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Researcher Information

last modified:2017/05/23

Professor TADA Yukio

Mail Laboratory Website

Faculty, Affiliation

Faculty of Mechanical Engineering, Institute of Science and Engineering

College and School Educational Field

Division of Mechanical Science and Engineering, Graduate School of Natural Science and Technology
Division of Innovative Technology and Science, Graduate School of Natural Science and Technology
School of Mechanical Engineering, College of Science and Engineering

Laboratory

Thermal Science Lab. TEL:076-234-4740 FAX:076-234-4743

Academic Background

【Academic background(Doctoral/Master's Degree)】
Kanazawa University Master 198503 Completed
【Academic background(Bachelor's Degree)】
Kanazawa University 198303
【Degree】
Doctor of Engineering

Career

Year & Month of Birth

Academic Society

Heat Transfer Society of Japan
Heat Transfer Society of Japan
The Japan Society of Mechanical Engineers
The Japan Society of Mechanical Engineers

The Japan Society of Mechanical Engineers
Japan Society of Refrigerating and Air Conditioning Engineers

The Institute of Electrostatics Japan

The Japan Institute of Metals



Award

○JSRAE Technology Award(1997/05/15)
○JSRAE Technology Award(1997/05/15)
○HTSJ Technology Award(1999/05/15)
○JSRAE Technology Award(2011/05/16)
○International Forum on Heat Transfer 2012, Best Presentation Award(2012/11/13)
○International Forum on Heat Transfer 2012, Best Presentation Award(2012/11/13)
○JSRAE Technology Award(2014/05/13)
○JSRAE Technology Award(2014/05/13)
○JSRAE Technology Award(2014/05/13)
○JSRAE Technology Award(2014/05/13)
○JSRAE Technology Award(2016/05/18)
○JSRAE Technology Award(2016/05/18)

Specialities

Thermal Engineering

Speciality Keywords

Micro-solidification, Active Control of Solidification, Heat Transfer Enhancement, Energy Conversion

Research Themes

Development of Active Heat Transfer Enhancement Techniques

The development of heat transfer enhancement and control techniques is the basis for efficient use of energy. Our laboratory is developing various heat transfer enhancement techniques, for example, enhancing convection heat transfer utilizing electric-field generated ionic wind and enhancing heat transfer by controlling electric-field generated gas-solid flows.

Heat Transfer and Injury during Freezing of Biological Tissue

Heat Transfer and Injury during Freezing of Biological Tissue We examine the freezing process of biological tissues and food products from the perspectives of micro-heat transfer and the mechanisms of freezing injury. More specifically, we construct freezing-unfreezing models in terms of aggregation of intra- and extracellular elements, and study hierarchical handling that links micro-heat transfer and life and death of cells and quality change of food products. We are also developing active control techniques for solidification.

Solidification of Multi-component Systems and Mico-scale Heat Transfer

Solidification of Multi-component Systems and Mico-scale Heat Transfer In the solidification of multicomponent systems such as material manufacture and freezing of biological materials and food products, there appears a solid-liquid coexisting zone (mush region) that spatially introduces excreted solution between areas of liquid and solid phases. We study the formation mechanism of mush regions and microfixation as a basis for the creation of new materials.

Development of Thermoacoustic Engine and Refrigerator

Books

Papers

  •  Heat Transfer Enhancement in a Convective Field by Applying Ionic Wind JOURNAL OF ENHANCED HEAT TRANSFER 4 1 71-86 1997/01
  •  Microsolidification Process in Multicomponent Systems MICROSCALE THERMOPHYSICAL ENGINEERING 6 4 253-266 2002/10
  •  Micro-behavior and Viability of Biological Cell during Freezing 71 702 602-609 2005/02
  •  Continuous Production of Ice Slurry by Solute Concentration with Ultrasonic Vibration 22 1 63-72 2005/03
  •  Heat Transfer and Solidification Process of Alloy Melt with Supercooling (II:Solidification model) H.Yoshioka, Y.Tada, Y.Hayashi Acta Materialia 54 3 765-771 2006/02

