Dissertation > Excellent graduate degree dissertation topics show

Research on Thermal Characteristics of Insulating Glass and Its Application in Residential Buildings

Author: HuangChunYong
Tutor: WangHouHua
School: Chongqing University
Course: Heating,Gas Supply, Ventilation and Air Conditioning Engineering
Keywords: Energy Efficiency in Buildings Insulating Glass Air-layer Heat Transfer Coefficient
CLC: TU111
Type: Master's thesis
Year: 2008
Downloads: 283
Quote: 6
Read: Download Dissertation

Abstract


In Yangtze River zone, it is very complex in the construction climate characteristics, hot in summer and cold wet in winter, especially long time in summer and huge of solar radiation intensity. Energy saving in window should focus on thermal insulation in summer and heat preservation in winter. Owing to the norm,“Design standard for energy efficiency of Residential Buildings in hot summer and cold winter zone”(JGJ134-2001), held out more strict standard for the heat transfer coefficient of window in the residential construction ,it is required to amply to use energy saving glazing in new buildings. It keeps good performances of insulating against heat, reducing cold radiation and non-moisture condensation. Therefore it will substitute for double-pain window and become the energy saving products that considered being to use at first in residential buildings. The thermal technology performance of the insulating glass will be mostly researched in the paper, especially the optical air-layer thickness of the insulating glass will be researched by the energy saving index of heat transfer coefficient.The energy saving principle of the insulating glass in the paper has been analyzed at first. And then the main factors has put forward for the energy saving index of the insulating glass, including original block of glass, the air-layer thickness, kinds of gas and the environmental condition inside and outside the room, etc. The paper analyses to calculate the thermal resistance of the insulating glass, especially of the air-layer.On the basis of the analysis of theory, the natural convection in the air-layer of the insulating glass is adopted a law of numerical simulation. In the numerical simulation, it is adopted to use the condition of ordinary wall temperature for the different structure of insulating glass and the different wall temperature. The simulation results show that the main factors include kinds of gas in the layer, the relative layer thickness and the temperature difference between cold and hot wall for the nature convection in air-layer. Among the factors, the relative layer thickness is the most influential. The main heat transfer is the radiation heat transfer while the heat conduction and convection are relatively small in proportion. The radiation heat transfer assumes constant in the air-layer. So the optical air-layer thickness is assumed the thickness to make the convection heat transfer reach the minimum. The temperature field, the velocity field and the pressure field in the air-layer have been analyzed and the convection heat transfer in the air-layer is found faint and could approximation be regarded as the pure conduction heat transfer. The heat transfer coefficient is calculated by the results of simulation, compared correctly with the calculated data by the maturate software. Then, the optical air-layer thickness has been simulated in the main cities in the Yangtze River zone.To verify the simulation results, the orthogonal test is adopted in the paper. It designs for the three factors of the air-layer thickness and height and the temperature difference between cold and hot wall. The hot wall tank method is used in the experiment and the heat transfer throng the air-layer, the temperatures in cold and hot wall and the air-layer area was measured to calculate the heat transfer coefficient by the forma Q = K (t_H - t_C)A. Because the losses of heat were big in the experimental apparatus, there were great difference in calculating the heat transfer coefficient between the simulation and experiment. However, it is still directive significant to determine the optical air-layer thickness.The paper analyzes the applicability of the insulating glass in buildings finally. And the energy consumption through the insulating glass and else glasses were proceeded contrastive analysis. The results show that it is obvious to reduce the energy consumption in buildings.

Related Dissertations

  1. Research of H-beam Steel after Ultra Fast Cooling,TG335.4
  2. Research on Heat Transfer Performance of Conductive Plastic Coil under Falling Film,TK124
  3. Study on Heat Transfer Performance of Double-Sided Radiant Cooling System,TU831.6
  4. Research on the Management of Public Building Energy Conversation in Tangshan City,TU201.5
  5. Research on the Application of Phase Change Building Materials in Architectural Energy-saving,TU551
  6. Research of the New Energy-Saving Technology and Wall Insulation Effect for Rural Residential in Shaanxi Province,TU111.48
  7. Optimum Design of Shell and Tube Heat Exchanger,TK172
  8. Research on Effective Engery-saving of Sintering Product with Fly Ash and Shale,TU551
  9. Experimental Research on Drying the Distiller’s Grain with Superheated Steam,TQ028
  10. Numerical Simulation and Research of Plate in the Process of Roller Quenching,TG156.3
  11. Research on Heat Transfer of Rock Wall in Mine Tunnels,TD727
  12. Overhead captured when icing of supercooled water droplets in the air Regularity,TK121
  13. Preparation of Nanometer TiO2 Coating Surface by Liquid Phase Deposition and Anti-Fouling Characteristic on the Surface in Pool Boiling,O614.411
  14. Axis Class Forging Heat Treatment Craft Simulation and Experimental Study,TG156.31
  15. Analysis of the Influnce of Cooling Water on the Strip Profile,TG306
  16. Thermal Characteristics and Energy Consumption Analysis of Building Transparent Envelope,TU111.4
  17. Research on Mathematical Model Optimization and Control Strategy for Heavy and Medium Plate Controlled Cooling Process after Rolling,TG335.5
  18. Based on climate change under the office building energy efficiency design,TU201.5
  19. Study on HENS Considering Detailed Equipment’s Pressure Drop Effects,TK018
  20. Study on Heat Transfer Coefficients at Metal/Mold Interface during Solidification in Metal Castings,TG249.3
  21. Numerical Simulation for Heat Transfer and Flow Characteristics in Air-side of Direct Air Coolers,TK124

CLC: > Industrial Technology > Building Science > Building the basic sciences > Building physics > Building Pyrology
© 2012 www.DissertationTopic.Net  Mobile