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MENUPPALINDICEPLANOS
Especificaciones Generales
para la Construcción de Gasoductos
Plano No. M–002
Estaciones Típicas de Seccionamiento e Interconexión (S.I.) Diseño Mecánico
PDVSA
1
( VER NOTA 12 )
SALIDAS ENTRE 16” Y 30”
VER NOTAS 3 Y 4
PLETINAS DE 2”x3/4”
SALIDAS ENTRE 6” Y 12”
PIG–SIG ELECTRICO
500
DETALLE B
PIG–SIG VISUAL PIG–SIG ELECTRICO
2510
3510
3040
3040
2610
2610
2130
1800
1800
4” 6” 6” 8” 8” 10” 12” 12”4”
DIMENSIONES
CONEX. P/ TRASEGADO DE GAS
CONEX. P/ BALON INFLABLE
CONEX. A QUEMADOR
SECCIONAMIENTO
30”
1
36”
N
20”
26”
12”
16”
6”
8”
10”
F
470
540
610
660
730
830
950
1060
1130
750
860
980
1170
1380
1750
REVISION
REVISION GENERAL CORPOVEN
7740 2775 2200
29218900 2300
2430
2510
2560
2700
5650
7020
4340
5040
1900
2100
1700
1800
1380 2520 1280
28501750 1660
1160
1420
1780
2290
980
1170
750
860
980
1150
750
860
490
580
670
2300
2340
2400
3020
3520
3950
a b
1500
1600
1650
c d f
630
790
980
490
580
670
e
490
580
670
g
t
g
d
a
4”4”
4” 4”
4” 4”
1657 2264 3200
2264
R.BELLO
2089
POR
3200
2033
1200
1454
844
997
1696 1195
1435
1395
1696
980
1195
3135 3350 5000
3510
09/95
4467
FECHA
5000
N
1800
2210
2390
2970
2422
2779
1691
1779
5000
5000
5000
5000
565
666
793
h i
1058 745
1058
1395
745
980
j k
6” 8”
6” 6”
6” 6”
8” 8”
8” 8”
8” 8”
1230
1310
1710
989
1410
1380
l m
4000
5000
5000
n n
8” 8”
8” 12”
8” 10”
8”
12”
10”
DIAMETROS
INTERCONEXION
GASODUCTO Y LAZO
CORTE A–A
ESCALA 1:50
b
F
4”
6”
6”
8”
LAZO
o
(TIP.)
w
(TIP.)
ACTUADOR
8”
10”
10”
12”
10”
16”
16”
20”
16”
26”
20”
30”
20”
36”
BOP>3900
GASODUCTO
x
(TIP.)
VER NOTA 10
n/2
SM–
n/2 y
CORTE B–B
PLANO N
M–001
3050
2860
2480
1570
2020
2390
3190
3460
4240
REVISION
1100 1000 2100
10001100 2100
800
800
800
800
800
950
800
800
1560
1880
1290
1560
1160 4910 1200
49101160 1200
2900
3400
3400
4280
1100
1130
1080
1100
1200
1200
1200
1200
r
1000
1180
1390
800
800
800
800
800
800
o p
980
980
1290
q
2380
2380
2900
1050
1050
1080
s
1200
1200
1200
t u
730
730
1120
1120
1400
1400
1210 2670
POR
1290 2670
1840 950
1020
1790
1400 670
720
2460
2230
2670
2620
4980 10004000
50005060
FECHA
1000
3500
3000
2000
2000
4210
4390
4140
4140
800
800
800
800
320
460
590
350930
1380
960 460
560
v w
2910
2830
2750
x y
2000
2000
20004060
4090
4110
z L
800
800
800
P
ESCALA 1:50
ESTACIONES TIPICAS DE SECCIONAMIENTO
TITULO
PLANOS DE REFERENCIA
ESCALA 1:10
DETALLE A
PLANO N
C
(TIP.)
GASODUCTO
z
(TIP.)
po
(TIP.)
qs
(TIP.)
n/2
P
n/2
(TIP.)
u
(TIP.)
v
TIPO ”L”
JUNTA MONOLITICA
( VER NOTA 12 )
VISUAL
PIG–SIG
k
VER NOTA 10
n
n
CONEX.P/TRASEGADO
A
r
LAZO
t
(TIP.)
ESCALA 1:10
C
D
PLANTA
ESCALA 1:50
k
VER NOTA 11
D
B CONEX.P/TRASEGADO
( VER NOTA 12 )
REVESTIMIENTO
GASODUCTO
VER NOTA 9
LAZO
VER NOTA 9
r=40D
a g
CONEX.P/BALON INFLABLE
TIPO ”L”
JUNTA MONOLITICA
( VER NOTA 12 )
PIG–SIG
VISUAL
CONEX.P/BALON INFLABLE
b c
A
ACTUADOR
d e f
5500
m
l
ACTUADOR
( VER NOTA 12 )
PIG–SIG VISUAL
ESCALA 1:50
ELEVACION
h i h g
B
CONEX.P/MECHURRIO
f e d
10002000
VISUAL
PIG SIG
TRAMO RECTO
VER DETALLES
A Y B
VER DETALLE A
SM–
(LINE BREAK)
ACTUADOR
SM–
VER DETALLE A
A Y B
VER DETALLES
ACTUADOR
, STD
12.– LOS PIG–SIG SERAN DE TIPO BIDIRECCIONALES.
, STD
11.– LA VALVULA DE BOLA SERAACCIONADAMEDIANTE MECANISMO DE POLEA CON CADENA.
JUNTAAISLANTE MONOLITICA %%C6” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C8” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C10” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C12” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C16” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C20” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C26” TIPO ”L” ANSI 600
JUNTAAISLANTE MONOLITICA %%C30” TIPO ”L” ANSI 600
9.– SE USARA TIERRA LIBRE DE PIEDRAS MAS UNA CAPA DE ASFALTO EN LA ZONADE TRANSICION
ENTRE LA TUBERIAENTERRADA Y LA TUBERIA SUPERFICIAL.
10.– EL NIPLE A USARSE SERA DE LONGITUD 500mm.
RESPECTIVAAL DIAMETRO DE ESTE EN LA TABLA DE DIMENSIONES.
8.– PARAOBTENER LAS MEDIDAS PARALOS DIFERENTES DIAMETROS DEL GASODUCTO, VER LA FILA
7.– TODA LA ESTACION ESTA CLASIFICADACOMOANSI 600.
PESO TOTAL DE LA ESTACION [KG.]
1.– LAS MEDIDAS ESTAN EXPRESADAS EN MILIMETROS, A MENOS QUE SE INDIQUE LO CONTRARIO.
2.– PARALOS TIPOS Y CANTIDADES DE MATERIALES VER LA COLUMNACORRESPONDIENTEAL DIA–
METRO DEL GASODUCTO EN LA LISTA DE MATERIALES.
3.– PARAINTERCONEXIONES Y SECCIONAMIENTOS DE %%C=4” LA REJILLA INTERNA DE LA TEE CONSIS–
TIRADE UNA PLETINA UBICADA EN LA LINEA CENTRAL.
