東京大学生産技術研究所
罫news罫メンバー罫論文罫新聞記事等罫アクセス罫講義資料罫リンク罫コンタクト罫
論文


論文 Article
Last update: 2024-3

2024

  1. Mao, N., Nishimura, K., Gong, J., Takayashiki, M., Sciazko, A., Komatsu, Y., Tang, J., Shikazono, N.,
    "Prediction of heat and mass transfer inside 3D frost microstructure,"
    Applied Thermal Engineering, 122978 (2024).
    (doi:10.1016/j.applthermaleng.2024.122978 )

  2. Sciazko, A., Komatsu, Y., Shimura, T. and Shikazono, N.,
    "Prediction of electrode microstructure evolutions with physically constrained unsupervised image-to-image translation networks,"
    npj Comput. Mater. 10, 49.
    (doi:10.1038/s41524-024-01228-3 )

2023

  1. Ouyang, Z., Sciazko, A., Komatsu, Y., Nishimura, K. and Shikazono, N.,
    "Influence of transition metal elements on Ni migration in solid oxide cell fuel electrodes,"
    J. Electrochem. Soc., 170, 124511 (2023).
    (doi:10.1149/1945-7111/ad11b2 )

  2. Okabe,T., Tang, J., Nishimura, K. and Shikazono, N.,
    "Fabrication of Silver Iodide (AgI) Patterns via Photolithography and Its Application to the In-Situ Observation of Condensation Frosting,"
    Nanomaterials, 13 (23), 3035 (2023).
    (doi:10.3390/nano13233035 )

  3. Shimura, T., Komatsu, Y, He, A., Sciazko, A. and Shikazono, N.,
    "Estimating Degradations of La0.57Sr0.38Co0.2Fe0.8O3-δ Oxygen Diffusion Surface Exchange Coefficients by Effective Reaction Thickness,"
    J. Electrochem. Soc., 170, 114512 (2023).
    (doi:10.1149/1945-7111/ad07aa )

  4. Cui, D., Sciazko, A., Komatsu, Y., Nakamura, A., Hara, T., Wu, S., Xiao, R. and Shikazono, N.,
    "Three dimensional microstructures of carbon deposition on Ni-YSZ anodes under polarization,"
    J. Energy Chem., 87, pp. 359-367 (2023).
    (doi.org/10.1016/j.jechem.2023.08.035 )

  5. Lyu, Z., Wang, Y., Sciazko, A., Li, H., Komatsu, Y., Sun, Z., Sun, K., Shikazono, N., Han, M.,
    "Prediction of fuel cell performance degradation using a combined approach of machine learning and impedance spectroscopy,"
    J. Energy Chem., 87, pp. 32-41 (2023).
    (doi.org/10.1016/j.jechem.2023.08.028 )

  6. Miyawaki, K., Ikeda, S., Hiratsuka, K. and Shikazono, N.,
    "In situ measurement of circulation composition of refrigerant mixture in heat pump system with NIR absorption spectroscopy,"
    Int. J. Refrigeration, 150, pp. 1-8 (2023).
    (doi.org/10.1016/j.ijrefrig.2023.01.023 )

  7. Zhou, S., Liu, X., Yan, Z., Hara, S., Shikazono, N., Zhong Z.,
    "Kinetic Monte Carlo (KMC) Simulation of Sintering of Nickel Oxide-Yttria Stabilized Zirconia Composites: Model, Parameter Calibration and Validation,"
    Materials & Design, 232, 112094 (2023).
    (doi.org/10.1016/j.matdes.2023.112094 )

  8. Promsen, M., Komatsu, Y., Sciazko, A., Kaneko, S. and Shikazono, N.,
    "Power maximization and load range extension of solid oxide fuel cell operation by water cooling,"
    Energy, 276, 127512 (2023).
    (doi.org/10.1016/j.energy.2023.127512 )

  9. Shimura, T., Nagasawa, T., Shikazono, N. and Hanamura, K.,
    "Three-dimensional Numerical Simulation of Oxygen Isotope Transport under Polarization in Lanthanum Strontium Manganese - Yttria-Stabilized Zirconia Cathode of Solid Oxide Fuel Cell,"
    International Journal of Hydrogen Energy, 50 (48), pp. 19233-19247 (2023).
    (doi:10.1016/j.ijhydene.2023.01.349 )

  10. Sciazko, A., Komatsu, Y., Nakamura, A., Ouyang, Z., Hara, T. and Shikazono, N.,
    "3D microstructures of solid oxide fuel cell Ni-YSZ anodes with carbon deposition,"
    Chemical Engineering Journal, 460, 141680, (2023).
    (doi.org/10.1016/j.cej.2023.141680 )

  11. 鹿園直毅,
    "固体酸化物形セル燃料極三相界面のオペランド観察,"
    セラミックス,58 (2),pp. 79-82 (2023).

  12. Gong, J., Onishi, J., Komatsu, Y., Mao, N., Kametani, Y., Hasegawa, Y. and Shikazono, N.,
    "Heat Transfer and Pressure Loss Characteristics of an Offset Fin with Oblique Waves,"
    Int. J. Heat Mass Transf., 200, 123522 (2023).
    (doi.org/10.1016/j.ijheatmasstransfer.2022.123522 )

2022

  1. He, A., Gong, J., Onishi, J. and Shikazono, N.,
    "Three-dimensional Topology Optimization of Ni-YSZ Anode for Solid Oxide Fuel Cells via Multiphase Level-set Method,"
    Nano Energy, 103, 107817 (2022).
    (doi.org/10.1016/j.nanoen.2022.107817 )

  2. Takayashiki, M., Nishimura, K., Sciazko, A., Okabe, T., Taniguchi, J. and Shikazono, N.,
    "Three Dimensional Reconstruction of Frost Structure by Replica Method,"
    Int. J. Heat Mass Transf., 196, 123280 (2022).
    (doi.org/10.1016/j.ijheatmasstransfer.2022.123280 )

  3. 高屋敷昌弘,西村勝彦,Sciazko Anna,岡部貴雄,谷口淳,鹿園直毅,
    "レプリカ法による霜三次元構造の再構築,"
    日本冷凍空調学会論文集,22-07SI_OA, (2022).
    (doi:10.11322/tjsrae.22-07SI_OA )

  4. 宮脇皓亮,山岸鈴奈,Sciazko Anna,鹿園直毅,
    "空調機の冷媒分布予測のための長・短期記憶ネットワークの実用性評価,"
    日本冷凍空調学会論文集,22-09SI_OA, (2022).
    (doi:10.11322/tjsrae.22-09SI_OA )

  5. Selvam, K., Rokni, M. M., Komatsu, Y., Sciazko, A., Kaneko, S. and Shikazono, N.,
    "Design point analyses of solid oxide fuel cell - steam cycle combined system: Effects of fuel reforming and bottoming cycle steam parameters,"
    Int. J. Energy Research, pp. 1-20 (2022).
    (doi:10.1002/er.7886 )

  6. Yan, Z., He, A., Hara, S., Shikazono, N.,
    "Design and Optimization of Functionally Graded Electrodes for Solid Oxide Fuel Cells (SOFCs) by Mesoscale Modeling,"
    International Journal of Hydrogen Energy, 37, pp. 16610-16625 (2022).
    (doi:10.1016/j.ijhydene.2022.03.165 )

  7. 長澤剛, 志村敬彬, 鹿園直毅, 花村克悟,
    "酸素同位体ラベリングによるSOFCの空気極反応場と三次元微細構造の同時観測,"
    燃料電池, 21 (4), pp. 13-19 (2022).

