Polymerization unit with improved manhole
11084016 ยท 2021-08-10
Assignee
Inventors
- Gian Luca Bonaccorsi (Ferrara, IT)
- Giuseppe Penzo (Ferrara, IT)
- Enrico Balestra (Ferrara, IT)
- Maurizio Dorini (Ferrara, IT)
- Riccardo Rinaldi (Ferrara, IT)
Cpc classification
B01J19/24
PERFORMING OPERATIONS; TRANSPORTING
B01J3/03
PERFORMING OPERATIONS; TRANSPORTING
B01J19/00
PERFORMING OPERATIONS; TRANSPORTING
International classification
Abstract
A manhole for a polymerization unit having a through-hole formed with a shoulder matching a corresponding shoulder of a plug of a closure member operatively inserted in the through-hole. The through-hole can be closed with a minimum clearance, such that polymer particles do not deposit in the gap between the wall of the unit and the plug of the closure member.
Claims
1. A polymerization unit comprising: a manhole mounted on an opening in a wall of the polymerization unit, the manhole comprising a hollow body mounted in the opening, projecting from the wall of the polymerization unit, and comprising a cylindrical hole aligned with the opening of the polymerization unit, and a closure member provided with a cover plate, wherein: the cylindrical hole of the hollow body comprises a first hole portion and a second hole portion, wherein the second hole portion is in communication with the inside of the polymerization unit, the first hole portion having a diameter (D.sub.h), the second hole portion having a diameter (d.sub.h), and the diameter (D.sub.h) of the first hole portion being larger than the diameter (d.sub.h) of the second hole portion, thereby forming a shoulder between the first and second hole portions of the hollow body; and the closure member comprises a cylindrical plug operatively inserted in the cylindrical hole of the hollow body and comprising a first plug portion having a diameter (D.sub.p) and a second plug portion having a diameter (d.sub.p), wherein the diameter (D.sub.p) of the first plug portion being larger than diameter (d.sub.p) of the second plug portion, the first and second plug portions forming a shoulder operatively abutting against the shoulder formed in the hollow body, and the second plug portion having an end wall matching the shape of the inner wall of the polymerization unit, thereby the wall of the polymerization unit is continuous when the closure member is inserted in the flange.
2. The polymerization unit of claim 1, wherein: the diameter (D.sub.p) of the first plug portion of the closure member is smaller than the diameter (D.sub.h) of the first hole portion of the hollow body, thereby originating a first clearance between the first plug portion and the first hole portion, the diameter (d.sub.p) of the second plug portion of the closure member is smaller than the diameter (d.sub.h) of the second hole portion of the hollow body, thereby originating a second clearance between the second plug portion and the second hole portion, and the first clearance is larger than the second clearance.
3. The polymerization unit of claim 1, wherein the first clearance is larger than 1 mm.
4. The polymerization unit of claim 1, wherein the second clearance is 1 mm or less.
5. The polymerization unit of claim 1, wherein the first hole portion has a length (Lh) longer than the length (lh) of the second hole portion and the first plug portion has length (Lp) longer than the length (lp) of the second plug portion.
6. The polymerization unit of claim 1, wherein the first hole portion is at least twice the length (lh) of the second hole portion.
7. The polymerization unit of claim 1, wherein the hollow body further comprises a sleeve provided with the cylindrical hole and comprising a first hole portion and a second hole portion, wherein the second hole portion is in communication with the inside of the polymerization unit and the first hole portion having a diameter (D.sub.h) larger than the diameter (d.sub.h) of the second hole portion, thereby forming a shoulder between the first hole portion and the second hole portion.
8. The polymerization of claim 7, wherein: the diameter (D.sub.p) of the first plug portion of the closure member is smaller than the diameter (D.sub.h) of the first hole portion of the sleeve of the hollow body, thereby originating a first clearance between the first plug portion and the first hole portion, the diameter (d.sub.p) of the second plug portion of the closure member is smaller than the diameter (d.sub.h) of the second hole portion of the sleeve of the hollow body, whereby thereby originating a second clearance between the second plug portion and the second hole portion, and the first clearance is larger than the second clearance.
9. The polymerization unit of claim 8, wherein the first clearance is larger than 1 mm.
10. The polymerization unit of claim 8, wherein the second clearance is 1 mm or less.
11. The polymerization unit of claim 7, wherein the first hole portion has a length (L.sub.h) larger longer than the length (l.sub.h) of the second hole portion and the first plug portion has length (Lp) longer than the length (l.sub.p) of the second plug portion.
12. The polymerization unit of claim 11, wherein the length (Lh) of the first hole portion is at least twice the length (l.sub.h) of the second hole portion.
13. The polymerization unit of claim 1, further comprising a ring gasket housed between the shoulder of the plug and the shoulder of the hollow body.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
DETAILED DESCRIPTION OF THE INVENTION
(8)
(9) Hole 12 is closed by closure member 14 consisting of a cover plate 16 and a conical plug 18 inserted in the cylindrical hole 12. The conical plug has the tapered part directed toward the inside of the reactor, thereby allowing for removal of the closure member. This structure forms circumferential gap 20 between the opening in the wall of the reactor and the end portion of the closure member, therein polymer particles can deposit and block the closure member.
