11-TMSS-02 REV1.pdf

download 11-TMSS-02  REV1.pdf

of 6

Transcript of 11-TMSS-02 REV1.pdf

  • 7/25/2019 11-TMSS-02 REV1.pdf

    1/6

    see Item Code: LKASXJ4140SE2N

    TRANSMISSION MATERIALS STANDARD SPECIFICATION

    ll TMSS 02 Rev.01

    7.0 DATASCHEDULE

    1 x 2500 mm2

    132kV, XLPEPOWERCABLE

    S EC Enquir y No.

    Date:

    SECPurchase Order

    No.

    or Contract No.

    Date:

    SECPTSNo./Project Title with J.O. No.

    PTS10W0306

    REFERENCE

    SECTION NO.

    DESCRIPTION A

    B C

    3.0 APPLICABLECODESAND STANDARDS

    Reference Manufacturing Standard AEIC/IEC 60840

    IEC60840 and

    ll-TMSS-02 Rev.1

    Tech. Specs.

    wnere applicaDle.

    4.0 DESIGNAND CONSTRUCTIONREQUIREMENTS

    4.2 Design Criteria/Rating

    a. Cable Nominal Voltage,

    kV

    b. System Short Circuit Current, kA

    c. Maximum Conductor short circuit current

    temperature. .C

    d. Maximum permissible continuous

    conductor temperature. .C

    e. Emergency Loading

    .

    Maximum emergency conductor

    loading temperature. .C

    .

    Permissible Load in Amps, A

    . Allowableloadingduration; hrs

    i) During any 12 months

    ii) During the life of the cable

    4.3

    4.3.1

    Materials Details:

    Conductor:

    Material

    Copper Copper

    A - TBU SPECIFIEDDATA/PARAMETER.

    B - BIDDER/SUPPLIER/VENDOR/CONTRACTORPROPOSEDDATA/PARAMETERS.

    C - REMARKSSUPPORTINGTHE PROPOSEDDEVIATION IN COLUMN B .

    *) - DATA/PARAMETERTO BEPROVIDED/PROPOSEDBYTHE BIDDER/SUPPLIER/

    VENDOR/CONTRACTORIN COLUMN B

    * Production Sampling Tests will be according to ICEAS-108-720

    IlT~SS02R01 FAZ Date of Approval: December

    12 2011

    132

    132

    40 40 for one second

    2S0 250

    -

    90 90

    -

    105 105

    *

    Please

    refer to Page22of 35

    72 72

    -

    1500 1500

  • 7/25/2019 11-TMSS-02 REV1.pdf

    2/6

    TR NSM SS ON M TERI LSST ND RDSPECIFIC TION

    7.0 D T SCHEDULE

    132kV

    XLPEPOWERC LE

    REFERENCE

    SECTION NO.

    DESCRIPTION

    Conductor for stranding

    (Non-segm enta 1/segmenta I)

    No. of strands

    Dia. of strand prior to compaction, mm

    Cross-sectional area, mm2

    (400,630,800, 1000, 1200, 1600 or 2000)

    Diameter, mm

    Resistance at 25. C,O/km

    Conductor AC resistance at 20.C

    Conductor DCresistance at 20.C

    Temp. coeff at 20.C/ C

    Skin effect loss factor (k,)

    Proximity effect lossfactor (kp)

    DCResistance at 90. C,O/km

    Short circuit capabil ity of conductor in kA

    for 1 second staryting with 90. Cconductor

    temperature up to max. short circuit current

    temperature

    Water blocking material between strands

    4.3.2 Conductor shield:

    Material

    Average thickness, mm

    400 mm2

    800 to

    2000

    mm2

    Minimum thickness, mm

    400 mm2

    800 to 2000 mm2

    11TM5502R01/FAZ

    A

    *

    *

    *

    *

    *

    *

    *

    *

    *

    *

    *

    *

    40

    *

    SEMICON

    0.64

    0.76

    0.512

    0.608

    Date of Approval: December 12, 2011

    r

    ll-TMSS-02 Rev.O

    6

    ::.egmentallea

    stranded compacted

    No. of segments: 5

    C

    No.ofstrands:91( per segment)

