Heat exchange device for a fiber-drawing booth
A heat exchanger device including at least one fin provided with a mechanism for blowing a fluid. The blowing mechanism includes at least one of the walls of the fin, the at least one of the walls having open porosity.
1 - 13 . (canceled)
14 . A heat exchanger device comprising:
at least one fin including means for blowing a fluid,
wherein the blowing means are uniform and include at least one wall of the fin, the at least one wall having open porosity.
15 . Heat exchanger device as claimed in claim 14 , wherein the open porosity of the wall is at least one of between 5 and 30%, between 10 and 25%, and between 15 and 20%.
16 . Heat exchanger device as claimed in claim 14 , wherein the fin is of parallelepipedal overall shape and tubular cross section and has a permeability measured with air at a pressure of 0.5 bar and at 0° C. lying at least one of in a range from 300 to 1500 Sm 3 /h/m 2 and in a range from 300 to 800 Sm 3 /h/m 2 .
17 . The heat exchanger device as claimed in claim 16 , wherein permeability measured with air at a pressure of 0.5 bar and at 0° C. lies in a range from 500 to 600 Sm 3 /h/m 2 .
18 . The heat exchanger device as claimed in claim 14 , wherein a blowing fluid velocity field is symmetric across the at least one open porosity wall.
19 . The heat exchanger device as claimed in claim 14 , wherein the at least one wall of the heat exchanger device is obtained by sintering a metal powder.
20 . The heat exchanger device as claimed in claim 19 , wherein the metal powder is based on a mixture of powdered stainless steel, brass and nickel, with at least one of a particle size smaller than 100 μm and a particle size lying within a range from 10 to 80 μm.
21 . The heat exchanger device as claimed in claim 20 , wherein the open porosity is of an order of 17%.
22 . The heat exchanger device as claimed in claim 14 , wherein the at least one wall of the heat exchanger device is obtained by laminating a metal gauze.
23 . The heat exchanger device as claimed in claim 22 , wherein a lamination comprises at least one of 3 to 18 and 3 to 6 layers of metal gauze.
24 . The heat exchanger device as claimed in claim 14 , wherein the fluid is air at a pressure of at least one of between 0.1 and 6 bar and between 0.2 and 4 bar.
25 . The heat exchanger device as claimed in claim 14 , wherein the blowing fluid results from vaporization within the fin of a fluid that was initially in a liquid state.
26 . The heat exchanger device as claimed in claim 14 , further comprising an auxiliary cooling circuit.