  8. Inaba, Y., Sato, K., Kannari, N., Abe, H., Sciazko, A., Shikazono, N.,
    "Growth of Strontium-doped Lanthanum Chromium Manganite/Gadolinium-doped Ceria (LSCM/GDC) Nanocomposite Particles as Ni-free Solid Oxide Fuel Cell Anode Material,"
    燃料電池, 21 (4), pp. 86-90 (2022).

  9. Ouyang, Z., Komatsu, Y., Sciazko, A., Onishi, J., Nishimura, K. and Shikazono, N.,
    "Operando observations of active three phase boundary of patterned nickel - yttria stabilized zirconia electrode in solid oxide cell,"
    J. Power Sources, 529, 231228 (2022).
    (doi:10.1016/j.jpowsour.2022.231228 )

  10. Promsen, M., Selvam, K., Komatsu, Y., Sciazko, A., Kaneko, S. and Shikazono, N.,
    "Metallic PCM-integrated solid oxide fuel cell stack for operating range extension,"
    Energy Conversion and Management, 225, 115309 (2022).
    (doi:10.1016/j.enconman.2022.115309 )

  11. Sciazko, A., Komatsu, Y., Yokoi, R., Shimura, T. and Shikazono, N.,
    "Effects of mass fraction of La0.9Sr0.1Cr0.5Mn0.5O3-δ and Gd0.1Ce0.9O2-δ composite anodes for nickel free solid oxide fuel cells,"
    Journal of the European Ceramic Society, 42 (4), pp. 1556-1567, (2022).
    (doi:10.1016/j.jeurceramsoc.2021.11.039 )

  12. Chen, L., He, A., Zhao, J., Carmeliet, J., Kang, Q., Shikazono, N. and Tao, W.Q.,
    "Pore-scale modeling of complex transport phenomena in porous media,"
    Progress in Energy and Combustion Science, 88, 100968 (2022).
    (doi:10.1016/j.pecs.2021.100968 )

2021

  1. Komatsu, Y., Sciazko, A., Suzuki, Y., Ouyang, Z., Jiao, Z. and Shikazono, N.,
    "Operando observation of patterned nickel - gadolinium doped ceria solid oxide fuel cell anode,"
    J. Power Sources, 516, 230670 (2021).
    (doi:10.1016/j.jpowsour.2021.230670 )

  2. Liu, X., Zhou, S., Yan, Z., Zhong, Z., Shikazono, N. and Hara, S.,
    "Correlation between microstructures and macroscopic properties of nickel/yttria-stabilized zirconia (Ni-YSZ) anodes: Meso-scale modeling and deep learning with convolutional neural networks,"
    Energy and AI, 100122 (2021).
    (doi:10.1016/j.egyai.2021.100122 )

  3. Selvam, K., Komatsu, Y., Sciazko, A., Kaneko S. and Shikazono, N.,
    "Thermodynamic Analysis of 100% System Fuel Utilization Solid Oxide Fuel Cell (SOFC) System Fueled with Ammonia,"
    Energy Conversion and Managment, 249, 114839 (2021).
    (doi:10.1016/j.enconman.2021.114839 )

  4. He, A., Onishi, J., Gong J. and Shikazono, N.,
    "Three-dimensional Optimization of La0.6Sr0.4Co0.2Fe0.8O3 Cathode Microstructure with Particle Radius Constraint,"
    Electrochimica Acta, 398, 139287 (2021).
    (doi:10.1016/j.electacta.2021.139287 )

  5. Okuma, G., Miyaki, R., Shinobe, K., Sciazko, A., Shimura, T., Yan, Z., Hara, S., Ogashiwa, T., Shikazono, N. and Wakai, F.,
    "Anisotropic Microstructural Evolution and Coarsening in Free Sintering and Constrained Sintering of Metal Film by Using FIB-SEM Tomography,"
    Acta Materialia, 215, 117087 (2021).
    (doi:10.1016/actamat.2021.117087 )

  6. Chen, L., Shikazono, N., Tsutsumi, A.,
    "Thermodynamic Mechanism of Self-Heat Recuperative Heat Circulation System with Non-Isentropic Compression and Expansion for a Continuous Heating and Cooling Gas Cycle Process,"
    J. Chemical Engineering of Japan, 54 (6), pp. 313–323, (2021).
    (doi:10.1252/jcej.20we065 )

  7. Nagasawa, T., Shimura, T., Shikazono, N. and Hanamura, K.,
    "Distribution of Reaction Sites in SOFC Cathode through Oxygen Isotope Labeling with Three-dimensional Microstructural Analysis,"
    J. Electrochem. Soc., 168, 064506 (2021).
    (doi:10.1149/1945-7111/ac075f )

  8. 鹿園 直毅,
    「固体酸化物形燃料電池(SOFC)の電極構造解析」,
    マイクロ・ナノ熱工学の進展, 第2編,第12章,第3節, エヌ・ティー・エス, pp. 374-382 (2021).

  9. Sciazko, A., Komatsu, Y., Shimura, T. and Shikazono, N.,
    "Segmentation of Solid Oxide Cell Electrodes by Patch Convolutional Neural Network,"
    J. Electrochem. Soc., 168, 044504 (2021).
    (doi:10.1149/1945-7111/abef84 )

  10. Sciazko, A., Shimura, T., Komatsu, Y. and Shikazono, N.,
    "Ni-GDC and Ni-YSZ Electrodes Operated in Solid Oxide Electrolysis and Fuel Cell Modes,"
    J. Thermal Science and Technology, 16 (1), JTST0013 (2021).
    (doi:10.1299/jtst.2021jtst0013)

  11. Komatsu, Y., Sciazko, A. and Shikazono, N.,
    "Isostatic pressing of screen printed nickel-gadolinium doped ceria anodes on electrolyte-supported solid oxide fuel cells,"
    J. Power Sources, 485, 229317 (2021).
    (doi:10.1016/j.jpowsour.2020.229317 )

  12. Youn, Y., Lee C., Shikazono, N. and Kang, H.,
    "Theoretical and experimental study on liquid film thicknesses of unsteady slug flows in a capillary tube,"
    Int. J. Multiphase Flow, 134, 103470 (2021).
    (doi:10.1016/j.ijmultiphaseflow.2020.103470)

2020

  1. Promsen, M., Komatsu, Y., Sciazko, A., Kaneko, S. and Shikazono, N.,
    "Feasibility Study on Saturated Water Cooled Solid Oxide Fuel Cell Stack,"
    Applied Energy, 279, 115803 (2020).
    (doi:10.1016/j.apenergy.2020.115803 )

  2. Gong, J., Onishi, J., He, A., Kametani, Y., Hasegawa, Y. and Shikazono, N.,
    "Heat Transfer Enhancement and Pressure Loss in a Plate-Fin Heat Exchanger with V-shaped Oblique Wavy Surface,"
    Int. J. Heat Mass Transfer, 161, 120263 (2020).
    (doi:10.1016/j.ijheatmasstransfer.2020.120263 )

