Title page for etd-0726117-201807


URN etd-0726117-201807 Statistics This thesis had been viewed 302 times. Download 2 times.
Author Fong-rong Shiu
Author's Email Address No Public.
Department Institute Of Mechanical Engineering
Year 2016 Semester 2
Degree Master Type of Document Master's Thesis
Language zh-TW.Big5 Chinese Page Count 81
Title Analysis of the PV/T hybrid system with fast heat conduction design
Keyword
  • Outdoor real environment
  • Indoor simulation environment
  • inclined angle
  • KeywordsĄGHeat pipe
  • KeywordsĄGHeat pipe
  • inclined angle
  • Indoor simulation environment
  • Outdoor real environment
  • Abstract Ą@Ą@This article is targeted for the photoelectric plate in the photoelectric energy conversion formed by the surface waste heat to be reabsorbed, to convert into hot water, so that the formation of rapid thermal conductivity of the PV/T hybrid system. This paper for the rapid thermal conductivity of the PV/T hybrid system is to do indoor simulation environment and outdoor real environment of the experimental test and analysis, and confirm the differences between the two systems. The use of heat pipe two-phase flow quickly heat conduction to the Photoelectric plate above a water-storage tank, not only the rapid cooling of the surface temperature of the photovoltaic panel and waste heat can be recycled. The use of halogen light with 400~1000W/m2 four kinds of radiation respectively, setting three inclined angles,10˘X,20˘X and 30˘X, with the I-V curve measuring instrument and the thermal imaging device to obtain the data to calculate the efficiency and analysis. In the simulation environment according to the experimental data into the formula after conversion, the results of this study show that the whole simulation effect of the inclined angle 10˘X in the environment is preferably, the inclined angle 20˘X is the Secondly, 30˘X is the Worst. It is better to lay heat pipe over hot water efficiency photoelectric plate, but because the heat pipe in the photoelectric board above the relationship between the photoelectric plates to receive light source affect the total efficiency, above the heat pipe is better in the two laying methods. The efficiency of the former is more than doubled in the outdoor real environment compared to the indoor simulation environment.
    Advisor Committee
  • Feng-chin Tsai - advisor
  • Jeng-pon Wu - co-chair
  • Ren-horn Hsieh - co-chair
  • Files indicate in-campus access at 1 years and off-campus access at 1 years
    Date of Defense 2017-07-19 Date of Submission 2017-07-27

    Browse | All Available ETDs | Chinese Search Version | Home

    If you have more questions or technical problems, please contact Tungnan University