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Experimental Study on the Condensation of a Thermosyphon by Electrical Capacitance Tomography 被引量:1

Experimental Study on the Condensation of a Thermosyphon by Electrical Capacitance Tomography
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摘要 The study on the condensation and the two-phase flow pattern in the condensation section is important to understand the operating mechanisms in a thermosyphon. In this paper, a new electric capacitance tomography(ECT) sensor was designed for the visualization measurement in a liquid by removing the shielding case and sealing with insulating hydrophobic material. It was successfully used to measure the condensation process in a thermosyphon under different operating temperatures. The thermosyphon was made of silica glass, and alcohol was used as a working fluid. The alcohol vapor was cooled to condense through the heat convection with the cooling water. The operating temperature was controlled by a heater with different power outputs. The experimental results show that the alcohol vapor condensed in stripes and unevenly on the wall surface at a low operating temperature. The liquid bridge will be formed periodically at the operating temperature of 90?C, and the time interval between two liquid bridges will be shorter with the increase of the operating temperature. At 117?C or even higher operating temperatures, the complete liquid bridge cannot be formed sometimes due to the difference of the growth rate of the surface wave around the circumference.
机构地区 School of Energy
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2016年第2期171-177,共7页 热科学学报(英文版)
基金 supported by the National Natural Science Foundation of China(No.51206048) the Fundamental Research Funds for the Central Universities(No.13MS11)
关键词 Thermosyphon Condensation ECT Visualization 电容层析成像 冷凝段 热管 实验 工作温度 两相流流型 成像传感器 运行机制
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  • 1Barzi Y. M., Assadi M., Evaluation of a thermosyphon heat pipe operation and application in a waste heat re- covery system, Experimental heat transfer, 2015, 28(5): 493-510.
  • 2Critoph R. E., The use of thermosyphon heat pipes to im- prove the performance of a carbon-ammonia adsorption refrigerator, International Journal of Environmentally Conscious Design & Manufacturing, 2000, 9(3): 3-10.
  • 3Zhang H. N., Shao S. Q., Xu H. B., Zou H. M., Tian C. Q., Integrated system of mechanical refiigeration and thermosyphon for free cooling of data centers, Applied Thermal Engineering, 2015, 75(22): 185-192.
  • 4Shukla R., Sumathy K., Performance evaluation of a thermosyphon solar water heater using supercritical CO2 as working fluid, International Journal of Advances in Mechanical & Automobile Engineering, 2014, l(1): 2349-1493.
  • 5Shnchez-Silva F., Carvajal-Mariscal I., Moreno-Cordobrs A. E., Quinto Diez P., Toledo Velfizquez M., Study of an annular two-phase thermosyphon used as an isothermal source in thermometry, Journal of Mechanical Engineer- ing, 2015, 61(4): 273-282.
  • 6Karthikeyan M., Vaidyanathan S., Sivaraman B., Heat transfer analysis of two phase closed thermosyphon using aqueous solution of n-butanol, International Journal of Engineering and Technology, 2013, 3(6): 661-667.
  • 7Noie S. H., Heat transfer characteristics of a two-phase closed thermosyphon, Applied Thermal Engineering, 2005, 25 (4): 495-506.
  • 8Ashok F. N., Mall K. V., Anjankar P. Ct, Effect of filling ratio on thermal performance of thermosyphon heat pipe, International Journal on Theoretical and Applied Resear- ch in Mechanical Engineering, 2015, 4(1): 1-8.
  • 9Patil A. D., Yarasu R, B., Factors affecting the thermal performance of two phase closed thermosyphon: a review, International Journal of Emerging Technology and Ad- vanced Engineering, 2012, 2 (9): 202-206.
  • 10Anjankar P. Gt, Yarasu R. B., Experimental analysis of condenser length effect on the performance of thermo- syphon, International Journal of Emerging Technology and Advanced Engineering, 2012, 2(3): 494--499.

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