A PRESS APPARATUS
20230241853 · 2023-08-03
Assignee
Inventors
Cpc classification
B30B11/002
PERFORMING OPERATIONS; TRANSPORTING
International classification
B30B11/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A press apparatus includes a pressure vessel arranged to hold pressure medium therein during use of the press apparatus. The pressure vessel includes a top end closure and a bottom end closure. A furnace chamber is arranged within the pressure vessel so that pressure medium can enter and exit the furnace chamber, the furnace chamber at least in part defining a treatment space arranged to accommodate at least one article. The press apparatus includes at least one outer convection loop pressure medium guiding passage in fluid communication with the furnace chamber and arranged to form an outer convection loop within the pressure vessel. The outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber in proximity to an inner surface of one or more wall(s) of the pressure vessel to a space between the furnace chamber and the bottom end closure.
Claims
1. A press apparatus comprising: a pressure vessel, arranged to hold pressure medium therein during use of the press apparatus, the pressure vessel comprising a top end closure and a bottom end closure; a furnace chamber arranged within the pressure vessel so that pressure medium can enter and exit the furnace chamber, the furnace chamber at least in part defining a treatment space arranged to accommodate at least one article, wherein the press apparatus is configured to subject the at least one article to a treatment cycle including a cooling phase; at least one outer convection loop pressure medium guiding passage in fluid communication with the furnace chamber and arranged to form an outer convection loop within the pressure vessel, wherein the outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber in proximity to an inner surface of wall(s) of the pressure vessel to a space between the furnace chamber and the bottom end closure; a pressure medium flow generator arranged within the pressure vessel and in fluid communication with the furnace chamber, wherein at least during a cooling phase of the treatment cycle, the pressure medium flow generator is arranged to generate a transport of pressure medium from at least the space between the furnace chamber and the bottom end closure into the furnace chamber so as to cool the pressure medium in the treatment space; and at least one pressure medium guiding passage arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the at least one pressure medium guiding passage, wherein each of the at least one pressure medium guiding passage is arranged such that a cross-section thereof in a plane perpendicular to a flow direction of the pressure medium through the pressure medium guiding passage is formed as a gap having a width wherein each of the at least one pressure medium guiding passage has a corresponding width, and wherein a sum of the width(s) is less than 4 mm.
2. A press apparatus according to claim 1, wherein each of the at least one pressure medium guiding passage is arranged such a sum of the corresponding cross-section width(s) is in a range 0.1 mm to 3.5 mm.
3. A press apparatus according to claim 1, wherein each of the at least one pressure medium guiding passage is arranged such that a sum of the corresponding cross-section width(s) is in a range 0.1 mm to 2.5 mm.
4. A press apparatus according to claim 1, wherein the pressure medium flow generator is controllable at least with respect to the flow rate of pressure medium transported from at least the space between the furnace chamber and the bottom end closure into the furnace chamber, wherein the rate of cooling of the pressure medium in the treatment space is governed at least in part by the flow rate of pressure medium transported from at least the space between the furnace chamber and the bottom end closure into the furnace chamber; wherein each of the at least one pressure medium guiding passage is arranged such that a sum of the corresponding cross-section width(s) is based on estimated resistance to flow of pressure medium guided in the outer convection loop after having exited the furnace chamber at rates of cooling exceeding a selected rate of cooling threshold value, such that the corresponding cross-section width(s) causes a resistance to flow of pressure medium guided in the pressure medium guiding passage directly after having exited the furnace chamber to the space between the furnace chamber and the bottom end closure to become higher than the estimated resistance to flow of pressure medium guided in the outer convection loop after having exited the furnace chamber.
5. A press apparatus according to claim 1, wherein each of the at least one pressure medium guiding passage is arranged such that a cross-section thereof in a plane perpendicular to a flow direction of the pressure medium through the pressure medium guiding passage is formed as a gap having the shape of: at least part of a circular ring, at least part of an elliptical ring, or a rectangle.
6. A press apparatus according to claim 1, wherein the pressure medium flow generator is, at least during the cooling phase of the treatment cycle, arranged to generate a transport of pressure medium from another space in the press apparatus, wherein the temperature of the pressure medium in the other space is lower than the temperature of the pressure medium in the treatment space during at least part of the cooling phase, such that by transport of pressure medium during the cooling phase from the other space to the treatment space, the temperature of the pressure medium in the treatment space decreases.