  3. He, A., Onishi, J., Gong, J. and Shikazono, N.,
    "Microstructure Optimization of Porous Mixed Ionic and Electronic Conducting Cathode for Solid Oxide Fuel Cells,"
    J. Power Sources, 478, 228771 (2020).
    (doi:10.1016/j.jpowsour.2020.228771 )

  4. Sciazko, A., Komatsu, Y., Shimura, T. and Shikazono, N.,
    "Multiscale Microstructural Evolutions of Nickel-Gadolinium Doped Ceria in Solid Oxide Fuel Cell Anode,"
    J. Power Sources, 478, 228710 (2020).
    (doi:10.1016/j.jpowsour.2020.228710 )

  5. Xiang, Y., Da, Y., Shikazono, N. and Jiao, Z.,
    "Quantitative Study on Solid Oxide Fuel Cell Anode Microstructure Stability Based on 3D Microstructure Reconstructions,"
    J. Power Sources, 477, 228653 (2020).
    (doi:10.1016/j.jpowsour.2020.228653 )

  6. Xiang, Y., Da, Y., Zhong, Z., Shikazono, N. and Jiao, Z.,
    "Thermo-mechanical Stress Analyses of Solid Oxide Fuel Cell Anode Microstructures in Three-Dimension,"
    International Journal of Hydrogen Energy, 45 (38), pp. 19791-19800 (2020).
    (doi:10.1016/j.ijhydene.2020.05.121 )

  7. 鹿園直毅,原祥太郎,Jiao Zhenjun,Yan Zilin,
    「固体酸化物燃料電池電極の構造変化過程の3D計測とシミュレーション」,セラミックス,55-7,pp. 488-492 (2020).

  8. Akama, R., Okabe, T., Sato, K., Inaba, Y., Shikazono, N., Sciazko, A. and Taniguchi, J.,
    "Fabrication of a micropatterned composite electrode for solid oxide fuel cells via ultraviolet nanoimprint lithography,"
    Microelectronic Engineering, 225, 111277, (2020).
    (doi:10.1016/j.mee.2020.111277 )

  9. Jiao, Z., Busso, E. and Shikazono, N.,
    "Influence of Polarization on Nickel Morphological Changes in Fuel Electrodes in Solid Oxide Cells,"
    J. Electrochem. Soc., 167, 024516 (2020).
    (doi:10.1149/1945-7111/ab6f5b )

  10. He, A., Onishi, J. and Shikazono, N.,
    "Optimization of Electrode-Electrolyte Interface Structure for Solid Oxide Fuel Cell Cathode,"
    J. Power Sources, 449, 227565 (2020).
    (doi:10.1016/j.jpowsour.2019.227565 )

2019

  1. Shimura, T., Miyazaki, Y., Nakayama, Y., Takeguchi, M. and Shikazono, N.
    "Characterization of Inter-diffusion Phase between Gadolinium-Doped Ceria and Yttria-Stabilized Zirconia during High-Temperature Sintering by In-situ and Ex-situ Transmission Electron Microscopy Observations,"
    Solid State Ionics, 342, 115058 (2019).
    (doi:10.1016/j.ssi.2019.115058 )

  2. Yan, Z., Hara, S., Shikazono, N., Negishi, W. and Kajihara, A.,
    "Microstructure Anisotropy of La0.6Sr0.4Co0.2Fe0.8O3-δ Film on Rigid Gd0.1Ce0.9O1.95 Substrate During Constrained Sintering,"
    Journal of the European Ceramic Society, 39, pp. 4850-4863 (2019).
    (doi:10.1016/j.jeurceramsoc.2019.07.004 )

  3. Yan, Z., He, A. Hara, S. and Shikazono, N.,
    "Modeling of Solid Oxide Fuel Cell (SOFC) Electrodes from Fabrication to Operation: Microstructure optimization via artificial neural networks and multi-objective genetic algorithms,"
    Energy Conversion and Management, 198, 111916 (2019).
    (doi:10.1016/j.enconman.2019.111916 )

  4. Onishi, J., Kametani, Y., Hasegawa, Y. and Shikazono, N.
    "Topology optimization of electrolyte-anode interfaces of solid oxide fuel cells using the adjoint method,"
    J. Electrochem. Soc., 166 (13), F876-F888 (2019).
    (doi:10.1149/2.0031913jes )

  5. Shimura, T., He, A. and Shikazono, N.
    "Evaluation of La0.57Sr0.38Co0.2Fe0.8O3-δ Electrode Performance Degradation Based on Three-Dimensional Microstructure Reconstruction and Electrochemical Simulation,"
    J. Electrochem. Soc., 166 (12), F821-F830 (2019).
    (doi:10.1149/2.1091912jes )

  6. Yokokawa, H., Suzuki, M., Yoda, M., Suto, T., Tomida, K., Hiwataasi, K., Shimazu, M., Kawakami, A., Sumi, H., Ohmori, M., Ryu, T., Mori, N., Iha, M., Yatsuzuka, S., Yamaji, K., Kishimoto, H., Develos-Bagarinao, K., Shimonosono, T., Sasaki, K., Taniguchi, S., Kawada, T., Muramatsu, M., Terada, K., Eguchi, K., Matsui, T., Iwai, H., Kishimoto, M., Shikazono, N., Mugikura, Y., Yamamoto, T., Yoshikawa, M., Yasumoto, K., Asano, K., Matsuzaki, Y., Sato, K., Somekawa T.
    "Achievements of NEDO Durability Projects on SOFC Stacks in the Light of Physicochemical Mechanisms,"
    Fuel Cells, 19 (4), pp. 311-339 (2019).
    (doi:10.1002/fuce.201800187 )

  7. 八束真一,新山泰徳,鹿園直毅,
    「液体ピストン蒸気エンジン」,自動車熱マネジメント・空調技術,サイエンス&テクノロジー株式会社, pp. 215-236 (2019).

  8. Shimura, T., Nagato, K. and Shikazono, N.,
    "Evaluation of Electrochemical Performance of Solid-Oxide Fuel Cell Anode with Pillar-Based Electrolyte Structures,"
    International Journal of Hydrogen Energy, 44 (23), pp. 12043-12056 (2019).
    (doi:10.1016/j.ijhydene.2019.03.112 )

  9. Yan, Z., He, A. Hara, S. and Shikazono, N.,
    "Modeling of Solid Oxide Fuel Cell (SOFC) Electrodes from Fabrication to Operation: Correlations between Microstructures and Electrochemical Performances,"
    Energy Conversion and Management, 190, pp. 1-13 (2019).
    (doi:10.1016/j.enconman.2019.04.002 )

  10. He, A., Shimura, T., Gong, J. and Shikazono, N.,
    "Numerical Simulation of La0.6Sr0.4Co0.2Fe0.8O3- Gd0.1Ce0.9O1.95 Composite Cathodes with Micro Pillars,"
    International Journal of Hydrogen Energy, 44 (13), pp. 6871-6885 (2019).
    (doi:10.1016/j.ijhydene.2019.01.171 )