4.– LAS PLETINAS DEBERAN SOLDARSE A LA TEE Y ESMERILARSE POR DENTRO PARAELIMINAR RE–
SIDUOS E IMPERFECTOS INTERNOS, ANTES DE SOLDAR LA TEE A LA ESTACION.
5.– LA DIMENSION ”L” ES LA MINIMAACONSEJADA, DEBERA SER AJUSTADAEN CAMPO.
6.– EL PESO TOTAL DE LA ESTACION, INCLUYE LATUBERIA DESDE QUE AFLORAA LA SUPERFICIE.
, STD
, STD
, STD
, STD
, STD
, STD
, STD
TAPA DE APERTURAY CIERRE RAPIDO %%C12”, ANSI 600
TAPA DE APERTURAY CIERRE RAPIDO %%C10”, ANSI 600
TAPA DE APERTURAY CIERRE RAPIDO %%C8”, ANSI 600
TAPA DE APERTURAY CIERRE RAPIDO %%C6”, ANSI 600
TAPA DE APERTURAY CIERRE RAPIDO %%C4”, ANSI 600
ACTUADOR SHAFER 20”x16”, P/V. DE BOLA %%c36”
ACTUADOR SHAFER 14.1/2”x14”, P/V. DE BOLA %%C30”
ACTUADOR SHAFER 14.1/2”x14”, P/V. DE BOLA %%C26”
ACTUADOR SHAFER 12.1/2”x12”, P/V. DE BOLA %%c20”
ACTUADOR SHAFER 12.1/2”x12”, P/V. DE TAPON %%C20”
ACTUADOR SHAFER 11”x10”, P/V. DE BOLA %%C16”
ACTUADOR SHAFER 11”x10”, P/V. DE TAPON %%C16”
ACTUADOR SHAFER 9”x7”, P/V. DE BOLA %%C12”
ACTUADOR SHAFER 6.1/2”x8”, P/V. DE BOLA %%C10”
ACTUADOR SHAFER 6.1/2”x8”, P/V. DE TAPON %%C10”
ACTUADOR SHAFER 6.1/2”x8”, P/V. DE BOLA %%C8”
ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE TAPON %%C8”
ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE BOLA %%c6”
ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE TAPON %%C6”
ESPARRAGO %%C2.1/2”x17”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C2”x15”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C1.7/8”x14”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%c1.5/8”x12”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%c1.1/2”x10”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%c1.1/4”x9”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C1.1/8”x8”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C1”x7”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C7/8”x6”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
ESPARRAGO %%C5/8”x4.1/2”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H
JUNTAAISLANTE MONOLITICA %%C36” TIPO ”L” ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
e=1/8”, RF, ANSI 600
30%%D30%%D
CORTE C–C
TITULO
ESCALA 1:10
REVISADO FECHA
O.CASTRO/J.CASTILLO
APROBADO
H.OCTAVIO
FECHA
AGO–92
AGO–92
DETALLE TIPICO
ESCALA 1:10
DE SOLDADURA
INDICADAS
ESCALAS
PENETRACION
COMPLETA
te
DISENADO
J.SALCEDO
DIBUJADO
J.SALCEDO
FECHA
FECHA
JUN–92
JUL–92
NIPLE %%C3/4” ANSI 6000, NPT
THREADOLET %%C3/4” ANSI 6000
NOTAS:
151
150
20%%d
L ( VER NOTA 5 )
CORTE D–D
20%%d20%%d
ESCALA 1:10
( DISTANCIAID–BASE
DE BARRA 1/2”)
( VER NOTA 12 )
20%%d
PLANCHA
SOPORTE
PLANCHA 1”)
PIG–SIG ELECTRICO, TDW O SIMILAR
PIG–SIG VISUAL, TDW O SIMILAR
EMPACADURA142
EMPACADURA
EMPACADURA
EMPACADURA
EMPACADURA
EMPACADURA
149
148
147
146
143
144
145
EMPACADURA
EMPACADURA
EMPACADURA
EMPACADURA
EMPACADURA
138
139
140
141
135
136
137
FLEXITALLIC %%C12”,
%%C10”,
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
%%C4”,
%%C2”,
%%C8”,
%%C6”,
%%C36”,
%%C30”,
%%C26”,
%%C20”,
%%C16”,
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
FLEXITALLIC
127
131
132
133
134
128
129
130
123
124
125
126
120
121
122
ANCHO DE LA PLANCHA
( DISTANCIAID–BASE DE
SALIDA DE ACCESORIO
MIN. 2” PARABARRAS
2”X1/2” 112
116
117
118
119
113
114
115
108
109
110
111
105
106
107
WELDOLET 30”x8”
WELDOLET 26”x8”
WELDOLET 20”x2”
WELDOLET 16”x2”
WELDOLET 12”x2”
WELDOLET 10”x2”
WELDOLET 8”x2”
WELDOLET 6”x2”
WELDOLET 4”x2”
97
101
102
103
104
98
99
100
93
94
95
96
90
91
92
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
, BFW, A–105 Gr.II
DE SECCIONAMIENTO E INTERCONEXION (S.I.)
DISENO MECANICO
PROYECTO N PLANO N
M–002 E ARCHIVOAUTOCAD N
INTERCON
4600
ESTACIONES TIPICAS
PZA
PZA
0,00
0,00
12
12
159007000
12
12
12
12
10800
12
12
3570022000
12
12
53200
12
12
12
12
REV.
