Loading
0 رای
  • Modeling Heat Transfer in Nucleate Pool Boiling: Influence of Nucleation Sites Density, Contact Angle and Prandtl Number

  • نویسندگان مقاله
    • Hamid Saffari School of Mechanical Engineering, Department of Energy Conversion, Iran University of Science and Technology (IUST), Narmak, 16846-13114, Tehran, Iran
    • Hesam Moghadasi School of Mechanical Engineering, Department of Energy Conversion, Iran University of Science and Technology (IUST), Narmak, 16846-13114, Tehran, Iran
    • Navid Malekian School of Mechanical Engineering, Department of Energy Conversion, Iran University of Science and Technology (IUST), Narmak, 16846-13114, Tehran, Iran
    • Seyed Mostafa Hosseinalipour School of Mechanical Engineering, Department of Energy Conversion, Iran University of Science and Technology (IUST), Narmak, 16846-13114, Tehran, Iran
  • چکیده مقاله

    - Pool boiling is the process in which the heating surface is submerged in a large body of stagnant liquid. In the present work, heat transfer in nucleate pool boiling is modeled semi-analytically with the consideration of nucleation site density (NSD), contact angle and Prandtl number. The developed model considers variations of contact angle in bubble growing period. The suggested model is stated as a function of wall superheat, contact angle, maximum and minimum active cavities, and physical properties of fluid. According to the results, by increasing wall superheat and contact angle, heat flux and heat transfer coefficient enhance. Also, rising Prandtl number results in heat flux enhancement. Additionally, Heat transfer contribution due to latent heat and transient conduction increases with wall superheat. Natural convection contribution gradually decreases with the increase of superheat. Comparing the obtained results based on the semi-analytical models with existing experimental data and the previous models shows a good agreement.

  • کلید واژه

    Nucleate Pool Boiling/Nucleation Sites Density/Contact Angle/Prandtl Number/Semi-Analytical Model

  • راهنمای خرید و دانلود
    • اگر در مجموعه Confpaper عضو نیستید، به راحتی می توانید از طریق دکمه زیر اصل این مقاله را خریداری نمایید .
    • با عضویت در Confpaper می توانید اصل مقالات را با حداقل 20 درصد تخفیف دریافت نمایید .
    • برای عضویت به صفحه ثبت نام مراجعه نمایید .
    • در صورتی که عضو این پایگاه هستید،از قسمت بالای صفحه با نام کاربری خود وارد سایت شوید .
    • لینک دانلود فایل خریداری شده به ایمیل شما ارسال میگردد .
نظرات کاربران

برای ارسال نظر، لطفا وارد حساب کاربری خود شوید.