Iguchi Manabu | Faculty Engineering Osaka University
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概要
関連著者
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Iguchi Manabu
Faculty Engineering Osaka University
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IGUCHI Manabu
Faculty of Engineering, Osaka University
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OHMI Munekazu
Faculty of Engineering, Osaka University
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Ohmi Munekazu
Faculty Engineering Osaka University
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Ohmi Munekazu
Faculty Of Engineering Osaka University
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Ohmi Tatsuya
Faculty Of Engineering Hokkaido University
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Morita Zen-ichiro
Faculty Of Engineering Osaka University
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Iguchi Manabu
Faculty Of Engineering Osaka University
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Sakairi Masatoshi
Faculty Of Engineering Hokkaido University
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Iguchi Manabu
Faculty Of Engineering Hokkaido University
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Kumagai Takehiko
Faculty Of Engineering Hokkaido University
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Iguchi M
Osaka Univ. Osaka Jpn
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Ohmi T
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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Ohmi Tatsuya
Hokkaido Univ. Sapporo Jpn
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URAHATA Ikuo
Faculty Engineering. Oasaka University
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Urahata Ikuo
Faculty Of Engineering Osaka University
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Ohmi M
Teikyo Univ. Utsunomiya Jpn
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Kawabata Hirotoshi
Faculty Of Engineering Osaka University
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AKAO Fujio
Faculty of Engineering, Osaka University
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AKAO Fujio
Kure Technical College
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Sakairi Masatoshi
Graduate School Of Engineering Hokkaido University
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Sakairi Masatoshi
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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Akao Fujio
Faculty Of Engineering Osaka University
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Tsujino Ryoji
Department Of Mechanical Engineering Faculty Of Engineering Setsunan University
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Iguchi Manabu
Div. Of Materials Sci. And Engineering Graduate School Of Engineering Hokkaido Univ.
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MORITA Zen-ichiro
Faculty of Engineering, Osaka University
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YAMAMOTO Fujio
Faculty of Engineering, Fukui University
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USUI Tateo
Faculty of Engineering, Osaka University
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Morita Zen-ichiro
Osaka University
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Usui Tateo
Faculty Of Engineering Osaka University
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Yamamoto Fujio
Faculty Of Engineering Fukui University
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ISHIDA Masashi
Graduate School of Engineering, Hokkaido University
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KOBAYASHI Kazuki
Graduate School of Engineering, Hokkaido University
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Ishida Masashi
Graduate School Of Engineering Hokkaido University
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Kobayashi Kazuki
Graduate School Of Engineering Hokkaido University
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Ilegbusi Olusegun
College Of Engineering And Computer Science University Of Central Florida
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Takeuchi Hiroaki
Graduate School Of Engineering Tohoku University
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OHMI Tatsuya
Faculty of Engineering, Hokkaido University
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Tani Jun-ichi
Graduate School, Osaka University
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Uemura Tomomasa
Faculty of Engineering Science, Osaka University
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Tokunaga Hirohiko
Kakogawa Works, Kobe Steel, Ltd.
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Tatemichi Hideo
Kakogawa Works, Kobe Steel, Ltd.
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TSUJINO Ryoji
Department of Mechanical Engineering, Setsunan University
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Tsujino Ryoji
Dep. Of Mechanical Engineering Fac. Of Engineering Setsunan Univ.
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Tsujino Ryoji
Faculty Of Engineering Setsunan University
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IGUCHI Manabu
Graduate School of Engineering, Hokkaido University
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Iguchi Manabu
Hokkaido Univ. Sapporo Jpn
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Iguchi Manabu
Graduate School Of Engineering Hokkaido University
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Song X
State Univ. New York Ny Usa
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Chihara Tomoyuki
Osaka University
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TAKANASHI Norihiro
Graduate School, Osaka University
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OGAWA Yuji
Steelmaking Process, Process Technology Laboratories, Technical Development Bureau, Nippon Steel Cor
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TOKUMITSU Naoki
Steelmaking Process, Process Technology Laboratories, Technical Development Bureau, Nippon Steel Cor
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Park G‐m
Chosun Univ. Kwangju Kor
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Ishikawa Masa-aki
Nuclear Eng. Res. Labo. The University Of Tokyo
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Fujii Youichi
Sharp Co.