1
12
12
11100080000
12
12
PZA 0,00
PZA
PZA
PZA
PZA
PZA
PZA
PZA
0,00
0,00
4,00
3,00
0,00
0,00
0,00
PZA
PZA
PZA
PZA
PZA
PZA
PZA
PZA
0,00
0,00
0,00
0,00
61,20
34,00
0,00
PZA 0,30
PZA
PZA
PZA
PZA
PZA
PZA
PZA
426,00
245,00
150,00
99,80
2041,00
1202,00
816,00
PZA
PZA
PZA
PZA
PZA
PZA
PZA
2,30
1,30
0,80
1,60
7,00
5,00
4,00
8
15
4
10
4
2
4
10
27
2
4
8
19
2
4
4
–
–
–
10
4
–
–
8
–
2
4
–
19
10
4
–
–
–
–
–
–
–
–
–
4
–
–
–
–
4
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
8
2
4
–
–
19
10
8
–
2
4
8
–
2
4
–
19
–
–
–
11
8
–
–
–
4
–
–
–
–
10
4
–
10
–
4
–
–
–
–
–
–
–
–
4
64
180
48
80
646464
–
–
–
–
–
–
–
–
–
–
–
–
–
–
4
–
–
–
–
–
–
–
–
–
–
–
–
216
48
–
152
96
48
–
–
–
–
–
–
–
–
64
–
228
96
–
–
–
–
–
–
–
646464
–
–
–
4
–
–
–
–
–
–
4
–
–
–
–
–
–
–
4
–
–
228
128
–
–
228
80
–
–
128
–
–
–
–
132
–
160
96
–
160
–
112
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
, (LINE BREAK)
PZA 63,50
PZA
PZA
PZA
PZA
PZA
PZA
PZA
42,64
42,64
10,00
8,00
63,50
63,50
42,64
PZA
PZA
PZA
PZA
PZA
PZA
PZA
299,37
188,24
188,24
104,33
435,45
435,45
299,37
, (LINE BREAK)
0,80PZA
PZA
PZA
PZA
PZA
PZA
PZA
PZA
36,29
13,61
6,80
852,76
0,80
68,04
58,97
PZA
PZA
PZA
PZA
PZA
PZA
PZA
0,80
0,80
0,80
0,80
12,00
10,00
0,80
2
2
2
–
–
–
2
–
–
2
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
2
–
–
2
–
–
2
–
–
–
–
2
–
4
2
2
2 2
–
4
–
–
–
4
–
–
–
–
4
–
–
–
2
–
–
4
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
4
–
–
–
–
–
–
–
4
–
–
–
–
–
–
–
–
4
–
–
–
–
2
2
–
–
–
–
2 2
2
–
–
–
2
–
–
–
–
–
4
–
1010
8
4
5
2
4
8
–
2
4
–
–
4
5
–
10
4
4
–
10
–
–
–
–
–
–
–
–
–
6464
4
–
–
–
–
–
–
–
–
–
4
–
–
–
48
280
192
280
–
–
48
–
–
–
192
–
–
–
112
112
–
–
–
–
–
–
–
–
–
–
–
–
–
–
22
–
–
–
–
–
–
–
–
2
–
–
–
2
4
–
–
–
–
–
–
–
–
4
–
–
–
–
–
2
2
–
–
2
–
–
–
2
–
4
–
–
–
, STD
VALVULA DE BOLA %%C4”, AP. COMP., RF, ANSI 600
VALVULA DE TAPON %%C1/2” ANSI 6000, NPT
VALVULA DE BOLA %%C36”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C30”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C26”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C20”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C16”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C12”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C10”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C8”, AP. COMP., RF, ANSI 600
VALVULA DE BOLA %%C6”, AP. COMP., RF, ANSI 600
VALVULADE TAPON %%C20”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%C16”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%c12”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%C10”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%C8”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%C6”, TIPO VENTURI, RF, ANSI 600
VALVULADE TAPON %%C4”, DISENO NORMAL, RF, ANSI 600
VALVULADE TAPON %%C2”, DISENO NORMAL, RF, ANSI 600
BRIDACIEGA %%C12”, RF, ANSI 600, A–105
BRIDACIEGA %%c10”, RF, ANSI 600, A–105
BRIDACIEGA %%C8”, RF, ANSI 600, A–105
BRIDACIEGA %%C6”, RF, ANSI 600, A–105
BRIDACIEGA %%C4”, RF, ANSI 600, A–105
TEE RECTA %%C20”, BFW, WPY, A–234, esp.=0,438”
TEE RECTA %%C16”, BFW, WPY, A–234, esp.=0,375”
TEE RECTA %%C12”, BFW, WPB, A–234, esp.=0,375”
TEE RECTA %%C10”, BFW, WPB, A–234, esp.=0,365”
TEE RECTA %%C8”, BFW, WPB, A–234, esp.=0,322”
TEE RECTA %%C6”, BFW, WPB, A–234, esp.=0,280”
TEE RECTA %%C4”, BFW, WPB, A–234, esp.=0,237”
TEE RED. %%C36”x20”, BFW, WPY, A–234, esp.=0,750”
TEE RED. %%C30”x20”, BFW, WPY, A–234, esp.=0,625”
TEE RED. %%C30”x12”, BFW, WPY, A–234, esp.=0,625”
TEE RED. %%C26”x16”, BFW, WPY, A–234, esp.=0,500”
TEE RED. %%C20”x16”, BFW, WPY, A–234, esp.=0,438”
TEE RED. %%C20”x 8”, BFW, WPY, A–234, esp.=0,438”
TEE RED. %%C16”x10”, BFW, WPY, A–234, esp.=0,375”
TEE RED. %%C16”x 8”, BFW, WPY, A–234, esp.=0,375”
TEE RED. %%C12”x10”, BFW, WPB, A–234, esp.=0,375”
TEE RED. %%C12”x 8”, BFW, WPB, A–234, esp.=0,375”
TEE RED. %%C12”x 6”, BFW, WPB, A–234, esp.=0,375”
TEE RED. %%C10”x 8”, BFW, WPB, A–234, esp.=0,365”
TEE RED. %%C10”x 6”, BFW, WPB, A–234, esp.=0,365”
TEE RED. %%C8”x 6”, BFW, WPB, A–234, esp.=0,322”
TEE RED. %%C8”x 4”, BFW, WPB, A–234, esp.=0,322”
TEE RED. %%C6”x 4”, BFW, WPB, A–234, esp.=0,280”
SADDLE %%C36”x12”, ENV. COMP., A–234, X52, esp.=0,312”
SADDLE %%C26”x10”, ENV. COMP., A–234, X52, esp.=0,312”
CODO 90%%D %%C20”, RL, BFW, WPY, A–234, esp.=0,438”
CODO 90%%D %%C16”, RL, BFW, WPY, A–234, esp.=0,375”
CODO 90%%D %%C10”, RL, BFW, WPB, A–234, esp.=0,365”
CODO 90%%D %%C8”, RL, BFW, WPB, A–234, esp.=0,322”
CODO 90%%D %%C6”, RL, BFW, WPB, A–234, esp.=0,280”
CODO 90%%D %%C4”, RL, BFW, WPB, A–234, esp.=0,237”
CODO 45%%D %%C12”, RL, BFW, WPB, A–234, esp.=0,375”
CODO 45%%D %%C10”, RL, BFW, WPB, A–234, esp.=0,365”
CODO 45%%D %%C8”, RL, BFW, WPB, A–234, esp.=0,322”
CODO 45%%D %%c6”, RL, BFW, WPB, A–234, esp.=0,280”
CODO 45%%D %%c4”, RL, BFW, WPB, A–234, esp.=0,237”
REDUCCION CONC. %%C20”x12”, BFW, WPY, A–234, esp.=0,438”
REDUCCION CONC. %%C16”x 8”, BFW, WPY, A–234, esp.=0,375”
REDUCCION CONC. %%C10”x 8”, BFW, WPB, A–234, esp.=0,365”
REDUCCION CONC. %%C10”x 6”, BFW, WPB, A–234, esp.=0,365”
REDUCCION CONC. %%C8” x 6”, BFW, WPB, A–234, esp.=0,322”
REDUCCION CONC. %%C6” x 4”, BFW, WPB, A–234, esp.=0,280”
BRIDA %%C4”, WN, RF, ANSI 600, A–105 Gr.II
CONEX.P/BALON INFLABLE
TIPO ”L”
JUNTA MONOLITICA
TIPO ”L”
JUNTA MONOLITICA
CONEX.P/BALON INFLABLE
c b a
VER NOTA 9
1500
WELDOLET 36”x8”
82
89
86
87
88
83
84
85
78
79
80
81
75
76
77
, BFW, A–105 Gr.II
67
71
72
73
74
70
68
69
63
64
65
66
60
61
62
VER NOTA 9
r=40D
52
56
57
58
59
53
54
55
49
50
51
45
46
47
48
BRIDA%%C36”, WN, RF, ANSI 600, A–105
BRIDA%%C30”, WN, RF, ANSI 600, A–105
BRIDA%%C26”, WN, RF, ANSI 600, A–105
BRIDA%%C16”, WN, RF, ANSI 600, A–105
BRIDA%%C12”, WN, RF, ANSI 600, A–105
BRIDA%%C10”, WN, RF, ANSI 600, A–105
BRIDA %%C8”, WN RF, ANSI 600, A–105
BRIDA %%C6”, WN, RF, ANSI 600, A–105
BRIDA %%C2”, WN, RF, ANSI 600, A–105
BRIDA%%C20”, WN, RF, ANSI 600, A–105
37
41
42
43
44
38
39
40
33
34
35
36
30
31
32
300
TRAMO RECTO
2000
DESCRIPCION:RENG.
