Updated on 2026/03/07

写真a

 
KOBAYASHI KENICHI
 
Organization
Undergraduate School School of Science and Technology Associate Professor
Title
Associate Professor
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Degree

  • Doctor of Engineering ( 1992.3   Keio University )

Research Interests

  • エネルギー学一般

  • Energy Science General

Research Areas

  • Manufacturing technology (mechanical,electrical/electronic, chemical engineering) / Thermal engineering  / 機械工学/熱工学

  • Manufacturing technology (mechanical,electrical/electronic, chemical engineering) / Fluid engineering  / 流体工学(Fluid Mechanics)

  • Manufacturing technology (mechanical,electrical/electronic, chemical engineering) / Transfer phenomena and unit operations  / 伝熱学

  • Nanotechnology/Materials / Energy chemistry  / エネルギー学一般(Energy Science General)

Education

  • Keio University   Graduate School, Division of Science and Engineering   Mechanical Engineering

    1989.4 - 1992.3

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    Country/Region: Japan

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  • Keio University   Graduate School, Division of Science and Engineering

    - 1992

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  • Keio University   Faculty of Science and Engineering   Department of Mechanical Engineering

    1983.4 - 1987.3

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    Country/Region: Japan

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  • Keio University   Faculty of Engineering

    - 1987

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  • Keio University

    - 1987

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    Country/Region: Japan

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Research History

  • Meiji University   School of Science and Technology   Associate Professor

    2006.4

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  • Meiji University   School of Science and Technology   Lecturer

    1998.10 - 2006.3

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  • Tokyo Institute of Technology   School of Engineering   Research Assistant   Research Associate

    1992.4 - 1998.9

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Professional Memberships

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Committee Memberships

  • 日本機械学会   商議員  

    2017.3 - 2019.2   

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    Committee type:Academic society

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  • 日本設計工学会   理事  

    2013.6   

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    Committee type:Academic society

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  • 日本機械学会   商議員  

    2013.3 - 2015.2   

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    Committee type:Academic society

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  • 日本機械学会   商議員  

    2009.3 - 2011.2   

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    Committee type:Academic society

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  • 日本設計工学会   庶務会計部会 委員  

    1999   

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    Committee type:Academic society

    日本設計工学会

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  • 日本機械学会   熱工学部門・ソフトウェア委員会 幹事,JSME情報ネットワーク検討委員会ワーキンググループ委員,熱工学部門・cd-rom委員会 幹事,熱工学部門,第5回ASME/JSME熱工学会議・CD-ROM委員会幹事  

    1995 - 1998   

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    Committee type:Academic society

    日本機械学会

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  • 可視化情報学会   可視化情報センター設立準備委員,可視化情報センター委員会・委員,可視化情報センター委員会・幹事  

    1995 - 1996   

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    可視化情報学会

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  • 日本伝熱学会   JSME情報サービス推進委員会委員,情報サービス検討委員会 委員,熱工学部門・電子情報委員会 委員,評議員,ネットワークシステム化委員会幹事,企画部会委員,第38回日本伝熱シンポジウム実行委員会 委員  

    1995 - 1996   

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    Committee type:Academic society

    日本伝熱学会

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Papers

  • Convective heat transfer of laminar oscillatory flow between parallel plates Reviewed International journal

    29th International Symposium on Transport Phenomena (ISTP-29)   2018.11

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  • Effective thermal conductivity of oscillatory flow in horizontal pipe with temperature difference Reviewed International journal

    29th International Symposium on Transport Phenomena (ISTP-29)   2018.11

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  • Self-excited oscillatory flow around the stack of thermoacoustic prime mover Reviewed International journal

    29th International Symposium on Transport Phenomena (ISTP-29)   2018.11

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  • 日射が自動車内の温熱環境に及ぼす影響

    月刊 MATERIAL STAGE   18 ( 9 )   8 - 11   2018.9

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  • Excelでできる熱流体設計

    設計工学   ( 9 )   525 - 526   2017.9

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  • Direct Solar Thermal to Acoustic Energy Conversion for Thermoacoustic Prime Mover Reviewed International journal

    The First Pacific-Rim Thermal Engineering Conference (PRTEC)   2016.3

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  • Combined Forced Convection and Radiative Heat Transfer of Electronic Equipment with High Heat Flux Reviewed International journal