  11. Nagato, K., Shintani, K., Shimura, T., Shikazono, N. and Nakao, M.
    "Magnetic Alignment of Anode Microstructure in Solid Oxide Fuel Cell,"
    J. Electrochem. Soc., 166 (2), F144-F148 (2019).
    (doi:10.1149/2.1071902jes )

  12. Sciazko, A., Miyahara, K., Komatsu, Y., Shimura, T., Jiao, Z. and Shikazono, N.
    "Influence of initial powder morphology on polarization characteristics of Nickel/Gadolinium-Doped-Ceria Solid Oxide Fuel Cells electrode,"
    J. Electrochem. Soc., 166(2), F44-F52 (2019).
    (doi:10.1149/2.0181902jes )

2018

  1. Youn, Y., Han, Y. and Shikazono, N.,
    "Liquid Film Thicknesses of Oscillating Slug Flows in a Capillary Tube,"
    Int. J. Heat Mass Transf., 124, pp.543-551 (2018).
    (doi:10.1016/j.ijheatmasstransfer.2018.03.102 )

  2. He, A., Gong, J. and Shikazono, N.,
    "Three dimensional electrochemical simulation of solid oxide fuel cell cathode based on microstructure reconstructed by marching cubes method,"
    Journal of Power Sources, 385, pp. 91-99 (2018).
    (doi:10.1016/j.jpowsour.2018.03.026 )

  3. Kim, Y. and Shikazono, N.,
    "Evaluation of electrochemical reaction mechanisms of La0.6Sr0.4CoO3-δ-Gd0.1Ce0.9O2-δ composite cathodes by 3D numerical simulation,"
    Solid State Ionics, 319, pp. 162-169 (2018).
    (doi.org/10.1016/j.ssi.2018.02.014 )

  4. Jiao, Z. and Shikazono, N.,
    "Prediction of Nickel Morphological Evolution in Composite Solid Oxide Fuel Cell Anode Using Modified Phase Field Model,"
    J. Electrochem. Soc., 165(2), F55-F63 (2018).
    (doi:10.1149/2.0681802jes )

  5. Yan, Z., Hara, S. and Shikazono, N.,
    "Towards a realistic prediction of sintering of solid oxide fuel cell electrodes: from tomography to discrete element and kinetic Monte Carlo simulations,"
    Scripta Materialia, 146, pp. 31-35 (2018).
    (doi:10.1016/j.scriptamat.2017.10.035 )

  6. 鹿園直毅,
    低エクセルギー損失社会を実現する熱交換器開発の最前線
    エレクトロヒート,No 220, pp. 53-58 (2018).

  7. Jiao, Z. and Shikazono, N.,
    "In operando optical study of active three phase boundary of Nickel-yttria stabilized zirconia solid oxide fuel cell anode under polarization,"
    Journal of Power Sources, 396, pp. 115-123 (2018).
    (doi:10.1016/j.jpowsour.2018.06.001 )

  8. Okabe, T., Kim, Y., Jiao, Z., Shikazono, N. and Taniguchi, J.,
    "Fabrication process for micropatterned ceramics via UV-nanoimprint lithography using UV-curable binder,"
    Japanese Journal of Applied Physics, 57, 106501 (2018).
    (doi:10.7567/JJAP.57.106501 )

2017

  1. Yan, Z., Hara, S., Kim, Y. and Shikazono, N.,
    "Homogeneity and representativeness analyses of solid oxide fuel cell cathode microstructures,"
    International Journal of Hydrogen Energy, 42 (51), pp. 30166-30178 (2017).
    (doi:10.1016/j.ijhydene.2017.10.096 )

  2. 村松憲志郎,福田健太郎,新山泰徳,野村重夫,八束真一,西島義明,鹿園直毅,
    「液体ピストン蒸気エンジンの開発」,
    自動車技術,Vol. 71, No. 10, pp. 70-75 (2017).

  3. He, A., Kim, Y. and Shikazono, N.,
    "Three-dimensional numerical simulation of solid oxide fuel cell cathode based on lattice Boltzmann method with sub-grid scale models,"
    International Journal of Hydrogen Energy, 42 (34), pp. 21886-21900 (2017).
    (doi:10.1016/j.ijhydene.2017.07.074 )

  4. Yokokawa, H., Hori, Y., Shigehisa, T., Suzuki, M., Inoue, S., Suto, T., Tomida, K., Shimazu, M., Kawakami, A., Sumi, H., Ohmori, M., Mori, N., Iha, T., Yamaji, K., Kishimoto, H., Develos-Bagarinao, K., Sasaki, K., Taniguchi, S., Kawada, T., Muramatsu, M., Terada, K., Eguchi, K., Matsui, T., Iwai, H., Kishimoto, M., Shikazono, N., Mugikura, Y., Yamamoto, T., Yoshikawa, M., Yasumoto, K., Asano, K., Matsuzaki, Y., Amaha, S., Somekawa, T.,
    "Recent Achievements of NEDO Durability Project with an Emphasis on Correlation Between Cathode Overpotential and Ohmic Loss,"
    Fuel Cells, 17(4), pp. 473-497 (2017).
    (DOI:10.1002/fuce.201600186)

  5. Shimura, T., Jiao, Z. and Shikazono, N.,
    "Polarization Characteristics and Microstructural Changes of Solid Oxide Fuel Cell and Solid Oxide Electrolysis Cell Fuel Electrodes,"
    J. Electrochem. Soc., 164(12), F1158-F1164 (2017).
    (doi:10.1149/2.1091712jes )

  6. Kim, Y. and Shikazono, N.,
    "Investigation of La0.6Sr0.4CoO3-δ-Gd0.1Ce0.9O2-δ Composite Cathodes with Different Volume Ratios by Three Dimensional Reconstruction,"
    Solid State Ionics, 309, pp. 77-85 (2017).
    (doi.org/10.1016/j.ssi.2017.07.010 )

  7. Jiao Z. and Shikazono, N.,
    "Study on the Effects of Discharge on Local Morphological Change of Nickel at Active Three-Phase-Boundary Using Patterned Nickel-film Electrode in Solid Oxide Fuel Cell Anode,"
    Acta Materialia, 135, pp. 124-131 (2017).
    (doi.org/10.1016/j.actamat.2017.05.051 )

  8. Yan, Z., Hara, S. and Shikazono, N.,
    "Effect of powder morphology on the microstructural characteristics of La0.6Sr0.4Co0.2Fe0.8O3 cathode: A Kinetic Monte Carlo investigation,"
    International Journal of Hydrogen Energy, 42 (17), pp. 12601-12614 (2017).
    (doi:10.1016/j.ijhydene.2017.03.136 )

  9. Vilcaez, J., Morad, S. and Shikazono, N.,
    "Pore-scale simulation of transport properties of carbonate rocks using FIB-SEM 3D microstructure: Implications for field scale solute transport simulations,"
    Natural Gas Science and Engineering, 42, pp. 13-22 (2017).
    (doi:10.1016/jngse.2017.02.044 )

  10. Yan, Z., Kim, Y. T., Hara, S. and Shikazono, N.,
    "Prediction of La0.6Sr0.4Co0.2Fe0.8O3 cathode microstructures during sintering: Kinetic Monte Carlo (KMC) simulations calibrated by artificial neural networks,"
    Journal of Power Sources, 346, pp. 103-112 (2017).
    (doi:10.1016/j.jpowsour.2017.02.029 )