7. A press apparatus according to claim 1, wherein the outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber to a space between the top end closure and the furnace chamber, and further to guide the pressure medium from the space between the top end closure and the furnace chamber in proximity to the inner surface of walls of the pressure vessel to the space between the furnace chamber and the bottom end closure.
8. A press apparatus according to, comprising: a plurality of outer convection loop pressure medium guiding passages in fluid communication with the furnace chamber and arranged to form the outer convection loop; wherein the furnace chamber is at least partly enclosed by a heat insulated casing arranged so that pressure medium can enter and exit the furnace chamber, the heat insulated casing comprising a heat insulating portion, a housing at least partly enclosing the heat insulating portion, and a bottom insulating portion; wherein a part of the outer convection loop comprises a first outer convection loop pressure medium guiding passage formed between at least portions of the housing and the heat insulating portion, respectively, and which is arranged to guide the pressure medium after having exited the furnace chamber to a space between the top end closure and the furnace chamber, and wherein another part of the outer convection loop comprises a second outer convection loop pressure medium guiding passage arranged to guide the pressure medium from the space between the top end closure and the furnace chamber in proximity to the inner surface of walls of the pressure vessel to a space between the bottom insulating portion and the bottom end closure, wherein said space between the bottom insulating portion and the bottom end closure is constituting or is included in said space between the furnace chamber and the bottom end closure; wherein the at least one pressure medium guiding passage is arranged such that pressure medium may pass from the furnace chamber to the space between the bottom insulating portion and the bottom end closure, or vice versa, via only the at least one pressure medium guiding passage.
9. A press apparatus according to claim 8, wherein the at least one pressure medium guiding passage is at least in part defined by at least one gap formed between the bottom insulating portion and the housing.
10. A press apparatus according to claim 8, wherein the bottom insulating portion comprises a plate-shaped member, wherein the at least one pressure medium guiding passage is at least in part defined by at least one gap formed between an edge of the plate-shaped member and a surface of the housing.
11. A press apparatus according to claim 8, wherein the bottom insulating portion comprises a plate-shaped member, comprising a first outer surface, a second outer surface opposite to the first outer surface, an edge surface extending between the first outer surface and the second outer surface, and a disc or a circular ring attached to one of the first outer surface and the second outer surface, wherein the disc or circular ring is sized such that the disc or circular ring extends over at least a part of a boundary of the first outer surface or the second outer surface, and wherein the at least one pressure medium guiding passage is at least in part defined by a gap formed between an edge of the disc or circular ring and a surface of the housing.
12. A press apparatus according to claim 8, further comprising a circular ring attached to a surface of the housing, the circular ring being attached to the surface of the housing and sized such that the at least one pressure medium guiding passage is at least in part defined by a gap formed between the circular ring and the bottom insulating portion.
13. A press apparatus according to claim 8, further comprising a gasket arranged intermediate a surface of the housing and the bottom insulating portion, an outer gasket edge being connected to the surface of the housing and an inner gasket edge being connected to the bottom insulating portion, wherein the at least one pressure medium guiding passage is at least in part defined by a gap formed in the gasket.