    The First Pacific-Rim Thermal Engineering Conference (PRTEC)   2016.3

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  • 太陽駆動熱音響原動機に適したスタックに関する研究 Reviewed

    日本冷凍空調学会論文集   32 ( 4 )   461 - 468   2015.12

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  • ショットピーニング加工面まわりの熱伝達 Reviewed

    ショットピーニング技術   27 ( 1 )   2 - 9   2015.1

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  • Drag Reduction of Thermally Stratified Flow in a Horizontal Pipe Reviewed International journal

    The 15th International Heat Transfer Conference IHTC-15   2014.8

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  • Performance of the prime mover of the thermoacoustic refrigerator driven by solar heat

    Yoshisane Nakamura, Kenichi P. Kobayashi

    The Third International Forum on Heat Transfer (IFHT2012)   202   2012.11

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  • Flow visualization of oscillatory flow between the parallel plates in the thermoacoustic system

    Hiroki Ishiyama, Kenichi P. Kobayashi

    The Third International Forum on Heat Transfer (IFHT2012)   203   2012.11

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  • Relation between aspect ratio and measurement accuracy for non-isotropic optical system in PIV

    Yuki KAMEOKA, Masashi IMAI, Kenichi P. KOBAYASHI

    8th International Symposium on Particle Image Velocimetry   PIV09-0072   2009

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  • Implementation of CMOS based digital camera for consumer to PIV

    Masashi IMAI, Yuki KAMEOKA, Kenichi P. KOBAYASHI

    8th International Symposium on Particle Image Velocimetry   PIV09-0066   2009

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  • VISUALIZATION AND MEASUREMENT OF DOWNWARD THERMAL PLUME

    Hiroki Watanabe, Kenichi P. KOBAYASHI

    13th International Symposium on Flow Visualization   158   2008

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  • IMPROVEMENT OF MEASUREMENT ACCURACYFOR THE VERTICAL VELOCITY COMPONENT OF MEAN FLOW WITH PIV

    Yuki Kameoka, Kenichi P. KOBAYASHI

    13th International Symposium on Flow Visualization   364   2008

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  • Effect of the Jet Diameter on the Experiment in Downburst

    Katsuya KUMAGAI, Mariko TAKEYA, Kenichi P. KOBAYASHI

    5th Pacific Symposium on Flow Visualization and Image Processing   PSFVIP-5-284   2005

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  • Investigation of Secondary Flow Structure with Thermally Stratified Flow in Pipe

    Shota SHIMADA, Kazuyuki USUI, Tomoki KUBO, Maiko SHIINA, Kenichi P. KOBAYASHI

    5th Pacific Symposium on Flow Visualization and Image Processing   PSFVIP-5-283   2005

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  • Temperature Field Visualization by Ultrasound Thermometry

    Hideki KOBAYASHI, Takuya TSUMAKI, Kenichi P. KOBAYASHI

    The 8th asian symposium on visualization   ID:79   2005

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  • Super-Mixing Combustion Enhanced by Resonance between Micro Shear Layer and Acoustic Excitation

    H. Yoshida*, M. Koda*, Y. Ooishi*, K. P. Kobayashi(専任講師), M. Saito*

    3rd Int. Symposium on Turbulence, Heat and Mass Transfer   22 ( 3 )   973-980 - 379   2000.4

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Books

  • 自動車熱マネジメント・空調技術

    ( Role: Joint author赤外線反射フィルムを用いた自動車内の温熱環境改善)

    サイエンス&テクノロジー  2019.5 

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    Responsible for pages:360-366   Language:Japanese  

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  • 伝熱工学の基礎と熱物性測定・熱対策事例

    ( Role: Joint author伝熱機構(伝導・対流・ふく射)について)

    R&D支援センター  2019.2 

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    Responsible for pages:3-8   Language:Japanese  

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  • 自動車室内の快適性向上に向けた材料開発と感性評価

    ( Role: Joint author熱線反射フィルムによる車室内の温熱環境改善)

    技術情報協会  2018.4 

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    Responsible for pages:228-234   Language:Japanese  

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  • 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

    ( Role: Joint author熱線反射フィルムによる車室内温熱環境改善)

    技術情報協会  2014.5 

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    Responsible for pages:637-639   Language:Japanese  

