Supporting platform, rotating machine unit, and method for manufacturing rotating machine unit
11268648 ยท 2022-03-08
Assignee
Inventors
Cpc classification
F16M7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F04D29/60
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M9/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
F16M2200/08
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
International classification
F16M7/00
MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
Abstract
A supporting platform which supports a rotating machine on a base, includes: a pair of supporting bodies which is provided on the base to be separated from each other in a horizontal direction; a supporting column which is provided on the supporting body, extends upward in a vertical direction, and supports a supporting target portion provided in the rotating machine; an outer adjustment member which supports the supporting body on the base and adjusts a height of the supporting body with respect to the base; and an inner adjustment member which is disposed inside the outer adjustment member in a separation direction of the pair of supporting bodies, supports the supporting body on the base, and adjusts the height of the supporting body with respect to the base.
Claims
1. A supporting platform which supports a rotating machine on a base, comprising: a pair of supporting bodies which is provided on the base to be separated from each other in a horizontal direction; a supporting column which is provided on each supporting body of the pair of supporting bodies, extends upward in a vertical direction, and supports a supporting target portion provided in the rotating machine; an outer adjustment member which supports each supporting body on the base and adjusts a height of each supporting body with respect to the base; and an inner adjustment member which is disposed inside the outer adjustment member in a separation direction of the pair of supporting bodies, supports each supporting body on the base, and adjusts the height of each supporting body with respect to the base, wherein each supporting body includes an upper plate section to which the supporting column is fixed, a lower plate section which is provided below the upper plate section in the vertical direction at an interval, and a connection section which is provided at a position overlapping the supporting column when viewed in the vertical direction and connects the upper plate section and the lower plate section to each other, wherein the outer adjustment member is disposed outside the connection section in the separation direction, and wherein the inner adjustment member is disposed inside the connection section in the separation direction.
2. The supporting platform according to claim 1, wherein the inner adjustment member includes an inner operating portion for adjusting the height of each supporting body, and wherein the inner operating portion is provided above the upper plate section in the vertical direction.
3. The supporting platform according to claim 2, wherein the inner adjustment member is provided at a position where a position of the rotating machine in an axial direction in which a rotating shaft extends overlaps the supporting column.
4. The supporting platform according to claim 3, wherein each supporting body includes a first square tubular member having a rectangular tubular shape and a second square tubular member which is disposed inside the first square tubular member in the separation direction and has a rectangular tubular shape, wherein the connection section includes mutually facing side wall portions of the first square tubular member and the second square tubular member, wherein the outer adjustment member supports the first square tubular member, and wherein the inner adjustment member supports the second square tubular member.
5. The supporting platform according to claim 2, wherein each supporting body includes a first square tubular member having a rectangular tubular shape and a second square tubular member which is disposed inside the first square tubular member in the separation direction and has a rectangular tubular shape, wherein the connection section includes mutually facing side wall portions of the first square tubular member and the second square tubular member, wherein the outer adjustment member supports the first square tubular member, and wherein the inner adjustment member supports the second square tubular member.
6. The supporting platform according to claim 1, wherein the inner adjustment member is provided at a position where a position of the rotating machine in an axial direction in which a rotating shaft extends overlaps the supporting column.
7. The supporting platform according to claim 1, wherein each supporting body includes a first square tubular member having a rectangular tubular shape and a second square tubular member which is disposed inside the first square tubular member in the separation direction and has a rectangular tubular shape, wherein the connection section includes mutually facing side wall portions of the first square tubular member and the second square tubular member, wherein the outer adjustment member supports the first square tubular member, and wherein the inner adjustment member supports the second square tubular member.
8. The supporting platform according to claim 7, wherein the outer adjustment member includes an outer operating portion for adjusting the height of each supporting body, wherein the first square tubular member includes an opening portion which is formed on the side wall portion facing the outside in the separation direction, and wherein the outer operating portion is provided inside the first square tubular member which communicates with the outside via the opening portion.
9. The supporting platform according to claim 1, wherein a portion between the lower plate section and the base is filled with a curable filler.
10. A rotating machine unit, comprising: the supporting platform according to claim 1; and a rotating machine having a supporting target portion which is supported on a supporting column of the supporting platform.
11. A method for manufacturing the rotating machine unit according to claim 10, comprising: a step of installing the rotating machine on the supporting column; a step of adjusting a height position of the upper plate section with respect to the base in the vertical direction by the outer adjustment member and the inner adjustment member; a step of fixing a position of the supporting platform with respect to the base by an anchor member; and a step of filling a portion between the lower plate section and the base with a curable filler after the position of the supporting platform is fixed.