  11. Shimura, T., Jiao, Z., Hara, S. and Shikazono, N.,
    "Investigation of Microstructural Change of Nickel-Yttria Stabilized Zirconia Anode during Oxidation and Reduction Based on Three Dimensional Reconstruction,"
    J. Electrochem. Soc., 164(2), F147-F153 (2017).
    (doi:10.1149/2.1181702jes )

  12. Kim, Y. T., Jiao, Z. and Shikazono, N.,
    "Evaluation of La0.6Sr0.4Co0.2Fe0.8O3 - Gd0.1Ce0.9O1.95 composite cathode with three dimensional microstructure reconstruction,"
    Journal of Power Sources, 342, pp. 787-795 (2017).
    (doi:10.1016/j.jpowsour.2016.12.113 )

  13. Kanno, H., Han, Y. and Shikazono, N.,
    "Experimental study on oscillating flow steam engine in a single micro tube,"
    Experimental Thermal and Fluid Science, 81, pp. 291-303 (2017).
    (doi:10.1016/j.expthermflusci.2016.10.027 )

2016

  1. Ishida, R., Youn, Y., Muramatsu, K., Kohara, K., Han, Y. and Shikazono, N.,
    "Heat Transfer and Flow Characteristics of Thermally Induced Two-Phase Oscillating Flow in Micro Tubes,"
    J. Thermal Science and Technology, 11 (3), 16-00404 (2016).
    (doi:10.1299/jtst.2016jtst0042 )

  2. Shimura, T., Jiao Z. and Shikazono, N.,
    "Dependence of solid oxide fuel cell electrode microstructure parameters on focused ion beam - scanning electron microscopy resolution,"
    International Journal of Hydrogen Energy, 41 (47), pp. 22373-22380 (2016).
    (doi:10.1016/j.ijhydene.2016.09.006 )

  3. 鹿園直毅,
    「固体酸化物形燃料電池(SOFC)の現状と課題」,
    オーム,第103巻,12月号,pp. 37-40 (2016).

  4. Zakrzewski, M., Komatsu, Y., Sciazko, A, Akiyama, T., Hashimoto, A., Shikazono, N., Kaneko, S., Kimijima, S., Szmyd, J. and Kobayashi, Y.,
    "Comprehensive Study on the Kinetics and Modelling of Superheated Steam Drying of Belchatow Lignite from Poland,"
    Mechanical Engineering Journal, 3 (5), 16-00365 (2016).
    (doi:10.1299/mej.16-00365 )

  5. Kanno, H. and Shikazono, N.,
    "Modeling Study on Two-phase Adiabatic Expansion in a Reciprocating Expander,"
    Int. J. Heat Mass Transf., 104, pp.142-148 (2017).
    (doi:10.1016/j.ijheatmasstransfer.2016.07.106 )

  6. Shimura, T., Jiao Z. and Shikazono, N.,
    "Evaluation of Nickel-Yttria Stabilized Zirconia Anode Degradation During Discharge Operation and Redox Cycles Operation by Electrochemical Calculation,"
    Journal of Power Sources, 330, pp. 149-155 (2016).
    (doi:10.1016/j.jpowsour.2016.09.006 )

  7. Sciazko, A, Komatsu, Y., Zakrzewski, M., Akiyama, T., Hashimoto, A., Shikazono, N., Kaneko, S., Kimijima, S., Szmyd, J. and Kobayashi, Y.,
    "Influence of Geological Variations on Lignite Drying Kinetics in Superheated Steam Atmosphere for Belchatow Deposit Located in the Central Poland,"
    Thermal Science, 20 (4), pp. 1185-1198 (2016).
    (doi:10.2298/TSCI151111107S )

  8. Jiao Z., Ueno, A., Suzuki, Y. and Shikazono, N.,
    "Study on the Influences of Reduction Temperature on Nickel-Yttria-Stabilized Zirconia Solid Oxide Fuel Cell Anode Using Nickel Oxide-Film Electrode,"
    Journal of Power Sources, 328, pp. 377-384 (2016).
    (doi:10.1016/j.jpowsour.2016.08.043 )

  9. Kanno, H. and Shikazono, N.,
    "Experimental Study on Two-phase Adiabatic Expansion in a Reciprocating Expander with Intake and Exhaust Processes,"
    Int. J. Heat Mass Transf., 102, pp.1004-1011 (2016).
    (doi:10.1016/j.ijheatmasstransfer.2016.06.081 )

  10. Komatsu, Y., Sciazko, A, Zakrzewski, M., Akiyama, T., Hashimoto, A., Shikazono, N., Kaneko, S., Kimijima, S., Szmyd, J. and Kobayashi, Y.,
    "Towards the improvement of thermal efficiency in lignite-fired power generation: Concerning the utilization of Polish lignite deposits in state-of -the IGCC technology,"
    Int. J. Energy Research (2016).
    (doi:10.1002/er.3548 )

  11. Yanagimoto, J., Wake, Y., Zeise, P., Mao H. and Shikazono, N.,
    "Design and Optimization of Stamping Process of Ultra-Thin Stainless Sheet into Bidirectionally Corrugated Shape for Finless High-Efficiency Heat Exchanger,"
    CIRP Annals - Manufacturing Technology, 65, pp. 289-292 (2016).
    (doi:10.1016/j.cirp.2016.04.127 )

  12. Sciazko, A, Komatsu, Y., Zakrzewski, M., Akiyama, T., Hashimoto, A., Shikazono, N., Kaneko, S., Kimijima, S., Szmyd, J. and Kobayashi, Y.,
    "Experimental Attempts to Investigate the Influence of Petrographic Properties on Drying Characteristics of Lignite in Superheated Steam Atmosphere,"
    Energies, 9(5), 371 (2016).
    (doi:10.3390/en9050371 )

  13. Jiao Z. and Shikazono, N.,
    "Study on 3D Reconstruction Size Effect on the Quantification of Solid Oxide Fuel Cell Nickel-Yttria-Stabilized-Zirconia Anode Microstructural Information Using Scanning Electron Microscopy-Focused Ion Beam Technique,"
    Science Bulletin, 305, pp. 1-7 (2016).
    (doi:10.1007/s11434-016-1044-8 )

  14. Youn, Y., Muramatsu, K., Han. Y. and Shikazono, N.,
    "The Effect of Bubble Deceleration on the Liquid Film Thickness in Micro Tubes,"
    Int. J. Heat Fluid Flow, 58, pp. 84-92 (2016).
    (doi:10.1016/j.ijheatfluidflow.2016.01.002 )

  15. Jiao Z. and Shikazono, N.,
    "Simulation of the reduction process of solid oxide fuel cell composite anode based on phase field method,"
    Journal of Power Sources, 305, pp. 10-16 (2016).
    (doi:10.1016/j.jpowsour.2015.11.061 )

2015

  1. Hara, S., Ohi, A. and Shikazono, N.,
    "Sintering Analysis of Sub-Micron-Sized Nickel Powders: Kinetic Monte Carlo Simulation Verified by FIB-SEM Reconstruction,"
    Journal of Power Sources, 276, pp. 105-112 (2015).
    (doi:10.1016/j.jpowsour.2014.11.110 )

  2. 鹿園直毅,焦震鈞,原祥太郎,
    「固体酸化物燃料電池の電極微細構造の3 次元計測とシミュレーション」
    分離技術,第45巻1号,pp. 49-55 (2015).