14. A press apparatus according to claim 1, wherein the at least one pressure medium guiding passage is curved.
15. A press apparatus comprising: a pressure vessel, arranged to hold pressure medium therein during use of the press apparatus, the pressure vessel comprising a top end closure and a bottom end closure; a furnace chamber arranged within the pressure vessel so that pressure medium can enter and exit the furnace chamber, the furnace chamber at least in part defining a treatment space arranged to accommodate at least one article, wherein the press apparatus is configured to subject the at least one article to a treatment cycle including a cooling phase; at least one outer convection loop pressure medium guiding passage in fluid communication with the furnace chamber and arranged to form an outer convection loop within the pressure vessel, wherein the outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber in proximity to an inner surface of wall(s) of the pressure vessel to a space between the furnace chamber and the bottom end closure; a pressure medium flow generator arranged within the pressure vessel and in fluid communication with the furnace chamber, wherein at least during a cooling phase of the treatment cycle, the pressure medium flow generator is arranged to generate a transport of pressure medium from at least the space between the furnace chamber and the bottom end closure into the furnace chamber so as to cool the pressure medium in the treatment space; at least one pressure medium guiding passage arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the at least one pressure medium guiding passage; one or more controllable pressure medium flow restrictions arranged to selectively and controllably impede or obstruct a flow of pressure medium in the at least one pressure medium passage; and a control unit communicatively connected with the one or more controllable pressure medium flow restrictions for controlling operation thereof, wherein the control unit is configured to control the one or more controllable pressure medium flow restrictions so as to impede or obstruct a flow of pressure medium in the at least one pressure medium guiding passage during a cooling phase of the treatment cycle and not impede or obstruct a flow of pressure medium in the at least one pressure medium guiding passage during another or other phases of the treatment cycle including at least one of a heating phase, a hold phase, a pumping phase and a vacuum phase, or any combination thereof; wherein the press apparatus is arranged such that: the furnace chamber is at least partly enclosed by a heat insulated casing arranged so that pressure medium can enter and exit the furnace chamber, the heat insulated casing comprising a heat insulating portion, a housing at least partly enclosing the heat insulating portion, and a bottom insulating portion, wherein a heat absorbing element is arranged between an upper part of the heat insulating portion and an opening in the housing; and/or such that: a heat exchanging element is arranged in the top end closure.
16. A press apparatus according to claim 15, wherein the furnace chamber is at least partly enclosed by a heat insulated casing arranged so that pressure medium can enter and exit the furnace chamber, the heat insulated casing comprising a heat insulating portion, a housing at least partly enclosing the heat insulating portion, and a bottom insulating portion, the press apparatus further comprising: a circular ring arranged intermediate a surface of the housing and the bottom insulating portion; wherein the press apparatus comprises a plurality of pressure medium guiding passages arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the plurality of pressure medium guiding passages, wherein the plurality of pressure medium guiding passages are arranged and distributed radially in the circular ring; wherein the press apparatus comprises a plurality of controllable pressure medium flow restrictions arranged to selectively and controllably impede or obstruct a flow of pressure medium in the plurality of pressure medium passages, wherein each of the plurality of pressure medium passages is provided with one or more corresponding pressure medium flow restrictions of the plurality of controllable pressure medium flow restrictions; wherein the control unit is configured to control the plurality of controllable pressure medium flow restrictions so as to impede or obstruct a flow of pressure medium in the plurality of pressure medium guiding passages during the cooling phase of the treatment cycle and not impede or obstruct a flow of pressure medium in the plurality of pressure medium guiding passages during another or other phases of the treatment cycle including at least one of the heating phase, the hold phase, the pumping phase and the vacuum phase, or any combination thereof.
17. A method in press apparatus, the press apparatus comprising a pressure vessel, arranged to hold pressure medium therein during use of the press apparatus, the pressure vessel comprising a top end closure and a bottom end closure, a furnace chamber arranged within the pressure vessel so that pressure medium can enter and exit the furnace chamber, the furnace chamber at least in part defining a treatment space arranged to accommodate at least one article, wherein the press apparatus is configured to subject the at least one article to a treatment cycle including a cooling phase, the press apparatus further comprising at least one outer convection loop pressure medium guiding passage in fluid communication with the furnace chamber and arranged to form an outer convection loop within the pressure vessel, wherein the outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber in proximity to an inner surface of wall(s) of the pressure vessel to a space between the furnace chamber and the bottom end closure, the press apparatus further comprising a pressure medium flow generator arranged within the pressure vessel and in fluid communication with the furnace chamber, wherein at least during a cooling phase of the treatment cycle, the pressure medium flow generator is arranged to generate a transport of pressure medium from at least the space between the furnace chamber and the bottom end closure into the furnace chamber so as to cool the pressure medium in the treatment space, the press apparatus further comprising at least one pressure medium guiding passage arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the at least one pressure medium guiding passage, the press apparatus further comprising one or more controllable pressure medium flow restrictions arranged to selectively and controllably impede or obstruct a flow of pressure medium in the at least one pressure medium passage, the method comprising: controlling the one or more controllable pressure medium flow restrictions so as to impede or obstruct a flow of pressure medium in the at least one pressure medium guiding passage during a cooling phase of the treatment cycle and not impede or obstruct a flow of pressure medium in the at least one pressure medium guiding passage during another or other phases of the treatment cycle including at least one of a heating phase, a hold phase, a pumping phase and a vacuum phase, or any combination thereof; wherein the press apparatus is arranged such that: the furnace chamber is at least partly enclosed by a heat insulated casing arranged so that pressure medium can enter and exit the furnace chamber, the heat insulated casing comprising a heat insulating portion, a housing at least partly enclosing the heat insulating portion, and a bottom insulating portion, wherein a heat absorbing element is arranged between an upper part of the heat insulating portion and an opening in the housing; and/or such that: a heat exchanging element is arranged in the top end closure.
