ASME Section VIII, Division 2

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  • ASME Section VIII, Division 2 Part 4.11

    4.11-1

    4.11 Design Rules for Jacketed Vessels (Revision 10Revision 9)

    4.11.1 Scope .......................................................................................................................4.11-1 4.11.2 Design of Jacketed Shells and Jacketed Heads..................................................4.11-2 4.11.3 Design of Closure Member of Jacket to Vessel...................................................4.11-2 4.11.4 Design of Penetrations Through Jackets.............................................................4.11-2 4.11.5 Design of Partial Jackets .......................................................................................4.11-3 4.11.6 Design of HalfPipe Jackets..................................................................................4.11-3 4.11.7 Nomenclature ..........................................................................................................4.11-4 4.11.8 Tables.......................................................................................................................4.11-5 4.11.9 Figures ...................................................................................................................4.11-16

    4.11.1 Scope

    4.11.1.1 The minimum requirements for the design of the jacketed portion of a pressure vessel shall conform to the requirements given in paragraph 4.11. The jacketed portion of the vessel is defined as the inner and outer walls, the closure devices and all other penetration or parts within the jacket that are subjected to pressure stress. Parts such as nozzle closure members and stay rings are included in this definition. For the purposes of this section, jackets are assumed to be integral pressure chambers, attached to a vessel for one or more purposes, such as:

    a) To heat the vessel and its contents,

    b) To cool the vessel and its contents, or

    c) To provide a sealed insulation chamber for the vessel.

    4.11.1.2 Paragraph 4.11 applies only to jacketed vessels having jackets over the shell or heads as illustrated in Figure 4.11.1, partial jackets as illustrated in Figure 4.11.2, and halfpipe jackets as illustrated in Figure 4.11.3.

    4.11.1.3 The jacketed vessels shown in Figure 4.11.1 are categorized as five types shown below. For these types of vessels, the jackets shall be continuous circumferentially for Types 1, 2, 4 or 5 and shall be circular in cross section for Type 3. The use of any combination of the types shown is permitted on a single vessel provided the individual requirements for each are met. Nozzles or other openings in Type 1, 2, 4 or 5 jackets that also penetrate the vessel shell or head shall be designed in accordance with paragraph 4.5. Paragraph4.11 does not cover dimpled or embossed jackets.

    a) Type 1 Jacket of any length confined entirely to the cylindrical shell

    b) Type 2 Jacket covering a portion of the cylindrical shell and one head

    c) Type 3 Jacket covering a portion of one head

    d) Type 4 Jacket with addition of stay or equalizer rings to the cylindrical shell portion to reduce the effective length

    e) Type 5 Jacket covering the cylindrical shell and any portion of either head.

    4.11.1.4 Paragraph 4.11 does not contain rules to cover all details of design and construction. Jacket types defined in paragraph 4.11.1.3 subject to general loading conditions (i.e. thermal gradients) or jacket types of different configurations subject to general loading conditions shall be designed using Part 5.

    4.11.1.5 If the internal pressure is 100 kPa (15 psi) or less, and any combination of pressures and vacuum in the vessel and jacket will produce a total pressure greater than 100 kPa (15 psi) on the inner vessel wall, then the entire jacket is within the scope of paragraph 4.11.

  • ASME Section VIII, Division 2 Part 4.11

    4.11-2

    4.11.2 Design of Jacketed Shells and Jacketed Heads

    4.11.2.1 Shell and head thickness shall be determined using paragraphs 4.3 and 4.4 as applicable. In consideration of the loadings given in paragraph 4.1, particular attention shall be given to the effects of local internal and external pressure loads and differential thermal expansion (see paragraph 4.11.1.4). Where vessel supports are attached to the jacket, consideration shall be given to the transfer of the supported load of the inner vessel and contents.

    4.11.2.2 The requirements for inspection openings in jackets shall be in accordance with paragraph 4.5.17 except that the maximum size of inspection openings in the jacketed portion of the vessel need not exceed DN 50 (NPS 2) pipe for all diameter vessels.

