Dissertation > Excellent graduate degree dissertation topics show

Numerical Simulation of Air Flow and Heat Transfer Characteristics in Air-Cooled Condenser

Author: JiaBaoRong
Tutor: YangYongPing;YangLiJun
School: North China Electric Power University (Beijing)
Course: Thermal Power Engineering
Keywords: air-cooled condenser porous media flow guiding device windward air velocity hot air recirculation
CLC: TM621
Type: Master's thesis
Year: 2009
Downloads: 199
Quote: 4
Read: Download Dissertation

Abstract


It is of great interest to study the influences of ambient conditions on the flow and heat transfer of cooling air in direct air-cooled system for improving the operation performance of air-cooled system in power plant.Firstly,based on the typical structure of the air-cooled condenser of 600 MW unit,the physical and mathematical models of an air-cooled condenser cell with external & internal flow guiding device were established. The velocity and temperature fields of the cooling air in the condenser cell were obtained by CFD simulation.The influence of the flow guiding device upon the flow and heat transfer of the cooling air was analyzed at different ambient conditions.Secondly,based on 2×300MW direct air-cooled units,the operation performance of the direct air-cooled system at different wind directions were analyzed.The results show that external flow guiding device can effectively reduce the adverse effects of the ambient cross wind, increase the flow rate of the cooling air and improve the heat transfer of the condenser cell;internal flow guiding device can enhance the flow field uniformity of cooling air and reduce the temperature of the cooling air.Different wind directions lead to different disadvantageous regions of heat transfer of air in direct air-cooled system.The higher the speed of the wind,the larger the effect on operation performance of direct air-cooled system.

Related Dissertations

  1. Preliminary Research on Determining Behavior Parameters of Ethanol and BTEX in Porous Media by Temporal Moment Method,X52
  2. Research on the Operation Optimization of the Fans of 600MW Direct Air-cooled Units,TM621
  3. Direct Air Cooled Condenser air flow and heat transfer characteristics of finned tubes Numerical Study,TK124
  4. The Conjugate Gradient Method for the Inversion of Fluid Saturated Porous Media Wave Equations,P631.4
  5. The Numerical Simulations of the Mixing of Hot and Cold Fluids in the T-Junction with Porous Medium,TQ021
  6. Research on Affecting of Ambient Wind to Heat Transfer of Direct Air-Cooled Condenser,TM621
  7. Thermal Power Plant Simulation of Direct Air-cooling Models,TM621
  8. Research on Flow and Heat Transfer Characteristics of 1000MW Direct Air-Cooled Condenser,TK124
  9. Research on the Operation Regulation of Dust Accumulation on Air-cooled Condenser,TK264.11
  10. Experimental Study on the Heat Transfer Performance in Direct Air-cooled Condenser of Power Plant,TK124
  11. Flow and Heat Transfer Characteristics of the Flow Guiding Devices for Cooling Air in Air-Cooled Condenser Cell,TM621
  12. The Numerical Study on Air-side Flow and Heat Transfer Characteristics for Direct Air-cooled Condenser,TK264.11
  13. Research on Flow and Heat Transfer of Direct-Cooled Condenser Unit,TK124
  14. Direct Air Cooled Condenser under crosswind flow and heat transfer characteristics of the numerical simulation,TM621
  15. Numerical Analysis of Summer Peak Meeting Measures on Direct Air-cooling System in Power Plant,TM621
  16. Study of Vacuum Tightness and Improving Vacuum by Spraying for Direct Air-cooled System in Power Plant,TM621
  17. Experimental Study on Air Flow Characteristics between Fins with Delta Wings,TK124
  18. Study on Diagnosis of the Reasons for Vacuum Down of Thermal Power Plant Air-cooling Condenser,TK264.11
  19. Research on Gas-Particle Two-Phase Flow Characteristic in Diesel Particulate Filter,U464.134.4
  20. Numerical Methods for Fluid Flow in Deformed Porous Media,O241.82

CLC: > Industrial Technology > Electrotechnical > Power generation, power plants > Power plant > Thermal power plants, thermal power stations
© 2012 www.DissertationTopic.Net  Mobile