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1-9 of 9
Keywords: oscillating heat pipe
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Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. July 2019, 141(7): 072402.
Paper No: HT-18-1498
Published Online: May 14, 2019
...M. Malekan; A. Khosravi; H. R. Goshayeshi; M. E. H. Assad; J. J. Garcia Pabon In this study, thermal resistance of a closed-loop oscillating heat pipe (OHP) is investigated using experimental tests and artificial intelligence methods. For this target, γ Fe 2 O 3 and Fe 3 O 4 nanoparticles are mixed...
Journal Articles
Publisher: ASME
Article Type: Research-Article
J. Heat Mass Transfer. May 2014, 136(5): 051501.
Paper No: HT-13-1081
Published Online: February 26, 2014
...: Bruce L. Drolen. 16 02 2013 16 10 2013 An experimental investigation of a compact, triple-layer oscillating heat pipe (OHP) has been conducted to determine the channel layer effect on the heat transport capability in an OHP. The OHP has dimensions 13 mm thick, 229 mm long, and 76 mm...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. July 2013, 135(7): 074503.
Paper No: HT-12-1417
Published Online: June 6, 2013
...: James A. Liburdy. 04 08 2012 21 02 2013 This paper investigates the ultrasonic sound effect on oscillating motion and heat transfer in an oscillating heat pipe (OHP). The ultrasonic sound produced by electrically controlled piezoelectric ceramics is used to generate and maintain...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. June 2011, 133(6): 061502.
Published Online: March 8, 2011
...C. Wilson; B. Borgmeyer; R. A. Winholtz; H. B. Ma; D. Jacobson; D. Hussey A visual and thermal experimental investigation of four oscillating heat pipes (OHPs) was conducted to observe fluid flow of liquid plugs and vapor bubbles in the OHP and its effect on the temperature distribution and heat...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. May 2011, 133(5): 052901.
Published Online: February 2, 2011
...Qi-Ming Li; Jiang Zou; Zhen Yang; Yuan-Yuan Duan; Bu-Xuan Wang Two-phase flows in an oscillating heat pipe (OHP) charged with deionized (DI) water and a nanofluid (0.268% v/v) were experimentally investigated. The OHP was made of quartz glass tube (with an inner diameter of 3.53 mm and an outer...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. April 2011, 133(4): 042901.
Published Online: January 19, 2011
...Wei Shao; Yuwen Zhang An advanced theoretical model of a U-shaped minichannel, a building block of a closed-end oscillating heat pipe, has been developed. Thin film evaporation in the evaporator and thin film condensation in the condenser, axial variation of surface temperature, and pressure loss...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. December 2010, 132(12): 121501.
Published Online: September 21, 2010
...Haizhen Xian; Yongping Yang; Dengying Liu; Xiaoze Du In this paper, experiments were conducted to achieve a better understanding of the oscillating heat pipe (OHP) operating behavior with water and ethanol as working fluid. The experimental results showed that there existed a necessary temperature...
Journal Articles
Publisher: ASME
Article Type: Research Papers
J. Heat Mass Transfer. June 2010, 132(6): 061502.
Published Online: March 31, 2010
...B. Borgmeyer; C. Wilson; R. A. Winholtz; H. B. Ma; D. Jacobson; D. Hussey An experimental investigation into the parameters affecting heat transport in two three-dimensional oscillating heat pipes (OHPs) was implemented. A three-dimensional OHP is one in which the center axis of the circular...
Journal Articles
Publisher: ASME
Article Type: Technical Briefs
J. Heat Mass Transfer. November 2006, 128(11): 1213–1216.
Published Online: May 23, 2006
...H. B. Ma; C. Wilson; Q. Yu; K. Park; U. S. Choi; Murli Tirumala An experimental investigation of a nanofluid oscillating heat pipe (OHP) was conducted to determine the nanofluid effect on the heat transport capability in an OHP. The nanofluid consisted of HPLC grade water and 1.0 vol % diamond...