  3. Jiao, Z. and Shikazono, N.,
    "Quantitative Study on the Correlation Between Solid Oxide Fuel Cell Ni-YSZ Composite Anode Performance and Reduction Temperature Based on Three-dimensional Reconstruction,"
    J. Electrochem. Soc., 162(6), F571-F578 (2015).
    (doi:10.1149/2.0721506jes )

  4. Youn, Y., Muramatsu, K., Han. Y. and Shikazono, N.,
    "The Effect of Initial Flow Velocity on the Liquid Film Thickness in Micro Tube Accelerated Slug Flow,"
    Int. J. Multiphase Flow, 73, pp. 108-117 (2015).
    (doi:10.1016/j.ijmultiphaseflow.2015.03.006 )

  5. Han, Y., Kanno, H., Ahn, Y-J. and Shikazono, N.,
    "Measurement of Liquid Film Thickness in Micro Tube Annular Flow,"
    Int. J. Multiphase Flow, 73, pp. 264-274 (2015).
    (doi:10.1016/j.ijmultiphaseflow.2015.03.016 )

  6. Liu, S.-S., Jiao, Z., Shikazono, N., Matsumura, S. and Koyama, M.,
    "Observation of the Ni/YSZ Interface in a Conventional SOFC,"
    J. Electrochem. Soc., 162(7), F750-F754 (2015).
    (doi:10.1149/2.0591507jes )

  7. Kanno, H. and Shikazono, N.,
    "Experimental and Modeling Study on Adiabatic Two-phase Expansion in a Cylinder,"
    Int. J. Heat Mass Transf., 86, pp. 755-763 (2015).
    (doi:10.1016/j.ijheatmasstransfer.2015.02.059 )

  8. Muramatsu, K., Youn, Y., Han, Y., Hasegawa, Y. and Shikazono, N.,
    "Numerical Study on the Effect of Initial Flow Velocity on Liquid Film Thickness of Accelerated Slug Flow in a Micro Tube,"
    Int. J. Heat Fluid Flow, 54, pp. 77-86 (2015).
    (doi:10.1016/j.ijheatfluidflow.2015.04.005 )

  9. Yatsuzuka, S., Niiyama, Y., Fukuda, K., Muramatsu, K. and Shikazono, N.,
    "Experimental and Numerical Evaluation of Liquid-Piston Steam Engine,"
    Energy, 87, pp. 1-9 (2015).
    (doi:10.1016/j.energy.2015.03.115 )

2014

  1. 八束真一,小田修三,新山泰徳,鹿園直毅,
    「液体ピストン蒸気エンジンによる排気熱からの電力回収システム」,自動車排熱回生技術/搭載・実用化に向けたデバイス開発・システム化技術,サイエンス&テクノロジー株式会社, pp. 181-199 (2014).

  2. Kanno, H. and Shikazono, N.,
    "Thermodynamic Simulations of Rankine, Trilateral and Supercritical Cycles for Hot Water and Exhaust Gas Heat Recovery,"
    Mechanical Engineering Journal, 1 (5), p. TEP0046 (2014).
    (doi:10.1299/mej.2014tep0046 )

  3. 八束真一,新山泰徳,福田健太郎,鹿園直毅,
    液体ピストン蒸気エンジンの開発,未利用熱エネルギー活用の新開発と【採算性を重視した】熱省エネ新素材・新製品設計/採用のポイント,技術情報協会,pp. 491-497 (2014).

  4. Sun, X., Hasegawa, Y., Kohno, H., Jiao, Z., Hayakawa, K., Okita, K. and Shikazono, N.,
    "Calculation of Contact Angles at Triple Phase Boundary in Solid Oxide Fuel Cell Anode Using the Level Set Method,"
    Materials Characterization, 96, pp. 100-107 (2014).
    (doi:10.1016/j.matchar.2014.07.020 )

  5. 村松憲志郎,福田健太郎,新山泰徳,野村重夫,八束真一,西島義明,鹿園直毅,
    液体ピストン蒸気エンジンの開発,日本自動車技術会論文集,Vol. 45,No. 5, pp. 889-894 (2014) .

  6. Shimura, T., Jiao, Z., Hara, S. and Shikazono, N.,
    "Quantitative Analysis of SOFC Anode Microstructure Change During Redox Cycles,"
    Journal of Power Sources, 267, pp. 58-68 (2014).
    (doi:10.1016/j.jpowsour.2014.04.152)

  7. 八束真一,  村松憲志郎,  守本剛,  頼永宗男,  鈴木幸和,  鹿園直毅,
    非定常温度計測による液体ピストン蒸気エンジン加熱部相変化現象の解明,日本機械学会論文集,Vol. 80,No. 812, p. TEP0096 (2014) .

  8. Jiao, Z. and Shikazono, N.,
    "Simulation of Nickel Morphological and Crystal Structures Evolution in Solid Oxide Fuel Cell Anode Using Phase Field Method,"
    J. Electrochem. Soc., 161 (5), pp. F577-F582 (2014).
    (doi:10.1149/2.009405jes)

2013

  1. 八束真一 , 新山泰徳 , 福田健太郎 , 鹿園直毅,
    液体ピストン蒸気エンジン(液体ピストン蒸気エンジンの動作解析と性能評価),日本機械学会論文集, Vol. 79B, No. 808, pp. 2859-2872 (2013).

  2. Jiao, Z. and Shikazono, N.,
    "Study on the Influence of Current Collector on the Sudden Deterioration of Solid Oxide Fuel Cell Anode Performance,"
    J. Fuel Cell Sci. Technol 11(2), 021010 (2013).
    (doi:10.1115/1.4026087)

  3. 古山通久,山通久,石元孝佳,原祥太郎,小倉鉄平,河野晴彦,多田朋史,梅野宜崇,松村晶,鹿園直毅,
    電極の材料・構造設計に向けたマルチスケール・マルチフィジックスアプローチ,燃料電池,Vol. 13 No.2, pp. 40-45 (2013).

  4. Shikazono, N. and Kasagi, N.,
    "Three Dimensional Numerical Modelling of Ni-YSZ Anode," Solid Oxide Fuel Cells: From Materials to System Modeling, Meng Ni and Tim S. Zhao (ed.), ISBN 978-1-84973-654-1, pp. 200-218 (2013).

  5. 鹿園直毅,
    "エクセルギー損失削減に貢献する伝熱促進技術,"
    機能材料, 33 (7), pp. 13-19 (2013).
  6. Jiao, Z. and Shikazono, N.,
    "Simulation of Solid Oxide Fuel Cell Anode Microstructure Evolution Using Phase Field Method,"
    J. Electrochem. Soc., 160 (6), pp. F709-F715 (2013).
    (doi:10.1149/2.139306jes)

  7. 松崎良雄,中村和郎,染川貴亮,藤田顕二郎,山下敏,横川晴美,堀田照久,山地克彦,岸本治夫,吉川将洋,山本融,麦倉良啓,鹿園直毅,江口浩一,松井敏明,渡辺智,佐藤一永,橋田俊之,川田達也,佐々木一成,谷口俊輔,
    "中温作動筒状横縞形SOFCスタックの耐久性・信頼性評価に関する集学的取り組み,"
    セラミックス, 48 (3), pp. 185-190 (2013).