18. A method according to claim 17, wherein the furnace chamber is at least partly enclosed by a heat insulated casing arranged so that pressure medium can enter and exit the furnace chamber, the heat insulated casing comprising a heat insulating portion, a housing at least partly enclosing the heat insulating portion, and a bottom insulating portion, wherein the press apparatus further comprises a circular ring arranged intermediate a surface of the housing and the bottom insulating portion, wherein the press apparatus comprises a plurality of pressure medium guiding passages arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the plurality of pressure medium guiding passages, wherein the plurality of pressure medium guiding passages are arranged and distributed radially in the circular ring, and wherein the press apparatus comprises a plurality of controllable pressure medium flow restrictions arranged to selectively and controllably impede or obstruct a flow of pressure medium in the plurality of pressure medium passages, wherein each of the plurality of pressure medium passages is provided with one or more corresponding pressure medium flow restrictions of the plurality of controllable pressure medium flow restrictions, the method comprising: controlling the plurality of controllable pressure medium flow restrictions so as to impede or obstruct a flow of pressure medium in the plurality of pressure medium guiding passages during the cooling phase of the treatment cycle and not impede or obstruct a flow of pressure medium in the plurality of pressure medium guiding passages during another or other phases of the treatment cycle including at least one of the heating phase, the hold phase, the pumping phase and the vacuum phase, or any combination thereof.
19. A computer program comprising instructions, which when executed by one or more processors comprised in a control unit, cause the control unit to perform a method according to claim 17.
20. A processor-readable medium is provided having a computer program loaded thereon, wherein the computer program comprises instructions, which, when executed by one or more processors comprised in a control unit, cause the control unit to perform a method according to claim 17.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0068] Exemplifying embodiments of the present invention will be described below with reference to the accompanying drawings.
[0069] Each of
[0070] The figures are schematic, not necessarily to scale, and generally only show parts which are necessary in order to elucidate embodiments of the present invention, wherein other parts may be omitted or merely suggested.
DETAILED DESCRIPTION
[0071] The present invention will now be described hereinafter with reference to the accompanying drawings, in which exemplifying embodiments of the present invention are illustrated. The present invention may, however, be embodied in many different forms and should not be construed as limited to the embodiments of the present invention set forth herein; rather, these embodiments are provided by way of example so that this disclosure will convey the scope of the present invention to those skilled in the art.
[0072]
[0073] The press apparatus 100 comprises a pressure vessel, which comprises a pressure cylinder 1 and a top end closure 8 and a bottom end closure 9, or more generally a first end closure and a second end closure, respectively. It is to be understood that the pressure vessel—which will be collectively referred to in the following by way of the reference numerals 1, 8 and 9—may comprise additional parts, components or elements not illustrated in
[0074] The pressure vessel 1, 8, 9 comprises a furnace chamber 18. The furnace chamber 18 is arranged within the pressure vessel 1, 8, 9 so that pressure medium can enter and exit the furnace chamber 18. The furnace chamber 18 may comprise a furnace, or heater or heating elements, for heating of the pressure medium in the pressure vessel for example during a pressing phase of a treatment cycle. The furnace is schematically indicated in
[0075] The pressure vessel 1, 8, 9 includes a treatment space therein. The treatment space may for example be at least in part defined by the furnace chamber 18. For example, the treatment space may be comprised or constituted by an interior of the furnace chamber 18. The treatment space is arranged to accommodate an article 5 (or possibly several articles). In accordance with the embodiment of the present invention illustrated in
[0076] The outer surface of the outer walls of the pressure vessel 1, 8, 9 may be provided with channels, conduits or tubes, etc. (not shown in
[0077] On the outside surface of the outer walls of the pressure cylinder 1, and possibly on any channels, conduits and/or tubes, etc. for coolant as described in the foregoing, pre-stressing means may be provided. The pre-stressing means (not shown in
[0078] Even though it is not explicitly indicated in
[0079] As will be described in more detail in the following, the press apparatus 100 comprises outer convection loop pressure medium guiding passages 10, 11, which are in fluid communication with the furnace chamber 18 and arranged to form an outer convection loop within the pressure vessel 1, 8, 9. The outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber 18 in proximity to an inner surface 23 of wall(s) 22 of the pressure vessel 1, 8, 9 to a space 16 between the furnace chamber 18 and the bottom end closure 9. As indicated in
[0080] In accordance with the embodiment of the present invention illustrated in
[0081] In accordance with the embodiment of the present invention illustrated in
[0082] The pressure medium used in the pressure vessel 1, 8, 9 or press apparatus 100 may for example comprise or be constituted by a liquid or gaseous medium which may have a relatively low chemical affinity in relation to the article(s) to be treated in the pressure vessel 1, 8, 9. The pressure medium may for example comprise a gas, for example an inert gas such as Argon gas.