22
26
27
28
29
23
24
25
18
21
19
20
15
16
17
TUBERIA%%C36”, API 5L–X52, esp.=0,750”
TUBERIA%%C30”, API 5L–X52, esp.=0,625”
TUBERIA%%C26”, API 5L–X52, esp.=0,500”
TUBERIA%%C20”, API 5L–X52, esp.=0,438”
TUBERIA%%C16”, API 5L–X52, esp.=0,375”
TUBERIA%%C12”, API 5L–Gr.B, esp.=0,375”
TUBERIA%%C10”, API 5L–Gr.B, esp.=0,365”
TUBERIA %%C8”, API 5L–Gr.B, esp.=0,322”
TUBERIA %%C6”, API 5L–Gr.B, esp.=0,280”
TUBERIA %%C4”, API 5L–Gr.B, esp.=0,237”
TUBERIA %%C2”, API 5L–Gr.B, esp.=0,154”
7
11
12
13
14
8
9
10
3
4
5
6
1
2
x 0,237”
x 0,280”
x 0,280”
x 0,322”
x 0,322”
x 0,375”
PZA 1,81
PZA
PZA
PZA
PZA
PZA
PZA
PZA
12,00
9,98
5,90
3,63
58,97
33,11
10,43
PZA
PZA
PZA
PZA
PZA
PZA
PZA
26,76
18,60
10,43
5,44
20,41
10,89
3,86
x 0,280”
x 0,237”
x 0,237”
x 0,280”
x 0,322”
x 0,280”
x 0,322”
x 0,365”
x 0,322”
x 0,365”
PZA 24,04
PZA
PZA
PZA
PZA
PZA
PZA
PZA
71,17
158,76
95,26
38,10
24,04
11,79
116,48
PZA
PZA
PZA
PZA
PZA
PZA
PZA
63,96
63,96
39,01
39,01
109,77
109,77
63,96
2
4
4
4 4
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
6
–
–
–
4
2
–
4
–
–
–
–
–
–
4
2
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
–
–
2
–
–
–
2
–
–
–
–
4
–
–
–
4
–
4
–
–
–
4
–
–
–
4
–
–
–
4
2
4
4
4
4
–
–
–
–
–
–
–
–
–
12
–
–
–
–
8
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
8
4
–
–
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
2
–
–
–
2
–
4
–
–
–
–
–
–
–
–
–
–
–
–
–
8
4
–
–
–
–
2
–
–
–
–
–
–
–
–
–
x 0,322”
x 0,375”
x 0,375”
x 0,375”
x 0,438”
x 0,438”
Gr.II
Gr.II
PZA 13,15
PZA
PZA
PZA
PZA
PZA
PZA
PZA
453,60
310,26
163,29
163,29
5,90
800,60
505,76
PZA
PZA
PZA
PZA
PZA
PZA
PZA
90,72
58,06
39,92
24,04
39,01
18,60
172,37
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
Gr.II
PZA 83,92
PZA
PZA
PZA
PZA
PZA
PZA
PZA
5,44
133,81
104,33
63,50
51,26
34,93
18,14
PZA
PZA
PZA
PZA
PZA
PZA
PZA
435,45
307,54
209,56
101,61
4,00
780,19
557,92
7
4
3
74
–
–
–
–
–
–
–
–
–
–
11
–
–
–
7
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
–
7
–
–
–
7
–
4
–
–
–
–
–
–
–
7
–
–
–
–
–
–
–
–
–
–
–
8
4
–
–
–
–
4
–
–
–
–
–
–
–
–
–
–
7
4
–
–
–
–
44
7
–
–
1
4
–
–
–
–
–
–
–
4
8
15
4
10
4
12
4
–
–
–
8
–
–
–
8
29
4
–
–
19
10
4
–
–
–
–
8
–
–
–
19
10
–
–
–
–
–
–
–
–
–
–
12
–
–
–
12
–
–
–
–
–
–
–
–
12
–
–
–
810
–
–
7
8
–
–
19
7
–
–
8
7
–
–
8
–
–
19
–
–
–
11
–
–
4
–
–
–
12
4
–
10
4
–
10
–
–
–
–
12
–
–
12
2
4
–
–
–
–
–
–
–
–
–
2
–
–
–
–
44
–
–
–
–
–
–
–
–
–
–
–
–
4
2
4
4
–
2
–
–
–
–
–
–
–
–
–
–
2
–
–
–
–
–
–
–
2
–
–
–
–
–
4
–
–
–
4
–
–
–
–
4
–
–
–
–
–
–
1
4
4
–
1
4
–
–
4
–
–
–
–
–
55
4
1
2
8
4
4
1
2
8
–
–
4
–
–
10
10
4
12
10
–
10
–
–
4
–
12
–
–
UNIDAD
33,546
30,745
PZA 2472,00
PZA
PZA
PZA
PZA
PZA
PZA
PZA
279,00
177,00
79,00
23,00
1198,00
631,00
454,00
PZA
PZA
PZA
PZA
PZA
PZA
PZA
544,00
140,00
323,00
159,00
2274,00
1430,00
753,00
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, SIN COSTURA
, CON COSTURA(ERW)
ML 60,24
ML
PZA
PZA
PZA
ML
ML
ML
5,43
11013,00
6328,00
5058,00
42,49
28,23
16,06
ML
ML
ML
ML
ML
ML
202,39
136,17
93,76
73,81
[KG/UNID.]