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Ueda Yoshiaki
Graduate Student Osaka Prefecture University
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SONG Xiang-qun
Department of Mechanical Engineering, Fukui University
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SONG Xiang-Qun
Faculty of Engineering, Fukui University
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MURAI Yuichi
Faculty of Engineering, Fukui University
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Iguchi Manabu
Department Of Mechanical Engineering Fukui University
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Iguchi M
Osaka Univ. Suita Jpn
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OHMI Munekazu
Kure National College of Technology
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YAMADA Eiji
Graduate School of Science and Engineering, Yamagata University
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NOMURA Mitsuhiro
Graduate School of Engineering, Setsunan University
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Song X
Department Of Mechanical Engineering Fukui University
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MINAMI Haruyasu
Marushima Hydraulic Works, Ltd.
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Takeuchi Hiroaki
Faculty of Science, Kanagawa University
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Ooyabu Hirofumi
Graduate School Of Engineering Hokkaido University
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Ueda Yoshiaki
Graduate School Of Engineering Hokkaido University
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SAKAI Yusuke
Graduate School of Engineering, Hokkaido University
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Oke Takashi
Graduate School Of Engineering Hokkaido University
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Tokumitsu Naoki
Steelmaking Process Process Technology Laboratories Technical Development Bureau Nippon Steel Corpor
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TAKANO Makoto
Hitachi Metals, Ltd.
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Sakai Yusuke
Graduate School Of Engineering Hokkaido University
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Omura Masutaka
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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Nomura Mitsuhiro
Graduate School Of Engineering Setsunan University
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Takanashi Norihiro
Graduate School Osaka University
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Ogawa Yuji
Steelmaking Process Process Technology Laboratories Technical Development Bureau Nippon Steel Corpor
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Ogawa Yuji
Steel Research Laboraorties Nippon Steel Corporation
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Yamauchi Akira
Faculty Of Pharmaceutical Sciences Kanazawa University
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Yamamoto F
Fukui Univ. Fukui‐shi Jpn
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山本 富士夫
福井大学大学院工学研究科ファイバーアメニティ工学専攻
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Kurobe Jun
Steel And Technology Development Laboratories Nisshin Steel Co. Ltd.
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Kurobe Jun
Steel & Technology Development Laboratories Nisshin Steel Co. Ltd.
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UEMURA Tomomasa
Faculty of Engineering, Kansai University
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Ohmi Munekazu
Teikyo University
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Song X
Department Of Mechanical And Aerospace Engineering State University Of New York
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Ishida Masashi
Division Of Materials Science And Engineering Graduate School Of Engineering Hokkaido University
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MIURA Hiroshi
Sumitomo Special Metals Co. Ltd.
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MATSUBARA Shigeo
Steel and Technology Development Laboratories, Nisshin Steel Co., Ltd.
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NAKAMOTO Kazunari
Steel and Technology Development Laboratories, Nisshin Steel Co., Ltd.
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PARK Gil-Moon
College of Engineering, Chosun University
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MAEGAWA Kazunori
Daikin Kogyo Co.
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TANAKA Shigeru
Kokubu Works of Hitachi, Ltd.
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KAKEHASHI Koichiro
Kubota Ltd.
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MASUDA Tetsuya
Daikin Kogyo Co.
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SHINKAWA Masaki
Graduate School, Osaka University
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NAKAMURA Hideyo
Osaka University
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Minami Haruyasu
Marushima Hydraulic Works Ltd.
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Shinkawa Masaki
Graduate School Osaka University
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Matsubara Shigeo
Steel And Technology Development Laboratories Nisshin Steel Co. Ltd.
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Nakamoto Kazunari
Steel And Technology Development Laboratories Nisshin Steel Co. Ltd.