[0083] As indicated in
[0084] The pressure medium that enters into the pressure medium guiding passage 11 by way of the opening(s) between the heat insulating portion 7 and the housing 2 is guided in the pressure medium guiding passage 11 towards the top end closure 8 where it may exit the pressure medium guiding passage 11 and the heat insulated casing 2, 4, 7 by way of an opening in the housing 2, e.g., a central opening in the housing 2, as illustrated in
[0085] A pressure medium guiding passage defined by the space 17 in part defined by the inner surface of the top end closure 8 and the pressure medium guiding passage 10 is arranged to guide the pressure medium having exited the opening in the housing 2 in proximity to the top end closure 8 and in proximity to an inner surface 23 of wall(s) 22 of the pressure vessel 1, 8, 9 (e.g., the wall(s) of the pressure cylinder 1, respectively, as illustrated in
[0086] It is to be understood that
[0087] Thus, an outer convection loop may be formed by at least the pressure medium guiding passage 10 and the pressure medium guiding passage 11. In a part of the outer convection loop, the pressure medium is guided in proximity to the inner surface of the top end closure 8 and the inner surface 23 of wall(s) 22 of the pressure vessel 1, 8, 9, or pressure cylinder 1. The amount of thermal energy which may be transferred from the pressure medium during its passage in proximity to inner surfaces of the top end closure 8 and the inner surface 23 of walls 22 of the pressure vessel 1, 8, 9, or the pressure cylinder 1, may depend on at least one of the following: the speed of the pressure medium, the amount of pressure medium having (direct) contact with the inner surface of the top end closure 8 and the inner surface 23 of walls 22 of the pressure vessel 1, 8, 9, or the pressure cylinder 1, the relative temperature difference between the pressure medium and the inner surface of the top end closure 8 and the inner surface 23 of walls 22 of the pressure vessel 1, 8, 9, or the pressure cylinder 1, the thickness of the top end closure 8 and the thickness of walls 22 of the pressure vessel 1, 8, 9, or the pressure cylinder 1, and the temperature of any flow of coolant in channels, conduits or tubes provided on the outer surface of walls 22 of the pressure vessel 1, 8, 9, or the pressure cylinder 1 (indicated in
[0088] The pressure medium that is guided in the pressure medium guiding passage 10 back towards the furnace chamber 18 enters the space 16 between the furnace chamber 18—or the bottom insulating portion 4—and the bottom end closure 9. The furnace chamber 18 may be arranged so that pressure medium can enter the furnace chamber 18 from, and exit the furnace chamber 18 into, the space 16. For example, and in accordance with the embodiment of the present invention illustrated in
[0089] The pressure medium guiding passage 32 of the furnace chamber 18 and the pressure medium guiding passage formed between the load compartment 19 and the bottom insulating portion 4 are in fluid communication with the load compartment 19 so as to in part form an inner convection loop, wherein pressure medium in the inner convection loop is guided through the load compartment 19 and through the pressure medium guiding passage 32 of the furnace chamber 18 and the pressure medium guiding passage formed between the load compartment 19 and the bottom insulating portion 4 and back to the load compartment 19, or vice versa.