    19 for central conductor)

    appx. 2.78 mm in segments

    before compaction)

    2500

    appx. 63.0

    without tapes)

    max. 0.00734

    max. 0.011 ohm/km

    max.O.0072ohm/km

    0.00393

    k,

    =

    0.66

    max. 0.0092

    40

    Yes (Swelling tapes shall be applied

    inside the segments)

    Same

    apprx. 1.6

    0.608 at any point

  • 7/25/2019 11-TMSS-02 REV1.pdf

    3/6

    TRANSMISSION MATERIALSSTANDARD SPECIFICATION

    REFERENCE

    SECTIONNO.

    7 DATA SCHEDULE

    32kV

    XLPEPOWERCABLE

    DESCRIPTION

    A

    Dia.Overconductor shield,

    mm

    Thermal

    resistivity, K.m/W

    *

    *

    Conductor Moisture Impervious layer

    Material

    Semi Conducting

    Tape

    4.3.3 Insulation:

    4.3.4

    4.3.5

    11 TMSS02ROl/FAZ

    Material

    SUPER

    CLEANXLPE

    Average thickness, mm

    Minimum thickness, mm

    Dia.Over insulation, mm

    Thermal resistivity, K.m/W

    Relative permittivity

    or dielectric constant (E)

    Lossfactor (0)

    Specific Resistance, MO-km

    (Actual Test Value)

    21.6

    19.44

    *

    *

    *

    *

    Insulation shield:

    Material

    Average thickness, mm

    Minimum thickness, mm

    Dia.OverInsulationshield,mm

    Thermal

    resistivity,K.m/W

    SEMICON

    1.75

    1.40

    *

    *

    Metallic shield:

    Material

    Total effective cross-sectional area, mm2

    Diameter over metallic shield, mm

    Temp.

    coefficient at

    20.C/ C

    DCresistanceat 20. C,O/km

    ACresistance at 20. C,O/km

    Self inductance, mH/km

    ACresistance at 90. C,O/km

    DCresistance at 90. C,O/km

    Resistivityat 20. C,O.m

    *

    *

    *

    *

    *

    *

    *

    *

    *

    Short circuit capability in kAfor 1 second

    of the metallic shield starting with 90. C

    conductor temperature

    40

    Date of Approval: December 12, 2011

    ll TMSS 02 Rev.01

    B C

    apprx. 68

    3.5

    Same

    Super clean

    XLPE

    21.6

    19.44 (at any point)

    apprx. 111

    3.5

    2.3 (at 20.C )

    Max. 10x10-4

    Min. 781 (at 20.C )

    Same

    1.75

    1.4 (at any point)

    apprx. 115

    3.5

    Plain annealed copper wires +

    copper tape contact h ; ix

    nom. 305 (geomertical)

    apprx. 121

    0.00393

    0.07 apprx.

    0.07 apprx.

    0.158

    0.08

    0.08

    Typical1.7241x10.s

    apprx.

    apprx

    4

  • 7/25/2019 11-TMSS-02 REV1.pdf

    4/6

    TRANSMISSION MATERIALSSTANDARD SPECIFICATION

    ll TMSS 02 Rev.Ol

    REFERENCE

    SECTION

    NO.

    4.3.6

    4.3.7

    4.3.8

    5.3

    7.0 DATA SCHEDULE

    32kV

    XLPEPOWER C LE

    DESCRIPTION

    Moisture impervious layer (first layer) :

    Material

    Thickness, mm

    Diameter over the layer, mm

    Moisture impervious layer (second layer) :

    Material

    Thickness, mm

    Diameter over the layer, mm

    Third Moisture impervious layer

    Jacket:

    Material

    (LlDPE, lMDPE or HDPE)

    Average thickness, mm

    Minimum thicknes, mm

    Overall cable diameter,mm

    Conductive layer:

    Material

    Thickness, mm

    Special Thermal Short Circuit Test

    6 0

    PACKING

    a. Totalquantity required,m

    b. Arematchedsets

    of cable reel length

    required?

    c. If YES ,how manyreels

    are reuired per set?