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  • −感覚の定量化,材料技術,デザイン,評価技術− 五感で捉える自動車内装・室内空間の快適化技術大全

    ( Role: Joint author自動車用遮熱ウィンドウフィルムによる熱線低下技術と車室内温熱環境)

    サイエンス&テクノロジー  2013.10 

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    Responsible for pages:373-380   Language:Japanese  

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  • エクセルとマウスでできる熱流体のシミュレーション 第2版

    岩井裕, 大村高弘, 小糸康志, 小林健一, 富村寿夫, 羽田光明, 平澤茂樹, 吉田英生( Role: Joint author)

    丸善  2010 

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  • エクセルとマウスでできる熱流体のシミュレーション

    岩井裕, 大村高弘, 小林健一, 富村寿夫, 羽田光明, 平澤茂樹, 吉田英生( Role: Joint author)

    丸善  2005 

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  • Turbulence Transport Phenomena across Stable Thermal Stratified Layer in a Rectangular Channel Duct

    TRANSPORT PHENOMENA IN TURBULENT FLOWS Theory. Experiment, and Numerical Simulation  1988 

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MISC

  • レーザ誘起蛍光法と粒子画像速度計測法を組み合わせた流れ場の二次元温度・速度同時計測法の高精度化

    小林健一, 齊藤正太郎

    明治大学科学技術研究所紀要   41 ( 4 )   29-46   2002

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  • How to Prepare a Manuscript Using Word Perfect

    Vol.103 №985   843-846   2000.12

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  • Fast Implementation of Particle Image Velocimetry with a SIMD Technique

    9th Int. Symposium on Flow Visualization   422   2000.8

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  • How to Prepare a Manuscript Using Microsoft Word

    Vol.103 №979   396-403   2000.6

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  • Responses of Low- and High-speed Streaks to Injection or Suction in a Minimal Flow Unit.

    Hideo Yoshida*, Kenichi P. Kobayashi(専任講師), Sigeru Tada*, Kazuhiro Higuchi*, Takashi Nozaki*, Ryozo Echigo*

    begell house, inc.TURBULENCE AND SHEAR FLOW-1   1368(1333-1338)   1999.9

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  • Isothemal Expansion Combustion Aiming at Effective Regeneration of Exergy-Ⅱ.A One-dimensional Analysis with Control of Streamwise Variation in Crosssectional Area

    M.Saito*, H.Yoshida*, K.P.Kobayashi(専任講師), R.Echigo*

    5th ASME/JSME Thermal Engng.Joint Conf,ASME   Ⅱ   1999.3

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  • Isothemal Expansion Combustion Aiming at Effective Regeneration of Exergy-Ⅰ.A Concept on New Combustion System and Its Energy/Exergy Analyses

    R.Echigo*, M.Saito*, H.Yoshida*, K.P.Kobayashi(専任講師)

    5th ASME/JSME Thermal Engng.Joint Conf,ASME   Ⅰ   1999.3

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  • A Study on Multithread Algorithm for Velocity Vector Calculation in PIV

    小林健一(専任講師), 山本和之*, 吉田英生*

    Thermal Science and Engineering, The Heat Transfer Society of Japan   Vol.6 №4 ( 4 )   17-26 - 26   1998.10

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  • 画像計測における相関計算のマルチスレッド処理による高速化

    6 ( 4 )   17 - 26   1998

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  • Turbulence Transport Phenomena across Stable Thermal Stratified Layer in a Rectangular Channel Duct

    K.Hishida*, T.Ogita*, K.Kobayashi(講師), M.Maeda*, S.Yokobori*

    TRANSPORT PHENOMENA IN TURBULENT FLOWS:Theory,Experiment,and Numerical Simulation,Hemisphere pub.   335-348   1998

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  • Measurement of the evolving large Eddies in axisymmetric jets from traversing camera by using the cross-correlation technique

    Kenichi P. Kobayashi, Kazuyuki Morishita, Yuzo Kato, Hideo Yoshida, Ryozo Echigo

    Journal of Flow Visualization and Image Processing   5 ( 2 )   105 - 113   1998

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    DOI: 10.1615/JFlowVisImageProc.v5.i2.20

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  • Heat and Mass Transfer on the Outer Surface of the Rotating Drum Applied to an Automotive Retarder

