Method for improving tube bundle effect of heat transfer tube
A heat transfer tube and slot height technology, which is applied in the direction of tubular elements, heat exchange equipment, lighting and heating equipment, etc., to achieve the effect of improving the heat exchange performance and high heat exchange performance of the condensing side.
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Embodiment 1
[0043] see image 3 , the heat transfer tube provided in this embodiment is based on the existing heat transfer tube, by using a thinner slotting tool to process fin grooves 304 on the top of part of the fins 301, and the fins 301 are formed along the circumferential direction There are inter-fin slots 302, and fin platforms 303 are formed between adjacent inclined slots.
[0044] In this embodiment, when the fin grooves are processed, a fin groove is formed every two smooth fins on the fins of the heat transfer tube.
[0045] Based on the above scheme, if it is assumed that the code name of the smooth fin without fin groove is "0", and the code name of the slotted fin with fin groove is "1", such as image 3 As shown, in this embodiment, the number of fin heads is 3, and there is a fin opening groove for every two smooth fins along the axial direction on the fin, and the "001001" type heat transfer tube can be processed. Obviously The ratio of smooth fins is 2 / 3.
[0046] ...
Embodiment 2
[0059] In the heat transfer tube provided in this embodiment, when the fin grooves are processed, two fin grooves are continuously formed on every two smooth fins on the fins of the heat transfer tube.
[0060] see Figure 4 , in the present embodiment, the number of fin heads is 4, and the fin grooves 304 are opened every two fins on the fin 301 in the axial direction, and the heat transfer tube of the "0011" type can be processed (K=1 / 2 ). And other structures are the same as the heat transfer tube provided in Embodiment 1, as mentioned above, and will not be repeated here.
Embodiment 3
[0062] In the heat transfer tube provided in this embodiment, when the fin grooves are processed, two fin grooves are continuously formed on every other smooth fin on the fins of the heat transfer tube.
[0063] see Figure 5 , in this embodiment, the number of fin heads is 3, and each fin opening groove 304 is spaced apart on the fin 301 in the axial direction, and the heat transfer tube of the "011011" type can be processed (K=1 / 3) . And other structures are the same as the heat transfer tube provided in Embodiment 1, as mentioned above, and will not be repeated here.
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