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1996 Fiscal Year Final Research Report Summary

Deformation behavior of a liquid droplet impinging on hot metallic surfaces above the Leidenfrost temperature

Research Project

Project/Area Number 07455287
Research Category

Grant-in-Aid for Scientific Research (B)

Allocation TypeSingle-year Grants
Section一般
Research Field Material processing/treatments
Research InstitutionKYOTO UNIVERSITY

Principal Investigator

HATTA Natsuo  Kyoto University, Department of Energy Science and Technology, Professor, エネルギー科学研究科, 教授 (30026041)

Co-Investigator(Kenkyū-buntansha) FUJIMOTO Hitoshi  Kyoto University, Department of Energy Science and Technology, Instructor, エネルギー科学研究科, 助手 (40229050)
TAKUDA Hirohiko  Kyoto University, Department of Energy Science and Technology, Associate Profess, エネルギー科学研究科, 助教授 (20135528)
ISHII Ryuji  Kyoto University, Department of Aeronautics and Astronautics, Associate Professo, 工学研究科, 助教授 (20026339)
Project Period (FY) 1995 – 1996
KeywordsLeidenfrost temperature / Weber number / numerical analysis / deformation process of droplet / free surface / surface tension / spray cooling / surface material
Research Abstract

The deformation process of a droplet impacting a hot surface has been investigated by many double exposure photographs on the basis of statistical procedure. When a droplet impacts a hot surface with low Weber numbers, the droplet spreads on the surface, reaches a maximum diameter, recoils and finally rebounds from the surface. For larger Weber numbers, we have found that the droplet breaks up into small parts in the recoiling process. Wiht increasing the Weber number further, the droplet shatters in the spreading process. Also, we have investigated the effect of kind of surface material on the droplet deformation process. The effect of kind of surface material has been hardly recognized in the range of low Weber numbers such that the droplet rebounds from the surface without disintegration. However, it has been found that the critical Weber number whether or not the droplet break up into small parts during the deformation is changeable depending upon the kind of surface material.
The deformation behavior of droplet has been analyzed numerically. The system of governing equation is the Navier-Stokes equations for the incompressible viscous fluid flow in the axisymmetric system. The effects of viscosity, gravity and surface tension have been taken into account. The system of governing equations has been solved by the finite differencing method. The deformation process of droplet impinging on a cold surface at room temperature as well as a hot surface above the Leidenfrost temperature has been analyzed. The numerical results have been compared with the experimental data to verify the validation of mathematical model. As a result, the numerical results have been found to agree well with the experimental data. Also, it has been clarified theoretically that the droplet rebounding occurs owing to the effect of surface tension.

  • Research Products

    (14 results)

All Other

All Publications (14 results)

  • [Publications] Natsuo Hatta: "Deformation Process of a Water Droplet Impinging on a Solid Surface" Trans. ASME. J. Fluids Engg.117. 394-401 (1995)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Hitoshi Fujimoto: "Deformation and Rebounding Processes of a Water Droplet Impinging on a Flat Surface Above the Leidenfrost Temperature" Trans. ASME J. Fluids Egg.118. 142-149 (1996)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] 藤本 仁: "表面粗さの異なる加熱金属平面に衝突する微小液滴の変形挙動特性" 鉄と鋼. 82. 975-980 (1996)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Natsuo Hatta: "Deformation Process of a Droplet Impinging on a Hot Oxide-scaled Surface Above the Leidenfrost Temperature" Steel Research. 97-1. 15-19 (1997)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Hitoshi Fujimoto: "Predictable Modelling of Heat Transfer Coefficient between Spraying Water and a Hot Surface above the Leidenfrost Temperature" ISIJ International. (掲載予定).

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Natsuo Hatta: "Experimental Study of Deformation Mechanism of a Water Droplet Impinging on Hot Metallic Surfaces above the Leidenfrost Temperature" Trans. ASME J. Fluids Engg.(掲載予定).

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] N. Hatta: "Deformation Process of a Water Droplet Impinging on a Solid Surface" Trans. ASME. J. of Fluids Engg.117. 394-401 (1995)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] H. Fujimoto: "Deformation and Rebounding Process of a Water Droplet Impinging on a Flat Surface Above Leidenfrost Temperature" Trans. ASME. J. of Fluids Engg.(発表予定). (1996)

    • Description
      「研究成果報告書概要(和文)」より
  • [Publications] Natsuo Hatta: "Deformation process of a Water Droplet Impinging on a Solid Surface" Trans, ASME J.Fluids Engg.117. 394-401 (1995)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Hitoshi Fujimoto: "Deformation and Rebounding Processes of a Water Droplet Impinging on a Flat Surface above the Leidenfrost Temperature" Trans.ASME J.Fluids Engg.118. 142-149 (1996)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Hitoshi Fujimoto: "Experimental Study of Deformation Process of a Water Droplet Impinging on Polished and Rough Surfaces Heated to above the Leidenfrost Temperature" Tetsu-to-Hagane. 82. 975-980 (1996)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Natsuo Hatta: "Deformation Process of a Droplet Impinging on a Hot Oxide-scaled Surface above the Leidenfrost Temperature" Steel Research. 97-1. 15-19 (1997)

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Hitoshi Fujimoto: "Predictable Modelling of Heat Transfer Coefficient between Spraying Water and a Hot Surface above the Leidenfrost Temperature" To be published in ISIJ International.

    • Description
      「研究成果報告書概要(欧文)」より
  • [Publications] Natsuo Hatta: "Experimental Study of Deformation Mechanism of a Water Droplet Impinging on Hot Metallic Surfaces above the Leidenfrost Temperature" To be published in Trans.ASME J.Fluids Engg.

    • Description
      「研究成果報告書概要(欧文)」より

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Published: 1999-03-09  

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