2012

  1. Jiao, Z., Lee, G., Shikazono, N. and Kasagi, N.,
    "Quantitative Study on the Correlation Between Solid Oxide Fuel Cell Ni-YSZ Composite Anode Performance and Sintering Temperature Based on Three Dimensional Reconstruction,"
    J. Electrochem. Soc., 159 (7), pp. F278-F286 (2012).
    (doi:10.1149/2.056207jes)

  2. Eguchi, K., Kamiuchi, N., Kim, J.-Y., Muroyama, H., Matsui, T., Kishimoto, M, Saito, M., Iwai, H., Shikazono, N., Kasagi, N., Akikusa, J., Eto, H., Ueno, D., Kawano, M. and Inagaki T.,
    "Microstructural change of Ni-GDC cermet anode in the electorlyte-supported disk-type SOFC upon daily start-up and shout-down operations,"
    Fuel Cells, 12(4), pp. 537-542 (2012).
    (DOI:10.1002/fuce.201100204)

  3. Ricco, P., Ottonelli, C., Hasegawa, Y. and Quadrio, M.
    "Changes in Turbulent Dissipation in a Channel Flow with Oscillating Walls,"
    Journal of Fluid Mechanics, Vol. 700, pp. 77-104 (2012).
    (doi:10.1017/jfm.2012.97)

  4. Frohnapfel, B., Hasegawa, Y. and Quadrio, M.
    "Money versus Time: Evaluation of Flow Control in terms of Energy Consumption and Convenience,"
    Journal of Fluid Mechanics, Vol. 700, pp. 406-418 (2012).
    (doi:10.1017/jfm.2012.139)

  5. 八束真一,福田健太郎,新山泰徳,萩原康正,西沢一敏,鹿園直毅,
    "液体ピストン蒸気エンジンの提案,"
    TEION KOUGAKU (J. Cryo. Super. Soc. Jpn.), 47 (1), pp. 58-64 (2012).
    (PDF 906 kbytes)

  6. Jiao, Z., Shikazono, N. and Kasagi, N.,
    "Quantitative Characterization of SOFC Nickel-YSZ Anode Microstructure Degradation Based on Focused-Ion-Beam 3D-Reconstruction Technique,"
    J. Electrochem. Soc., 159 (3), pp. B285-B291 (2012).
    (doi:10.1149/2.045203jes)

  7. Han, Y., Shikazono, N. and Kasagi, N.,
    "The Effect of Liquid Film Evaporation on Flow Boiling Heat Transfer in a Micro Tube,"
    Int. J. Heat and Mass Transfer, 55 (4), pp. 547-555 (2012).
    (doi:10.1016/j.ijheatmasstransfer.2011.11.005)

2011

  1. 鹿園直毅,
    "冷凍空調技術を取り巻く状況," 高効率冷凍・空調・給湯機器の最新技術,鹿園直毅 (監修.), ISBN 978-4-7813-0432-8, pp. 1-6 (2011).

  2. 鹿園直毅,
    "気液分離器," 高効率冷凍・空調・給湯機器の最新技術,鹿園直毅 (監修.), ISBN 978-4-7813-0432-8, pp. 202-209 (2011).

  3. Shikazono, N. and Han, Y.,
    "Liquid Film Thickness in Micro-scale Two-Phase Flow, Two Phase Flow, Phase Change and Numerical Modeling," Amimul Ahsan (ed.), ISBN 978-953-307-584-6, pp. 341-364 (2011).
    ( Liquid Film Thickness in Micro-Scale Two-Phase Flow)

  4. Han, Y. and Shikazono, N.,
    "Stabilization of Flow Boiling in a Micro Tube with Air Injection,"
    Experimental Thermal and Fluid Science, 35 (7), pp. 1255-1264 (2011).
    (PDF 925 kbytes, doi:10.1016/j.expthermflusci.2011.04.013)

  5. Jiao, Z., Shikazono, N. and Kasagi, N.,
    "Study on Degradation of Solid Oxide Fuel Cell Anode by using pure Nickel Electrode,"
    Journal of Power Sources, 196 (20), pp. 8366-8376 (2011).
    (PDF 1569 Mbytes, doi:10.1016/j.jpowsour.2011.06.069)

  6. Jiao, Z., Shikazono, N. and Kasagi, N.,
    "An Ultra-fast Fabrication Technique for Anode Support Solid Oxide Fuel Cells by Microwave,"
    Journal of Power Sources, 196 (13), pp. 5490-5493 (2011).
    (PDF 491 Mbytes, doi:10.1016/j.jpowsour.2011.02.040)

  7. Kanno, D., Shikazono, N., Takagi, N., Matsuzaki, K. and Kasagi, N.,
    "Evaluation of SOFC Anode Polarization Simulation using Three-Dimensional Microstructures Reconstructed by FIB Tomography ,"
    Electrochimica Acta, 56 (11), pp. 4015-4021 (2011).
    (PDF 728 kbytes, doi:10.1016/j.electacta.2011.02.010)

  8. 鹿園直毅,
    "低炭素社会実現のための空調設備−熱交換器の将来像−"
    冷凍, 2011, Vol. 86 No. 1000, pp. 100-105 (2011).
    (PDF 895 kbytes, )

  9. Matsuzaki, K., N., Shikazono, N. and Kasagi, N.,
    "Three-Dimensional Numerical Analysis of Mixed Ionic and Electronic Conducting Cathode Reconstructed by Focused Ion Beam Scanning Electron Microscope ,"
    Journal of Power Sources, 196 (6), pp. 3073-3082 (2011).
    (PDF 927 kbytes, doi:10.1016/j.jpowsour.2010.11.142)

  10. Han, Y.B., Shikazono, N. and Kasagi, N.,
    "Measurement of liquid film thickness in a micro parallel channel with interferometer and laser focus displacement meter ,"
    Int. J. Multiphase Flow, 37 (1), pp. 36-45 (2011).
    (PDF 1.63 Mbytes, doi:10.1016/j.ijmultiphaseflow.2010.08.010)

  11. Jiao, Z., Takagi, N., Shikazono, N. and Kasagi, N.,
    "Study on Local Morphological Changes of Nickel in Solid Oxide Fuel Cell Anode using Porous Ni pellet Electrode,"
    Journal of Power Sources, 196 (3), pp. 1019-1029 (2011).
    (PDF 3.11 Mbytes, doi:10.1016/j.jpowsour.2010.08.047)

2010

  1. 鹿園直毅,
    空調・給湯の省エネルギー技術の今後,
    軽金属,Vol. 60 No.11, pp. 559-564 (2010).

