Spiral flow type anti-deposition reverse U-shaped pipe
A U-shaped tube and spiral flow technology, which is applied in the field of spiral flow anti-deposition inverted U-shaped tubes, can solve the problems of reduced safety and reliability, economical decline of nuclear power plants, etc., and achieves simple structure, increased economy and safety. , The effect of preventing deposition on the tube wall
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Embodiment 1
[0047] Such as Figure 1-3 As shown, the spiral flow type anti-deposition inverted U-shaped tube for the production of steam generators, in which the tube wall and the spiral baffle are made of inconel690 alloy, the tube wall thickness is 1.5mm, the outer diameter of the inverted U-shaped tube is 20mm, and the spiral baffle The spiral surface of the plate is Archimedes' positive spiral surface, the thickness is 1.2mm, the spiral angle is 35°, the radial dimension of the spiral baffle is the same as the inner diameter of the inverted U-shaped tube, and the outer edge of the spiral baffle is with the tube wall Meet.
[0048] Compared with the U-shaped tube without spiral baffle, the anti-deposition effect is increased by 10%, and the heat transfer effect is increased by 10%.
Embodiment 2
[0050] Production of a spiral flow type anti-deposition inverted U-shaped tube for steam generator similar to Example 1, wherein the tube wall thickness is 1mm, the inverted U-shaped tube outer diameter is 17mm, the spiral baffle thickness is 1mm, and the helix angle is 50°.
[0051] Compared with the U-tube without spiral baffle, the anti-deposition effect is increased by 15%, and the heat transfer effect is increased by 15%.
Embodiment 3
[0053] Produce a spiral flow type anti-deposition inverted U-shaped tube for steam generator similar to Example 1, wherein the wall thickness of the tube is 1.5mm, the outer diameter of the inverted U-shaped tube is 20mm, the thickness of the spiral baffle is 1.5mm, and the helix angle is 70° .
[0054] Compared with the U-shaped tube without spiral baffle, the anti-deposition effect is increased by 15%, and the heat transfer effect is increased by 17%.
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