419,67
291,68
4
6
4
2
4
10
–
–
4
6
4
–
–
–
–
–
–
–
–
–
4
–
6
4
–
–
–
–
–
–
–
–
–
2
–
1
1
2
–
–
–
–
–
–
–
–
–
2
–
1
–
–
–
–
–
–
–
–
–
–
–
4
6
–
–
–
4
4
–
–
6
4
–
–
2
–
–
4
–
4
–
4
–
11
–
–
–
–
–
2
–
–
–
–
–
–
–
–
1
2
–
–
1
–
21,204
15,552
39,521
2,600
12”
36,783
–
–
–
2,600
–
–
–
2,600
33,862–
–
19,624
17,725
–
2,600
–
–
–
–
–
–
20,399
16,712
– –
–
–
–
–
–
–
–
–
–
–
6”
–
–
–
8”
–
–
–
–
–
–
–
–
10”
–
–
–
13,25615,384
23,715
2,600
–
–
–
2,600
–
–
22,138
–
–
–
2
–
–
2,600
–
–
–
–
–
14,812
13,070
48,763
–
43,800
–
–
–
–
16”
65,696
– –
12,166
–
–
–
–
20”
–
–
26”
LISTA DE MATERIALES
CANTIDADES:PESO
44
4
2
4
4
–
–
–
–
–
–
2
4
– –
1
–
–
–
–
–
–
–
–
–
1
–
–
–
14,32613,797
2
1,076
2,6002,600
–
2
–
–
–
1,076
–
–
–
–
17,329
12,540
84,016
14,793
12,540
– –
68,185
–
–
30”
–
–
36”
DEPENDENCIA
GERENCIA INGENIERIA OPERACIONAL DE GAS
PDVSA
GAS

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  • 1. MENUPPALINDICEPLANOS Especificaciones Generales para la Construcción de Gasoductos Plano No. M–002 Estaciones Típicas de Seccionamiento e Interconexión (S.I.) Diseño Mecánico PDVSA 1 ( VER NOTA 12 ) SALIDAS ENTRE 16” Y 30” VER NOTAS 3 Y 4 PLETINAS DE 2”x3/4” SALIDAS ENTRE 6” Y 12” PIG–SIG ELECTRICO 500 DETALLE B PIG–SIG VISUAL PIG–SIG ELECTRICO 2510 3510 3040 3040 2610 2610 2130 1800 1800 4” 6” 6” 8” 8” 10” 12” 12”4” DIMENSIONES CONEX. P/ TRASEGADO DE GAS CONEX. P/ BALON INFLABLE CONEX. A QUEMADOR SECCIONAMIENTO 30” 1 36” N 20” 26” 12” 16” 6” 8” 10” F 470 540 610 660 730 830 950 1060 1130 750 860 980 1170 1380 1750 REVISION REVISION GENERAL CORPOVEN 7740 2775 2200 29218900 2300 2430 2510 2560 2700 5650 7020 4340 5040 1900 2100 1700 1800 1380 2520 1280 28501750 1660 1160 1420 1780 2290 980 1170 750 860 980 1150 750 860 490 580 670 2300 2340 2400 3020 3520 3950 a b 1500 1600 1650 c d f 630 790 980 490 580 670 e 490 580 670 g t g d a 4”4” 4” 4” 4” 4” 1657 2264 3200 2264 R.BELLO 2089 POR 3200 2033 1200 1454 844 997 1696 1195 1435 1395 1696 980 1195 3135 3350 5000 3510 09/95 4467 FECHA 5000 N 1800 2210 2390 2970 2422 2779 1691 1779 5000 5000 5000 5000 565 666 793 h i 1058 745 1058 1395 745 980 j k 6” 8” 6” 6” 6” 6” 8” 8” 8” 8” 8” 8” 1230 1310 1710 989 1410 1380 l m 4000 5000 5000 n n 8” 8” 8” 12” 8” 10” 8” 12” 10” DIAMETROS INTERCONEXION GASODUCTO Y LAZO CORTE A–A ESCALA 1:50 b F 4” 6” 6” 8” LAZO o (TIP.) w (TIP.) ACTUADOR 8” 10” 10” 12” 10” 16” 16” 20” 16” 26” 20” 30” 20” 36” BOP>3900 GASODUCTO x (TIP.) VER NOTA 10 n/2 SM– n/2 y CORTE B–B PLANO N M–001 3050 2860 2480 1570 2020 2390 3190 3460 4240 REVISION 1100 1000 2100 10001100 2100 800 800 800 800 800 950 800 800 1560 1880 1290 1560 1160 4910 1200 49101160 1200 2900 3400 3400 4280 1100 1130 1080 1100 1200 1200 1200 1200 r 1000 1180 1390 800 800 800 800 800 800 o p 980 980 1290 q 2380 2380 2900 1050 1050 1080 s 1200 1200 1200 t u 730 730 1120 1120 1400 1400 1210 2670 POR 1290 2670 1840 950 1020 1790 1400 670 720 2460 2230 2670 2620 4980 10004000 50005060 FECHA 1000 3500 3000 2000 2000 4210 4390 4140 4140 800 800 800 800 320 460 590 350930 1380 960 460 560 v w 2910 2830 2750 x y 2000 2000 20004060 4090 4110 z L 800 800 800 P ESCALA 1:50 ESTACIONES TIPICAS DE SECCIONAMIENTO TITULO PLANOS DE REFERENCIA ESCALA 1:10 DETALLE A PLANO N C (TIP.) GASODUCTO z (TIP.) po (TIP.) qs (TIP.) n/2 P n/2 (TIP.) u (TIP.) v TIPO ”L” JUNTA MONOLITICA ( VER NOTA 12 ) VISUAL PIG–SIG k VER NOTA 10 n n CONEX.P/TRASEGADO A r LAZO t (TIP.) ESCALA 1:10 C D PLANTA ESCALA 1:50 k VER NOTA 11 D B CONEX.P/TRASEGADO ( VER NOTA 12 ) REVESTIMIENTO GASODUCTO VER NOTA 9 LAZO VER NOTA 9 r=40D a g CONEX.P/BALON INFLABLE TIPO ”L” JUNTA MONOLITICA ( VER NOTA 12 ) PIG–SIG VISUAL CONEX.P/BALON INFLABLE b c A ACTUADOR d e f 5500 m l ACTUADOR ( VER NOTA 12 ) PIG–SIG VISUAL ESCALA 1:50 ELEVACION h i h g B CONEX.P/MECHURRIO f e d 10002000 VISUAL PIG SIG TRAMO RECTO VER DETALLES A Y B VER DETALLE A SM– (LINE BREAK) ACTUADOR SM– VER DETALLE A A Y B VER DETALLES ACTUADOR , STD 12.– LOS PIG–SIG SERAN DE TIPO BIDIRECCIONALES. , STD 11.– LA VALVULA DE BOLA SERAACCIONADAMEDIANTE MECANISMO DE POLEA CON CADENA. JUNTAAISLANTE MONOLITICA %%C6” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C8” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C10” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C12” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C16” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C20” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C26” TIPO ”L” ANSI 600 JUNTAAISLANTE MONOLITICA %%C30” TIPO ”L” ANSI 600 9.– SE USARA TIERRA LIBRE DE PIEDRAS MAS UNA CAPA DE ASFALTO EN LA ZONADE TRANSICION ENTRE LA TUBERIAENTERRADA Y LA TUBERIA SUPERFICIAL. 10.