Description
BRIEF DESCRIPTION OF DRAWINGS
(1)
(2)
(3)
(4)
(5)
(6)
(7)
DESCRIPTION OF EMBODIMENTS
(8)
(9) As shown in
(10) The driving machine 2 rotationally drives the drive shaft 3 around a central axis C of the drive shaft 3. The driving machine 2 is placed on the supporting platform 5.
(11) The rotation of the drive shaft 3 is transmitted to the compressor 4, and a rotating shaft (not shown) rotates. The rotating shaft rotates, and thus, the compressor 4 compresses a fluid flowing through a flow path provided in the compressor 4. Here, a speed reducer or a speed increaser may be interposed between the drive shaft 3 and the rotating shaft of the compressor 4.
(12) The driving machine 2 and the compressor 4 are installed via the supporting platforms 5 and 6 in a state where the drive shaft 3 and the rotating shaft are connected to each other on a base B.
(13) As shown in
(14) As shown in
(15) The pair of main frame portions 11 is disposed on the base B. The pair of main frame portions 11 is provided to be separated from each other in a horizontal direction.
(16) The pair of the main frame portions 11 of the present embodiment is provided at an interval in a width direction (separation direction) Dw of the compressor 4 orthogonal to an axial direction Da in the horizontal direction. The pair of main frame portions 11 is disposed such that a central axis C is interposed therebetween at a center in the width direction Dw. Each main frame portion 11 extends in the axial direction Da.
(17) Here, the axial direction Da is a direction in which the rotating shaft (not shown) of the compressor 4 extends in the horizontal direction orthogonal to the vertical direction Dv. The width direction Dw is a direction orthogonal to the axial direction Da in the horizontal direction, and is a direction in which the pair of main frame portions 11 is separated from each other.
(18) The pair of connection portions 12 extends in the width direction Dw. The pair of connection portions 12 connects both end portions of the pair of main frame portions 11 in the axial direction Da provided to be separated from each other.
(19) As shown in
(20) Each outer frame member 13 is positioned on an outer side of the main frame portion 11 in the width direction Dw. The outer frame member 13 has a rectangular tubular shape. Specifically, the outer frame member 13 of the present embodiment is formed of a square tubular steel material having a rectangular cross section extending the axial direction Da. The outer frame member 13 includes an outer upper wall portion 13a, an outer lower wall portion 13b, an outer first side wall portion 13c, and an outer second side wall portion 13d, as side wall portions.
(21) The outer upper wall portion 13a is a plate member, which faces upward in the vertical direction Dv, in the side wall portions. The outer upper wall portion 13a is provided above the base B in the vertical direction Dv so as to be separated from the base B.
(22) The outer lower wall portion 13b is a plate member, which faces downward in the vertical direction Dv, in the side wall portions. The outer lower wall portion 13b is provided below the outer upper wall portion 13a in the vertical direction Dv so as to be separated from the outer upper wall portion 13a. The outer lower wall portion 13b of the present embodiment is provided above the base B at an interval in the vertical direction Dv.
(23) The outer first side wall portion 13c is a plate member, which faces the outer side in the width direction Dw, in the side wall portions. The outer first side wall portion 13c connects the outer upper wall portion 13a and the outer lower wall portion 13b to each other outside the outer upper wall portion 13a and the outer lower wall portion 13b in the width direction Dw. As shown in
(24) The opening portion 18 is open so as to have a rectangular shape. The opening portion 18 is opened with a size that allows an operator to insert a hand. A plurality of (two in the present embodiment) opening portions 18 are formed to be separated from each other in the axial direction Da.
(25) The outer second side wall portion 13d is a plate member, which faces the inner side in the width direction Dw, in the side wall portions. The outer second side wall portion 13d is provided inside the outer first side wall portion 13c to be separated from the outer first side wall portion 13c in the width direction Dw. The outer second side wall portion 13d connects the outer upper wall portion 13a and the outer lower wall portion 13b to each other inside the outer upper wall portion 13a and the outer lower wall portion 13b in the width direction Dw.
(26) The outer frame member 13 is formed in a rectangular tubular shape when viewed in the width direction Dw by four side wall portions of the outer upper wall portion 13a, the outer lower wall portion 13b, the outer first side wall portion 13c, and the outer second side wall portion 13d.
