| 1 |
S. H. Moon and Y. W. Park, 2016, "Development of the Structure for Enhancing Capillary Force of the Thin Flat Heat Pipe base on Extrusion Fabrication", Transactions of the Korean Society of Mechanical Engineering-B, Vol. 40, No. 11, pp. 755-759. (https://dx.doi.org/10.3795/KSME-B.2016.40.11.755) |
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| 2 |
Advanced multi-evaporator loop thermosyphon  |
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| 3 |
Advances and Unsolved Issues in Pulsating Heat Pipes  |
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| 4 |
An overview on the developing trend of pulsating heat pipe and its performance  |
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| 5 |
H. M. Jeong, H. S. Chung, K. S. Lee, Md. R. Tanshen, T. J. Lee and S. I. Lee, 2013, "Experimental Investigations on the Temperature Characteristics of Oscillating Heat Pipe with Various Filling Ratio", J. KSPSE, Vol. 17, No. 6, pp. 47-53.(https://doi.org/10.9726/kspse.2013.17.6.047) |
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| 6 |
Analysis of the critical Weber number at the onset of liquid entrainment in capillary-driven heat pipes  |
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| 7 |
HFE-7100 pool boiling heat transfer and critical heat flux in inclined narrow spaces  |
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| 8 |
M. S. Kim, Y. H. Kwon and J. S. Kim, 2019, "An Experimental Study on the Thermal Performance of Partially Inclined Muti-Channel Flat Plate Thermosyphon", 2019 SAREK Summer Annual Conference, pp. 438-441. |
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| 9 |
J. S. Kim, Y. H. Kwon and J. W. Kim, 2014, "Development of High Performance Bubble Jet Loop Heat Pipe for Hot Water Floor Heating System", J. KSPSE, Vol. 18, No. 4, pp. 23-28. (http://dx.doi.org/10.9726/kspse.2014.18.4.023) |
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| 10 |
A. Faghri, 1995, "Heat Pipe Science and Technology", Taylor & Francis Ltd., Washington DC, pp. 341-400. |
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| 11 |
W. H. Lee, 2000, "Study on Heat Transfer and Flow Characteristics of Oscillating Capillary Tube Heat Pipes", Ph.D Thesis, Pukyong National Univ., Busan, Korea, pp. 81-85. |
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| 12 |
Correlations to predict heat transfer characteristics of an inclined closed two-phase thermosyphon at normal operating conditions  |
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| 13 |
Japan Association for Heat Pipe, 2001, "Practical Heat Pipe", Nikkan Kogyo Shimbun, Ltd., Tokyo, Japan, pp. 29-30, 38-39. |
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| 14 |
Heat transfer performance of an anodized two-phase closed thermosyphon with refrigerant as working fluid  |
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| 15 |
Effect of the Inclination Angle on the Steady-State Heat Transfer Performance of a Thermosyphon  |
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| 16 |
Comparison of the thermal performances and flow characteristics between closed-loop and closed-end micro pulsating heat pipes  |
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| 17 |
Correlation to predict heat transfer characteristics of a closed-end oscillating heat pipe at normal operating condition  |
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| 18 |
Density, Surface Tension, and Kinematic Viscosity of Hydrofluoroethers HFE-7000, HFE-7100, HFE-7200, HFE-7300, and HFE-7500  |
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| 19 |
Correlation to predict heat transfer characteristics of a closed end oscillating heat pipe at critical state  |
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