Streamlined variable amplitude parabolic corrugated fin of oval tube fin heat exchanger

A corrugated fin and streamlined technology, applied in the field of elliptical tube-fin heat exchanger fins, can solve the problems of inability to improve the flow linearity of fluid flowing through the fins, poor flow linearity, and large flow pressure loss.

Active Publication Date: 2014-11-05
LANZHOU JIAOTONG UNIV
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

[0003] The elliptical tube-fin heat exchanger has a certain flow linearity compared with the circular tube due to its tube geometry, but when the tube size becomes larger or the flow rate increases, the flow linearity becomes worse, and when the fluid passes through the elliptical tube The detachment of the body causes a large flow pressure loss, and forms a recirculation zone at the end of the oval tube that is not conducive to heat transfer
Existing fins do not improve fluid flow through the fin side
Therefore, the heat transfer performance of the fin surface of the elliptical tube-fin heat exchanger needs to be further improved.

Method used

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  • Streamlined variable amplitude parabolic corrugated fin of oval tube fin heat exchanger
  • Streamlined variable amplitude parabolic corrugated fin of oval tube fin heat exchanger

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Embodiment Construction

[0020] see figure 1 -2. The present invention includes the elliptical tube hole 2 on the fin 1, the elliptical ring boss 3, the streamlined convex corrugation 4, the concave corrugation 5 and the corrugated shape 6 punched out. The oval tube holes 2 can be arranged in a fork row or in a straight row. The height of ellipse ring flanging 3 is equal to fin pitch, plays the effect of fin location. The top of the oval ring boss 3 is slightly turned outwards with a flanging 7, which is convenient for the fins to pass through the tube and the fins to be positioned. The streamlined convex corrugations 4 (solid lines) and concave corrugations 5 (dotted lines) are alternately distributed between the corrugated region boundaries 8 according to the flow function value of the corrugated region boundaries 8, and are distributed symmetrically about the longitudinal and transverse centerlines of the holes 2 respectively. Both the streamlined convex corrugations 4 and the concave corrugation...

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Abstract

Provided is a streamlined variable amplitude parabolic corrugated fin of an oval tube fin heat exchanger. According to the needs for expanding the surface of the fin and guiding fluid to flow, streamlined convex ripples 4 and streamlined concave ripples 5 are extruded out on the fin from an airflow inlet to an airflow outlet, and the complete cross sections of the convex ripples 4 and the concave ripples 5 are parabolic. The connecting line of the same trough and the connecting line of the same wave peak are streamlines. According to the streamlines, backflow does not happen to a tube tail of a plain fin side channel of the tube fin heat exchanger corresponding to the fin 1 along the tube axial center section. The amplitude of the convex ripples 4 and the concave ripples 5 in the longitudinal direction needs the change of a waveform 14, and the amplitude in the transverse direction needs the change of an envelope ripple trough and peak of a waveform 15. The parabolic streamlined corrugated fin can effectively improve the streamline performance of flowing of fluid, flowing resistance is reduced, the area of the surface of the fin is increased through the convex/concave ripples on the surface of the fin, heat transfer resistance is reduced, and the overall heat exchange capacity of the fin is improved.

Description

technical field [0001] The invention relates to fins of an elliptical tube-and-fin heat exchanger, in particular to a streamlined variable-amplitude parabolic corrugated fin for an elliptical tube-and-fin heat exchanger. Background technique [0002] Tube-fin heat exchangers are widely used. Generally, the liquid working medium flows in the tube, and the gas flows outside the tube. The thermal resistance of the gas side accounts for 70%-90% of the total thermal resistance of this type of heat exchanger, which is the main thermal resistance of the heat transfer link. Reducing the thermal resistance of the air side is very important to improve the overall heat transfer performance of the heat exchanger of. The reinforced fins can increase the heat transfer area of ​​the fins and strengthen the air flow turbulence on the air side, increasing the heat transfer on the air side, thereby improving the heat transfer performance of the heat exchanger. Therefore, enhanced heat exch...

Claims

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Application Information

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Patent Type & Authority Applications(China)
IPC IPC(8): F28F1/32
Inventor 王天鹏王良璧林志敏宋克伟常立民胡万玲张永恒王小见武祥刘松苏梅王良成张强张昆王烨郭鹏周文和
Owner LANZHOU JIAOTONG UNIV
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