Compressor end head heating arrangement
10519959 ยท 2019-12-31
Assignee
Inventors
Cpc classification
F04D29/4206
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D17/122
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/624
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F04D29/12
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/10
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/42
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/62
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A compressor end head for providing a thermal barrier to a mechanical seal includes an inner end head having an inner end head opening, inner end head grooves in the inner end head opening, configured to place and seal an end portion of a compressor shaft; and an outer end head having an outer end head opening configured to enclose the inner end head.
Claims
1. A compressor end head for providing a thermal barrier to a mechanical seal, the compressor end head comprising: an inner end head having a first end surface and a second end surface with an inner end head opening extending therebetween and having inner end head grooves therein, configured to place and seal an end portion of a compressor shaft, the first end surface of the inner end head having an inlet formed therein; an outer end head having a first end surface and a second end surface with an outer end head opening extending therebetween and configured to enclose the inner end head, the first end surface of the outer end head having an outlet formed therein; and a flow path extending between the inner end head and the outer end head and connecting the inlet and the outlet.
2. The compressor end head of claim 1, further comprising an interference fit between the inner end head and the outer end head.
3. The compressor end head of claim 1, wherein the inner end head is welded to the outer end head.
4. The compressor end head of claim 1, wherein the mechanical seal comprises a dry gas seal (DGS).
5. The compressor end head of claim 1, wherein the flow path comprises an inlet chamber in the inner end head connected to the inlet and an outlet chamber in the outer end head connected to the outlet, and straight axial channels connecting the inlet chamber and the outlet chamber.
6. The compressor end head of claim 5, wherein the inlet chamber and the outlet chamber comprise a radial thermal barrier around the mechanical seal.
7. The compressor end head of claim 5, wherein the straight axial channels comprise an axial thermal barrier around the mechanical seal.
8. The compressor end head of claim 1, wherein the flow path comprises a flow path for hot oil or gas.
9. A compressor, comprising: a shaft; an inner end head having: an inner end head opening extending along an axis; a first surface comprising an inlet, wherein the first surface is transverse to the axis; and a plurality of inner end head grooves adjacent the inner end head opening configured to place and seal an end portion of the shaft; and an outer end head having an outer end head opening extending along the axis and configured to enclose the inner end head, and a second surface comprising an outlet, wherein the second surface is transverse to the axis; and a flow path on an outer surface of the inner end head connecting the inlet and the outlet.
10. The compressor of claim 9, comprising a plurality of impellers connected to the shaft.
11. The compressor of claim 9, wherein the outer end head comprises an inlet chamber connected to the inlet and an outlet chamber connected to the outlet, and straight axial channels connecting the inlet chamber and the outlet chamber.
12. The compressor of claim 11, wherein the inlet chamber and the outlet chamber comprise a radial thermal barrier around the mechanical seal.
13. The compressor of claim 11, wherein the straight axial channels comprise an axial thermal barrier around the mechanical seal.
14. The compressor of claim 9, wherein the flow path comprises a flow path for hot oil or gas.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The accompanying drawings illustrate exemplary embodiments, wherein:
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DETAILED DESCRIPTION OF THE INVENTION
(13) The following detailed description of the exemplary embodiments refers to the accompanying drawings. The same reference numbers in different drawings identify the same or similar elements. Also, the following detailed description does not limit the invention. Instead, the scope of the invention is defined by the appended claims.
(14) In exemplary embodiments, interference between a mechanical seal and an end head is prevented by providing axial thermal barriers around the mechanical seal to ensure smooth operation of a BOG compressor.
(15) For BOG applications, the mechanical seal (such as sealings 180 and 180 of
(16) A dry gas seal may be in contact with an end head 140 and 140 at the end of the compressor. Referring to
(17) A circular or ring shaped outer end head 220 is illustrated in
(18) Referring to
(19) Cut section views of the outer and inner surfaces of inner end head 210 are illustrated in
(20) The diameter of inner end head 210 may be approximately equal to the diameter of circular opening 221 of outer end head 220 in order to facilitate the enclosure of inner end head 210 within outer end head 220.
(21) As illustrated in
(22) End head 200 of
(23) The outer surface of inner end head 210 may include the helical flow path 214 as described above and illustrated in
(24) In some embodiments, an additional thermal barrier may also be provided. Referring to
(25) In order to prevent leakage from the helical flow path 214, a light interference fit may be made between the inner end head 210 and the outer end head 220 in some embodiments. The inner end head 210 and the outer end head 220 can also be bolted to the compressor housing in some embodiments.
(26) In some embodiments, the helical flow path 214 may be substituted with straight holes in the outer end head 220 to provide heating to the inner end head 210 so that inner end head 210 and the dry gas seal can be maintained at required temperature to avoid interference between the dry gas seal and the inner end head 210 when the compressor handles or processes gas at cryogenic temperatures.
(27) Referring to
(28) Chamber 326 is provided near the inner head hot oil inlet 313 for receiving the oil from inlet 313. A plurality of passages 328 in the outer end head 320 (illustrated in
(29) Chambers 326 and 327 may be connected with each other through straight holes 328 in outer end head 320 in order to facilitate uniform hot oil flow along the axis of the inner end head 310.
(30) Inner end head 310 may be in the form as illustrated in
(31) The term inner side surface of an outer end head (or the inner end head) as used herein may refer to the side of the end head that is facing an impeller (i.e. between an impeller and end of the shaft). The term outer side surface as used herein may refer to the side of the end head that is on a side not facing an impeller (i.e. side of the end head that faces toward the outside of the casing).
(32) The outer surface of the outer end head is adjacent the mechanical seal. The mechanical seal may be a dry gas seal (DGS). The inlet, the outlet, the chamber (of
(33) The inlet chamber 326 and the outlet chamber 327 provide a radial thermal barrier. Channels or passages 328 (of
(34) Exemplary embodiments as described herein provide multiple advantages. A heating system according to exemplary embodiments provides a radial and axial thermal barrier. The thermal barrier reduces heat transfer between inlet and the zone surrounding the DGS leading to a smooth operation of the BOG compressor. The optimized flow path provides gradual change in temperature in radial and axial directions around the DGS and also reduces internal thermal stress. In addition, the heating system according to exemplary embodiments prevents interference between DGS and the end head. The system is simple and compact. The system also prevents interference and provides smooth operation of the BOG compressor at cryogenic temperatures.
(35) Exemplary embodiments as described provide an axial thermal barrier or an axial and a radial thermal barrier for handling temperature gradients in boiled off gas applications. The end head may be bolted to the compressor. The inner and outer heads may also be interference fitted to form the end head.
(36) The above-described exemplary embodiments are intended to be illustrative in all respects, rather than restrictive, of the present invention. Thus the present invention is capable of many variations in detailed implementation that can be derived from the description contained herein by a person skilled in the art. All such variations and modifications are considered to be within the scope and spirit of the present invention as defined by the following claims. No element, act, or instruction used in the description of the present application should be construed as critical or essential to the invention unless explicitly described as such. Also, as used herein, the article a is intended to include one or more items.