(27) The inner frame member 14 is located inside in the width direction Dw, in the main frame portion 11. The inner frame member 14 is formed in a rectangular tubular shape having the same cross-sectional area as that of the outer frame member 13. Specifically, the inner frame member 14 of the present embodiment is formed of a square tubular steel material having a rectangular cross section and extending the axial direction Da. The inner frame member 14 is made of a steel material and is shorter than that of the outer frame member 13. The inner frame member 14 includes an inner upper wall portion 14a, an inner lower wall portion 14b, an inner first side wall portion 14c, and an inner second side wall portion 14d, as side wall portions.
(28) The inner upper wall portion 14a is a plate member, which faces upward in the vertical direction Dv, in the side wall portions. The inner upper wall portion 14a is provided above the base B in the vertical direction Dv so as to be separated from the base B. The inner upper wall portion 14a is disposed to be positioned at the same position as the position of the outer upper wall portion 13a in the vertical direction Dv.
(29) The inner lower wall portion 14b is a plate member, which faces downward in the vertical direction Dv, in the side wall portions. The inner lower wall portion 14b is provided below the inner upper wall portion 14a to be separated from the inner upper wall portion 14a in the vertical direction Dv. The inner lower wall portion 14b of the present embodiment is provided above the base B at an interval in the vertical direction Dv. The inner lower wall portion 14b is disposed to be positioned at the same position as the position of the outer lower wall portion 13b in the vertical direction Dv.
(30) The inner first side wall portion 14c is a plate member, which faces the outer side in the width direction Dw, in the side wall portions. The inner first side wall portion 14c connects the inner upper wall portion 14a and the inner lower wall portion 14b to each other outside the inner upper wall portion 14a and the inner lower wall portion 14b in the width direction Dw. The inner first side wall portion 14c is disposed at a position at which the inner first side wall portion 14c is in contact with the outer second side wall portion 13d. The inner first side wall portion 14c and the outer second side wall portion 13d are welded to each other so as to be integrated with each other. Accordingly, the outer frame member 13 and the inner frame member 14 are connected to each other so as to be one member.
(31) The inner second side wall portion 14d is a plate member, which faces the inner side in the width direction Dw, in the side wall portions. The inner second side wall portion 14d is provided inside the outer first side wall portion 14c to be separated from the inner first side wall portion 14c in the width direction Dw. The inner second side wall portion 14d connects the inner upper wall portion 14a and the inner lower wall portion 14b to each other inside the inner upper wall portion 14a and the inner lower wall portion 14b in the width direction Dw.
(32) The inner frame member 14 is formed in a rectangular tubular shape when viewed in the width direction Dw by four side wall portions of the inner upper wall portion 14a, the inner lower wall portion 14b, the inner first side wall portion 14c, and the inner second side wall portion 14d.
(33) According to the configurations of the outer frame member 13 and the inner frame member 14 described above, each main frame portion 11 includes an upper plate section 15, a lower plate section 16, and a connection section 17.
(34) The supporting column 20 comes into contact with the upper plate section 15 so as to be fixed to the upper plate section 15. The upper plate section 15 of the present embodiment includes the outer upper wall portion 13a and the inner upper wall portion 14a.
(35) The lower plate section 16 is provided below the upper plate section 15 in the vertical direction Dv at an interval. The lower plate section 16 of the present embodiment includes the outer lower wall portion 13b and the inner lower wall portion 14b.
(36) The connection section 17 is provided at a position overlapping the supporting column 20 when viewed in the vertical direction Dv. That is, the connection section 17 is disposed immediately below the supporting column 20 in the vertical direction Dv. The connection section 17 connects the upper plate section 15 and the lower plate section 16 to each other. The connection section 17 is constituted by mutually facing side wall portions of the outer frame member 13 and the inner frame member 14. The connection section 17 of the present embodiment includes the outer first side wall portion 13c and the inner second side wall portion 14d.
(37) As shown in
(38) Flange portions 4f and 4f protruding toward both sides in the width direction Dw are integrally formed with a casing 4a of the compressor 4. The support leg (supporting target portion) 4g which extends outward and downward in the width direction Dw is provided in each flange portion 4f. The support leg 4g is placed on an upper end portion of the supporting column 20. Accordingly, the compressor 4 is supported by the supporting columns 20.
(39) As shown in
(40) The outer fixing member 31 has a plate shape. The outer fixing member 31 is disposed inside the outer frame member 13. The outer fixing member 31 is fixed to the outer lower wall portion 13b by welding. A female screw hole (not shown) is formed in the outer fixing member 31. In addition, a through-hole (not shown) through which the outer jack bolt 32 passes is formed in the outer lower wall portion 13b of the outer frame member 13 at a position immediately below the female screw hole (not shown) in the vertical direction.