    4.11.2.3 The use of impingement plates or baffles at the jacket inlet connection to reduce erosion of the inner wall shall be considered for media where vapors are condensed (i.e. steam).

    4.11.2.4 Flat plate regions of jacketed vessels may be designed as braced and stayed surfaces using the rules of paragraph 4.9.

    4.11.3 Design of Closure Member of Jacket to Vessel

    4.11.3.1 The design of jacket closure members shall be in accordance with Table 4.11.1 and the additional requirements of paragraph 4.11.3. Alternative geometries to those illustrated may be used in accordance with paragraph 4.11.1.4.

    4.11.3.2 Any radial welds in closure members shall be butt-welded joints penetrating through the full thickness of the member and shall be ground flush where attachment welds are to be made.

    4.11.3.3 Partial penetration and fillet welds are permitted when both of the following requirements are satisfied.

    a) The material of construction satisfies the following equation.

    0.625yTu

    SS

    (4.11.1)

    b) The component is not in cyclic service, i.e. a fatigue analysis is not required in accordance with paragraph 4.1.1.3.

    4.11.3.4 Closures for any type of stay-bolted jacket may be designed in accordance with the requirements of Type 1 jackets shown in Figure 4.11.1 provided the entire jacket is stay-bolted to compensate for pressure end forces.

    4.11.4 Design of Penetrations Through Jackets

    4.11.4.1 The design of openings through the jacket space shall be in accordance with the rules given in paragraph 4.5. Reinforcement of the opening in the jacket shall not be required for penetrations of the type shown in Table 4.11.2 since the opening is stayed by virtue of the nozzle or neck of the closure member.

    4.11.4.2 Jacket penetration closure member designs shown in Table 4.11.2 shall conform to the following requirements stipulated in this table and the following provisions. Alternative geometries to those illustrated may be used if the design is based on Part 5.

    a) The jacket penetration closure member minimum thickness considers only pressure membrane loading. Axial pressure loadings and secondary loadings given in paragraph 4.1 shall be considered in the design.

    b) The design Details 2, 3, 4, 5 and 5 6 shown in Table 4.11.2 provide some flexibility. Only pressure membrane loading is considered in establishing the minimum thickness of the penetration closure

  • ASME Section VIII, Division 2 Part 4.11

    4.11-3

    member. If the localized stresses at the penetration detail need to be established, the methodology in Part 5 shall be used.

    c) All radial welds in opening sealer membranes shall be butt-welded joints that penetrate through the full thickness of the member.

    d) Closure member welds shall be circular, elliptical or obround in shape where possible. Rectangular member welds are permissible provided that corners are rounded to a suitable radius.

    e) The requirements of paragraph 4.11.3.3 shall be satisfied.

    4.11.5 Design of Partial Jackets

    4.11.5.1 Partial jackets include jackets that encompass less than the full circumference of the vessel. Some variations are shown in Figure 4.11.2.

    4.11.5.2 The rules for construction of jacketed vessels in the preceding paragraphs also apply to partial jackets, with the following exceptions.

    a) Stayed partial jackets shall be designed and constructed in accordance with paragraph 4.9 with closures designed in accordance with paragraph 4.11.3.

    b) Partial jackets that, by virtue of their service or configuration, do not lend themselves to staybolt construction may be fabricated by other means provided they are designed using Part 5.

    4.11.6 Design of HalfPipe Jackets

    4.11.6.1 The rules in this section are applicable for the design of half-pipe jackets constructed of NPS 2, 3 or 4 pipes and subjected to internal pressure loading (see Figure 4.11.3). Configurations that do not satisfy the rules in paragraph 4.11.6.1 may be designed in accordance with Part 5.

    4.11.6.2 The fillet weld attaching the half-pipe jacket to the vessel shall have a throat thickness not less than the smaller of the jacket or shell thickness. Consideration should be given to the selection of the half-pipe jacket pitch needed to provide welder access. In addition, the requirements of paragraph 4.11.3.3 shall be satisfied.