[0090] In accordance with the embodiment of the present invention illustrated in
[0091] The press apparatus 100 may comprise a pressure medium flow generator 13 arranged within the pressure vessel 1, 8, 9 and in fluid communication with the furnace chamber 18. At least during a cooling phase of the treatment cycle, the pressure medium flow generator 13 may be arranged to generate a transport of pressure medium from at least the space 16 between the furnace chamber 18 and the bottom end closure 4 into the furnace chamber 18 so as to cool the pressure medium in the treatment space.
[0092] According to the embodiment of the present invention illustrated in
[0093] The press apparatus 100 comprises at least one pressure medium guiding passage 21 arranged within the pressure vessel 1, 8, 9 such that pressure medium may pass from the furnace chamber 18 to the space 16 between the furnace chamber 18 and the bottom end closure 9, or vice versa, via only the at least one pressure medium guiding passage 21. Each of the at least one pressure medium guiding passage 21 is arranged such that a cross-section thereof in a plane perpendicular to a flow direction of the pressure medium through the pressure medium guiding passage 21 is formed as a gap having a width W, wherein each of the at least one pressure medium guiding passage 21 has a corresponding width, and
[0094] wherein a sum of the width(s) is less than 4 mm.
[0095] According to the embodiment of the present invention illustrated in
[0096] The dimensions of other parts of the press apparatus 100 may vary and may depend on the particular type of press apparatus. The pressure vessel 1, 8, 9 illustrated in
[0097] As illustrated in
[0098] According to the embodiment of the present invention illustrated in
[0099] It is to be understood that the pressure medium guiding passage 21 illustrated in
[0100]
[0101]
[0102]
[0103] The press apparatus 100 illustrated in
[0104] Compared to the press apparatus 100 illustrated in
[0105] Possibly, a plurality of pressure medium guiding passages may be provided, which pressure medium guiding passages for example may be arranged in the circular ring 33. The plurality of pressure medium guiding passages may be distributed radially, in a regular or irregular manner, in the circular ring 33. Each pressure medium guiding passage might be provided with one or more corresponding controllable pressure medium flow restrictions.
[0106] The control unit 35 is configured to control the controllable pressure medium flow restrictions 34 so as to impede or obstruct a flow of pressure medium in the pressure medium guiding passage 21 during a cooling phase of the treatment cycle (e.g., completely, or substantially completely, impede or obstruct flow of pressure medium in the pressure medium passage 21), and not impede or obstruct a flow of pressure medium in the pressure medium guiding passage 21 during another or other phases of the treatment cycle, including at least one of a heating phase and a vacuum phase.
[0107] In conclusion, a press apparatus is disclosed. The press apparatus comprises a pressure vessel, arranged to hold pressure medium therein during use of the press apparatus. The pressure vessel comprises a top end closure and a bottom end closure. A furnace chamber is arranged within the pressure vessel so that pressure medium can enter and exit the furnace chamber, the furnace chamber at least in part defining a treatment space arranged to accommodate an article. The press apparatus comprises at least one outer convection loop pressure medium guiding passage in fluid communication with the furnace chamber and arranged to form an outer convection loop within the pressure vessel. The outer convection loop is arranged to guide the pressure medium after having exited the furnace chamber in proximity to an inner surface of wall(s) of the pressure vessel to a space between the furnace chamber and the bottom end closure. At least one pressure medium guiding passage is arranged within the pressure vessel such that pressure medium may pass from the furnace chamber to the space between the furnace chamber and the bottom end closure, or vice versa, via only the at least one pressure medium guiding passage.
[0108] While the present invention has been illustrated in the appended drawings and the foregoing description, such illustration is to be considered illustrative or exemplifying and not restrictive; the present invention is not limited to the disclosed embodiments. Other variations to the disclosed embodiments can be understood and effected by those skilled in the art in practicing the claimed invention, from a study of the drawings, the disclosure, and the appended claims. In the appended claims, the word “comprising” does not exclude other elements or steps, and the indefinite article “a” or “an” does not exclude a plurality. The mere fact that certain measures are recited in mutually different dependent claims does not indicate that a combination of these measures cannot be used to advantage. Any reference signs in the claims should not be construed as limiting the scope.