مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Persian Verion

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

video

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

sound

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Persian Version

مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

View:

595
مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Download:

0
مرکز اطلاعات علمی Scientific Information Database (SID) - Trusted Source for Research and Academic Resources

Cites:

Information Journal Paper

Title

THERMAL PERFORMANCE MODELING OF LIQUID IN EVAPORATOR WITH SPHERICAL MICROSTRUCTURES AND CONICAL MICROPILLARS

Pages

  193-204

Abstract

 The heat transfer performance of passive two-phase cooling devices such as heat pipes and vapor chambers is mainly depend on the topology and geometry of wick and evaporator microstructures. The desired characteristics of evaporator microstructures are high PERMEABILITY, high wicking capability and large extended meniscus area that sustains thin-film EVAPORATION which choices of scale and porosity lead to trade-offs between the desired characteristics. In the present study, the free-surface shapes of the static liquid meniscus in SPHERICAL MICROSTRUCTUREs and CONICAL MICROPILLAR were modeled using gradient decent algorithm of Surface Evolver software and the non-dimensional CAPILLARY PRESSURE was determined based on curvature of surface. PERMEABILITY and heat transfer coefficient were computed using Fluent software as functions of the nondimensional geometrical parameter and the contact angle between the liquid and solid. Based on these performance parameters, due to high heat contact surface, decrease of cross section, increase of PERMEABILITY and increase of thin film liquid due to extention of liquid on inclined surface, conical microstructures provide more efficient and desirable geometry for wicking and thin-film EVAPORATION. The solid-liquid contact angle and geometrical parameter that yield the best performance were also identified.

Cites

  • No record.
  • References

  • No record.
  • Cite

    APA: Copy

    KHALILI, A., GHEITAGHY, A.M., & SAFFARI, H.. (2016). THERMAL PERFORMANCE MODELING OF LIQUID IN EVAPORATOR WITH SPHERICAL MICROSTRUCTURES AND CONICAL MICROPILLARS. JOURNAL OF SOLID AND FLUID MECHANICS, 6(4 ), 193-204. SID. https://sid.ir/paper/212752/en

    Vancouver: Copy

    KHALILI A., GHEITAGHY A.M., SAFFARI H.. THERMAL PERFORMANCE MODELING OF LIQUID IN EVAPORATOR WITH SPHERICAL MICROSTRUCTURES AND CONICAL MICROPILLARS. JOURNAL OF SOLID AND FLUID MECHANICS[Internet]. 2016;6(4 ):193-204. Available from: https://sid.ir/paper/212752/en

    IEEE: Copy

    A. KHALILI, A.M. GHEITAGHY, and H. SAFFARI, “THERMAL PERFORMANCE MODELING OF LIQUID IN EVAPORATOR WITH SPHERICAL MICROSTRUCTURES AND CONICAL MICROPILLARS,” JOURNAL OF SOLID AND FLUID MECHANICS, vol. 6, no. 4 , pp. 193–204, 2016, [Online]. Available: https://sid.ir/paper/212752/en

    Related Journal Papers

    Related Seminar Papers

  • No record.
  • Related Plans

  • No record.
  • Recommended Workshops






    Move to top
    telegram sharing button
    whatsapp sharing button
    linkedin sharing button
    twitter sharing button
    email sharing button
    email sharing button
    email sharing button
    sharethis sharing button