show all

  •  Heat Transfer and Viability of Cell during Freezing of Biological Tissue Proceedings of the Int. Conference on New Frontiers in Biomechanical Engineering 357-360 1997/08
  •  Simulation Experiment of Freezing of Biological Tissue Proceeding of 3rd World Congressof Biomechanics 180 1998/01
  •  Formation of Mushy Region in Freezing of Aqueous Solution Thermal Science and Engineering 6 1 147-151 1998/01
  •  Development of Concentration Field and Cryatal Growth in Mushy Zone Y. Tada, Y.Hayashi, H.Yoshioka Procceding of International Conference on Solid-Liquid Phase Change \'98 56-61 1998/08
  •  Micro-solidification Process of Multui-component System Proceeding of the International Conference on Heat Transfer and Transport Phenom 284-291 2000/10
  •  Micro-solidificaiton of Ternary Solution with Supercooling 9 1 1-12 2001/01
  •  Micro-Heat Transfer of Solidification of Alloy Melts with Supercooling 13 1 23-32 2001/01
  •  Growth of Mushy Zone during Solidification of Supercooled Alloy Melts (Experiment for primary arm spacing selection during two-dimensional solidification)  H.Yoshioka, Y.Tada, R.Yanagitani, Y.Hayashi Thermal Science and Engineering 22 2 34-41 2013/04
  •  Simulation Experiment on Freezing of Biological Cell by Utilizing Arttificial Membrane Thermal Science and Engineering 9 4 31-32 2001/07
  •  Microbehavior and Intracellular Ice Formation during Freezing of Biological Cell Proceeding of Twelfth International Heat Transfer Conference 249-254 2002/08
  •  Crystal Growth and its Morphorogy in the Mushy Zone H.Yoshioka, Y.Tada and Y.Hayashi ACTA MATERIALIA 52 6 1515-1523 2004/04
  •  Development of Deodorization System in Room Air by Photocatalyst with Condensation Process A.Takimoto, H. Onishi, K. Miyata, Y.Tada Thermal Science & Engineering 12 3 51-52 2004/07
  •  Microscale Heat and Mass Transfer during Freezing of Food Y.Tada, Y.Hayshi, A.Takimoto Proceedings of The First International Forum on Heat Transfer 2004/10
  •  Heat Transfer and Solidification Process of Alloy Melt with Supercooling (I:Experimental results) H.Yoshioka, Y.Tada, Y.Hayashi Acta Materialia 51 2 757-763 2006/02
  •  Trapped and Swept Phenomenon of Biological Cell during Freezing Y.Tada, A.Takimoto, H.Onishi and A.Oomori Proceeding of Cryomedicine 2004 29 2006/07
  •  Heat Transfer and Damage during Freezing of Food Y.Tada, Y.Hayshi and A.Takimoto JOURNAL OF BIOMECHANICS 39 Supplement 2006/08
  •  Active Control of Ice Formation by Utilizing Ultrasonic Irradiation Y.Tada, A.Takimoto, Y.Hayashi Proceedings of 13th International Heat Transfer Conference SOL05 2006/08
  •  Mechanism of Heat Transfer Enhancement in Gas-Solid Suspension Flow by Appling Electric Field Y.Tada, A.Takimoto, Y.Hayashi Proceedings of 17th International Symposium on Transport Phenomena 1C IV4 2006/09
  •  Heat Transfer Characteristics of Finless Tube Heat Exchanger under Frost Conditions with Mist Deposition H.Onishi, H.Nakano, Y.Tada and A.Takimoto Proc. of The Second International Forum on Heat Transfer paper No 241 2008/09
  •  Continuous Production of Ice Slurry by Utilizing Ultrasonic Irradiation Y.Tada, A.Takimoto, T.Fujita and H.Onishi Proc. of The Second International Forum on Heat Transfer paper No 154 2008/09
  •  Ice Formation and Its Removal Phenomena around Vertical Cooled Cylinder in Ultrasonic Field Y.Tada, A.Takimoto and T.Fujita, K.Kudou and H.Onishi Proc. of The Seventh JSME-KSME Thermal and Fluids Engineering Conference  paper No.D333 2008/10
  •  Heat Transfer Performance of Finless Flat Tube Heat Exchanger H.Onishi, H.kyono, Y.Tada and A.Takimoto Proc. of The Seventh JSME-KSME Thermal and Fluids Engineering Conference  paper No.A313 2008/10