(41) The outer jack bolt 32 can adjust the position of the outer fixing member 31 in the vertical direction Dv, and thus, can adjust the height of the support frame 10 with respect to the base B. The outer jack bolt 32 integrally includes a shaft portion 32b which has an outer peripheral surface on which screw grooves are formed and a head portion 32a (outer operating portion) which is provided on one end of the shaft portion 32b.
(42) The shaft portion 32b is screwed to the female screw hole (not shown) of the outer fixing member 31. The shaft portion 32b passes through the through-hole (not shown) of the outer lower wall portion 13b so as to extend toward the lower side of the outer lower wall portion 13b.
(43) The head portion 32a is used by an operator to adjust the height of the support frame 10. The head portion 32a is provided inside the outer frame member 13 which communicates with the outside via the opening portion 18. That is, the head portion 32a of the present embodiment is positioned in a space between the outer upper wall portion 13a and the outer lower wall portion 13b of the outer frame member 13. The head portion 32a is disposed such that the operator can turn a tool or the like from the outside of the main frame portion 11 in the width direction Dw through the opening portion 18 formed on the outer first side wall portion 13c using an operator's hand.
(44) The outer abutment plate 33 is provided such that a tip of the outer jack bolt 32 abuts against the base B.
(45) By turning the head portion 32a of the outer jack bolt 32, a protrusion dimension of the outer jack member 30 downward from the outer lower wall portion 13b is adjusted, and a level (height) of the main frame portion 11 with respect to the base B can be adjusted.
(46) The inner jack member 40 supports the main frame portion 11 on the base B. The inner jack member 40 can adjust the height of the main frame portion 11 with respect to the base B. Accordingly, the inner jack member 40 supports the support frame 10 on the base B together with the outer jack member 30 in a state capable of adjusting the height position. The inner jack member 40 is disposed inside the outer jack member 30 in the width direction Dw. The inner jack member 40 is disposed inside the connection section 17 in the width direction Dw. The inner jack member 40 supports the inner frame member 14. The inner jack member 40 of the present embodiment is provided inside the supporting column 20 in the width direction Dw. When viewed from above in the vertical direction Dv, preferably, the inner jack member 40 is provided at a position close to the supporting column 20. When viewed from above in the vertical direction Dv, more preferably, the inner jack member 40 is provided at a position at which the position of the inner jack member 40 in the vertical direction Dv overlaps the supporting column 20. The inner jack member 40 includes an inner fixing member 41, an inner jack bolt 42, and an inner abutment plate 43.
(47) The inner fixing member 41 has a plate shape. The inner fixing member 41 is disposed on the inner upper wall portion 14a. The inner fixing member 41 is fixed to the inner upper wall portion 14a by welding. A female screw hole (not shown) is formed in the inner fixing member 41. In addition, a through-hole (not shown) through which the inner jack bolt 42 passes is formed in each of the inner upper wall portion 14a and the inner lower wall portion 14b of the inner frame member 14 at a position immediately below the female screw hole (not shown) in the vertical direction.
(48) The inner jack bolt 42 can adjust the position of the inner fixing member 41 in the vertical direction Dv, and thus, can adjust the height of the support frame 10 in the vertical direction Dv with respect to the base B. The inner jack bolt 42 integrally includes a shaft portion 42b which has an outer peripheral surface on which screw grooves are formed and a head portion 42a (inner operating portion) which is provided on one end of the shaft portion 42b.
(49) The shaft portion 42b is screwed to the female screw hole (not shown) of the inner fixing member 41. The shaft portion 42b passes through the through-holes (not shown) of the inner upper wall portion 14a and the inner lower wall portion 14b so as to extend toward the lower side of the inner lower wall portion 14b.
(50) The head portion 42a is used by an operator to adjust the height of the support frame 10. The head portion 42a is provided above the upper plate section 15 in the vertical direction Dv. That is, the head portion 42a of the present embodiment is provided above the inner upper wall portion 14a. The head portion 42a is provided such that the operator can turn the head portion 42a above the inner frame member 14 using a tool or the like.
(51) The inner abutment plate 43 is provided such that the tip of the inner jack bolt 42 abuts against the base B.
(52) By turning the head portion 42a of the inner jack bolt 42, a protrusion dimension of the inner jack member 40 downward from the inner lower wall portion 14b is adjusted, and the level (height) of the main frame portion 11 with respect to the base B can be adjusted.