    K.P.Kobayashi(講師), H.Yoshida*, R.Echigo*, T.Kimoto*, Y.Ikai*, C.Yamada*

    Transport Phenomena in Thermal Science and Process Engineering   679-684   1997.12

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  • JSME Heat Transfer Handbook

    1997.11

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  • High-Efficiency Gas Turbine by Exergy Regenerating Combustion

    63巻611号B編   2531-2538   1997.7

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  • EXPERIMENTAL AND COMPUTATIONAL STUDY OF TURBULENT HEAT-TRANSFER CHARACTERISTICS IN SERRATED CHANNEL FLOW

    S OBI, KP KOBAYASHI, AM BETHANCOURT, H YOSHIDA, T ASANO, R ECHIGO

    INTERNATIONAL JOURNAL OF HEAT AND FLUID FLOW   16 ( 5 )   398 - 404   1995.10

  • WWWによるマルチ情報(解説記事)

    日本機械学会誌   Vol.98,№923   74   1995.10

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  • 火砕流の熱・流動機構(報告書)

    日産科学振興財団研究報告書   17   137-140   1994

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  • Turbulence Amplification by Specific External Regulation

    H.Yoshida*, K.Urakawa*, K.P.Kobayashi(講師), H.Kawakami*, R.Echigo*

    Proc.9th Symp.on Turbulent Shear Flows   20-4-1-20-4-6   1993.8

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  • Turbulence Amplification by Specific External Regulation Based on Time and Length Scales of Bursting : 2nd Report, Characteristics under the Maximum Amplification Condition

    Yoshida Hideo, Urakawa Kazushi, Kobayashi P. Kenichi, Kawakami Hideaki, Echigo Ryozo

    Transactions of the Japan Society of Mechanical Engineers. Series B.   59 ( 566 )   3056 - 3062   1993

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    Under the condition where turbulence is maximally amplified by the external perturbation, the time-averaged and phase-averaged flow characteristics have been investigated in detail. It has been shown that both the ejection-type and sweep-type motions occur simultaneously when the perturbation from the slits corresponds to blowing. The phase-averaged turbulent intensity demonstrates that there exists a relatively calm period as well as a relatively violent period during one cycle of vortex development excited by "specific external regulation" (SER). This fact indicates that bursting is fixed in space and phase-locked by the SER.

    DOI: 10.1299/kikaib.59.3056

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  • Turbulence Amplification by Specific External Regulation Based on Time and Length Scales of Bursting(lst Report, Basic Characteristics and Frequency Response to External Perturbation)

    Hideo Yoshida, Kazushi Urakawa, Hideaki Kawakami, Kenichi Kobayashi P, Ryozo Echigo

    Transactions of the Japan Society of Mechanical Engineers   59 ( 566 )   3048-3055 - 3055   1993

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    Bursting occurs randomly in space and time, but has identifiable scales. In the light of this fact, an external acoustic perturbation, the time and length scales of which were the same as those of the bursting were applied to the Couette flow formed between concentric annuli. By LDV measurements, turbulence response to external perturbation has been investigated, and marked turbulence amplification has been observed at the frequencies proportional to the Reynolds numbers. The pertubation which caused such resonance behavior was termed "specific external regulation".

    DOI: 10.1299/kikaib.59.3048

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  • Turbulence Amplification by Specific External Regulation Based on Time and Length Scales of Bursting : 1st Report, Basic Characteristics and Frequency Response to External Perturbation

    Yoshida Hideo, Urakawa Kazushi, Kawakami Hideaki, Kobayashi P. Kenichi, Echigo Ryozo

    Transactions of the Japan Society of Mechanical Engineers. Series B.   59 ( 566 )   3048 - 3055   1993

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    Language:Japanese   Publisher:The Japan Society of Mechanical Engineers  

    Bursting occurs randomly in space and time, but has identifiable scales. In the light of this fact, an external acoustic perturbation, the time and length scales of which were the same as those of the bursting were applied to the Couette flow formed between concentric annuli. By LDV measurements, turbulence response to external perturbation has been investigated, and marked turbulence amplification has been observed at the frequencies proportional to the Reynolds numbers. The pertubation which caused such resonance behavior was termed "specific external regulation".

