scholarly journals Approximated flow characteristics of multi-pipe earth-to-air heat exchangers for thermal analysis under variable airflow conditions

2020 ◽  
Vol 158 ◽  
pp. 585-597 ◽  
Author(s):  
Łukasz Amanowicz ◽  
Janusz Wojtkowiak
1987 ◽  
Vol 109 (2) ◽  
pp. 219-223 ◽  
Author(s):  
D. S. Weaver ◽  
J. A. Fitzpatrick ◽  
M. ElKashlan

The prediction of tube or acoustic resonance due to cross-flow in heat exchangers is dependent upon knowledge of the flow characteristics for a given tube array geometry. For this, a Strouhal number relating a peak frequency in the turbulence spectrum to the velocity of the flow is required. The data available in the literature for this are rather confusing and the prediction methods appear somewhat contradictory. This paper reports the results from experiments conducted to determine Strouhal numbers for eight tube array models. These results together with the data available in the literature are then compared and appropriate conclusions drawn.


Author(s):  
Fengzhong Sun ◽  
Yuetao Shi ◽  
Zhihang Han ◽  
Yang Liu ◽  
Xinyuan Huang ◽  
...  

The spiral finned tubes are used as the substitute of bare tubes in heat exchangers, which is an effective method to reduce abrasion and fouling in boilers. The cold state test with PDA system has been made to study the distribution of granule concentration between fins. This experimental research has laid the foundation of analysis for further study why the spiral finned tube can reduce abrasion and fouling.


Author(s):  
Tiantian Zhang ◽  
Jing Li

Cooling technology is very important for the safe operation of nuclear power plant. Microchannel heat exchangers have been treated as one of the most potential cooling technologies. Flow characteristics of microchannels (hydraulic diameter is 100 μm) with a new structure, with which obstructions were placed along channels walls, have been investigated under the consideration of the effect of compressibility and viscosity heating. The influences of the Reynolds number, obstruction height, pitch, and geometry and width height ratio on the flow characteristics are investigated. It indicated that Poiseuille number increased with the increasing of Reynolds number and second order increasing with obstruction height. It was observed that the obstruction pitch is an important design parameter for flow characteristics, the pressure drop decreased with the increase of the obstruction pitch. The Poiseuille number reaches maximum for triangular obstruction and minimum for semicircle obstruction. It is also found that width height Ratio of obstruction plays an important role, Poiseuille number will obviously increase when width height Ratio of obstruction is bigger than 1.


Author(s):  
Kyeong Mo Hwang ◽  
Tae Eun Jin

As the operating time of heat exchangers progresses, fouling caused by water-borne deposits and the number of plugged tubes increase and thermal performance decreases. Both fouling and tube plugging are known to interfere with normal flow characteristics and to reduce thermal efficiencies of heat exchangers. The heat exchangers of Korean nuclear power plants have been analyzed in terms of heat transfer rate and overall heat transfer coefficient as a means of heat exchanger management. Except for fouling resulting from the operation of heat exchangers, all the tubes of heat exchangers have been replaced when the number of plugged tubes exceeded the plugging criteria based on design performance sheet. This paper describes a plugging margin evaluation method taking into account the fouling of shell-and-tube heat exchangers. The method can evaluate thermal performance, estimate future fouling variation, and consider current fouling level in the calculation of plugging margin. To identify the effectiveness of the developed method, fouling and plugging margin evaluations were performed at a component cooling heat exchanger in a Korean nuclear power plant.


2019 ◽  
Vol 113 ◽  
pp. 109220 ◽  
Author(s):  
Chidanand K. Mangrulkar ◽  
Ashwinkumar S. Dhoble ◽  
Sunil Chamoli ◽  
Ashutosh Gupta ◽  
Vipin B. Gawande

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