| Bildiri Türü | Tebliğ/Bildiri | Bildiri Dili | İngilizce |
| Bildiri Alt Türü | Tam Metin Olarak Yayınlanan Tebliğ (Uluslararası Kongre/Sempozyum) | ||
| Bildiri Niteliği | Web of Science Kapsamındaki Kongre/Sempozyum | ||
| DOI Numarası | 10.1109/ITHERM.2017.7991849 | ||
| Kongre Adı | 2017 16th IEEE Intersociety Conference on Thermal and Thermomechanical Phenomena in Electronic Systems (ITherm) | ||
| Kongre Tarihi | 30-05-2017 / 02-06-2017 | ||
| Basıldığı Ülke | Basıldığı Şehir | Orlando, Fl | |
| Bildiri Linki | http://ieeexplore.ieee.org/document/7991849/ | ||
| UAK Araştırma Alanları |
Mühendislik
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| Özet |
| In the present study performance of air-cooled cross flow microchannel heat exchanger is analysed experimentally with various metal oxide type nanofluids. Types of the nanoparticles and their particle size are TiO2 (30 nm, 50 nm), MgO (20 nm, 40 nm), ZnO (10-30 nm, 35-45 nm, 80-200 nm), Si02 (20-30 nm, 60-70 nm), NiO (10-20 nm) and Fe3O4 (15-20 nm). Zeta potential measurement is employed for the stability evaluation of the dispersions. Among the nanofluids considered, only suspensions containing SiO2 (60-70 nm) and NiO (10-20 nm) nanoparticles give zeta potential above the critical stability value of 30 mV. Strong dependency between relative zeta potential of the suspensions and particle size is observed. The heat transfer characteristic of nanofluids through the cross flow air cooled microchannel heat exchanger is evaluated with the overall heat transfer coefficient under laminar conditions … |
| Anahtar Kelimeler |
| Heat exchanger | Heat transfer | Nanofluid | Nanoparticles | Stability |
| Atıf Sayıları | |
| Web of Science | 6 |
| Scopus | 3 |
| Google Scholar | 4 |