VAPOR DISTRIBUTION SYSTEM IN A CONCENTRIC REBOILER
20230074304 · 2023-03-09
Inventors
- Raymond Tucker (Derby, NY, US)
- Trung Pham (Fox River Grove, IL, US)
- Stephanie Fuyue Li (Mount Prospect, IL, US)
- Zhanping Xu (Inverness, IL, US)
- James Althoff (Wilmette, IL, US)
Cpc classification
F28D21/0017
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/04
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28F13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D2021/0063
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F28D1/0213
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
B01D3/32
PERFORMING OPERATIONS; TRANSPORTING
F28D1/02
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
B01D3/00
PERFORMING OPERATIONS; TRANSPORTING
F28F13/06
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
Heat exchangers (also referred to as exchangers herein) are provided that fit within a bottom sump of a distillation column. These heat exchangers may be at least partially submerged in the bottoms fluid of the distillation column so that the exterior surface of the heat exchanger can contribute to the total area of the heat exchanger. The internal configuration of the exchanger allows for annular coaxial flow of the hot fluid (condensing vapor stream) and eliminates the need for top and bottom channel heads.
Claims
1. A distillation column wherein a bottom portion of at least one heat exchanger is positioned within a bottom sump of said distillation column.
2. The distillation column of claim 1 wherein said at least one heat exchanger is configured to allow coaxial flow of a condensing vapor stream.
3. The distillation column of claim 1 wherein said at least one heat exchanger contains baffles.
4. The distillation column of claim 3 wherein said baffles are selected from internal concentric baffles, radial baffle blades or helical baffles.
5. The distillation column of claim 1 wherein said at least one heat exchanger is further comprising a central vapor inlet pipe wherein said central vapor inlet pipe has a series of openings.
6. The distillation column of claim 4 wherein an inlet pipe is attached to one end of said central vapor inlet pipe and an outlet pipe is provided to allow drainage of liquid condensate from a bottom nozzle.
7. The distillation column of claim 1 wherein multiple heat exchangers are positioned symmetrically within said distillation column and wherein said multiple heat exchangers comprise 2-6 heat exchangers.
8. The distillation column of claim 1 wherein said distillation column is a reboiler unit or a splitter column.
9. The distillation column of claim 1 wherein a multiplicity of metal tubes fill an annulus shaped space between a central vapor inlet pipe positioned around a central point of a diameter of said heat exchanger and an inner surface of an outer shell of said distillation column.
10. The distillation column of claim 8 wherein said outer shell is uninsulated.
11. The distillation column of claim 8 wherein each of said metal tubes are open at a bottom end and a top end and configured to allow liquid to enter into said bottom end and configured to allow liquid and vapor to flow from said top end.
12. The distillation column of claim 4 wherein said central vapor inlet pipe comprises an opening in an upper section of said distillation column connecting to an inlet pipe and an opening in a lower section of said distillation column in communication with an outlet pipe.
13. The distillation column of claim 1 further comprising a series of trays positioned within said column to deflect and redirect gas flow within said distillation column.
14. The distillation column of claim 8 wherein said metal tubes comprise carbon steel or aluminum.
15. The distillation column further comprising an access opening to a passage of the distillation column for installation and removal.
16. The distillation column of claim 15 wherein said access opening is configured at an angle to allow said heat exchangers to be inserted into a bottom portion of said distillation column.
17. The distillation column of claim 1 further comprising a series of baffles positioned parallel to a bottom and top of said exchanger wherein said baffles have 2, 3 or 4 different sizes.
18. The heat exchanger of claim 4 wherein said central vapor inlet pipe contains vertical slots configured for passage of vapor.