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Takano Makoto
Hitachi Metals Ltd.
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Yamada Eiji
Graduate School Of Science And Engineering Yamagata University
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Sakurai Masayuki
Hokkaido University
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Takeuchi Hiroaki
Faculty Of Engineering Osaka University
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ILEGBUSI Olusegun
College of Engineering and Computer Science, University of Central Florida
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NAGASE Yutaro
Graduate School of Engineering, Hokkaido University
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Nagase Yutaro
Graduate School Of Engineering Hokkaido University
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Omura Masutaka
Graduate School Of Engineering Hokkaido University
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Yamauchi Akira
Faculty Of Engineering Hokkaido University
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Tomida Hiroshi
Graduate School Of Systems Life Sciences Kyushu University
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SAITOH Yuhsuke
Graduate School of Engineering, Hokkaido University
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ILEBGUSI Olusegun
College of Engineering and Computer Science, University of Central Florida
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Ilebgusi Olusegun
College Of Engineering And Computer Science University Of Central Florida
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Yamada Eiji
Graduate School Osaka University:sharp Corporation
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Tanaka Shigeru
Kokubu Works Of Hitachi Ltd.
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Saitoh Yuhsuke
Graduate School Of Engineering Hokkaido University
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Iguchi Manabu
Faculty of Engineering, Hokkaido University
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SAITOH Yusuke
Graduate School of Engineering, Hokkaido University
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SHITARA Yutaro
Graduate School of Engineering, Hokkaido University
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Kumagai Takehiko
Faculty of Engineering, Hokkaido University
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宋 向群
Faculty of Engineering, Fukui University
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山本 富士夫
Faculty of Engineering, Fukui University
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井口 学
Faculty of Engineering, Osaka University
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Sugawara Naoya
Undergraduate Student, Osaka University
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Demoto Yoji
Graduate School, Osaka University
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Nozawa Kentarou
Graduate School, Osaka University
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Sumida Yutaka
Graduate Student, Osaka University
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Okada Ryusuke
Undergraduate Student, Osaka University
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Takeuchi Hiroaki
Graduate School, Osaka University
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MARUYAMA Asuka
Faculty of Engineering, Hokkaido University
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Demoto Youji
Graduate Student, Osaka University
著作論文
- X-ray Fluoroscopic Observation of Bubble Characteristics in a Molten Iron Bath
- デローニー三角分割に基づく新しいPIV相関アルゴリズムの提案
- Transient Powder-Laden Liquid Jet in a Pipe Flow
- The Structure of Turbulence in Pulsatile Pipe Flow Accompanied by Relaminarization
- Velocity Distributions in Laminar Phases for Oscillatory Rectangular Duct Flows with Occurrence of Turbulent Transition
- Time-Dependent Wall Shear Stress in a Duct with Arbitrary Cross-Section
- Laminar-Turbulent Transition and Velocity Profiles of Oscillatory Rectangular Duct Flows
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 5, Wall Shear Stress and Flow Pattern in a Laminar Flow
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part l, Effect of Pulsating Frequency on the Turbulent Flow Pattern
- A Experimental Study of Velocity Distribution and Inlet Length in the Inlet Region of Laminar Oscillatory Pipe Flow : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical, Properties