– EL NIPLE A USARSE SERA DE LONGITUD 500mm. RESPECTIVAAL DIAMETRO DE ESTE EN LA TABLA DE DIMENSIONES. 8.– PARAOBTENER LAS MEDIDAS PARALOS DIFERENTES DIAMETROS DEL GASODUCTO, VER LA FILA 7.– TODA LA ESTACION ESTA CLASIFICADACOMOANSI 600. PESO TOTAL DE LA ESTACION [KG.] 1.– LAS MEDIDAS ESTAN EXPRESADAS EN MILIMETROS, A MENOS QUE SE INDIQUE LO CONTRARIO. 2.– PARALOS TIPOS Y CANTIDADES DE MATERIALES VER LA COLUMNACORRESPONDIENTEAL DIA– METRO DEL GASODUCTO EN LA LISTA DE MATERIALES. 3.– PARAINTERCONEXIONES Y SECCIONAMIENTOS DE %%C=4” LA REJILLA INTERNA DE LA TEE CONSIS– TIRADE UNA PLETINA UBICADA EN LA LINEA CENTRAL. 4.– LAS PLETINAS DEBERAN SOLDARSE A LA TEE Y ESMERILARSE POR DENTRO PARAELIMINAR RE– SIDUOS E IMPERFECTOS INTERNOS, ANTES DE SOLDAR LA TEE A LA ESTACION. 5.– LA DIMENSION ”L” ES LA MINIMAACONSEJADA, DEBERA SER AJUSTADAEN CAMPO. 6.– EL PESO TOTAL DE LA ESTACION, INCLUYE LATUBERIA DESDE QUE AFLORAA LA SUPERFICIE. , STD , STD , STD , STD , STD , STD , STD TAPA DE APERTURAY CIERRE RAPIDO %%C12”, ANSI 600 TAPA DE APERTURAY CIERRE RAPIDO %%C10”, ANSI 600 TAPA DE APERTURAY CIERRE RAPIDO %%C8”, ANSI 600 TAPA DE APERTURAY CIERRE RAPIDO %%C6”, ANSI 600 TAPA DE APERTURAY CIERRE RAPIDO %%C4”, ANSI 600 ACTUADOR SHAFER 20”x16”, P/V. DE BOLA %%c36” ACTUADOR SHAFER 14.1/2”x14”, P/V. DE BOLA %%C30” ACTUADOR SHAFER 14.1/2”x14”, P/V. DE BOLA %%C26” ACTUADOR SHAFER 12.1/2”x12”, P/V. DE BOLA %%c20” ACTUADOR SHAFER 12.1/2”x12”, P/V. DE TAPON %%C20” ACTUADOR SHAFER 11”x10”, P/V. DE BOLA %%C16” ACTUADOR SHAFER 11”x10”, P/V. DE TAPON %%C16” ACTUADOR SHAFER 9”x7”, P/V. DE BOLA %%C12” ACTUADOR SHAFER 6.1/2”x8”, P/V. DE BOLA %%C10” ACTUADOR SHAFER 6.1/2”x8”, P/V. DE TAPON %%C10” ACTUADOR SHAFER 6.1/2”x8”, P/V. DE BOLA %%C8” ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE TAPON %%C8” ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE BOLA %%c6” ACTUADOR SHAFER 6.1/2”x3.1/2”, P/V. DE TAPON %%C6” ESPARRAGO %%C2.1/2”x17”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C2”x15”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C1.7/8”x14”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%c1.5/8”x12”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%c1.1/2”x10”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%c1.1/4”x9”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C1.1/8”x8”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C1”x7”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C7/8”x6”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H ESPARRAGO %%C5/8”x4.1/2”, A–193 Gr.B7, C/2 TUERCAS A–194 Gr.2H JUNTAAISLANTE MONOLITICA %%C36” TIPO ”L” ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 e=1/8”, RF, ANSI 600 30%%D30%%D CORTE C–C TITULO ESCALA 1:10 REVISADO FECHA O.CASTRO/J.CASTILLO APROBADO H.OCTAVIO FECHA AGO–92 AGO–92 DETALLE TIPICO ESCALA 1:10 DE SOLDADURA INDICADAS ESCALAS PENETRACION COMPLETA te DISENADO J.SALCEDO DIBUJADO J.SALCEDO FECHA FECHA JUN–92 JUL–92 NIPLE %%C3/4” ANSI 6000, NPT THREADOLET %%C3/4” ANSI 6000 NOTAS: 151 150 20%%d L ( VER NOTA 5 ) CORTE D–D 20%%d20%%d ESCALA 1:10 ( DISTANCIAID–BASE DE BARRA 1/2”) ( VER NOTA 12 ) 20%%d PLANCHA SOPORTE PLANCHA 1”) PIG–SIG ELECTRICO, TDW O SIMILAR PIG–SIG VISUAL, TDW O SIMILAR EMPACADURA142 EMPACADURA EMPACADURA EMPACADURA EMPACADURA EMPACADURA 149 148 147 146 143 144 145 EMPACADURA EMPACADURA EMPACADURA EMPACADURA EMPACADURA 138 139 140 141 135 136 137 FLEXITALLIC %%C12”, %%C10”, FLEXITALLIC FLEXITALLIC FLEXITALLIC FLEXITALLIC FLEXITALLIC %%C4”, %%C2”, %%C8”, %%C6”, %%C36”, %%C30”, %%C26”, %%C20”, %%C16”, FLEXITALLIC FLEXITALLIC FLEXITALLIC FLEXITALLIC FLEXITALLIC 127 131 132 133 134 128 129 130 123 124 125 126 120 121 122 ANCHO DE LA PLANCHA ( DISTANCIAID–BASE DE SALIDA DE ACCESORIO MIN. 2” PARABARRAS 2”X1/2” 112 116 117 118 119 113 114 115 108 109 110 111 105 106 107 WELDOLET 30”x8” WELDOLET 26”x8” WELDOLET 20”x2” WELDOLET 16”x2” WELDOLET 12”x2” WELDOLET 10”x2” WELDOLET 8”x2” WELDOLET 6”x2” WELDOLET 4”x2” 97 101 102 103 104 98 99 100 93 94 95 96 90 91 92 , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II , BFW, A–105 Gr.II DE SECCIONAMIENTO E INTERCONEXION (S.I.) DISENO MECANICO PROYECTO N PLANO N M–002 E ARCHIVOAUTOCAD N INTERCON 4600 ESTACIONES TIPICAS PZA PZA 0,00 0,00 12 12 159007000 12 12 12 12 10800 12 12 3570022000 12 12 53200 12 12 12 12 REV. 1 12 12 11100080000 12 12 PZA 0,00 PZA PZA PZA PZA PZA PZA PZA 0,00 0,00 4,00 3,00 0,00 0,00 0,00 PZA PZA PZA PZA PZA PZA PZA PZA 0,00 0,00 0,00 0,00 61,20 34,00 0,00 PZA 0,30 PZA PZA PZA PZA PZA PZA PZA 426,00 245,00 150,00 99,80 2041,00 1202,00 816,00 PZA PZA PZA PZA PZA PZA PZA 2,30 1,30 0,80 1,60 7,00 5,00 4,00 8 15 4 10 4 2 4 10 27 2 4 8 19 2 4 4 – – – 10 4 – – 8 – 2 4 – 19 10 4 – – – – – – – – – 4 – – – – 4 – – – – – – – – – – – – – – – 8 2 4 – – 19 10 8 – 2 4 8 – 2 4 – 19 – – – 11 8 – – – 4 – – – – 10 4 – 10 – 4 – – – – – – – – 4 64 180 48 80 646464 – – – – – – – – – – – – – – 4 – – – – – – – – – – – – 216 48 – 152 96 48 – – – – – – – – 64 – 228 96 – – – – – – – 646464 – – – 4 – – – – – – 4 – – – – – – – 4 – – 228 128 – – 228 80 – – 128 – – – – 132 – 160 96 – 160 – 112 , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) , (LINE BREAK) PZA 63,50 PZA PZA PZA PZA PZA PZA PZA 42,64 42,64 10,00 8,00 63,50 63,50 42,64 PZA PZA PZA PZA PZA PZA PZA 299,37 188,24 188,24 104,33 435,45 435,45 299,37 , (LINE BREAK) 0,80PZA PZA PZA PZA PZA PZA PZA PZA 36,29 13,61 6,80 852,76 0,80 68,04 58,97 PZA PZA PZA PZA PZA PZA PZA 0,80 0,80 0,80 0,80 12,00 10,00 0,80 2 2 2 – – – 2 – – 2 – – – – – – 2 – – – – – – – – – – 2 – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – – 2 – – – – – – – – – – – – – – – – – – 2 – – – – – 2 – – 2 – – 2 – – – – 2 – 4 2 2 2 2 – 4 – – – 4 – – – – 4 – – – 2 – – 4 – – – – – – – – – – – – – – – – – – – – – – – – 2 – – – – – – – – – – – – – – – 4 – – – – – – – 4 – – – – – – – – 4 – – – – 2 2 – – – – 2 2 2 – – – 2 – – – – – 4 – 1010 8 4 5 2 4 8 – 2 4 – – 4 5 – 10 4 4 – 10 – – – – – – – – – 6464 4 – – – – – – – – – 4 – – – 48 280 192 280 – – 48 – – – 192 – – – 112 112 – – – – – – – – – – – – – – 22 – – – – – – – – 2 – – – 2 4 – – – – – – – – 4 – – – – – 2 2 – – 2 – – – 2 – 4 – – – , STD VALVULA DE BOLA %%C4”, AP. COMP., RF, ANSI 600 VALVULA DE TAPON %%C1/2” ANSI 6000, NPT VALVULA DE BOLA %%C36”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C30”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C26”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C20”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C16”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C12”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C10”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C8”, AP. COMP., RF, ANSI 600 VALVULA DE BOLA %%C6”, AP. COMP., RF, ANSI 600 VALVULADE TAPON %%C20”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%C16”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%c12”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%C10”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%C8”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%C6”, TIPO VENTURI, RF, ANSI 600 VALVULADE TAPON %%C4”, DISENO NORMAL, RF, ANSI 600 VALVULADE TAPON %%C2”, DISENO NORMAL, RF, ANSI 600 BRIDACIEGA %%C12”, RF, ANSI 600, A–105 BRIDACIEGA %%c10”, RF, ANSI 600, A–105 BRIDACIEGA %%C8”, RF, ANSI 600, A–105 BRIDACIEGA %%C6”, RF, ANSI 600, A–105 BRIDACIEGA %%C4”, RF, ANSI 600, A–105 TEE RECTA %%C20”, BFW, WPY, A–234, esp.=0,438” TEE RECTA %%C16”, BFW, WPY, A–234, esp.=0,375” TEE RECTA %%C12”, BFW, WPB, A–234, esp.=0,375” TEE RECTA %%C10”, BFW, WPB, A–234, esp.=0,365” TEE RECTA %%C8”, BFW, WPB, A–234, esp.=0,322” TEE RECTA %%C6”, BFW, WPB, A–234, esp.=0,280” TEE RECTA %%C4”, BFW, WPB, A–234, esp.=0,237” TEE RED. %%C36”x20”, BFW, WPY, A–234, esp.=0,750” TEE RED. %%C30”x20”, BFW, WPY, A–234, esp.=0,625” TEE RED. %%C30”x12”, BFW, WPY, A–234, esp.=0,625” TEE RED. %%C26”x16”, BFW, WPY, A–234, esp.=0,500” TEE RED. %%C20”x16”, BFW, WPY, A–234, esp.=0,438” TEE RED. %%C20”x 8”, BFW, WPY, A–234, esp.=0,438” TEE RED. %%C16”x10”, BFW, WPY, A–234, esp.=0,375” TEE RED. %%C16”x 8”, BFW, WPY, A–234, esp.=0,375” TEE RED. %%C12”x10”, BFW, WPB, A–234, esp.=0,375” TEE RED. %%C12”x 8”, BFW, WPB, A–234, esp.=0,375” TEE RED. %%C12”x 6”, BFW, WPB, A–234, esp.=0,375” TEE RED. %%C10”x 8”, BFW, WPB, A–234, esp.=0,365” TEE RED. %%C10”x 6”, BFW, WPB, A–234, esp.=0,365” TEE RED. %%C8”x 6”, BFW, WPB, A–234, esp.=0,322” TEE RED. %%C8”x 4”, BFW, WPB, A–234, esp.=0,322” TEE RED. %%C6”x 4”, BFW, WPB, A–234, esp.=0,280” SADDLE %%C36”x12”, ENV. COMP., A–234, X52, esp.=0,312” SADDLE %%C26”x10”, ENV. COMP., A–234, X52, esp.=0,312” CODO 90%%D %%C20”, RL, BFW, WPY, A–234, esp.=0,438” CODO 90%%D %%C16”, RL, BFW, WPY, A–234, esp.=0,375” CODO 90%%D %%C10”, RL, BFW, WPB, A–234, esp.=0,365” CODO 90%%D %%C8”, RL, BFW, WPB, A–234, esp.=0,322” CODO 90%%D %%C6”, RL, BFW, WPB, A–234, esp.=0,280” CODO 90%%D %%C4”, RL, BFW, WPB, A–234, esp.=0,237” CODO 45%%D %%C12”, RL, BFW, WPB, A–234, esp.=0,375” CODO 45%%D %%C10”, RL, BFW, WPB, A–234, esp.=0,365” CODO 45%%D %%C8”, RL, BFW, WPB, A–234, esp.=0,322” CODO 45%%D %%c6”, RL, BFW, WPB, A–234, esp.=0,280” CODO 45%%D %%c4”, RL, BFW, WPB, A–234, esp.=0,237” REDUCCION CONC. %%C20”x12”, BFW, WPY, A–234, esp.=0,438” REDUCCION CONC. %%C16”x 8”, BFW, WPY, A–234, esp.=0,375” REDUCCION CONC. %%C10”x 8”, BFW, WPB, A–234, esp.=0,365” REDUCCION CONC. %%C10”x 6”, BFW, WPB, A–234, esp.