    4.11.6.3 The minimum required thickness of a half pipe jacket is given by the following equation. For a design to be acceptable, the additional condition that j jpmP P where jpmP is given by Equation (4.11.3) must also be satisfied.

    0.85 0.6j p

    rpj j

    P rt

    S P= (4.11.2)

    4.11.6.4 The maximum permissible pressure in the half-pipe jacket, jpmP , shall be determine using the following equation.

    pjpm

    p

    FP

    K= (4.11.3)

    where

    ( )*max 1.5 , 1.5pF S S S = (4.11.4) 0.5 1.5 2 2.5 3 3.5 4 4.5

    1 2 3 4 5 6 7 8 9 10pK C C D C D C D C D C D C D C D C D C D= + + + + + + + + + (4.11.5) The coefficients for Equation (4.11.5) are provided in Table 4.11.3.

  • ASME Section VIII, Division 2 Part 4.11

    4.11-4

    4.11.7 Nomenclature D inside diameter of the inner vessel.

    pjD nominal pipe size of the half-pipe jacket.

    pK half-pipe jacket rating factor.

    jP design pressure in the jacket chamber.

    jpmP permissible jacket pressure based on the jacket and shell geometry. j jacket space defined as the inside radius of the jacket minus the outside radius of the inner

    vessel. L length of the jacket. ct nominal thickness of the closure member.

    jt nominal thickness of the outer jacket wall.

    nt nominal thickness of the nozzle.

    st nominal thickness of the shell inner wall.

    rjt required minimum thickness of the outer jacket wall.

    rct required minimum thickness of the closure member.

    rpt required minimum thickness of the half-pipe jacket.

    jR inside radius of the jacket.

    pR radius of the opening in the jacket at the jacket penetration

    sR outside radius of the inner vessel. r corner radius of torus closures. pr inside radius of the half-pipe jacket. S allowable stress of the inner shell from Annex 3.A at the design temperature. cS allowable stress of the jacket closure from Annex 3.A at the design temperature.

    jS allowable stress of the jacket from Annex 3.A at the design temperature.

    yTS yield strength from Annex 3.D at the design temperature.

    uS minimum specified ultimate tensile strength from Annex 3.D. *S actual longitudinal tensile stress in the head or shell due to internal pressure and other axial

    forces; when axial forces are negligible, * 4 sS PD t= . If the combination of axial forces and pressure results in a negative value of *S , then * 0S = .

  • ASME Section VIII, Division 2 Part 4.11

    4.11-5

    4.11.8 Tables

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    1 Closure details (a) and (b) shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    These closures may be used on Types 1, 2, and 4 jacketed vessels as shown in Figure 4.11.1 and shall have rct of at least equal to rjt and corner radius r shall not be less than 3 ct .

    se closure designs are limited to a maximum thickness rct of 16 mm (0.625 in.)

    When this construction is used on Type 1 jacketed vessels, the weld dimension Y shall be not less than 0.7 ct ; and when used on Type 2 and 4 jacketed vessels, the weld dimension Y shall be not less than 0.83 ct .

    Y

    Min. 2tc but need not exceed

    13 mm (0.5 in)ts j tj

    Rs Rj

    rr min. = 3tc

    tc

    (a) Type 1 Jackets

    (b) Types 2 and 4 Jackets

    tc min.

    30 max.

    tc

    Min. throat dimension = tc

    1.5tc (Elongated tomaintain min.

    throat dimension)

    tc

    tc min.

    Y

  • ASME Section VIII, Division 2 Part 4.11

    4.11-6

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    2 These closures shall have rct at least equal to rjt . In addition for Detail (c), rct shall be not less than the following:

    0.707 jrcc

    Pt j

    S=

    A groove weld attaching the closure to the inner vessel and fully penetrating the closure thickness ct may be used with any of the types of jacketed vessels shown in Figure 4.11.1. However, a fillet weld having a minimum throat dimension of 0.7 ct may also be used to join the closure of the inner vessel on Type 1 jacketed vessels of Figure 4.11.1. The closure and jacket shell may be one-piece construction or welded using a full penetration butt weld. A backing strip may be used.