(53) A portion between the main frame portion 11 and the base B is filled with the grout material 50, and thus, a load of the main frame portion 11 is supported. The grout material 50 includes mortar concrete or the like. In a state where the level of the main frame portion 11 is adjusted by the outer jack member 30 and the inner jack member 40, the filling of the grout material 50 is performed and the grout material 50 is cured.
(54) In addition, each anchor member 60 fixes the position of the main frame portion 11 with respect to the base B before the filling of the grout material 50 is performed. That is, the anchor member 60 fixes the position of the main frame portion 11 whose level is adjusted by the outer jack member 30 and the inner jack member 40. For example, in the main frame portion 11, the anchor member 60 is disposed at a position, which does not interfere with the outer jack member 30, inside the outer frame member 13 accessible from the opening portion 18. The anchor member 60 extends downward through the outer lower wall portion 13b of the outer frame member 13 and is driven into the base B.
(55)
(56) Next, the method for manufacturing the compressor system 1 having the above-described configuration will be described with reference to
(57) In addition, the assembly of the support frame 10 or the attachment of each supporting column 20 may be performed on the base B which is an installation site of the compressor system 1, or after the support frame 10 is assembled in a factory or the like, the assembled support frame 10 may be conveyed to the installation site. In addition, after the support frame 10 is temporarily placed on the base B, each supporting column 20 may be fixed to the upper plate section 15.
(58) Next, as shown in
(59) After the level adjustment of the entire support frame 10 is performed, a gap (soft foot) between a lower end portion of the support leg 4g of the compressor 4 supported on each supporting column 20 and an upper end portion of the supporting column 20 is confirmed and adjusted (Step S103). Specifically, the height of the inner side of each main frame portion 11 in the width direction Dw with respect to the supporting column 20 is adjusted by the inner jack members 40. Accordingly, there is no gap between the lower end portion of the support leg 4g of the compressor 4 and the upper end portion of the supporting column 20.
(60) Next, as shown in
(61) Thereafter, as shown in
(62) According to the above-described embodiment, the outer jack member 30 is provided outside the connection section 17 in the width direction Dw and the inner jack member 40 is installed inside the connection section 17 in the width direction Dw. The load of the compressor 4 applied to the upper plate section 15 via the position at which the supporting column 20 is provided separately acts on the outer jack member 30 and the inner jack member 40. Accordingly, by the outer jack member 30 and the inner jack member 40, it is possible to support the upper plate section 15 on which the load acts from both sides in the width direction Dw with respect to the supporting column 20. As a result, unlike a case where the inner jack member 40 is not provided, it is possible to prevent the inner side of the main frame portion 11 in the width direction Dw from being lowered by the load of the compressor 4 and being inclined. Accordingly, the supporting column 20 provided on the main frame portion 11 is prevented from being inclined. Accordingly, it is possible to prevent the gap (soft foot) between the lower end portion of the support leg 4g of the compressor 4 supported on the supporting column 20 and the upper end portion of the supporting column 20 from being generated. Accordingly, it is possible to prevent a gap between the support leg 4g of the compressor 4 supported on the supporting column 20 and the supporting column 20 from being generated without increasing stiffness of the main frame portion 11 itself. Accordingly, it is possible to install the compressor 4 constituting the compressor system 1 with high accuracy while suppressing an increase in the cost of the supporting platform 6.
(63) The height adjustment of each main frame portion 11 is performed by the outer jack member 30 and the inner jack member 40 provided on both sides of the width direction Dw in the state where the connection section 17 is interposed therebetween. Therefore, as the main frame portion 11 alone or the entire supporting platform 6, the level adjustment with respect to the position at which supporting column 20 is installed can be easily performed with high accuracy.
(64) In addition, the connection section 17 is provided immediately below the supporting column 20 in the vertical direction Dv. The load of the compressor 4 applied to the upper plate section 15 via the supporting column 20 is supported by the connection section 17. Accordingly, it is possible to reliably support the load of the compressor 4 by the main frame portion 11.
(65) The head portion 42a of the inner jack bolt 42 of the inner jack member 40 disposed inside the supporting column 20 is exposed above the upper plate section 15. Accordingly, in a case where the height of the main frame portion 11 is adjusted by the inner jack member 40, it is possible to easily rotate the head portion 42a of the inner jack member 40 positioned inside the supporting column 20. Accordingly, it is possible to easily perform the height adjustment of the main frame portion 11 by the inner jack member 40.