    DOI: 10.1299/kikaib.59.3048

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  • Turbulence Amplification by Specific External Regulation Based on Time and Length Scales of Bursting(2nd Report, Characteristics under the Maximum Amplification Condition)

    Hideo Yoshida, Kazushi Urakawa, Kenichi Kobayashi P, Hideaki Kawakami, Ryozo Echigo

    Transactions of the Japan Society of Mecanical Engineers   59 ( 566 )   3056 - 3062   1993

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    Language:Japanese   Publisher:The Japan Society of Mechanical Engineers  

    Under the condition where turbulence is maximally amplified by the external perturbation, the time-averaged and phase-averaged flow characteristics have been investigated in detail. It has been shown that both the ejection-type and sweep-type motions occur simultaneously when the perturbation from the slits corresponds to blowing. The phase-averaged turbulent intensity demonstrates that there exists a relatively calm period as well as a relatively violent period during one cycle of vortex development excited by "specific external regulation" (SER). This fact indicates that bursting is fixed in space and phase-locked by the SER.

    DOI: 10.1299/kikaib.59.3056

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  • Turbulent Transport Phenomena across the Stable Thermal Stratified Layer Formed in a circular Pipe

    Kenichi KOBAYASHI, Koichi HISHIDA, Masanobu MAEDA

    Transactions of the Japan Society of Mechanical Engineers   58 ( 549 )   1536 - 1543   1992

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    The behavior of a thermally stratified mixing layer formed in a circular pipe has been experimentally investigated in order to estimate the thermal stress of the horizontal pipe wall caused by the emergency cooling of power plants. Two component velocities and the temperature of fluid are simultaneously measured by fiber LDVs and a hot film thermometer. Experiments were performed at the bulk Reynolds number of 7350 where the overall Richardson numbers ranging up to 2.46. Flow visualization at the cross section of the pipe and measurements of the turbulence characteristics in the fields of velocity and temperature showed the difference of flow structure between isothermal and thermally stratified conditions. Upper and lower layers mixed well in the isothermal condition, while in the thermally stratified conditions, there obviously existed a thermally stratified mixing layer where turbulent mixing was suppressed by the buoyancy effect. This thermally stratified mixing layer spread in the horizontal direction with increasing Ri number and generated secondary flow between the wall and this mixing layer.

    DOI: 10.1299/kikaib.58.1536

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  • Turbulent Transport Phenomena across the Stable Thermal Stratified Layer Formed in a Circular Pipe

    KOBAYASHI Kenichi, HISHIDA Koichi, MAEDA Masanobu

    Transactions of the Japan Society of Mechanical Engineers. Series B.   58 ( 549 )   1536 - 1543   1992

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    Language:Japanese   Publisher:The Japan Society of Mechanical Engineers  

    The behavior of a thermally stratified mixing layer formed in a circular pipe has been experimentally investigated in order to estimate the thermal stress of the horizontal pipe wall caused by the emergency cooling of power plants. Two component velocities and the temperature of fluid are simultaneously measured by fiber LDVs and a hot film thermometer. Experiments were performed at the bulk Reynolds number of 7350 where the overall Richardson numbers ranging up to 2.46. Flow visualization at the cross section of the pipe and measurements of the turbulence characteristics in the fields of velocity and temperature showed the difference of flow structure between isothermal and thermally stratified conditions. Upper and lower layers mixed well in the isothermal condition, while in the thermally stratified conditions, there obviously existed a thermally stratified mixing layer where turbulent mixing was suppressed by the buoyancy effect. This thermally stratified mixing layer spread in the horizontal direction with increasing Ri number and generated secondary flow between the wall and this mixing layer.

    DOI: 10.1299/kikaib.58.1536

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  • Ultrasonic Flow Visualization of Transient Behavior of Taylor Vortex Flow

    Y.Takeda*, K.Kobayashi(講師)

    Proc.2nd.Symp.Experimental and Numerical Flow Visualization,ASME   FED-Vol.128   231-237   1991.12

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  • Experimental Measurements of 2D Velocity Vector Field using Ultrasonic Velocity Profile Monitor(UVP)

    Y.Takeda*, K.Samec*, K.Kobayashi(講師)

    Proc.2nd.Symp.Experimental and Numerical Flow Visualization,ASME   FED-Vol.128   47-59   1991.12

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  • Time-series Measurements of Turbulent Flow Field using Image Processing System

    K.Kobayashi(講師), J.Sakakibara*, K.Hishida*, M.Maeda*

    Proc.2nd.Symp.Experimental and Numerical Flow Visualization,ASME   FED-Vol.128   155-162   1991.12