    d. Tolerancein cablelengthof

    matched reel sets

    e. Conductorweight, kg/km

    f. Cableweight, kg/km

    g. Reelandcableweight, kg

    h. Cablelength per reel. M

    i. Cablereel diameter, mm

    j. Cable reelwidth, mm

    llT~SS 2R 1 FAZ

    'A' 'B' 'C'

    SE~I-CONDUCTIVE

    SWELLABLE

    APE

    0.12

    SCSwellable tapes (under metallic screen)

    *

    apprx. 0.4 apprx. (orig. thickness)

    apprx. 117

    SE~ICONDUCTIVE

    SWELLABLE TAPE

    0.12

    Same

    YES/No

    (over metal lic screen)

    apprx. 0.4 (original thick.)

    apprx. 122

    Yes - PElaminated AI. Tape

    *

    3.95

    3.55

    lMDPE

    3.95

    3.55 (at any point)

    apprx. 130

    *

    Graphite

    apprx.

    0 01

    YES/No

    Yes (during Type Test only)

    Date of Approval: December

    12 2 11

    Dependingupon

    project

    requirement

    -

    2

    -

    *

    apprx.22500

    *

    apprx.34700

    *

    apprx.19850

    *

    498m

    -

    *

    apprx.4040

    *

    apprx.2250

  • 7/25/2019 11-TMSS-02 REV1.pdf

    5/6

    TR NSM SS ON MATERIALSSTANDARD SPECIFICATION

    7.0 DATASCHEDULE

    32kV XLPE POWER CABLE

    REFERENCE

    SECTION NO. DESCRIPTION

    OTHERREQUIREDINFORMATION

    a. Lifeexpectancy

    of cable years

    b. 3 phase inductance in trefoil/Fiat

    formation, mH/km

    c. 3 phase capacitance in trefoil/Flat

    formation, IlF/km

    d. Maximum permissible overload in

    of 3 cables in underground cable duct

    trefoil/Flat formation at 40. Csoil

    temperature, for 1/2/3 ( Il hour / IHours

    ( 13-hours)ours start ing with a prior loading

    of

    50

    75

    100

    e. Maximum pullingTension (kN)

    f. Maximum sidewall pressure, kN/m

    g. Minimum bending radius, mm

    A

    Over 30

    *

    *

    *

    *

    *

    *

    ll TMSS 02 Rev.Ol

    B

    e

    ~30 years (designed life)

    based on operation conditions

    0.335 (trefoil)

    0.261 + 8

    1 cable

    Il-hour

    /

    12-hours

    Il-hour / 12-hours

    13-hours

    3-hours

    ICable

    =

    1358 A*

    (cables laid in trench, direct buried)

    250/250/250

    250/250/230

    217/180/167

    /

    /

    125

    at conductor

    5.0

    2600

    * Cables laid inflat formation with 0.5 m axial spacing between phases and assumed Native Soil

    Thermal Resistivity of 1.2 K.m/W

    IlT~SS02ROI/FAZ

    Date of

    Approval:

    December

    12, 2011

  • 7/25/2019 11-TMSS-02 REV1.pdf

    6/6

    TRANSMISSION MATERIALS STANDARD SPECIFICATION

    ll TMSS 02 Rev.Ol

    7.0 DATA SCHEDULE

    132kV XLPE POWER CABLE

    A. ADDITIONAL TECHNICALINFORMATION ORFEATURESTO BEFURNISHEDBYSEC:

    B. ADDITIONAL SUPPLEMENTARY DATA OR FEATURES PROPOSED BY

    BIDDER/VENDOR/SUPPLIER/CONTRACTOR:

    C. OTHERPARTICULARSTO BEFILLEDUPBY BIDDER/VENDOR/SUPPLIER/CONTRACTOR:

    Actual Manufacturer

    of Equipment/Material

    Vendor/Supplier/

    Contractor

    Name of the Company

    Location and address

    Saudi Cable Company

    Jeddah

    Name and Signature of

    authorized rpresentative

    and Date

    Official Seal/Stamp

    of the Company

    Date

    IlT~SS02ROI/FAZ

    ate of Approval: December 12 2011 age NO. 23 OF 3S