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Development of vacuum pump driven by thermo-molecular effect of a rarefied gas

Research Project

Project/Area Number 15560139
Research Category

Grant-in-Aid for Scientific Research (C)

Allocation TypeSingle-year Grants
Section一般
Research Field Fluid engineering
Research InstitutionKyoto University

Principal Investigator

SUGIMOTO Hiroshi  Kyoto University, Department of Aeronautics and Astronautics, Lecturer, 工学研究科, 講師 (50222055)

Project Period (FY) 2003 – 2005
Project Status Completed (Fiscal Year 2005)
Budget Amount *help
¥3,600,000 (Direct Cost: ¥3,600,000)
Fiscal Year 2005: ¥600,000 (Direct Cost: ¥600,000)
Fiscal Year 2004: ¥1,500,000 (Direct Cost: ¥1,500,000)
Fiscal Year 2003: ¥1,500,000 (Direct Cost: ¥1,500,000)
KeywordsGas Separation / Vacuum Pump / Thermal Transpiration / Dry Pump / Rarefied Gas Dynamics / Membrane Separation / Microchemistry / Thermal Edge Flow / 空気分離 / 熱遷移流 / 熱突端流 / Knudsen Compressor / 熱ほふく流 / マイクロチャンネル
Research Abstract

In a rarefied gas, the temperature field of the gas plays an important role in inducing time-independent flows of the gas even if there is no external force. In this study we develop a new type of pump (thermo-molecular pumps) driven by these flows. The results are as follows :
1.Thermal Edge Pump :
In the preceding studies, the driving force of the thermo-molecular pumps was limited to the thermal transpiration flow, which is induced in a pipe or channel with a temperature gradient. In this study, the author devised a new type of pump driven by the thermal edge flow. It is a flow induced at the vicinity of a sharp edge of heated (cooled) body. The temperature gradient of the solid walls, which is necessary in the Knudsen compressor and causes energy loss of the pump, is not required in the new device. The performance of the new pump -thermal edge pump- was examined experimentally. Another result, which is obtained by numerical simulation, is that the design of thermal edge pumps has wide varieties. The thermal edge pump in the micro channel is promising as the pump which works at higher pressures (e.g.atmospheric pressure).
2.Gas Separation Effect of Thermo-molecular Pumps :
In the thermo-molecular pumps, the size of the mean free path is not negligible. In this situation, the velocity of the mixture of the gas depends on the spices of gas. Thus it may be possible that the mixture of the gas is separated in these pumps. By using the DSMC simulation of the rarefied mixture of gases, it is found that the thermal edge pump has fairly large separation effect.

Report

(4 results)
  • 2005 Annual Research Report   Final Research Report Summary
  • 2004 Annual Research Report
  • 2003 Annual Research Report
  • Research Products

    (10 results)

All 2005 2004

All Journal Article (5 results) Patent(Industrial Property Rights) (5 results)

  • [Journal Article] Vacuum pump without a moving part driven by thermal edge flow2005

    • Author(s)
      H.Sugimoto, Y.Sone
    • Journal Title

      Rarefied Gas Dynamics, ed. by M. Capitelli

      Pages: 168-173

    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Vacuum pump without a moving part driven by thermal edge flow2005

    • Author(s)
      H.Sugimoto, Y.Sone
    • Journal Title

      Rarefied Gas Dynamics(ed.by M.Capitelli)

      Pages: 168-173

    • Description
      「研究成果報告書概要(欧文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Journal Article] Vacuum pump without a moving part driven by thermal edge flow2005

    • Author(s)
      H.Sugimoto, Y.Sone
    • Journal Title

      Rarefied Gas Dynamics(ed. by M.Capitelli)

      Pages: 168-173

    • Related Report
      2005 Annual Research Report
  • [Journal Article] 熱駆動型ポンプの混合気体濃縮効果2005

    • Author(s)
      杉元宏, 高田滋, 小菅真吾
    • Journal Title

      日本航空宇宙学会 第42回関西・中部支部合同秋季大会講演集

      Pages: 50-53

    • Related Report
      2005 Annual Research Report
  • [Journal Article] Vacuum pump without a moving part driven by thermal edge flow2005

    • Author(s)
      H.Sugimoto, Y.Sone
    • Journal Title

      Rarefied Gas Dynamics(ed.by M.Capitelli) (発表予定)

    • Related Report
      2004 Annual Research Report
  • [Patent(Industrial Property Rights)] 混合気体の分離方法、及び気体分離装置2005

    • Inventor(s)
      杉元宏, 高田滋, 小菅真吾, 竿田武則
    • Industrial Property Rights Holder
      京都大学
    • Industrial Property Number
      2005-035280
    • Filing Date
      2005-02-10
    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Patent(Industrial Property Rights)] 混合気体の分離方法、及び気体分離装置2005

    • Inventor(s)
      杉元 宏, 高田 滋, 小菅 真吾, 竿田 武則
    • Industrial Property Rights Holder
      京都大学
    • Industrial Property Number
      2005-035280
    • Filing Date
      2005-02-10
    • Related Report
      2005 Annual Research Report 2004 Annual Research Report
  • [Patent(Industrial Property Rights)] ポンプ装置およびそのポンプユニット2004

    • Inventor(s)
      杉元宏, 曾根良夫, 大林哲郎
    • Industrial Property Rights Holder
      京都大学, 大阪真空機器製作所
    • Filing Date
      2004-03-23
    • Description
      「研究成果報告書概要(和文)」より
    • Related Report
      2005 Final Research Report Summary
  • [Patent(Industrial Property Rights)] ポンプ装置およびそのポンプユニット2004

    • Inventor(s)
      杉元 宏, 曾根 良夫, 大林 哲郎
    • Industrial Property Rights Holder
      京都大学、大阪真空機器製作所
    • Filing Date
      2004-03-23
    • Related Report
      2005 Annual Research Report
  • [Patent(Industrial Property Rights)] ポンプ装置およびそのポンプユニット2004

    • Inventor(s)
      杉元 宏, 曾根 良夫, 大林 哲郎
    • Industrial Property Rights Holder
      京都大学, 大阪真空機器製作所
    • Industrial Property Number
      2004-085050
    • Filing Date
      2004-03-23
    • Related Report
      2004 Annual Research Report

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Published: 2003-04-01   Modified: 2016-04-21  

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