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  • Turbulence Transport Phenomena across Stable Thermal Stratified Layer in a Rectangular Channel Duct

    K.Hishida*, T.Ogita*, K.Kobayashi(講師), M.Maeda*, S.Yokobori*

    2nd Int.Symp.on Transport Phenomena in 'Turbulent Flows'   759-772   1987.10

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Presentations

  • 熱音響エンジンのマルチシリンダ化

    芳賀大亮, 木村 隆, 石山宗希, 小林健一

    日本機械学会関東学生会第52回学生員卒業研究発表講演会  2013.3 

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  • ショットピーニングによる粗面が乱流境界層へ与える影響

    若杉友斗, 河合裕紀, 田中悠太, 小林健一

    日本機械学会関東学生会第52回学生員卒業研究発表講演会  2013.3 

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  • 太陽熱で駆動する熱音響冷凍機のプライムムーバーの出力特性

    中村好翔, 野沢戒, 小林健一

    日本機械学会第15回スターリングサイクルシンポジウム  2012.11 

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  • 熱音響原動機の平行板スタック内往復流動の可視化計測

    若林廣大, 石山宗希, 小林健一

    日本機械学会第15回スターリングサイクルシンポジウム  2012.11 

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  • 安定温度成層化による管内流の圧力損失低減

    木村悠, 中島将太, 小林健一

    日本機械学会流体工学部門講演会  2012.11 

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  • 熱音響現象におけるスタック開口率がエネルギ変換効率に及ぼす影響

    江原拓真, 小林健一, 若林廣大

    日本機械学会関東学生会第51回学生員卒業研究発表講演会  2012.3 

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  • ショットピーニング加工を施した粗面による伝熱促進

    坂本昌隆, 高栖功瑛, 河合裕紀, 小林健一

    日本機械学会関東学生会第51回学生員卒業研究発表講演会  2012.3 

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  • 円管内安定温度成層流の断面構造に関する研究

    木村悠, 鈴木佑治, 中島将太, 小林健一

    日本機械学会関東学生会第51回学生員卒業研究発表講演会  2012.3 

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  • 太陽熱を利用した熱音響冷凍機のための熱交換器の開発

    中村好翔, 野沢戒, 小林健一

    日本機械学会関東学生会第51回学生員卒業研究発表講演会  2012.3 

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  • 円管内に形成される安定温度成層流の圧力損失測定

    中島将太, 鈴木佑治, 小林健一

    日本流体力学会年会2011  2011.9 

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  • 誘導加熱装置の移動による加熱領域の広範囲化

    石山宗希, 小林健一

    第48回日本伝熱シンポジウム  2011.6 

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  • 熱線反射フィルムによる自動車内の日射制御に関する研究

    大場秀悟, 小林健一

    第48回日本伝熱シンポジウム  2011.6 

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  • ショットピーニング加工を施した粗面の伝熱特性

    河合裕紀, 高栖功瑛, 小林健一

    第48回日本伝熱シンポジウム  2011.6 

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  • 円管内に形成される安定温度成層流の乱流抑制効果

    中島将太, 鈴木佑治, 小林健一

    第48回日本伝熱シンポジウム  2011.6 

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  • 誘導加熱装置の移動による加熱領域の広範囲化

    石山宗希, 吽野勇明, 小林健一

    日本機械学会関東学生会第50回学生員卒業研究発表講演会  2011.3 

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  • ショットピーニング加工を施した粗面の伝熱特性

    河合裕紀, 佐藤皓治, 小林健一

    日本機械学会関東学生会第50回学生員卒業研究発表講演会  2011.3 

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  • 円管内に形成される安定温度成層流の圧力損失測定

    中島将太, 関口夏未, 小林健一

    日本機械学会関東学生会第50回学生員卒業研究発表講演会  2011.3 

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  • 熱線反射フィルムによる日射を受ける車内の日射制御に関する研究

    大場秀悟, 小林健一

    日本機械学会関東学生会第50回学生員卒業研究発表講演会  2011.3 

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  • 熱音響冷凍機におけるエネルギフロー解析

    高橋諒司, 平塚善勝, 小林健一

    日本機械学会関東支部第16期総会講演会  2010.3 

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  • ショットピーニング加工を施された粗面を有する平板の熱伝達率測定

