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56
Cilt
69-83
Sayfa
Özet
This experimental investigation focused on wicked heat pipe under different operating conditions. A single-layer 150-mesh wicked heat pipe was used in the experiments. The heat pipes were made of copper tubes with a diameter of 15 mm and a total length of 450 mm. The used working fluids were pure water, methanol, ethanol, acetone, and R134a. The working fluid charge rate was 50% of the evaporator volume. The power input from the evaporator surface was selected from five different values between 1.12 kW/m2 and 5.58 kW/m2, which can be considered as relatively low. The heat carried by the heat pipe was transferred to the water circulating around the condenser section. The heat pipes were operated at inclination angles of 0°, 30°, 60°, and 90°, and the performance was assessed based on the thermal input power and tilt angle. Over the range studied, the best performance in terms of heat pipe surface temperature distributions was achieved with R134a. Heat pipe performance was improved with increasing tilt angle. Increasing the tilt angle also increased the boiling heat transfer coefficient. The gradual increase in heat flux was observed to result in an average increase of 10–15°C in surface temperatures in the evaporator section compared to the previous stage. The heat transfer coefficient by boiling increased with the increase in the tilt angle and heat input power. This increase was 67.54% for R134a at a heat input of 1.12 kW/m² and a tilt angle of 90°. The increase amounted to 214.43% for 5.58 kW/m² heat input.
Web of Science Eşleşmesi Bulundu
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Article
Belge Türü
Kaynak: HEAT TRANSFER RESEARCH
· s. 69-83
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Scimago Dergi Bilgisi
Otomatik ISSN Eşleştirmesi
2024 yılı verileri
Heat Transfer Research
Q3
SJR Quartile
0,354
SJR Skoru
35
H-Index
Kategoriler: Condensed Matter Physics (Q3) · Fluid Flow and Transfer Processes (Q3) · Mechanical Engineering (Q3)
Alanlar: Chemical Engineering · Engineering · Physics and Astronomy
Ülke: United States
· Begell House Inc.
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Anahtar Kelimeler
YÖKSİS |
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Makale Bilgileri
Dergi
Heat Transfer Research
ISSN
1064-2285
Yıl
2024
/ 1. ay
Cilt / Sayı
/ 3
Sayfalar
69 – 83
Makale Türü
Özgün Makale
Hakemlik
Hakemli
Endeks
SCI-Expanded
JCR Quartile
Q3
Teşvik Puanı
5,40
· YÖKSİS Akademik Teşvik
Yayın Dili
Türkçe
Kapsam
Uluslararası
Toplam Yazar
3 kişi
Erişim Türü
Basılı+Elektronik
Alan
Temel Alan
heat pipe, two-phase closed thermosyphon, working fluid, thermal resistance, heat transfer coefficient
YÖKSİS Yazar Kaydı
Yazar Adı
SERTKAYA AHMET ALİ,AKYAR YUSUF,ÖZSOY AHMET
YÖKSİS ID
8112539