  •  Effectiveness of Ultra-fine Structural Surface for Mist Cooling Heat Transfer Transaction of JSME 78 785 121 2012/01
  •  Effect of Ultrasonic Irradiation on Ice Formation in Biological Tissue Y.Tada, Y.Satou, M.Kurokawa, A.Takimoto and H.Onishi Proceeding of 14th International Heat Transfer Conference paper No.IHTC14-2280 2010/08
  •  Heat Transfer Performance of Finless Heat Exchager Using Airfoil-Shaped Tubes with Extended Leading or Trailing Edge Section H.Onishi, A. Yamamoto, Y.Tada and A.Takimoto Proceeding of 15th International Heat Transfer Conference paper No.IHTC15-9942 2014/08
  •  Heat Transfer Performance of Finless Flat Tube Heat Exchanger With Vortex Generator H.Onishi, H.Yonekura, Y.Tada and A.Takimoto Proceeding of 14th International Heat Transfer Conference paper No.IHTC14-2323 2010/08
  •  Heat Transfer Characteristics of Fin-and=Tube Heat Exchanger using Airfoil -Shaped Tube H.Onishi, H.Kikuchi, Y.Tada Proceedings of the 4th International Forum on Heat Transfer Paper No.IFHT2016-1990 2016/11/02
  •  Development of Thermoacoustic Engine by Utilizing Gas-Liquid Phase Change Y.Tada, H.Onishi, T,KYoden Proceedings of the 4th International Forum on Heat Transfer Paper No.IFHT2016-1880 2016/11/02
  •  MIcro-Solidification of Bi-Te Alloy Melts with Non-uniform Supercoolig H.Yoshioka, T,Kato, Y.Tada Proceedings of the 4th International Forum on Heat Transfer Paper No.IFHT2016-1850 2016/11/02
  •  Quantative Prediction of Freeze-Thaw Damage in Food by Using MIrcoscale Heat and Mass Transfer Model Y. Tada, N.Naka, H. Onishi Proceeding of the 27th International Symposium on Transport Phenomena Paper No.ISTP27-137 2016/09/22
  •  Selective Acoustic Amplification in Circular Pipe with Narrow Channels subject to Temperature Gradient T.Kyoden, Y.Tada, Y.Iida Proceedings of the 4th International Forum on Heat Transfer Paper No.IFHT2016-1873 2016/11/02
  •  Heat Transfer and Damage during Freezing and Thawing of Food Yukio Tada Journal of Heat Transfer Society of Japan 56 234 25 2017/01/01
  •  Cooling Performance and Sound Characterisitcs of Double-Loop Type ThermoacousticCooler with Branch Resonator T.Kyoden, Y.Tada, Y.Iida Transaction of the JSRE 32 4 441-451 2015/12
  •  Numerical Simulation of Thermoacoustic Cooling in Loop-tube Type Cooler with Branch Resonator T.Kyoden, Y.Tada, A.Takimoto, H.Onishi Transaction of the JSRE 30 4 341-352 2014/04
  •  Experimental Investigation on Heat Transfer Performance of Finless Flat Tube Heat Exchanger for Refrigerator under Frost Conditon 31 2 187-198 2014/06
  •  High Performance Photocatalyst Deodorization Method Activated by Visible Ray LED 30 1 13-19 2013/03
  •  Fine Particle and Bacteria Collection System by Negative Ions and Ozone with Mist Formation 29 1 23 2012/03
  •  Growth of Mushy Zone during Solidification of Supercooled Alloy Melts (Experiment for primary arm spacing selection during two-dimentional solidification) Thermal Science and Engineering 20 3 41-49 2012/07
  •  Thermoacoustic Cooling by Utilizing Traveling Wave in Looped Tube with Branch Resonator T.Kyoden, Y.Tada, A.Takimoto and H.Onishi Proc. of The Third International Forum on Heat Transfer paper No. 78 2012/11
  •  Effects of Amplitude-Modulated Ultrasonic Vibration on Supercooling of Water Y.Tada, A.Takimoto, Y.Yoshida and H.Onishi Proc. of The Third International Forum on Heat Transfer paper No. 75 2012/11
  •  Symmetric Airfoil-shaped Tube Heat Exchanger H.Onishi, H.Yonekura, H.Kikuchi, Y.Tada and A.Takimoto Proc. of The Third International Forum on Heat Transfer paper No. 126 2012/11