    高栖功瑛, 貝原賢一, 梅田克明, 小林健一

    日本機械学会関東学生会第49回学生員卒業研究発表講演会  2010.3 

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  • 低周波誘導加熱における被加熱材の熱挙動解析

    小原隆太郎, 小林健一

    日本機械学会関東支部第16期総会講演会  2010.3 

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  • 溶解炉におけるガス加熱と誘導加熱の伝熱特性

    内田 守, 小原隆太郎, 野澤 戒, 小林健一

    日本機械学会関東学生会第49回学生員卒業研究発表講演会  2010.3 

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  • 熱エネルギと音響エネルギの相互変換に関する研究

    黒須宏樹, 高橋諒司, 小林健一

    日本機械学会関東学生会第49回学生員卒業研究発表講演会  2010.3 

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  • Excel 2007による画像処理・可視化

    可視化情報  2008.10 

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  • 二次元PIVにおけるシリンドリカルレンズ系を用いた空間分解能の異方化

    亀岡祐輝, 小林健一

    可視化情報  2008.10 

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  • ダウンバースト現象における浮力の影響

    貝原賢一, 相良智弘, 渡辺裕樹, 小林健一

    日本機械学会関東学生会第47回学生員卒業研究発表講演会  2008.3 

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  • 超音波とCT を用いた流体内の温度場計測に関する研究

    小林英樹, 妻木拓也, 小林健一

    可視化情報  2005.7 

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  • Excelでできる熱流体シミュレーション(演習)

    日本機械学会熱工学部門 No. 05-5 講習会 熱設計の基礎と応用, (東京)  2005.7 

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  • EXCEL解析の最新情報」と「こんな使い方,あんな使い方

    日本機械学会熱工学部門特別セミナー EXCELで拓くビジュアルな数値解析の世界, (東京)  2004.12 

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  • 温度制御によるリチウムイオン二次電池の高効率化

    松本晋, 須藤達也, 小林健一

    日本機械学会熱工学コンファレンス2004講演論文集(仙台)  2004 

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  • 流れの三次元性を考慮した電子機器冷却用放熱器の高効率化

    外村洋平, 長坂信幸, 小林 健一

    日本機械学会熱工学コンファレンス2004講演論文集(仙台)  2004 

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  • 三次元CADと伝熱

    日本伝熱学会東北支部第42期春季講演会(仙台)  2003.4 

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  • 円筒型二次電池の充放電に及ぼす使用温度の影響

    小林健一, 小佐野純平, 山崎健太朗

    第39回日本伝熱シンポジウム講演論文集(札幌)  2002.6 

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  • フィン付き回転円筒の熱伝達機構

    小林健一,長坂信幸,小田金大介

    第39回日本伝熱シンポジウム講演論文集(札幌)  2002.6 

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  • Utilize the MMX Technology to Accelerate the Calculation of Particle Image Velocimetry

    2000.7 

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  • マルチメディアコンテンツの作成方法

    1999.12 

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  • サイバーラボ

    1998.8 

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  • 臨界点近傍における二酸化炭素中での放電現象に関する基礎的研究

    ◎吉田英生*, 中村聡一郎*, 古田基*, 小林健一(講師), 多田茂*, 越後亮三*

    1998.5 

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  • 直接数値シミュレーションによるミニマルフローユニットにおける壁乱流制御

    ◎吉田英生*, 樋口和宏*, 野崎貴司*, 多田茂*, 小林健一(講師), 越後亮三*

    1998.5 

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  • 等温・膨張燃焼と力学エネルギーへの変換/第2報:反応速度を考慮した一次元流路内燃焼の数値計算

    ◎齋藤元浩*, 吉田英生*, 小林健一(講師), 越後亮三*

    1997.11 

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  • マルチメディア技術を利用した熱工学研究の効果的プレゼンテーション

    ◎小林健一(講師), 河村洋*

    1997.11 

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  • 等温・膨張燃焼と力学エネルギーへの変換/第1報:一次元流路における理論解析

    ◎越後亮三*, 齋藤元浩*, 吉田英生*, 小林健一(講師)

    1997.11 

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  • 相関法による速度ベクトル算出プログラムのマルチスレッド処理による高速化

    ◎小林健一(講師), 山本和之*, 吉田英生*

    1997.10 

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  • マランゴニ効果を利用したマイクロアクチュエータに関する基礎的研究