    Rs Rj

    ts j tj

    1.25tc mintc

    r min = j

    Rs Rj

    ts tj

    1.25tc mintc

    r= 2tcmim

    max = 60

    j

    (c)

    Rs Rj

    ts j tj

    rmin= 3tc1.25tc min

    tc

    (b)

    (a)

    3 This closure shall be used only on Type 1

    jacketed vessels shown in Figure 4.11.1.

    The closure thickness rct shall be computed using the Equation for a conical shell in paragraph 4.3, but shall be not less than rjt . The angle shall be limited to 30 degrees maximum.

    Rs Rj

    ts j

    tc min

    tc min

    tj

    max = 30

    tc

  • ASME Section VIII, Division 2 Part 4.11

    4.11-7

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    4 Closure details (a), (b), and (c) shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    These closures shall be used only on Type 1 jacketed vessels as shown in Figure 4.11.1 and with the further limitation that rjt does not exceed 16 mm (0.625 in.).

    The required minimum thickness for the closure bar shall be equal to:

    max 2 , 0.707 jrc rjc

    Pt t j

    S

    =

    Fillet weld sizes shall be as follows:

    [ ]min 0.75 , 0.75c sY t t and 0.7 minc Y= jZ t and 0.7 minb Z=

    ts j

    Rs Rj

    Y

    Y

    Y

    c

    Y

    c

    tj

    tcb

    Z Z

    (a)

    tc

    tjts j

    Rs Rj

    b

    ZY

    Y

    ZY

    c

    Y

    c

    Rs Rj

    tjts j

    Y

    Y

    Y

    c

    c

    Y

    tc

    Z

    Z

    Rs Rj

    tjts j

    Backing StripMay Be Used

    Y

    Y

    Y

    c

    c

    (b)

    (c) (d)

  • ASME Section VIII, Division 2 Part 4.11

    4.11-8

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    5 Closure details (a), (b), and (c) shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    These closures may be used on any of the types of jacketed vessels shown in Figure 4.11.1. For Type 1 jacketed vessels, the required minimum closure bar thickness shall be determined from the equations in Table 4.11.1, Detail 4. For all other types of jacketed vessels, the required minimum closure bar thickness and the maximum allowable width of the jacket space shall be determined from the following equations:

    1.414 j srcc

    P R jt

    S =

    ( )222

    s jc s

    j j

    t tS tjP R

    +=

    Weld sizes connecting the closure bar to the inner vessel shall be as follows:

    [ ]min 1.5 , 1.5c sY t t , and shall be measured as the sum of dimensions a and b as shown. Z is equal to the minimum fillet size necessary when used in conjunction with a groove weld or another fillet weld to maintain the minimum required Y dimension.

    tc

    (a)Rs

    a

    b

    ZZ

    ZZY = a + b

    ts Y = a + b

    Rs

    ts

    a

    b

    ZZ

    ZZ

    tc

    a

    b

    ts

    Z Z

    Z

    tc

    ZY = a + b

    Rs

    (b)

    (c)

  • ASME Section VIII, Division 2 Part 4.11

    4.11-9

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    6 Closure details (a), (b), and (c) shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    The jacket to closure bar attachment welds shown in Details (a), (b) and (c) may be used on any of the types of jacketed vessels shown in Figure 4.11.1.

    Attachment welds shown in Details (d), (e) and (f) may be used on any of the types of jacketed vessels shown in Figure 4.11.1 where rjt does not exceed 16 mm (0.625 in.).

    The required minimum closure bar thickness and the maximum allowable width of the jacket space shall be determined from the following equations:

    1.414 j srcc

    P R jt

    S =

    ( )222

    s jc s

    j j

    t tS tjP R

    +=

    (a)

    See paragraph 4.2

    tc

    tj min.tj

    Rj Rj

    tc

    tj

    Backing StripMay Be Used

    45 min.

    Backing StripMay Be Used

    Rj

    tc

    2tj min.

    See paragraph 4.2

    tj

    Rj

    tc

    tj min.0.7 tj min.