Conference Presentations

  • Heat Transfer Characteristics of Fin-and-ube Heat Exchanger using Airfoil -Shaped Tube(conference:The 4th International Forum on Heat Transfer)(2016/11/02)
  • Selective Acoustic Amplification in Circular Pipe with Narrow Channels subject to Temperature Gradient(conference:The 4th International Forum on Heat Transfer)(2016/11/02)
  • Development of Thermoacoustic Engine by Utilizing Gas-Liquid Phase Change(conference:The 4th International Forum on Heat Transfer)(2016/11/02)
  • Micro-Solidification of Bi-Te Alloy Melts with Non-uniform Supercoolig(conference:The 4th International Forum on Heat Transfer)(2016/11/02)
  • Quantative Prediction of Freeze-Thaw Damage in Food by using MIrcoscale Heat and Mass Transfer Model(conference:The 27th International Symposium on Transport Phenomena)(2016/09/22)

show all

  • Experimental Study on Refrigerant Distribution and Evaporation Characteristics of different diameter micro channels in airfoil-shaped Tube (conference:Thermal Engineering Conference 2016)(2016/10/02)
  • Performance Improvement of Thermoacoustic Engine by Utilizing Multi-mesh Type Regenerator (conference:Thermal Engineering Conference 2016)(2016/10/22)
  • Effect of Tube Arrangement on Heat Transfer Performance on Finless Flat Tube Heat Exchanger for Air Conditoner under Frost Condition(conference:53th National Heat Transfer Symposium of Japam)(2016/05/26)
  • Performance Improvement of Thermoacoustic Engine by Utilizing Multi-mesh Type Regenerator (conference:53th National Heat Transfer Symposium of Japam)(2016/05/26)
  • Active Control of Freezing of Biological Tissue by utilizing High-frequency Ultrasonic Vibration (2016/11/19)

Arts and Fieldwork

Patent

Theme to the desired joint research

Grant-in-Aid for Scientific Research

○「生体細胞の凍結・解凍におけるミクロ挙動と生存状態の推定」(1997-1997) 
○「生体細胞の凍結・解凍におけるミクロ挙動と生存状態の推定」(1998-1998) 
○「食品凍結における伝熱と品質変化を連結する階層的研究」(1999-2001) 
○「パルスマイクロ波を用いた過冷却の促進による食品の低損傷・凍結保存技術の開発」(2002-2003) 
○「パルス超音波を利用した凝固制御による生体・食品の低損傷・凍結保存技術の開発」(2004-2005) 
○「超音波を利用した凝固制御による生体組織のガラス化保存技術の開発」(2006-2007) 
○「超音波を利用した氷晶形成の制御による食品の高品質冷凍技術の開発」(2008-2010) 
○「超音波振動を利用した氷晶形成の制御による食品の高品質冷凍技術の開発」(2011-2013) 
○「超音波振動と変動磁場を併用した氷晶形成の制御による食品の高品質冷凍技術の開発」(2014-2016) 

Classes (Bachelors)

○Mechanical Engineering Laboratory I(2017)
○Seminar in Mechanical Engineering(2017)
○Environmental Measurements and Instrumentation(2017)
○Mechanical Engineering Laboratory II(2017)
○Seminar in Mechanical Engineering(2017)
○Thesis Report(2017)
○Topics in Mechanical Engineering(2017)
○Introduction to Engineering(2017)
○Applied Heat Transfer(2017)
○Heat Transfer(2017)
○Thermodynamics I and Exercise(2017)
○Thesis Report(2017)
○Applied Heat Transfer(2016)
○Environmental Measurements and Instrumentation(2016)
○Heat Transfer(2016)

Classes (Graduate Schools)

○Advanced Thermal Energy System(2017)
○Advanced Thermal Energy System(2017)
○Advanced Thermal Energy System(2017)
○Fostering the independence of researchers(2017)
○Exercise in Environment and Human Related Mechanical Science(2017)
○Master Thesis Report(2017)
○Energy Conversion Engineering A(2017)
○Research Ethics(2017)
○Energy Conversion Engineering B(2017)
○Master Thesis Report(2017)
○Advanced Thermal Energy System(2017)
○Fostering the independence of researchers(2017)
○Advanced Thermal Energy System(2016)
○Green Energy Conversion(2016)
○Energy Conversion Engineering A(2016)
○Energy Conversion Engineering B(2016)
○Master Thesis Report(2016)
○Green Energy Conversion(2015)
○Energy Conversion(2015)
○Energy Conversion(2014)

International Project

International Students

Lecture themes

Others (Social Activities)

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