=0,365” REDUCCION CONC. %%C8” x 6”, BFW, WPB, A–234, esp.=0,322” REDUCCION CONC. %%C6” x 4”, BFW, WPB, A–234, esp.=0,280” BRIDA %%C4”, WN, RF, ANSI 600, A–105 Gr.II CONEX.P/BALON INFLABLE TIPO ”L” JUNTA MONOLITICA TIPO ”L” JUNTA MONOLITICA CONEX.P/BALON INFLABLE c b a VER NOTA 9 1500 WELDOLET 36”x8” 82 89 86 87 88 83 84 85 78 79 80 81 75 76 77 , BFW, A–105 Gr.II 67 71 72 73 74 70 68 69 63 64 65 66 60 61 62 VER NOTA 9 r=40D 52 56 57 58 59 53 54 55 49 50 51 45 46 47 48 BRIDA%%C36”, WN, RF, ANSI 600, A–105 BRIDA%%C30”, WN, RF, ANSI 600, A–105 BRIDA%%C26”, WN, RF, ANSI 600, A–105 BRIDA%%C16”, WN, RF, ANSI 600, A–105 BRIDA%%C12”, WN, RF, ANSI 600, A–105 BRIDA%%C10”, WN, RF, ANSI 600, A–105 BRIDA %%C8”, WN RF, ANSI 600, A–105 BRIDA %%C6”, WN, RF, ANSI 600, A–105 BRIDA %%C2”, WN, RF, ANSI 600, A–105 BRIDA%%C20”, WN, RF, ANSI 600, A–105 37 41 42 43 44 38 39 40 33 34 35 36 30 31 32 300 TRAMO RECTO 2000 DESCRIPCION:RENG. 22 26 27 28 29 23 24 25 18 21 19 20 15 16 17 TUBERIA%%C36”, API 5L–X52, esp.=0,750” TUBERIA%%C30”, API 5L–X52, esp.=0,625” TUBERIA%%C26”, API 5L–X52, esp.=0,500” TUBERIA%%C20”, API 5L–X52, esp.=0,438” TUBERIA%%C16”, API 5L–X52, esp.=0,375” TUBERIA%%C12”, API 5L–Gr.B, esp.=0,375” TUBERIA%%C10”, API 5L–Gr.B, esp.=0,365” TUBERIA %%C8”, API 5L–Gr.B, esp.=0,322” TUBERIA %%C6”, API 5L–Gr.B, esp.=0,280” TUBERIA %%C4”, API 5L–Gr.B, esp.=0,237” TUBERIA %%C2”, API 5L–Gr.B, esp.=0,154” 7 11 12 13 14 8 9 10 3 4 5 6 1 2 x 0,237” x 0,280” x 0,280” x 0,322” x 0,322” x 0,375” PZA 1,81 PZA PZA PZA PZA PZA PZA PZA 12,00 9,98 5,90 3,63 58,97 33,11 10,43 PZA PZA PZA PZA PZA PZA PZA 26,76 18,60 10,43 5,44 20,41 10,89 3,86 x 0,280” x 0,237” x 0,237” x 0,280” x 0,322” x 0,280” x 0,322” x 0,365” x 0,322” x 0,365” PZA 24,04 PZA PZA PZA PZA PZA PZA PZA 71,17 158,76 95,26 38,10 24,04 11,79 116,48 PZA PZA PZA PZA PZA PZA PZA 63,96 63,96 39,01 39,01 109,77 109,77 63,96 2 4 4 4 4 – – – – 2 – – – – – – – – – – 2 – – – – – – – – – – – – – – – – – – – – 6 – – – 4 2 – 4 – – – – – – 4 2 – – – – – – – – – – 2 – – – – – – – – – 2 – – – 2 – – – – 4 – – – 4 – 4 – – – 4 – – – 4 – – – 4 2 4 4 4 4 – – – – – – – – – 12 – – – – 8 – – – – – – – – – – – – – – – – – – – – – – – – – – – – – 8 4 – – – – – – – – – – – – 2 – – – – – 2 – – – 2 – 4 – – – – – – – – – – – – – 8 4 – – – – 2 – – – – – – – – – x 0,322” x 0,375” x 0,375” x 0,375” x 0,438” x 0,438” Gr.II Gr.II PZA 13,15 PZA PZA PZA PZA PZA PZA PZA 453,60 310,26 163,29 163,29 5,90 800,60 505,76 PZA PZA PZA PZA PZA PZA PZA 90,72 58,06 39,92 24,04 39,01 18,60 172,37 Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II Gr.II PZA 83,92 PZA PZA PZA PZA PZA PZA PZA 5,44 133,81 104,33 63,50 51,26 34,93 18,14 PZA PZA PZA PZA PZA PZA PZA 435,45 307,54 209,56 101,61 4,00 780,19 557,92 7 4 3 74 – – – – – – – – – – 11 – – – 7 – – – – – – – – – – – – – – – – – – – – – – 7 – – – 7 – 4 – – – – – – – 7 – – – – – – – – – – – 8 4 – – – – 4 – – – – – – – – – – 7 4 – – – – 44 7 – – 1 4 – – – – – – – 4 8 15 4 10 4 12 4 – – – 8 – – – 8 29 4 – – 19 10 4 – – – – 8 – – – 19 10 – – – – – – – – – – 12 – – – 12 – – – – – – – – 12 – – – 810 – – 7 8 – – 19 7 – – 8 7 – – 8 – – 19 – – – 11 – – 4 – – – 12 4 – 10 4 – 10 – – – – 12 – – 12 2 4 – – – – – – – – – 2 – – – – 44 – – – – – – – – – – – – 4 2 4 4 – 2 – – – – – – – – – – 2 – – – – – – – 2 – – – – – 4 – – – 4 – – – – 4 – – – – – – 1 4 4 – 1 4 – – 4 – – – – – 55 4 1 2 8 4 4 1 2 8 – – 4 – – 10 10 4 12 10 – 10 – – 4 – 12 – – UNIDAD 33,546 30,745 PZA 2472,00 PZA PZA PZA PZA PZA PZA PZA 279,00 177,00 79,00 23,00 1198,00 631,00 454,00 PZA PZA PZA PZA PZA PZA PZA 544,00 140,00 323,00 159,00 2274,00 1430,00 753,00 , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , SIN COSTURA , CON COSTURA(ERW) ML 60,24 ML PZA PZA PZA ML ML ML 5,43 11013,00 6328,00 5058,00 42,49 28,23 16,06 ML ML ML ML ML ML 202,39 136,17 93,76 73,81 [KG/UNID.] 419,67 291,68 4 6 4 2 4 10 – – 4 6 4 – – – – – – – – – 4 – 6 4 – – – – – – – – – 2 – 1 1 2 – – – – – – – – – 2 – 1 – – – – – – – – – – – 4 6 – – – 4 4 – – 6 4 – – 2 – – 4 – 4 – 4 – 11 – – – – – 2 – – – – – – – – 1 2 – – 1 – 21,204 15,552 39,521 2,600 12” 36,783 – – – 2,600 – – – 2,600 33,862– – 19,624 17,725 – 2,600 – – – – – – 20,399 16,712 – – – – – – – – – – – – 6” – – – 8” – – – – – – – – 10” – – – 13,25615,384 23,715 2,600 – – – 2,600 – – 22,138 – – – 2 – – 2,600 – – – – – 14,812 13,070 48,763 – 43,800 – – – – 16” 65,696 – – 12,166 – – – – 20” – – 26” LISTA DE MATERIALES CANTIDADES:PESO 44 4 2 4 4 – – – – – – 2 4 – – 1 – – – – – – – – – 1 – – – 14,32613,797 2 1,076 2,6002,600 – 2 – – – 1,076 – – – – 17,329 12,540 84,016 14,793 12,540 – – 68,185 – – 30” – – 36” DEPENDENCIA GERENCIA INGENIERIA OPERACIONAL DE GAS PDVSA GAS