-scale indirect biomass gasification process to be promoted in the near future was investigated, focusing on heating of HCs using high-temperature gas to achieve optimum heat utilization in the preheating reactor. To continuously pyrolyze cedar feedstock in the subsequent pyrolysis reactor, HCs must be heated to the desired temperature in the preheater within a residence time. Even if high-temperature gas with sufficient calorific value flows into the preheater, if the heat transfer is not completed within the residence time, the HCs will not be heated to the target temperature and the sensible heat is discharged as tail gas. Therefore, we evaluated the operating conditions that promote the heat transfer during the residence time, focusing on the hot flue gas conditions. © 2021 Japan Institute of Energy. All rights reserved.
引用
收藏
页码:194 / 199
页数:5
相关论文
共 50 条
  • [21] Analysis of Heat Transfer in a Slim Double Skin Facade using CFD Simulation
    Choi, Haneul
    Kang, Kyungmo
    An, Youngsub
    Kim, Eunjin
    Lee, Yungyu
    Kim, Taeyeon
    PROCEEDINGS OF BUILDING SIMULATION 2019: 16TH CONFERENCE OF IBPSA, 2020, : 718 - 723
  • [22] Thermal DEM-CFD modeling and simulation of heat transfer through packed bed
    Tsory, Tal
    Ben-Jacob, Nir
    Brosh, Tamir
    Levy, Avi
    POWDER TECHNOLOGY, 2013, 244 : 52 - 60
  • [23] Simulation of heat transfer for biogas production
    Department of Biological and Environmental Engineering, Cornell University, Ithaca, NY 14853
    1600, 5991-6011 (2004):
  • [24] Heat transfer study on finned tube heat exchanger using CFD
    Rajeshkumar, M.
    Logesh, K.
    Thangaraj, M.
    Govindan, S.
    INTERNATIONAL JOURNAL OF AMBIENT ENERGY, 2021, 42 (03) : 239 - 243
  • [25] CFD simulation and optimization of ICEs exhaust heat recovery using different coolants and fin dimensions in heat exchanger
    Hatami, M.
    Ganji, D. D.
    Gorji-Bandpy, M.
    NEURAL COMPUTING & APPLICATIONS, 2014, 25 (7-8): : 2079 - 2090
  • [26] CFD simulation and optimization of ICEs exhaust heat recovery using different coolants and fin dimensions in heat exchanger
    M. Hatami
    D. D. Ganji
    M. Gorji-Bandpy
    Neural Computing and Applications, 2014, 25 : 2079 - 2090
  • [27] Coupled conjugate heat transfer and heat production in open-cell ceramic foams investigated using CFD
    Sinn, Christoph
    Pesch, Georg R.
    Thoeming, Jorg
    Kiewidt, Lars
    INTERNATIONAL JOURNAL OF HEAT AND MASS TRANSFER, 2019, 139 : 600 - 612
  • [28] Determination of the heat convection coefficient by CFD simulation of heat transfer processes at forced convection
    Kadirova, Seher Yusnieva
    Kolev, Zhivko Dimitrov
    7TH INTERNATIONAL CONFERENCE ON ENERGY EFFICIENCY AND AGRICULTURAL ENGINEERING (EE&AE), 2020,
  • [29] CFD Simulation of Heat Transfer and Pressure Drop in Compact Brazed Plate Heat Exchangers
    Gullapalli, Vijaya S.
    Sunden, Bengt
    HEAT TRANSFER ENGINEERING, 2014, 35 (04) : 358 - 366
  • [30] Heat transfer analysis of a non-Newtonian fluid flowing through a Plate Heat Exchanger using CFD
    Rios-Iribe, Erika Y.
    Cervantes-Gaxiola, Maritza E.
    Rubio-Castro, Eusiel
    Hernandez-Calderon, Oscar M.
    APPLIED THERMAL ENGINEERING, 2016, 101 : 262 - 272