    NotLess

    Than aa

    tj

    tc

    1.5 tj(Elongated toMaintain min.Throat Dimension)

    tj min.

    Rj

    0.83 tj min.tj

    tc

    tj

    30 max.

    tj min.

    min. ThroatDimension = tj

    Rj

    (c)

    (b)

    (d)

    (e) (f)

    See paragraph 4.2

  • ASME Section VIII, Division 2 Part 4.11

    4.11-10

    Table 4.11.1 Design Of Closure Member Of Jacket To Shell

    Detail Requirements Figure

    7 Closure details (a), (b), and (c) shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    These closures may be used on Type 3 jacketed vessels shown in Figure 4.11.1 shall have attachment welds in accordance with Details (a), (b) or (c). This construction is limited to jackets where rjt does not exceed 16 mm (0.625 in.).

    For torispherical, ellipsoidal, and hemispherical heads, the outside diameter of jacket head shall not be greater than the outside diameter of the vessel head, or the inside diameter of the jacket head shall be nominally equal to the outside diameter of vessel head.

    See Welding Details(h-2) and (h-3)

    Detail (h-1)

    At3

    tj=16 mm (0.625 in) max

    tj max.

    Z = 0.83 tj min.

    Y = 1.5 tj min.

    B

    At3

    FullPenetrationWeld

    tj=16 mm (0.625 in) max

    B

    At3

    (a) for A > B

    FullPenetrationWeld

    tj=16 mm (0.625 in) max

    B

    (b) for A = B

    (c) for A < B

    8 Closures for conical or toriconical jackets shall comply with the requirements for Type 2 jacketed vessels shown in Figure 4.11.1.

    See Details 5 and 6

    Conical Shell Toriconical Head

  • ASME Section VIII, Division 2 Part 4.11

    4.11-11

    Table 4.11.2 Design Of Jacket Penetration Details

    Detail Requirements Figure

    1 This closure details shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    The nozzle wall may be used as the closure member where the jacket is welded to the nozzle.

    2 minja t= and minjb t=

    VesselWall

    JacketWall

    ts

    tjb

    t

    NozzleNeck

    a

    NozzleCL

    BackingStrip MayBe Used

    2 This closure details shall only be used

    when the requirements of paragraph 4.11.3.3 are satisfied.

    The minimum required thickness, rct , forthe geometries shall be calculated as a shell under external pressure in accordance with paragraph 4.4.

    2 minja t= and minjb t= Attachment A shall be made using details in Table 4.2.6.

    tstn

    tc

    atn

    tj

    Attachment A

    BackingStrip MayBe Used

    Rp

    NozzleCL

    3 This closure details shall only be used

    when the requirements of paragraph 4.11.3.3 are satisfied.

    The minimum required thickness, rct , shall be equal to rjt .

    Attachment A shall be made using details in Table 4.2.6.

    Attachment A

    tstn

    tc

    r

    r = 3 tj min.tn

    tj

    Backing StripMay Be Used

    NozzleCL

  • ASME Section VIII, Division 2 Part 4.11

    4.11-12

    Table 4.11.2 Design Of Jacket Penetration Details

    Detail Requirements Figure

    4 This closure details shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    The minimum required thickness, rct , shall be calculated as a shell under external pressure in accordance with paragraph 4.4.

    Attachment A shall be made using details in Table 4.2.6.

    tc

    ts

    tj

    Full PenetrationButt Weld BackingStrip May Be Used

    tn

    Rp

    Attachment ANozzleCL

    5 This closure details shall only be used

    when the requirements of paragraph 4.11.3.3 are satisfied. The thickness required of the closure member attached to the inner vessel, 1rct , shall be calculated as a shell under external pressure in accordance with paragraph 4.4. The required thickness of the flexible member, 2rct , shall be determined as follows: When a tubular section does not exist between jacket and torus:

    2 - 0.6rc c j

    PrtS E P

    = When a tubular section does exist between jacket and torus:

    2 0.6j p

    rcc j

    P Rt

    S E P=

    2 ja t= , jb t= , and 11.25 cc t= Attachment A shall be made using details in Table 4.2.6.