(66) In addition, when viewed in the vertical direction Dv, the inner jack member 40 is provided such that the position of the inner jack member 40 in the axial direction Da is close to the position overlapping the position of the supporting column 20 in the axial direction Da. Accordingly, the load of the compressor 4 received by the upper plate section 15 via the supporting column 20 can be accurately received by the portion supported by the inner jack member 40. As a result, it is possible to accurately prevent the main frame portion 11 from being inclined.
(67) In addition, the main frame portion 11 is constituted by the outer frame member 13 and the inner frame member 14, and thus, it is possible to form the main frame portion 11 by a square tubular steel material. Accordingly, it is possible to manufacture the supporting platform 6 while decreasing costs.
(68) In addition, in the supporting platform 6, the portion between the main frame portion 11 and the base B is filled with the grout material 50. Accordingly, it is possible to fix the position of the main frame portion 11, of which the height and horizontal level are adjusted by the outer jack member 30 and the inner jack member 40, with respect to the base B.
Modification Example of Embodiment
(69) In the above-described embodiment, the lower ends of the outer jack member 30 and the inner jack member 40 are grounded on the base B. However, the present invention is not limited to this. For example, as shown in
Other Embodiments
(70) Hereinbefore, the embodiments of the present invention are described above in detail with reference to the drawings. However, the respective configurations and combinations thereof in each embodiment are merely examples, and additions, omissions, replacements, and other modifications of configurations are possible within the scope not departing from the gist of the present invention. In addition, the present invention is not limited by the embodiments, but is limited only by claims.
(71) For example, the opening portion 18 may be continuously provided in the longitudinal direction of the outer frame member 13 of the main frame portion 11.
(72) In addition, in the outer jack member 30, the head portion 32a of the outer jack bolt 32 is positioned inside the outer frame member 13. However, similarly to the inner jack member 40, the head portion 32a may be positioned above the outer upper wall portion 13a of the outer frame member 13.
(73) Moreover, in the inner jack member 40, the head portion 42a of the inner jack bolt 42 is positioned above the inner upper wall portion 14a. However, similarly to the outer jack member 30, the head portion 42a may be positioned inside the inner frame member 14. In this case, preferably, an opening is provided on the inner second side wall portion 14d of the inner frame member 14.
(74) In addition, the square tubular shaped outer frame member 13 and inner frame member 14 are joined to each other, and thus, the main frame portion 11 is configured. However, the present invention is not limited to this. For example, a so-called H-shaped steel can be used for the main frame portion 11. In this case, an upper flange of the H-shaped steel may be an upper plate section, a lower flange thereof may be a lower plate section, and a web which connects the upper flange and the lower flange to each other may be a connection section.
(75) In addition, as described above, the compressor 4 is supported on the above-described supporting platform 6. However, a configuration similar to that of the supporting platform 6 can be also applied to the supporting platform 5 supporting the driving machine 2. Moreover, the supporting platform, the rotating machine unit, the method for manufacturing a rotating machine unit of the present invention are not limited to the compressor 4, and can be similarly applied to various rotating machines such as a turbine or a motor.
INDUSTRIAL APPLICABILITY
(76) According to the above-descried supporting platform 6, it is possible to install the rotating machine with high accuracy.
REFERENCE SIGNS LIST
(77) 1: compressor system (rotating machine unit) 2: driving machine 3: drive shaft 4: compressor (rotating machine) 4a: casing 4f: flange portion 4g: support leg (supporting target portion) 5: supporting platform 6: supporting platform 10: support frame 11: main frame portion (supporting body) 12: connection portion 13: outer frame member 13a: outer upper wall portion 13b: outer lower wall portion 13c: outer first side wall portion 13d: outer second side wall portion 14: inner frame member 14a: inner upper wall portion 14b: inner lower wall portion 14c: inner first side wall portion 14d: inner second side wall portion 15: upper plate section 16: lower plate section 17: connection section 18: opening portion 20: supporting column 30: outer jack member (outer adjustment member) 31: outer fixing member 32: outer jack bolt 32a: head portion (outer operating portion) 32b: shaft portion 33: outer abutment plate 40: inner jack member (inner adjustment member) 41: inner fixing member 42: inner jack bolt 42a: head portion (inner operating portion) 42b: shaft portion 43: inner abutment plate 50: grout material (curable filler) 60: anchor member 70: pedestal portion B: base C: central axis Dw: width direction (separation direction) Dv: vertical direction Da: axial direction