- Turbulent Slug and Velocity Field in the Inlet Region for Pulsatile Pipe Flow : Fluids Engineering
- Flow Patterns and Frictional Losses in an Oscillating Pipe Flow
- Transition to Turbulence in a Pulsatile Pipe Flow Part 1,Wave Forms and Distribution of Pulsatile Velocities near Transition Region
- Velocity Distribution and Reattachment Length in an Oscillatory Pipe Flow through a Plate Orifice
- Radial Propagation of Turbulence in Pulsatile Pipe Flow
- Cold Model Experiment on Fluid Flow Phenomena in Hot Dip Plating Bath
- Behavior of Turbulent Slugs in a Transient Pipe Flow
- Mean Flow Characteristics of a Pulsating Round Jet
- A Study on Velocity Profiles of Developing Laminar Oscillatory Flows in a Square Duct
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 7 Wall Shear Stress in a Turbulent Flow
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 2, Effect of Pulsating Frequency on the Turbulent Frictional Losses
- Transition to Turbulence in a Pulsatile Pipe Flow : Part 2,Characteristics of Reversing Flow Accompanied by Relaminarization
- Critical Reynolds Number in an Oscillating Pipe Flow
- Free Oscillatory Flow Across a Plate Orifice in U-Shaped Tube and the Resistance Law
- Transition to Turbulence in a Pulsatile Pipe Flow : 3rd Report, Flow Regimes and the Conditions Describing the Generation and Decay of Turbulence
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 3, General Representation of Turbulent Flow Pattern
- Analysis of Free Oscillating Flow in a U-Shaped Tube
- Turbulence Structure in a Relatively Low Frequency Pulsatile Pipe Flow : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 6 Frictional Losses In a Laminar Flow
- Loss Coefficients for Flows Through a Sudden Expansion and a Sudden Contraction Closely Placed : Series B : Fluid Engineering, Heat Transfer, Combustion, Power, Thermophysical Properties
- Experimental Study of Turbulence in a Pulsatile Pipe Flow
- Transition to Turbulence and Velocity Distribution in an Oscillating Pipe Flow
- Flow Pattern and Frictional Losses in Pulsating Pipe Flow : Part 4, General Representation of Turbulent Frictional Losses
- Mean Velocity and Turbulence of Water Flow in a Cylindrical Vessel Agitated by Bottom Air Injection
- Dealloying of Cu-Zn Alloy Microchannel Lining Layers for Producing Microporous Catalyst
- Mixing Time in a Cylindrical Bath Agitated by Gas Injection through a Multi-hole Nozzle
- Fabrication of Alumina Coating on Ni-Al Alloy Microchannel Wall for Catalyst Supporting
- Fabrication of Microchannels in Metallic Wire Bundles by a Sacrificial-Core Method
- Anodization of the Inner Wall of the Microchannel Formed in Sintered Aluminum Body
- Alkali Leaching of Ni-Al Alloy Microchannel Lining Layers
- Gas-Liquid Two-Phase Flow through at Orifice in Millimeter-Scale Rectangular Channel
- Fabrication of Ni-Al Alloy Transpiration-Cooling Device by Powder-Metallurgical Microchanneling Process
- Structure Control of Cu-Zn Microchannel Lining Layers with Electrochemical Dissolution
- Characteristics of Poorly-Wetted Two Spheres Penetrating into a Water Bath
- Fabrication of Free-Form Channels by a combined process of Metal Injection Molding and Sacrificial-Core Method
- Anodic Oxidation Behavior of Al-Zn Alloy Lining Layer Produced by a Sacrificial-Core Method
- Composition and Structure Changes in Al_3Ni_2 Microchannel Lining Layers by Alkali Leaching
- Filtration of Ni-Al Alloy Containing By-Product Alumina in Centrifugal Combustion Synthesis
- Cold Model Study of Spout Eye Area in the Presence of the Slag Layer Simulated by Low-Density Particles
- Bubble Behavior in Hg-Air Vertical Bubbling Jets in a Cylindrical Vessel.
- Evaluation of Critical Gas Flow Rate for the Entrapment of Slag Using a Water Model.
- Flow phenomena and heat transfer around a sphere submerged in water jet and bubbling jet.
- The characteristics of water and bubbling jets in a cylindrical vessel with bottom blowing.
- Heat Transfer between Bubbles and Liquid during Cold Gas Injection.
- The Effective Viscosity and Effective Diffusivity of Bubbles in an Air-Water Vertical Bubbling Jet.
- Heat Transfer between Bubbles and Molten Wood's Metal.
- Cold Model Experiments for Developing a New Velocimeter Applicable to Molten Metal.
- The flow field in air-water vertical bubbling jets in a cylindrical vessel.
- Bubble Characteristics in the Buoyancy Region of a Vertical Bubbling Jet.