19. The distillation column of claim 1 wherein said heat exchanger is in a position to be partially submerged in liquid.
20. The distillation column of claim 1 comprising tubes open at a top and a bottom of said heat exchanger wherein said bottom sump is partially filled with a liquid.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
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DETAILED DESCRIPTION
[0017] A distillation column is provided wherein a bottom portion of at least one heat exchanger is positioned within a bottom sump of the distillation column. At least one heat exchanger may be configured to allow coaxial flow of a condensing vapor stream. At least one heat exchanger contains internal concentric ring baffles. In addition, each heat exchanger has a central vapor inlet pipe wherein the central vapor inlet pipe has a series of openings. An inlet pipe is attached to one end of the central vapor inlet pipe and a liquid outlet pipe is connected to the bottom tubesheet, directly below the central vapor inlet pipe. There may be multiple heat exchangers positioned within the distillation column, such as four heat exchangers in one particular embodiment. The types of columns may include a reboiler unit or a splitter column. In order to have efficient heat distribution, there may be a multiplicity of metal tubes filling an annulus shaped space between a central vapor inlet pipe positioned around a central point of a diameter of the heat exchanger and an inner surface of an outer shell of the heat exchanger. The outer shell of the concentric heat exchanger may be uninsulated. In the heat exchanger, each of the metal tubes are open at a bottom end and a top end and are configured to allow liquid to enter the bottom end and to allow liquid and vapor to flow from the top end. The central vapor inlet pipe comprises an opening in an upper section of the heat exchanger connecting to an inlet pipe and an opening in a lower section of the heat exchanger in communication with an outlet pipe. The distillation column may further comprise a series of trays positioned within the column to deflect and redirect gas flow within the distillation column. The metal tubes may be about 0.75-1.25 inches in diameter (outer diameter) and comprise carbon steel, stainless steel, copper/nickel, aluminum or other suitable metallurgies. In a preferred embodiment, the metal tubes may be made from High Flux aluminum tubing having an internal coating for boiling and external fluting for condensation enhancement. The aluminum tubes are less than ⅓ the weight of prior art carbon steel tubes. The external fluting provides for about 50% more external surface area as well as enhanced liquid drainage since liquid condenses on the flute tips and then drains into the valleys between flutes. Due to installation and maintenance considerations, the distillation column may include an angled side manway which may be used to allow installation and removal of 1 or multiple heat exchangers.
[0018] In a version of the invention, there are a series of tube supports/concentric flow baffles. These can be 360-degree concentric ring baffles to encourage annular flow vapor distribution. There may be 2-6 different diameter ring baffles used depending upon modelling of ring baffles. Ideally, there is a row of overlap of the ring baffles to support tubes along the edge of the baffle support. The baffles are generally placed in a balance between preventing tube vibration and minimizing shellside pressure drop. The arrangement is ideal for heat integration.
[0019] The invention may be better understood by reference to the Figures. In
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[0025] In an embodiment, the invention involves a distillation column wherein a bottom portion of at least one heat exchanger is positioned within a bottom sump of said distillation column. The at least on heat exchanger is configured to allow coaxial flow of a condensing vapor stream. The heat exchangers may contain baffles such as internal concentric baffles, radial baffle blades or helical baffles. The heat exchangers may further comprise a central vapor inlet pipe wherein the central vapor inlet pipe has a series of openings. There may be an inlet pipe that is attached to one end of said central vapor inlet pipe and an outlet pipe is provided to allow drainage of liquid condensate from a bottom nozzle. In some configurations, there may be 2-6 heat exchangers positioned symmetrically within the distillation column. The distillation column may be a reboiler unit, a splitter column or other type of column used to separate mixtures. In some embodiments, there may be a multiplicity of metal tubes that fill an annulus shaped space between a central vapor inlet pipe positioned around a central point of a diameter of the heat exchanger and an inner surface of an outer shell of said distillation column. The outer shell may be outer shell is uninsulated. In the distillation column each of the metal tubes may be open at a bottom end and a top end and configured to allow liquid to enter into the bottom end and configured to allow liquid and vapor to flow from said top end. The distillation column of claim 4 wherein said central vapor inlet pipe comprises an opening in an upper section of said distillation column connecting to an inlet pipe and an opening in a lower section of said distillation column in communication with an outlet pipe. The distillation column may further be comprising a series of trays positioned within the column to deflect and redirect gas flow within said distillation column. The metal tubes may comprise carbon steel or aluminum. There may be an access opening to a passage within the distillation column for installation and removal of the heat exchangers or other components. The series of baffles positioned parallel to the bottom and top of the heat exchangers may have different sizes such as 2, 3 or 4 different sizes. The heat exchanger's central vapor inlet pipe may contain vertical slots configured for passage of vapor. The heat exchanger may be in a position to be partially submerged in liquid. The tubes within the distillation column may be open at a top and a bottom of said heat exchanger wherein said bottom sump is partially filled with a liquid.