  2. Jiao, Z., Shikazono, N. and Kasagi, N.,
    "Comparison of Ultra-fast Microwave Sintering and Conventional Thermal Sintering in Manufacturing of Anode Support Solid Oxide Fuel Cell,"
    Journal of Power Sources, 195 (24), pp. 8019-8027  (2010).
    (PDF 1.62 Mbytes, doi:10.1016/j.jpowsour.2010.06.072)

  3. Han Y. and Shikazono N.,
    "Effect of Bubble Acceleration on the Liquid Film Thickness in Micro Tubes,"
    Int. J. Heat Fluid Flow, Vol. 31, Issue 4, pp. 630-639 (2010).
    (PDF264 kbytes, --> doi:10.1016/j.ijheatfluidflow.2010.02.002 )

  4. 鹿園直毅,菅野大輔,松崎勝久,高木紀和,澄野慎二,笠木伸英,
    SOFC燃料極の三次元構造再構築と過電圧予測,
    燃料電池,Vol. 9 No.4, pp. 97-102 (2010).
    (PDF 1.2 Mbytes)

  5. Shikazono, N., Kanno, D., Matsuzaki, K., Teshima, H., Sumino, S. and
    Kasagi, N., "Numerical Assessment of SOFC Anode Polarization Based on
    Three-Dimensional Model Microstructure Reconstructed from FIB-SEM Images,"J.
    Electrochem. Soc., 157 (5), pp. B665-B672 (2010).
    (PDF 1.2 Mbytes)--> doi:10.1149/1.3330568 )

  6. 菅野大輔,松崎勝久,手島久典,鹿園直毅,笠木伸英,
    局所平衡に基づく固体酸化物形燃料電池燃料極の3次元数値シミュレーション手法の開発,日本機械学会論文集, Vol. 76B, No. 763, pp. 418-419 (2010).
    (PDF 380 kbytes)

  7. 鹿園直毅,岩田博,度会和孝,
    表面張力を利用したコンパクト気液分離器の開発,日本混相流学会誌,24巻1号,pp. 29-36 (2010).
    (PDF 496 kbytes)

  8. Jiao, Z., Shikazono, N. and Kasagi, N.,
    "Performance of an anode support solid oxide fuel cell manufactured by microwave sintering,"
    Journal of Power Sources, 195 (1), pp. 151-154 (2010).
    (PDF 1.4 Mbytes, doi:10.1016/j.jpowsour.2009.07.009)

  9. Iwai, H., Shikazono, N., Matsui, T., Teshima, H., Kishimoto, M., Kishida, R., Hayashi, D., Matsuzaki, K., Kanno, D., Saito, M., Muroyama, H., Eguchi, K., Kasagi, N. and Yoshida, H.,
    "Quantification of SOFC Anode Microstructure Based on Dual Beam FIB-SEM Technique,"
    Journal of Power Sources, 195 (4) , pp. 955-961 (2010).
    (PDF 798 kbytes, doi:10.1016/j.jpowsour.2009.09.005)

2009

  1. 鹿園 直毅,坂本雄祐,山口悠,笠木伸英
    「固体酸化物形燃料電池の燃料極分極特性に及ぼす電極微細構造の影響」,
    日本機械学会論文集, Vol. 75B, No. 750, pp. 323-330 (2009).
    (PDF 848 kbytes)

  2. Shikazono, N., Sakamoto, Y., Yamaguchi, Y. and Kasagi, N.,
    "Microstructure and Polarization Characteristics of Anode Supported Tubular SOFC with Co-precipitated and Mechanically Mixed Ni-YSZ Anodes,"
    J. Power Sources, Vol. 193, pp. 530-540 (2009).
    (PDF 1.0 Mbytes)--> doi:10.1016/j.jpowsour.2009.04.031)

  3. Han Y. and Shikazono N.,
    "Measurement of liquid film thickness in micro square channel,"
    J. Multiphase Flow, Vol. 35, Issue 10, 896-903 (2009).
    (PDF 1 Mbytes, --> doi:10.1016/j.ijmultiphaseflow.2009.06.006)

  4. Han Y. and Shikazono N.,
    "Measurement of the liquid film thickness in micro tube slug flow"
    Int. J. Heat Fluid Flow, Vol. 30, Issue 5, pp. 842-853 (2009).
    (PDF3.6 Mbytes, --> doi:10.1016/j.ijheatfluidflow.2009.02.019 )

2008

  1. M. Suzuki, N. Shikazono, K. Fukagata and N. Kasagi,
    "Numerical analysis of coupled transport and reaction phenomena in an anode-supported flat-tube solid oxide fuel cell,"J. Power Sources, Vol. 180, pp. 29-40 (2008).
    (PDF 1.5 Mbytes, doi:10.1016 /j.jpowsour.2008.02.039)

  2. 東 隆平,鹿園 直毅,岩田 博,
    「表面張力を利用した小型気液分離器の開発」,
    日本機械学会論文集, Vol. 74B, No. 742, pp. 1340-1346 (2008).
    (PDF 448 kbytes)

  3. 鹿園 直毅,
    「小温度差熱利用技術の可能性」,
    季刊すまいろん,住宅総合研究財団,2008年夏号,pp. 54-58 (2008).
    (PDF 828 kbytes)

  4. Suzue, Y., Shikazono N. and Kasagi, N.,
    "Micro Modeling of Solid Oxide Fuel Cell Anode based on Stochastic Reconstruction,"
    J. Power Sources, Vol. 184, pp. 52-59 (2008).
    (PDF 1.6 Mbytes, doi:10.1016/j.jpowsour.2008.06.029)

2007

  1. 大川 大輔,鹿園 直毅,笠木 伸英,
    「空気再循環を行うガスタービン・固体酸化物形燃料電池ハイブリッドシステムの基本特性」,
    日本機械学会論文集, Vol. 73B, No. 730, pp. 1385-1392 (2007).
    PDF 678 kbytes)

  2. 鈴江 祥典,鹿園 直毅,笠木 伸英,
    「確率的再構築・格子ボルツマン法を用いた固体酸化物形燃料電池燃料極のモデリング」,
    日本機械学会論文集, Vol. 73B, No. 736, pp. 2557-2564 (2007).
    (PDF 1.1Mbytes)

2006

  1. 鹿園 直毅,
    「マイクロ熱交換器」,
    マイクロ・ナノ熱流体ハンドブック, 活用編, 第13節, エヌ・ティー・エス, pp. 467-477 (2006).

  2. 鹿園 直毅,大川 大輔,小林 道央,笠木 伸英,
    「細径管を用いた高性能フィンレス熱交換器の提案と基本特性の解明」,
    日本機械学会論文集, Vol. 72B, No. 717, pp. 1295-1302 (2006).
    (PDF 388 kbytes)

2005

  1. Tan, W.-H., Suzuki, Y., Kasagi, N., Shikazono, N., Furukawa, K. and Ushida, T.,
    "Lamination Micro Mixer for Micro-immunomagnetic Cell Sorting,"
    JSME Int. J., Ser. C, Vol. 48, No. 4, (2005), pp. 425-435.
    (PDF 1.2 Mbytes)

2004

  1. 鹿園 直毅,
    「表面張力を利用した二相流機器設計」,
    日本機械学会流体工学部門ニューズレター「流れ」,2004年12月号, Art. 5 (2004).
    (HTML (日本機械学会サイト))

 
(C) SHIKAZONO Lab. All Rights Reserved
HOME