    ◎吉田英生*, 郭建裕*, 小林健一(講師), 越後亮三*

    1997.5 

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  • インターネットで公開されている伝熱関連のデータベースの利用法に関する研究

    ◎小林健一(講師), 鳥井俊介*

    1997.5 

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  • サイバーラボラトリー

    1997.5 

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  • 永久磁石式渦電流リターダの熱伝達の促進

    ◎吉田英生*, 小林健一(講師), 越後亮三*, 伊海佳昭*, 山田忠治*

    1997.5 

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  • スパコン並みの計算をパソコンで―大型計算をPC上で行うためのハード&ソフト選び

    1997.3 

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  • 相関法を用いたラグランジュ的計測の乱流場への適用

    ◎森下和是*, 小林健一(講師), 吉田英生*, 越後亮三*

    1996.7 

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  • 流体不安定現象を利用した非平衡プラズマによるオゾン生成

    ◎吉田英生*, 西森顕*, 小林健一(講師), 古田基*, 越後亮三*

    1996.5 

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  • 対向流式熱交換器における熱電発電に関する研究

    ◎A.M.Bethancourt*, 越後亮三*, 小林健一(講師), 吉田英生*, 齋藤元浩*

    1996.5 

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  • Prediction of the Heat Transfer Characteristics in a Serrated Turbulent Channel by Using a ?2-?0 Model

    ◎A.M.Bethancourt*, K.P.Kobayashi(講師), H.Yoshida*, R.Echigo*, S.Obi*

    1995.5 

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  • 非平衡プラズマによるオゾン生成に関する研究

    ◎吉田英生*, 古田基*, 小林健一(講師), 越後亮三*, 見寄明男*

    1994.3 

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  • 鋸歯状ステップを有する二次元流路内乱流熱伝達の数値解析

    ◎小尾晋之介*, 小林健一(講師), 吉田英生*, 越後亮三*

    1993.11 

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  • 予混合平坦火災におけるすす濃度分布のCT計測

    ◎奥山正明*, 鈴木大介*, 小林健一(講師), 吉田英生*, 越後亮三*

    1993.5 

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  • バースティングの時間・空間スケールを考慮した外的統制による乱流の増幅

    ◎吉田英生*, 浦川和士*, 小林健一(講師), 川上英明*, 越後亮三*, 加藤裕造*

    1993.5 

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  • 相関法による円管内温度成層流の2次元・時系列計測

    ◎榊原潤*, 高田剛*, 小林健一(講師), 菱田公一*, 前田昌信*

    1991.7 

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  • 時系列画像情報による管内温度成層流の流動計測

    ◎榊原潤*, 高田剛*, 小林健一(講師), 菱田公一*, 前田昌信*

    1991.5 

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  • 円管内安定温度成層流の乱流熱輸送(熱輸送機構の流れ方向変化)

    ◎小林健一(講師), 菱田公一*, 前田昌信*

    1991.5 

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  • 円管内安定温度成層流の乱流熱輸送

    ◎小林健一(講師), 菱田公一*, 前田昌信*

    1989.5 

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  • 矩形断面を持つ管内安定温度成層流の乱流熱輸送(混合過程の流れ方向の変化)

    ◎荻田健之*, 小林健一(講師), 菱田公一*, 前田昌信*, 横堀誠一*

    1987.5 

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Works

  • 乱流伝熱基礎データ

    1995

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  • Data-Base on Turbulent Heart Transfer

    1995

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Awards

  • 日本機械学会、熱工学部門・貢献表彰

    1999  

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    Country/Region:Japan

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Research Projects

  • Turbulent Transport Phenomena across the Stable Thermal Stratified Layer

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  • The application of heat transfer Data-base.

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  • Experimental and Computational study on Turbulent Heat Transfer Characteristics on the Outer Surface of the Rotating Drum

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  • 温度成層流の乱流構造と熱移動現象の画像処理による解明

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    Grant type:Competitive

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  • 伝熱データベースの活用

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    Grant type:Competitive

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  • フィン付き回転ドラムの乱流熱伝達解析

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    Grant type:Competitive

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  • Coupling method ES and CFD

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  • Heat Transfer Argumentation of Shot-peened Surface

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  • Thermo Acoustic Engine

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