(10)
(11) A polymerization unit such as a reactor has a wall 10 provided with an opening, thereby allowing inspection and maintenance activities. A hollow body 14 is mounted on the opening of wall 10. The hollow body 14 has a cylindrical through-hole including a first hole portion 22 and a second hole portion 24, the second hole portion 24 being in communication/contact with the inside of the polymerization unit. The first hole portion 22 has a length (L.sub.h) and a diameter (D.sub.h) with both being larger than the length (l.sub.h) and diameter (d.sub.h) of the second hole portion 24, namely L.sub.h>l.sub.h and D.sub.h>d.sub.h. Therefore, a shoulder 28 is formed between the first hole portion 22 and the second hole portion 24 of the hollow body 14.
(12) In some embodiments, a closure member 30 is inserted in the through-hole of hollow body 14 to seal the inside 26 of the reactor. The closure member 30 includes a cover plate 32 and a plug formed with a first plug portion 34 and a second plug portion 36. The first plug portion 34 has a length (L.sub.p) and a diameter (D.sub.p), respectively, larger than the length (l.sub.p) and diameter (d.sub.p) of the second plug portion 36. Therefore, a shoulder 38 is formed between the first 22 and second 24 plug portions of closure member 30. The length (L.sub.h) and a diameter (D.sub.h) of the first and second hole portions 22, 24 correspond to the length (L.sub.p) and a diameter (D.sub.p) of the first plug portion 34 and the second plug portion 36, the second plug portion 36 being slightly smaller to allow sliding into the first plug portion 34 with clearance. When the plug of the closure member 30 is pushed into the hole of hollow body 14, shoulder 38 abuts shoulder 28 of the through-hole of the hollow body. In this position, the cover plate 32 of the closure member 30 abuts the top part of hollow body 14, such that the manhole is closed.
(13) A ring gasket 40 is housed on shoulder 28 or on shoulder 38, to ensure sealing. A ring gasket 42 is also housed between cover plate 32 and hollow body 14, to ensure sealing. Ring gasket 40 and ring gasket 42 are any type of ring gasket for polymer production use. Fastening means 44 removably fasten the closure member 30 to hollow body 14. In some embodiments, the fastening means 44 is selected from the group consisting of nuts and bolts.
(14) The second portion 36 of the plug has an end wall 46 facing the inside of the reactor. The end wall 46 matches the shape of the inner wall of the reactor, such that a uniform and continuous surface is formed within the reactor when the opening is closed by the manhole. In some embodiments, the reactor has a cylindrical wall and the end wall 46 of the closure member has a curved shape matching the cylindrical shape of the reactor wall.
(15) With reference to
(16) In some embodiments, the length L.sub.h of the first portion 22 of the through-hole of the hollow body is at least twice the length l.sub.h of the second portion 24 of the hole, namely L.sub.h>2.Math.l.sub.h.
(17)
(18) In some embodiments, the through-hole of the hollow body is directly formed with a shoulder 28. In some embodiments, the hollow body is not formed with a through-hole having a shoulder 28 and the manhole is adapted to the hollow body.
(19) With reference to
(20) Sleeve 51 has a cylindrical through-hole including a first hole portion 52 and a second hole portion 54, wherein the second hole portion 54 is in communication/contact with the inside of the polymerization unit. The first hole portion 52 has a length (L.sub.h) and a diameter (D.sub.h) larger than the length (l.sub.h) and diameter (d.sub.h) of the second hole portion 54, namely L.sub.h>l.sub.h and D.sub.h>d.sub.h. As a result of this structure, a shoulder 58 is formed between the first hole portion 52 and the second hole portion 54 of sleeve 51. Sleeve 51 provides a through-hole with the same feature as described in connection with
(21) The closure member 30 includes a cover plate 32 and a plug formed with a first plug portion 34 and a second plug portion 36. The first plug portion 34 has a length (L.sub.p) and a diameter (D.sub.p), respectively, larger than the length (l.sub.p) and diameter (d.sub.p) of the second plug portion 36. A shoulder 38 is formed between the first plug portion 34 and the second plug portion 36 of the closure member 30. The length and diameter of the first hole portion 52 and the second hole portion 54 correspond to the length and diameter of the first plug portion 34 and the second plug portion 36, the plug portion being slightly smaller to allow sliding into the hole portion with clearance. When the plug of the closure member 30 is pushed into the hole of sleeve 51, shoulder 38 abuts shoulder 28 of the through-hole of the sleeve. In this position, the cover plate 32 of the closure member 30 abuts the top part of hollow body 50 and sleeve 51, such that the opening of the reactor is closed. A ring gasket 40 is placed between shoulders 38 and 58, and a ring gasket 42 is placed between cover plate 32 and hollow body 50 with sleeve 51, to ensure sealing.
(22) The second portion 36 of the plug has an end wall 46 facing the inside of the reactor. The end wall 46 matches the shape of the inner wall of the reactor, such that a uniform and continuous surface is formed within the reactor when the opening is closed by the closure member 30.
(23) With reference to
(24) In some embodiments, the length L.sub.h of the first portion 52 of the through-hole of the sleeve is at least twice the length l.sub.h of the second portion 54 of the hole, namely L.sub.h>2.Math.l.sub.h.