•  Persian
    • Persian
    • English
  •   ورود
  • دانشگاه فردوسی مشهد
  • |
  • مرکز اطلاع‌رسانی و کتابخانه مرکزی
    • Persian
    • English
  • خانه
  • انواع منابع
    • مقاله مجله
    • کتاب الکترونیکی
    • مقاله همایش
    • استاندارد
    • پروتکل
    • پایان‌نامه
  • راهنمای استفاده
Search 
  •   کتابخانه دیجیتال دانشگاه فردوسی مشهد
  • Search
  •   کتابخانه دیجیتال دانشگاه فردوسی مشهد
  • Search
  • همه
  • عنوان
  • نویسنده
  • سال
  • ناشر
  • موضوع
  • عنوان ناشر
  • ISSN
  • شناسه الکترونیک
  • شابک
جستجوی پیشرفته
JavaScript is disabled for your browser. Some features of this site may not work without it.

Search

Show Advanced FiltersHide Advanced Filters

Filters

Use filters to refine the search results.

نمایش تعداد 1-6 از 6

    • Relevance
    • Title Asc
    • Title Desc
    • سال صعودی
    • سال نزولی
    • 5
    • 10
    • 20
    • 40
    • 60
    • 80
    • 100
  • خروجی
    • CSV
    • RIS
    • Sort Options:
    • Relevance
    • Title Asc
    • Title Desc
    • Issue Date Asc
    • Issue Date Desc
    • Results Per Page:
    • 5
    • 10
    • 20
    • 40
    • 60
    • 80
    • 100

    Experimental study of two-Phase closed thermosyphon with nanofluid and magnetic field effect 

    نوع: Journal Paper
    نویسنده : هادی صالحی; سعید زینالی هریس; سیدحسین نوعی باغبان; Saeed Zeinali Heris; Seyed Hossein Noie Baghban
    سال: 2011
    خلاصه:

    The application of two-phase closed thermosyphon (TPCT) is increasing in heat recovery systems in many industrial practices because of their high effectiveness. The enhancement heat transfer of the heat transfer devices can be done by changing...

    Experimental study of two phase closed thermosyphon using CuO/Water nanofluid in the presence of electric field 

    نوع: Journal Paper
    نویسنده : سعید زینالی هریس; فاطمه محمدپور; Omid Mahian; Ahmet Z. Sahin; Saeed Zeinali Heris; fatemeh mohammadpur
    سال: 2015
    خلاصه:

    In this article, the effect of applying an electric field on the performance of a two-phase closed thermosyphon is investigated experimentally. A CuO/water nanofluid is used as the working fluid in the present investigation; ...

    MODELING OF HEAT TRANSFER CHARACTERIZATION OF A TWO-PHASE CLOSED THERMOSYPHON USING MWCNT/WATER AND MWCNT-AG/WATER NANOFLUIDS 

    نوع: Conference Paper
    Request PDF

    MODELING OF HEAT TRANSFER CHARACTERIZATION OF A TWO-PHASE CLOSED THERMOSYPHON USING MWCNT/WATER AND MWCNT-AG/WATER NANOFLUIDS 

    نوع: Conference Paper
    نویسنده : Shanbedi, Mehdi; Rashidi, Sajjad; Amiri, Ahmad; Zeinali Heris, Saeed
    Request PDF

    MODELING OF HEAT TRANSFER CHARACTERIZATION OF A TWO-PHASE CLOSED THERMOSYPHON USING MWCNT/WATER AND MWCNT-AG/WATER NANOFLUIDS 

    نوع: Conference Paper
    نویسنده : مهدی شنبدی; سجِّاد رشیدی; احمد امیری; سعید زینالی هریس; سیدحسین نوعی باغبان; مجید بنی ادم; سیدمصطفی نوعی باغبان; Mehdi Shanbedi; Sajad Rashidi; Ahmad Amiri; Saeed Zeinali Heris; Seyed Hossein Noie Baghban; Majid Baniadam; Seyed Mostafa Nowee Baghban
    سال: 2013
    خلاصه:

    Here, first a two-phase closed thermosyphon (TPCT) was designed and then two samples of multi-walled carbon nanotube (MWCNT) and MWCNT functionalized with Ag were synthesized. To obtain experimental data, the effect of various samples synthesized...

    Effects of a Nanofluid and Magnetic Field on the Thermal Efficiency of a Two-Phase Closed Thermosyphon 

    نوع: Journal Paper
    نویسنده : هادی صالحی; سعید زینالی هریس; Fateme Sharifi; محمدامین رزبانی; Saeed Zeinali Heris; Mohammad Amin Razbani
    سال: 2013
    خلاصه:

    Heat transfer of a CuO/water nanofluid in a two-phase closed thermosyphon (TPCT) that is thermally enhanced by a magnetic field has been predicted by an optimized artificial neural network (ANN). The magnetic field strength, volume fraction...

    نویسنده

    ... View More

    سال

    کلیدواژه

    ... View More

    نوع

    زبان

    نوع محتوا

    عنوان ناشر

    • درباره ما
    نرم افزار کتابخانه دیجیتال "دی اسپیس" فارسی شده توسط یابش برای کتابخانه های ایرانی | تماس با یابش
    DSpace software copyright © 2019-2022  DuraSpace