    ts

    tj

    tn

    Rp

    Attachment A

    b Backing StripMay Be Used

    tc1c a

    tc2

    r

    NozzleCL

    (a)

    ts

    tj

    tn

    Rp

    Attachment A

    tc1c

    tc2b

    a

    NozzleCL

    (b)

  • ASME Section VIII, Division 2 Part 4.11

    4.11-13

    Table 4.11.2 Design Of Jacket Penetration Details

    Detail Requirements Figure

    6 This closure detail shall only be used when the requirements of paragraph 4.11.3.3 are satisfied.

    The minimum thickness, rct , shall be calculated as a shell of radius pR under external pressure in accordance with paragraph 4.4.

    2 ja t= and jb t= Attachment A shall be made using details in Table 4.2.6.

    ts

    tn b

    tc tj

    Attachment A

    Rp

    a

    NozzleCL

  • ASME Section VIII, Division 2 Part 4.11

    4.11-14

    Table 4.11.3 Coefficients For Equation (4.11.5)

    Shell Thickness pjD Coefficients 5 mm (3/16 in.) 6 mm (1/4 in.) 10 mm (3/8 in.) 13 mm (1/2 in.)

    1C -3.6674510E+01 -1.8874043E+04 4.0083779E+02 -2.6447784E+02

    2C 1.2306994E+01 1.7869518E+04 -5.7029108E+02 1.8066952E+02

    3C 3.5701684E+00 -7.2846419E+03 3.1989698E+02 -4.9294965E+01

    4C -7.9516583E-01 1.6723763E+03 -9.4286208E+01 7.1522422E+00

    5C 5.8791041E-02 -2.3648930E+02 1.6391764E+01 -5.7900069E-01

    6C -1.5365397E-03 2.1101742E+01 -1.7431218E+00 2.4758486E-02

    7C 0.0000000E+00 -1.1608890E+00 1.1160179E-01 -4.3667599E-04

    8C 0.0000000E+00 3.6022711E-02 -3.9549592E-03 0.0000000E+00

    9C 0.0000000E+00 -4.8303253E-04 5.9644209E-05 0.0000000E+00

    DN50

    NPS 2

    10C 0.0000000E+00 0.0000000E+00 0.0000000E+00 0.0000000E+00

    1C -3.7588705E+03 -1.2551406E+04 -3.8104460E+04 -1.4263782E+04

    2C 2.9919870E+03 1.2149900E+04 4.0491537E+04 1.6228077E+04

    3C -9.4177823E+02 -5.0657776E+03 -1.8844078E+04 -8.0227888E+03

    4C 1.5278500E+02 1.1910361E+03 5.0415301E+03 2.2676555E+03

    5C -1.3452359E+01 -1.7255075E+02 -8.5435371E+02 -4.0440980E+02

    6C 6.1167422E-01 1.5770136E+01 9.5115501E+01 4.7257835E+01

    7C -1.1235632E-02 -8.8782173E-01 -6.9588768E+00 -3.6233229E+00

    8C -2.1465752E-06 2.8148933E-02 3.2277515E-01 1.7597455E-01

    9C 0.0000000E+00 -3.8488963E-04 -8.6172557E-03 -4.9179021E-03

    DN80

    NPS 3

    10C 0.0000000E+00 0.0000000E+00 1.0094910E-04 6.0315412E-05

    1C -2.1336346E+04 7.3995872E+03 8.3115447E+02 -4.0097574E+02

    2C 1.5982068E+04 -6.7592710E+03 -7.6253222E+02 4.2602525E+02

    3C -4.9936486E+03 2.6131811E+03 2.9500674E+02 -1.7446665E+02

    4C 8.4914220E+02 -5.4873257E+02 -6.1135935E+01 3.7753845E+01

    5C -8.4931392E+01 6.7571708E+01 7.4233181E+00 -4.6748939E+00

    6C 5.0044853E+00 -4.8769663E+00 -5.2938127E-01 3.3376011E-01

    7C -1.6105634E-01 1.9112909E-01 2.0558271E-02 -1.2795569E-02

    8C 2.1857714E-03 -3.1412698E-03 -3.3593696E-04 2.0405896E-04

    9C 0.0000000E+00 0.0000000E+00 0.0000000E+00 0.0000000E+00

    DN100

    NPS 4

    10C 0.0000000E+00 0.0000000E+00 0.0000000E+00 0.0000000E+00

  • ASME Section VIII, Division 2 Part 4.11

    4.11-15

    Table 4.11.3 Coefficients For Equation (4.11.5)

