Dissertation > Excellent graduate degree dissertation topics show

Experimental Study on Heat Transfer and Fouling Characteristics of Spirally Corrugated Tube

Author: ShaoBingHua
Tutor: ChenYongChang
School: Beijing University of Technology
Course: Thermal Power Engineering
Keywords: heat transfer characteristic fouling characteristic spirally corrugated tube fouling resistance
CLC: TK124
Type: Master's thesis
Year: 2009
Downloads: 116
Quote: 1
Read: Download Dissertation

Abstract


Fouling, as a universal phenomenon in nature, exists in a wide range of various fields in the social production and daily life, especially in the industrial heat transfer equipment. So we must take into account the effect of fouling factors when using the enhanced heat transfer technology because of the low thermal conductivity of fouling. Therefore, it will create very important practical significance that we carry out the experimental study on the fouling characteristic of enhanced heat transfer surface. In view of this, this thesis investigated the work effect of different kinds of spirally corrugated tubes of different geometries from the two aspects, heat transfer and fouling characteristics.First of all, on the basis of theoretical calculation for the spirally corrugated tubes before, we chose a trustworthy empirical formula, and investigated the heat transfer characteristics of spirally corrugated tubes associating with the experimental data. Then comparing of the results of theoretical calculations and experimental data, it indicated that the error in heat balance of hot and cold water were both less than 10%, thus it can be seen the experimental data was trustworthy.Secondly, we studied the heat transfer effect of spirally corrugated tubes at different water flow rate and inlet temperature of cold water, and then we found that heat transfer coefficient of spirally corrugated tubes is about from 0.94 to 1.45 the smooth tubes, decreases as the pitch increases, and increase with the groove depth. At the same time we investigated the effects to the fouling characteristic in the four kinds of spirally corrugated tubes, which hardness, fluid velocity, and temperature of cold water produced, through experimental research on the dynamic monitoring apparatus. The tests showed that the fouling resistance in the surface of the spirally corrugated tubes also increased when the water hardness increased from 300mg/L to 500mg/L , but when the water hardness reached 750mg/L, the thermal resistance was below the one when the hardness is 500mg/L, and the temperature of cold water rose from 22.5℃to 44℃, the fouling resistance would relevantly increased; When speeding up the cold water velocity from 1.2m/s to 1.64m/s, the fouling resistance would reduced accordingly, but when the velocity slow down from 1.2m/s to 0.9m/s, the fouling resistance in the surface of certain kinds of tubes would also reduced. Meanwhile, this paper took an analysis for the geometric parameters of spirally corrugated tubes. It concluded that the fouling characteristics of different kinds of spirally corrugated tubes varied differently along with the change of geometric parameters under the same condition. As a result, we found that the spirally corrugated tube (P = 3mm, e = 1mm) had the best performance in heat transfer and fouling resistance under our experimental conditions. Finally, we compared fouling resistance of the spirally corrugated tubes and the smooth tubes under the same condition, then it turned out that it was the geometric structure of spirally corrugated tubes affected the flow field and temperature field quite evidently, while the fouling characters reflected differently completely, at a high temperature and high hardness, the anti-fouling characteristics of spirally corrugated tubes were much more obviously, and the fouling resistance should be able to reach 51.9 %. However, for some kinds of tubes, it stimulated scaling on the heat transfer surface.

Related Dissertations

  1. Preparation of Electroless Plating on Heat Transfer Surface with Low Surface Free Energy and Study on Their Anti-fouling Property,TK172
  2. Study of Flow and Heat Transfer Characteristics under Flow Fluctuation Condition,TK124
  3. Research on the On-line Anti-fouling Technology of Evaporator,TQ051.62
  4. Experiment Study on the Characteristic of Crude Oil Fouling,TE624.1
  5. Research on the Heat Transfer of the Moisture Separator Reheater and the Dynamic Character of Valve,TK124
  6. Study on Characteristics of Membrane Fouling of Dyeing Wastewater Treatment by MBR,X703
  7. Partial Least-squares Regression Theory and Its Application in Dirt Prediction,TK227.3
  8. Study on Heat Transfer Characteristic of Low-Temperature Radiant Floor Cooling and Heating System,TU832.16
  9. Online monitoring of the cooling water system fouling resistance and corrosion rate,TG174
  10. Spadework on Application of SiO2 Mesoporous and γ-Al2O3 Nanofiltration Membrane to Decontaminate Organic Wastewater,X703
  11. The Experimental Study on Treatment of Printing and Dyeing Wastewater with a Hydrolysis-Membrane Bioreactor,X791
  12. Experimental Study on Fluidizing, Pulsating & Heat Transfer Characteristics of a Rijke-type Self-pulsating Fluidized Bed,TK229.6
  13. Temperature Distribution of Gas/Solid Grids and Heat Transfer Characteristics in a Porous Media Combustor,TK123
  14. The Experimental Investigation of the Heat Transfer and Fouling Characteristics on Several Enhanced Tubes,TK124
  15. Nonlinear Analysis of Fouling Characteristics Data On-line Monitoring,TP274.4
  16. Development of the On-line Monitoring and Evaluating System about Anti-fouling Efficiency of Water Treatment Technology,TP274.4
  17. The Study on Development and Performance of New Membrane Bioreactors,X703.3
  18. Quality Evaluation of Pumpkin Juice During the Concentrating Process and Study on Evaporation Characteristic of the Three-Phase Circulating Fluidized Bed Evaporator,TS255
  19. Synthesis and Performance Research of Polyaspartic Acid Derivative,TQ085.4
  20. Study on Heat Transfer of Associated Equipment of Seawater Source Heat Pump System,P74

CLC: > Industrial Technology > Energy and Power Engineering > Thermal engineering, heat > Thermal Engineering Theory > Heat Transfer
© 2012 www.DissertationTopic.Net  Mobile