Vessel containing fluid distribution media
A vessel comprising a bed of randomly oriented ceramic media having fluid distribution channels incorporated in the outer surface of the media is disclosed. The channels capture and redirect the fluid thereby improving distribution of the fluid in the vessel.
1. A vessel, comprising: a fluid entry point; and a bed, said bed comprising a first layer comprising a plurality of individual elements disposed therein, wherein at least a majority of elements in the first layer comprise randomly oriented ceramic media, said ceramic media comprising an outer surface with one or more fluid diverting channels formed therein, wherein each fluid diverting channel has a depth and a width and the ratio of the channel's depth to width exceeds 1.2:1.0 and does not exceed 3.0:1.0; a second layer comprising components wherein the majority of the components are physically distinct from the ceramic media; and wherein the first layer of the bed is positioned between the second layer and the fluid entry point.
2. The vessel of claim 1 wherein only said ceramic media in said first layer comprises an outer surface with fluid diverting channels formed therein.
3. The vessel of claim 1 wherein said first layer's media comprise a first end, a second end and said fluid diverting channels extend therebetween.
4. The vessel of claim 3 wherein said first layer's media each comprise a peripheral wall extending between said ends and said fluid diverting channels formed in said peripheral wall.
5. The vessel of claim 4 , wherein the peripheral wall defines the media's maximum diameter and the depth of said fluid diverting channel exceeds 10 percent of the media's maximum diameter.
6. The vessel of claim 5 , wherein the depth of each fluid diverting channel exceeds 15 percent of the media's maximum diameter.
7. The vessel of claim 5 , wherein the depth of each fluid diverting channel does not exceed 40 percent of the media's maximum diameter.
8. The vessel of claim 6 , wherein the depth of each fluid diverting channel does not exceed 25 percent of the media's maximum diameter.
9. The vessel of claim 1 wherein each fluid diverting channel has a length and a width and the ratio of the channel's length to width exceeds 2:1 and does not exceed 20:1.
10. The vessel of claim 1 wherein the majority of said media have a length and a cross-sectional diameter and the media's length to diameter ratio exceeds 0.5:1.0 and does not exceed 2.5:1.0.
11. The vessel of claim 1 wherein said bed defines a bed depth and said first layer occupies less than 20 percent of said bed depth.
12. The vessel of claim 1 wherein the majority of said media have substantially the same length and the minimum depth of said first layer is at least 5 times greater than said media's length.
13. The vessel of claim 1 wherein said second layer's components comprise a material selected from the group consisting of: a catalytically active metal, adsorbents, mass transfer media, heat transfer media and filtration media.