    Shell Thickness pjD Coefficients

    19 mm (3/4 in.) 25 mm (1 in.) 50 mm (2 in.) ---

    1C -4.0085121E+02 3.6782666E+00 1.0000000E+00 ---

    2C 3.5652906E+02 -1.2669560E+00 0.0000000E+00 ---

    3C -1.3171601E+02 4.5491492E-01 0.0000000E+00 ---

    4C 2.6480374E+01 -6.2883969E-02 0.0000000E+00 ---

    5C -3.1258388E+00 3.9401350E-03 0.0000000E+00 ---

    6C 2.1680455E-01 -9.3433360E-05 0.0000000E+00 ---

    7C -8.1908188E-03 0.0000000E+00 0.0000000E+00 ---

    8C 1.3019970E-04 0.0000000E+00 0.0000000E+00 ---

    9C 0.0000000E+00 0.0000000E+00 0.0000000E+00 ---

    DN50

    NPS 2

    10C 0.0000000E+00 0.0000000E+00 0.0000000E+00 ---

    1C -1.5045135E+03 8.1206324E+00 -3.2789303E+03 ---

    2C 1.4487653E+03 -8.3943593E+00 3.4419302E+03 ---

    3C -5.9846696E+02 3.7870074E+00 -1.5852932E+03 ---

    4C 1.3910417E+02 -7.0886182E-01 4.2063167E+02 ---

    5C -1.9888205E+01 6.6972430E-02 -7.0855807E+01 ---

    6C 1.7922925E+00 -3.1488859E-03 7.8593168E+00 ---

    7C -9.9521276E-02 5.8511141E-05 -5.7415834E-01 ---

    8C 3.1164737E-03 0.0000000E+00 2.6647325E-02 ---

    9C -4.2181627E-05 0.0000000E+00 -7.1319265E-04 ---

    DN80

    NPS 3

    10C 0.0000000E+00 0.0000000E+00 8.3899940E-06 ---

    1C -3.5172282E+00 -2.5016604E+02 -5.3121462E+00 ---

    2C 4.3499616E+00 1.7178270E+02 3.4090615E+00 ---

    3C -2.7157682E-01 -4.6844914E+01 -5.5605535E-01 ---

    4C 1.1186450E-02 6.6874346E+00 4.2156128E-02 ---

    5C -7.1328067E-04 -5.2507555E-01 -1.2921987E-03 ---

    6C 2.2962890E-05 2.1526948E-02 6.6740230E-06 ---

    7C 0.0000000E+00 -3.6091550E-04 0.0000000E+00 ---

    8C 0.0000000E+00 0.0000000E+00 0.0000000E+00 ---

    9C 0.0000000E+00 0.0000000E+00 0.0000000E+00 ---

    DN100

    NPS 4

    10C 0.0000000E+00 0.0000000E+00 0.0000000E+00 ---

  • ASME Section VIII, Division 2 Part 4.11

    4.11-16

    4.11.9 Figures

    L

    Type 1

    L

    Type 2 Type 3

    L

    Type 4

    L

    Type 5

    L

    Figure 4.11.1 Types of Jacketed Vessels

  • ASME Section VIII, Division 2 Part 4.11

    4.11-17

    ContinuousPartial Jacket

    Multiple orPod Type Jacket

    Figure 4.11.2 Types of Partial Jackets

  • ASME Section VIII, Division 2 Part 4.11

    4.11-18

    r

    r

    R

    R

    Figure 4.11.3 Half Pipe Jackets