Flame arrestor
A flame arrestor for a flowing explosive gas ( 4 ), having a flame barrier ( 10, 20, 30 ) with a large number of defined passage gaps ( 17, 18 ), whose gap cross section is set with regard to the properties of the flowing gas ( 4 ), is cooled effectively and secured against a flame flashback in the case of continuous combustion by the fact that second gaps ( 18 ) having a smaller gap cross section are arranged adjacent to the first gaps ( 17 ) having the selected gap cross section.
1. A flame arrestor for a flowing explosive gas, having a disk structure with a front face and a back face, the disk structure comprising:
structure forming multiple concentric rings of first gas passages, about a longitudinal axis in a flow direction, extending from the front face to the back face, said first gas passages each having a cross-sectional area, normal to the flow direction, larger than a given value; and
structure forming at least one ring of second gas passages, said ring being substantially concentric with said multiple concentric rings of first gas passages, said second gas passages extending in the flow direction and each having a cross-sectional area, normal to the flow direction, less than the given value,
wherein said multiple concentric rings of first gas passages and said at least one ring of second gas passages are arranged in an alternating pattern, such that said at least one ring of said second gas passages surrounds at least one ring of said first gas passages.
2. The flame arrestor of claim 1 , wherein said structure forming at least one ring of second gas passages forms multiple concentric rings of said second gas passages, and
wherein said multiple concentric rings of first gas passages and said multiple concentric rings of second gas passages are arranged in an alternating pattern of each of said concentric rings of first gas passages being between and concentric with rings of said second gas passages.
3. The flame arrestor of claim 1 , wherein the structure forming said multiple concentric rings of first gas passages includes a first corrugated metal strip wound spirally with a smooth metal strip, and the structure forming said at least one ring of second gas passages includes a second corrugated metal strip wound spirally with a smooth metal strip, the first corrugated metal strip having larger corrugations than the second corrugated metal strip.
4. The flame arrestor of claim 1 , wherein said structure forming at least one ring of second gas passages forms multiple concentric rings of said second gas passages, and
wherein the ratio of the number of rings of said second gas passages to the number of rings of said first gas passages varies over the area of the flame barrier.
5. The flame arrestor of claim 4 , wherein the ratio of the number of rings of said second gas passages to the number of rings of said first gas passages decreases along the radial distance from said longitudinal axis.
6. The flame arrestor of claim 1 , characterized in that the second gas passages gaps all have the same gap cross sections.
7. The flame arrestor of claim 1 , wherein at least one of the second gas passages has a cross sectional area different from a cross sectional area of another of said second gas passages.
8. The flame arrestor of claim 1 , wherein the first and second gaps are formed with the same gap lengths.
9. The flame arrestor of claim 1 , characterized in that the cross-sectional area of the second gas passages is not greater than 50% of the cross-sectional area of the first gas passages.